Tag: USDA

  • CA Utilized Vegetable Production Value Shows Slight Decline

    California leads the nation in vegetable production, accounting for 39% of the U.S. vegetable acreage. The value of California’s 2020 utilized vegetable production dropped 0.9% to $7.68 billion compared to 2019’s value of $7.74 billion according to the USDA National Agricultural Statistics Service, Pacific Regional Field Office.

    Despite the decrease in state’s overall total value of utilized production, crops showing an increase included broccoli, cantaloupe, lettuce of all types, sweet potatoes, and tomatoes. California fresh market and processing vegetable growers planted 939,700 acres of principal vegetable crops in 2020, down 3% from 2019. Utilized production totaled 433.8 million hundred weight up slightly from 2019’s 431.7 million hundred weight.

    USDA NASS recently posted the Vegetables 2020 Summary for vegetables grown during the 2020 crop year in California and across the U.S. The report includes survey data collected for acreage, production, marketing year price and value collected on an annual basis for 26 vegetable and melon crops in the U.S. Questionnaire content, survey timetables, and survey administration are state specific. Data are gathered by telephone interviews, mail-out/mail-back, faxed questionnaires, and personal interviews.

    Family favorites grown in California include artichokes, broccoli, carrots, garlic, tomatoes, and more. For a copy of the full report, visit Vegetables 2020 Summary. Just interested in California? Here are comments on 2020 crops where The Golden State is the largest producer. The data reflects U.S. numbers:

    Artichokes: Total production in 2020 totaled 812,000 cwt, down 15% from 2019. Planted area was estimated at 5,900 acres, down 11% from the previous year. Area harvested, at 5,800 acres, was down 12% from 2019. The value of the crop totaled $62.6 million, 16% below the previous season. Utilized production totaled 792,500 cwt, all of which was for the fresh market. In California, artichokes enjoyed a routine spring with strong supplies and steady demand. The March increase could be attributed to consumers pushing the demand for healthy vegetables. The pandemic temporarily impacted labor availability and elevated production costs, but generally favorable weather resulted in good quality and production.

    Broccoli: Total production in 2020 totaled 15.8 million cwt, down 5% from 2019. Planted area was estimated at 100,900 acres, down 4% from the previous year. Area harvested, at 100,300 acres, was also down 4% from 2019. The value of the crop totaled $875 million, 3% more than the previous year. Utilized production totaled 15.8 million cwt, of which 15.3 million cwt was for the fresh market and 25,060 tons for processing. In California, the pandemic caused a variety of changes in the marketplace. Most notably was the decreased demand from the food service industry for broccoli. Growers plowed under broccoli due to limited demand by the hospitality industry.

    Cabbage: Total production in 2020 totaled 23.7 million cwt, up 6% from 2019. Planted area was estimated at 60,600 acres, down 3% from the previous year. Area harvested, at 58,600 acres, was down 3% from 2019. The value of the crop totaled $428 million, 16% less than the previous season. Utilized production totaled 23.6 million cwt, of which 19.1 million cwt was for the fresh market and 224,241 tons for processing. In California, weather during the planting in the fall of 2019 and through head development in 2020 was favorable. No reports of pathogen impact were reported for the crop.

    Cantaloupes: Total production in 2020 totaled 11.3 million cwt, a slight increase from 2019. Planted areas was estimated at 41,000 acres, down 15% from the previous year. Area harvested, at 40,600 acres, down 15% from 2019. The value of the crop total was $296 million, an increase of 24% from previous year. The utilized production was 11.3 million cwt, all of which was for the fresh market. In California, lack of rainfall during the spring months and high temperatures during the summer months provided ideal growing conditions for cantaloupes compared to last year.

    Carrots: Total production in 2020 totaled 31.1 million cwt, down 6% from 2019. Planted area was estimated at 69,900 acres, down 4% from the previous year. Area harvested, at 69,700 acres, was down 3% from 2019. The value of the crop totaled $716 million, 7% less than the previous year. Utilized production totaled 31.1 million cwt, of which 22.3 million cwt was for the fresh market and 441,787 tons for processing. In California, the largest producing State, the carrot market was steady through the spring of the year. In the heavily farmed central portion of the Cuyama Valley, where a lot of California’s carrots are grown, the water table continued to drop in 2020.

    Cauliflower: Total production in 2020 totaled 9.0 million cwt, down 11% from 2019. Planted area was estimated at 42,500 acres, down 6% from the previous year. Area harvested, at 42,200 acres, was down 7% from 2019. The value of the crop totaled $346 million, 25% less than the previous season. Utilized production totaled 8.9 million cwt, of which 8.8 million cwt was for the fresh market and 2,724 tons for processing. In California, growers have seen dramatic movement of cauliflower during the pandemic. This year has seen generally shrinking volume from the beginning of February, and lower volume than the previous two year since the beginning of March. Pricing is below the prior two years and continues decreasing, although price has not stabilized, the rate of decrease has slowed.

    Celery: Total production in 2020 totaled 16.1 million cwt, up 2% from 2019. Planted area was estimated at 29,200 acres, up 4% from the previous year. Area harvested, at 28,800 acres, increased 2% from the previous year. The value of the crop totaled $359 million, down 24% from previous year. Utilized production for 2020 totaled 16.1 million cwt, up 2% from 2019.
    In California, growers reported higher production but price dropped considerably.

    Garlic: Total production in 2020 totaled 3.46 million cwt, down 10% from 2019. Planted area was estimated at 24,700 acres, unchanged from the previous year. Area harvested, at 24,700 acres, was unchanged from 2019. The value of the crop totaled $264 million, 12% less than the previous season. Utilized production totaled 3.46 million cwt, of which 1.21 million cwt was for the fresh market and 112,385 tons for processing. In California, producers were tempered by soil borne pathogens that reduced yield in some areas, though overall the growing season experienced favorable weather.

    Honeydew: Total production in 2020 totaled 2.36 million cwt, down 9% from 2019. Planted area was estimated at 7,600 acres, down 25% from the previous year. Area harvested, at 7,600 acres, was also down 25% from 2019. The value of the crop totaled $49.2 million, down 11% from the previous season. Utilized production totaled 2.36 million cwt, all of which was for the fresh market. In California, lack of rainfall during the spring months and high temperatures during the summer months provided ample growing conditions for honeydew compared to last year.

    Head lettuce: Total production in 2020 totaled 40.7 million cwt, down 3% from 2019. Planted area was estimated at 114,000 acres, down 2% from the previous year. Area harvested, at 112,900 acres, was down 3% from 2019. The value of the crop totaled $1.25 billion, 12% less than the previous season. Utilized production totaled 40.7 million cwt, all of which was for the fresh market. In California, the largest producing State, higher than normal temperatures in the central valley resulted in substantial losses. In the coastal region, warm weather and wildfires affected supplies later in the year. Significant occurrences of crop disease also contributed to a tight market, prompting concerns of shortages in other parts of the country. Some producers in Arizona and California have allowed some head lettuce to die in the field or to be disced under, due to decreased sales to food service companies.

    Leaf lettuce: Total production in 2020 totaled 15.6 million cwt, up 25% from 2019. Planted area was estimated at 62,900 acres, up 9% from the previous year. Area harvested, at 61,700 acres, was also up 8% from 2019. The value of the crop totaled $800 million, 23% more than the previous season. Utilized production totaled 15.6 million cwt, all of which was for the fresh market. In California, some growers did not harvest their fields during the spring in response to market conditions, but demand improved as the year progressed. There was a small amount of heat damage to the crop, but yields were up significantly from the previous year. Quality was reported to be fair and demand was strong enough to keep prices up. However, some producers in Arizona and California have allowed some leaf lettuce to die in the field or to be disced under, due to decreased sales to food service companies.

    Romaine lettuce: Total production in 2020 totaled 30.3 million cwt, up 11% from the 2019 total. Planted area was estimated at 93,100 acres, up 4% from the previous year. Area harvested, at 91,500 acres, was up 4% from 2019. The value of the crop totaled $948 million, 8% more than the previous season. Utilized production totaled 30.3 million cwt, all of which was for the fresh market. In California, there were quality issues in the late summer crop as instances of Sclerotinia and Impatiens Necrotic Spot Virus were found in the Central Coast region. In November, there was a voluntary recall of Romaine lettuce due to a potential outbreak of E.coli. Overall, yields were up from a year ago. Some producers in Arizona and California have allowed Romaine lettuce to die in the field or to be disced under, due to decreased sales to food service companies.

    Onions: Total production in 2020 totaled 75.2 million cwt, up 8% from 2019. Planted area was estimated at 134,700 acres, up 2% from the previous year. Area harvested, at 132,800 acres, was up 3% from 2019. The value of the crop totaled $878 million, 12% less than the previous year. Utilized production totaled 73.5 million cwt, of which 49.5 million cwt was for the fresh market and 1.20 million tons were for processing. In California, the largest producing State, growers reported the summer being too hot too early. Later in the summer there wasn’t enough sun when wildfires blanketed the state in smoke for months.

    Bell peppers: Total production in 2020 totaled 11.7 million cwt, up 1% from 2019. Planted area was estimated at 38,100 acres, up 1% from the previous year. Area harvested, at 37,100 acres, was up 1% from 2019. The value of the crop totaled $479 million, 11% less than the previous year. Utilized production totaled 11.7 million cwt, of which 8.22 million cwt was for the fresh market and 171,808 tons for processing. In California, the summer turned very hot early, which quickly turned bad as fires ravaged through large portions of the state burning cropland and producing a thick layer of smoke blocking the sun for months. Some producers had to divert peppers intended for fresh market to processors as state lockdowns caused stoppages in the supply chain.

    Spinach: Total production in 2020 totaled 7.23 million cwt, down 24% from 2019. Planted area was estimated at 56,800 acres, down 14% from the previous year. Area harvested, at 56,200 acres, was also down 14% from 2019. The value of the crop totaled $439 million, 28% less than the previous season. Utilized production totaled 7.23 million cwt, of which 6.45 million cwt was for the fresh market and 39,204 tons for processing. In California, the largest producing State, the coastal regions experienced damaging cold temperatures in early spring, bringing yields down below last year. Acreage decreased after some growers responded to a drop in demand by plowing under their fields.

    Sweet potatoes: Total production in 2020 totaled 30.7 million cwt, down 4% from 2019. Planted area was estimated at 158,000 acres, up 7% from the previous year. Area harvested, at 156,800 acres, was up 7% from 2019. The value of the crop totaled $726 million, 10% more than the previous season. Utilized production totaled 30.6 million cwt, of which 23.9 million cwt was for the fresh market and 331,638 tons for processing.

    Tomatoes: Total production in 2020 totaled 241 million cwt, up 1% from 2019. Planted area was estimated at 280,000 acres, down 1% from the previous year. Area harvested, estimated at 272,900 acres, was down slightly from 2019. The value of the crop totaled $1.66 billion, 4% more than the previous season. Utilized production totaled 239 million cwt, of which 12.6 million cwt was for the fresh market and 11.3 million tons for processing. In California, there were no major issues during planting, but higher than average temperatures in late spring affected early crop yields. Inconsistent weather patterns throughout the growing season prompted short interruptions in the flow of ripe tomatoes. Wildfires that raged through the state in late summer and early fall slowed the processing tomato harvest. Crop quality varied by region and disease pressure was low. Due to a lack of rain, water availability continued to be a concern.

    For more agricultural statistics, visit www.nass.usda.gov.

  • Egypt Maintains its Position as the World Leading Orange Exporter

    In marketing year (MY) 2020/21, FAS Cairo forecasts fresh orange exports to reach 1.5 million metric tons (MMT) up from 1.37 MMT in MY 2019/20. Post attributes the increase in exports to higher production amid favorable weather conditions. Saudi Arabia, Russia, the Netherlands, China, and United Arab Emirates are likely to remain Egypt’s top export destinations for oranges. Recent export destinations for Egyptian oranges include New Zealand, Japan, and Brazil. The COVID-19 pandemic caused a reduction in MY 2019/20 orange exports by 343,000 MT compared to the previous marketing year.

    Planted Area:

    In MY 2020/21, FAS Cairo forecasts total planted area in oranges at 168,000 hectares (ha), similar to the previous marketing year. MY 2019/20 planted area at 168,000 ha remains unchanged from the USDA official estimate. Most of the area planted with oranges is located in reclaimed lands which account for 60 percent of the total area. Plantations in the Nile Delta region account for 40 percent of the total orange planted area.

    Post estimates MY 2020/21 total harvested area at 145,000 ha, a 3.57 percent increase over last year. The increase in area harvested is attributed to a 7 percent increase in the number of bearing trees from the previous year in addition to favorable weather conditions during flowering time that positively impacted the flowering of the trees and hence the harvest as a result.

    Production:

    In MY 2020/21, FAS Cairo forecasts orange production to increase by 6.2 percent, or 200,000 MT to 3.4 MMT. Post attributes the increase in production to increase in harvested area and favorable weather conditions during the flowering time. Post is also revising the MY 2019/20 estimate upwards by 200,000 MT to 3.2 MMT from the USDA official projection of 3.0 MMT. We attribute the increase in production to higher yields on commercial farms.

    During the past couple of years, there has been an ongoing effort by the government, private associations and growers to replace old orchards with newer trees, improve on-farm irrigation techniques, adopting up-to date nutrient management programs, and reducing post-harvest losses.

    Orange is the major citrus species crop in Egypt, representing about 80 percent of the total cultivated citrus area. Egypt’s main orange varieties include the following:

    Washington Navel Orange: Washington Navel is the key cultivar navel orange grown in Egypt and the best-known naval orange being exported. There are other lesser known navel orange cultivars such as Navelate, Cara Cara, New Hall, Navelina, Fisher, Leng, Fukumoto and Lane late. Fruit color break starts in late September and ripening fruit dates extends from November to March. The fruit is seedless, medium to large-sized, with relatively rough skin in some cultivar and soft skin in others. It has a sweet flavor with a fruit taste. The rind is orange with dark pulp.

    Valencia Orange: Valencia ranks second after Navel oranges as far as area cultivated. Nubaria district is considered the largest production area for Valencia oranges in Egypt. Valencias have a long ripening season from March to July. The fruit pulp is juicy, it is medium to large-sized with round to oval shape. The skin is soft and easily peeled, the seeds are small, and the rind and flesh are orange.

    Other Varieties: There are other orange varieties like Baladi orange, Blood orange, Khalily orange, Yafawy oranges and Sweet orange. Cultivated areas of these varieties are small compared to Navel and Valencia orange, and they’re mainly consumed fresh or as juice.

    Consumption:

    In MY 2020/21, FAS Cairo forecasts that fresh oranges domestic consumption will increase by 4 percent to reach 1.55 MMT. Increase in local consumption is attributed to higher production, and increased utilization of fresh oranges by consumers amid the COVID-19 pandemic due to its high content of vitamin C. In MY 2020/21, utilization of oranges by the processing sector is forecast to grow by 4.4 percent from the previous marketing year as a result of the pandemic.

    Post is revising the MY 2019/20 fresh domestic consumption estimate upwards by 290,000 MT to 1.49 MMT from the USDA official projection of 1.2 MMT. We attribute the increase in consumption to higher demand by consumers amid the COVID-19 pandemic and an increase in orange processing from 300,000 MT to 335,000 MT due to increased demand for orange juice.

    The majority of orange exporters are producers and own packing facilities that are approved for export by the government. They also buy from local farmers if their production is not sufficient to meet their export obligations. Other exporters own packing facilities but do not produce oranges, and thus rely on local farmers. In these cases, the exporters are responsible for transporting the crop to their packing facilities.

    Trade:

    In MY 2020/21, FAS Cairo forecasts total exports to increase by 125,000 MT to reach 1.5 MMT. FAS Cairo attributes this increase to an anticipated higher production which will affect the export volume. Post is revising downward the estimates of fresh orange exports in MY 2019/20 to 1.37 MMT, compared to 1.7 MMT in MY 2018/19 as a result of the COVID-19 pandemic.

    The Central Administration for Plant Quarantine (CAPQ) of the Ministry of Agriculture and Land Reclamation (MALR) announced the beginning of the orange export season on December 1, 2020 for the MY 2020/21. The export season for oranges usually starts with shipments to the Arabian Gulf followed by Russia, Ukraine, and then to the European Union and East Asia. In MY 2019/20, Egyptian orange exports reached 104 countries with Saudi Arabia, Russia, the Netherlands, China, United Arab Emirates, Bangladesh, United Kingdom, Ukraine, Oman, and Malaysia remaining as Egypt’s top ten export destinations for oranges. Post expects that the top ten export destinations in MY 2020/21 will remain unchanged from MY 2019/20.  Read the full report from the USDA-Foreign Agricultural Service HERE.

  • Argentina Lowers Export Taxes on Many Specialty Crops

    The Government of Argentina recently announced adjustments to export taxes on many specialty crops, including apples, pears, citrus fruits, blueberries, tomatoes, broccoli, cauliflower, nuts, and alfalfa intended to improve the international competiveness of these products.

    Argentine Government Seeks to Boost Exports of Specialty Crops:

    On Thursday, December 31, 2020 the Government of Argentina published Decree 1060/2020 which made adjustments to the export tax rates for many specialty crops as well as some manufactured goods. After several rounds of export tax changes in recent years the government is attempting to standardize export tax rates for many products at 0%, 3%, 4.5%, and 9% to avoid varying export tax rates among similar products. Previous export tax changes had given some products exchange-rate linked export taxes that had eroded in value as the Argentine peso devalued against the dollar.

    The stated rationale for the policy change is to encourage exports of added-value products and products whose increased production will result in higher levels of employment, and for which increasing exports won’t raise food costs. The government also hopes to encourage investment in these same sectors. Major structural issues such as high fixed operating costs, lack of investment, and currency controls have reduced Argentine competitiveness in many specialty crops over the years, so this measure will be limited in its capacity to boost exports in the short run. Most fruits and vegetables have had export tax rates lowered from 5% to a 0%.

    The list below, by HS Code Chapter, summarizes Annex 1 of Decree 1060/2020 where information on tax rates for specific products can be found. Export tax rates for most major field crops were unchanged, though the decree mentioned the need to adjust rates for certain commodities currently regulated by an expiring decree. Care should be taken to note if a specific HS code is listed in this decree or past decrees.

    Chapter 1 – Live Horses, Cattle, Primates, Dolphins, Pet Birds 9%;

    Chapter 2 Beef, Horse, Poultry Meat 9%; Sheep and Goat Meat 0%;

    Chapter 3 Various Fish – 9%; Tilapia, Trout, Carp 0%;

    Chapter 4 Fluid Milk 9%; Ultra High Temperature Milk, Yogurt, Butter, Cheese 4.5%; Honey 0%;

    Chapter 5 Semen & Embryos 4.5%;

    Chapter 6 Flowers and bulbs 4.5%;

    Chapter 7 Tomatoes, Cauliflower, Broccoli, Brussel Sprouts, Carrots, Cucumbers, Chickpeas, Beans, Asparagus, Eggplant, Celery, Peppers, Spinach, Artichokes, Olives, Pumpkins, Squash, Potatoes, Sweet Corn, Onions, Mushrooms, Garlic, Vegetable Seeds 0%;

    Chapter 8 Nuts, Plantains, Pineapples, Avocados, Mangos, Oranges, Mandarins, Clementines, Grapefruit, Lemons, Limes, Watermelon, Papayas, Apples, Pears, Quince, Sour Cherries, Peaches, Nectarines, Plums, Strawberries, Raspberries, Blueberries, Kiwis, Passionfruit, Persimmons 0%;

    Chapter 9 Coffee, Pepper, Vanilla, Cinnamon, Cloves, Nutmeg, Mace, Cardamom, Saffron, Turmeric 4.5%; Tea, Paprika, anise, cumin, coriander – -0%;

    Chapter 10 – “Other” Wheat, Rye, Barley, Corn, Oats, Sorghum – 12%; Grain seeds for planting, Buckwheat, Millet 4.5%; Quinoa 0 %

    Chapter 11 Malt 9%; Flaked Grains and Germs4.5%; Buckwheat flower 0%

    Chapter 12 Seeds of Soybeans, Peanuts, and Sunflowerseed for planting, Ginseng, Sugarbeets, Sugarcane 4.5%; Hops, Alfalfa pellets 0%

    Chapter 13 Various Gums, Saps, & Pectins 4.5%
    Chapter 14
    Bamboo, Vegetable Plaiting Materials 4.5%
    Chapter 15
    Glycerol 9%; Olive oil 0%;
    Chapter 16
    Sausages, Hams, Other Prepared & Preserved Meats, Sardines, Tuna 4.5%

    Chapter 17 Refined Beet & Cane Sugar, Glucose and Fructose Syrups, Non-Chocolate Confectionary 4.5%

    Chapter 18 Chocolate ingredients 4.5%
    Chapter 19
    Cereals, Pastas, Tapioca, Cuscus 4.5%

    Chapter 20 Pickled Cucumbers & Mushrooms, Preserved fruits and vegetables 4.5%; Preserved Peas, Olives, Tomatoes, Fruit Juices 0%

    Chapter 21 Coffee Extracts, Yeasts, Sauces, Food Preparations and Ingredients 4.5%; Tea & Yerba Mate Extracts 0%

    Chapter 22 Mineral Waters, Beer, Champagne, Wine, Liquor, Vinegar 4.5% Chapter 23 Livestock Feed 12%; Pet Food 4.5%
    Chapter 24
    Tobaccos 12%, Cigarettes & Cigars 4.5%
    Chapter 41
    Hides, skins, and leather 4.5%

    Chapter 51- Wool 4.5%, Yarn – 3.0%

    Chapter 52 Raw Cotton 12%; Carded Cotton and cotton waste 4.5%; Cotton thread and yarn 3.0%

    — By Benjamin Boroughs, USDA Foreign Agricultural Service

  • Argentina Lowers Export Taxes on Many Specialty Crops

    The Government of Argentina recently announced adjustments to export taxes on many specialty crops, including apples, pears, citrus fruits, blueberries, tomatoes, broccoli, cauliflower, nuts, and alfalfa intended to improve the international competiveness of these products.

    Argentine Government Seeks to Boost Exports of Specialty Crops:

    On Thursday, December 31, 2020 the Government of Argentina published Decree 1060/2020 which made adjustments to the export tax rates for many specialty crops as well as some manufactured goods. After several rounds of export tax changes in recent years the government is attempting to standardize export tax rates for many products at 0%, 3%, 4.5%, and 9% to avoid varying export tax rates among similar products. Previous export tax changes had given some products exchange-rate linked export taxes that had eroded in value as the Argentine peso devalued against the dollar.

    The stated rationale for the policy change is to encourage exports of added-value products and products whose increased production will result in higher levels of employment, and for which increasing exports won’t raise food costs. The government also hopes to encourage investment in these same sectors. Major structural issues such as high fixed operating costs, lack of investment, and currency controls have reduced Argentine competitiveness in many specialty crops over the years, so this measure will be limited in its capacity to boost exports in the short run. Most fruits and vegetables have had export tax rates lowered from 5% to a 0%.

    The list below, by HS Code Chapter, summarizes Annex 1 of Decree 1060/2020 where information on tax rates for specific products can be found. Export tax rates for most major field crops were unchanged, though the decree mentioned the need to adjust rates for certain commodities currently regulated by an expiring decree. Care should be taken to note if a specific HS code is listed in this decree or past decrees.

    Chapter 1 – Live Horses, Cattle, Primates, Dolphins, Pet Birds 9%;

    Chapter 2 Beef, Horse, Poultry Meat 9%; Sheep and Goat Meat 0%;

    Chapter 3 Various Fish – 9%; Tilapia, Trout, Carp 0%;

    Chapter 4 Fluid Milk 9%; Ultra High Temperature Milk, Yogurt, Butter, Cheese 4.5%; Honey 0%;

    Chapter 5 Semen & Embryos 4.5%;

    Chapter 6 Flowers and bulbs 4.5%;

    Chapter 7 Tomatoes, Cauliflower, Broccoli, Brussel Sprouts, Carrots, Cucumbers, Chickpeas, Beans, Asparagus, Eggplant, Celery, Peppers, Spinach, Artichokes, Olives, Pumpkins, Squash, Potatoes, Sweet Corn, Onions, Mushrooms, Garlic, Vegetable Seeds 0%;

    Chapter 8 Nuts, Plantains, Pineapples, Avocados, Mangos, Oranges, Mandarins, Clementines, Grapefruit, Lemons, Limes, Watermelon, Papayas, Apples, Pears, Quince, Sour Cherries, Peaches, Nectarines, Plums, Strawberries, Raspberries, Blueberries, Kiwis, Passionfruit, Persimmons 0%;

    Chapter 9 Coffee, Pepper, Vanilla, Cinnamon, Cloves, Nutmeg, Mace, Cardamom, Saffron, Turmeric 4.5%; Tea, Paprika, anise, cumin, coriander – -0%;

    Chapter 10 – “Other” Wheat, Rye, Barley, Corn, Oats, Sorghum – 12%; Grain seeds for planting, Buckwheat, Millet 4.5%; Quinoa 0 %

    Chapter 11 Malt 9%; Flaked Grains and Germs4.5%; Buckwheat flower 0%

    Chapter 12 Seeds of Soybeans, Peanuts, and Sunflowerseed for planting, Ginseng, Sugarbeets, Sugarcane 4.5%; Hops, Alfalfa pellets 0%

    Chapter 13 Various Gums, Saps, & Pectins 4.5%
    Chapter 14
    Bamboo, Vegetable Plaiting Materials 4.5%
    Chapter 15
    Glycerol 9%; Olive oil 0%;
    Chapter 16
    Sausages, Hams, Other Prepared & Preserved Meats, Sardines, Tuna 4.5%

    Chapter 17 Refined Beet & Cane Sugar, Glucose and Fructose Syrups, Non-Chocolate Confectionary 4.5%

    Chapter 18 Chocolate ingredients 4.5%
    Chapter 19
    Cereals, Pastas, Tapioca, Cuscus 4.5%

    Chapter 20 Pickled Cucumbers & Mushrooms, Preserved fruits and vegetables 4.5%; Preserved Peas, Olives, Tomatoes, Fruit Juices 0%

    Chapter 21 Coffee Extracts, Yeasts, Sauces, Food Preparations and Ingredients 4.5%; Tea & Yerba Mate Extracts 0%

    Chapter 22 Mineral Waters, Beer, Champagne, Wine, Liquor, Vinegar 4.5% Chapter 23 Livestock Feed 12%; Pet Food 4.5%
    Chapter 24
    Tobaccos 12%, Cigarettes & Cigars 4.5%
    Chapter 41
    Hides, skins, and leather 4.5%

    Chapter 51- Wool 4.5%, Yarn – 3.0%

    Chapter 52 Raw Cotton 12%; Carded Cotton and cotton waste 4.5%; Cotton thread and yarn 3.0%

    — By Benjamin Boroughs, USDA Foreign Agricultural Service

  • Drink Your Peas, Please!

    USDA Agricultural Research Service (ARS) scientist and director of the Western Regional Research Center (Albany, CA), Tara McHugh and her team in the Healthy Processed Foods Research Unit are experts at solving food-manufacturing problems. Using cutting-edge processing technologies, they have helped numerous small businesses, such as Ripple Foods, turn ideas into products for the consumer.

    ARS is helping Ripple Foods optimize its current pea protein drying process to make it more efficient and to further improve its products. The company manufactures its own pea protein by processing yellow split peas into a liquid form and then isolating, purifying, and drying the protein. The pea protein is then made into non-dairy milks, protein shakes, half and half, ice cream, and other products.

    The drying step is necessary because producing this clean-tasting plant protein in a wet state comes with challenges: It’s difficult to transport, has a greater risk for microbial spoilage, and has handling issues, McHugh said.

    “It’s also expensive to ship all over the country, so we are working to optimize the drying process—looking at a way to dehydrate it so it can be rehydrated to save expenses,” she said. “The drying process also may even improve the quality and flavor of the final product.”

    Ripple Foods has a cooperative research and development agreement with ARS, which assists the company in data gathering and analysis on different aspects of its pea beverage. “Ripple’s mission is to make plant-based foods delicious,” said Aminah Johnston, a process engineer with the company. “We are always looking for ways to make our protein and products better. Our collaboration with ARS has been extremely helpful.”

    This kind of research not only supports small businesses and U.S. growers, but also reduces waste and increases consumption of healthy foods.—By Sandra Avant, formerly with USDA-ARS Office of Communications.

  • National Cucurbit Project Reupped for $7.1 Million

    The Cucurbit Coordinated Agricultural Project (CucCAP), a multi-institution, nationwide research and outreach initiative led by Michigan State University and dedicated to cucurbit crops — cucumbers, squashes, melons and watermelon — has been awarded $7.1 million from the U.S. Department of Agriculture’s (USDA) Specialty Crop Research Initiative.

    The new funding extends the project that began in 2015 for four years. The goals of CucCAP, which is led by Rebecca Grumet, a professor in the MSU Department of Horticulture, are to harness genomic resources for disease resistance and management in cucurbit crops.

    “Producers and processors of cucurbit crops throughout the country consistently identify diseases as one of their most serious and costly problems,” Grumet said. “The diseases cause severe reductions in yield and crop quality, sometime causing total crop loss.

    “Control measures are expensive due to chemical costs, time and labor. The most cost-effective and environmentally desirable solution is disease-resistant varieties in combination with effective integrated disease management strategies.”

    To address these problems, the CucCAP team, with members from 10 institutions around the country combines expertise in genomics, bioinformatics, plant breeding, genetics, plant pathology, outreach and economics.

    The partners are: Boyce-Thompson Institute, Clemson University, Cornell University, North Carolina State University, University of Florida, University of Georgia, University of Puerto Rico, USDA Agricultural Research Service, and West Virginia State University.

    The project’s new phase, CucCAP2, will focus on the development of advanced genomic, bioinformatic and breeding tools; disease resistant materials; disease management strategies and economic analyses for critical diseases threatening cucurbit production.

    Genomics, which helps researchers understand the genetic makeup of cucurbit species and breed disease-resistant varieties, is one CucCAP scientists’ most important approaches. Tools developed through the project have allowed identification of genetic regions associated with resistance to important diseases.

    Grumet has worked with Michigan specialty crop growers for decades on disease management issues. Her research has concentrated on reproductive development and disease resistance in cucurbits — particularly cucumbers.

    This research is especially relevant to Michigan, as the state is home to the nation’s largest pickling cucumber industry, valued at nearly $50 million per year.

    Through CucCAP, researchers have been addressing two devastating diseases threatening cucumbers — downy mildew and Phytophthora fruit rot, caused by a pathogen called Phytophthora capsici. Grumet said these diseases cost U.S. cucumber growers roughly $5 million annually.

    Mary Hausbeck, a University Distinguished Professor in the MSU Department of Plant, Soil and Microbial Sciences, is also a part of the CucCAP team. Her work for the project includes development of effective practices and timely extension resources for management of cucurbit diseases and resistance to Phytophthora fruit rot in processing squash. Additionally, researchers at partner institutions are working with a variety of fungal, oomycete and viral pathogens infecting the different cucurbit crops throughout the country.

    CucCAP projects are geared toward the entire production process, from breeding and pathology to economic analysis and outreach. Commodity organizations and seed industry representatives from around the world assist in setting research priorities.

    Getting information to growers about research findings is also a fundamental part of CucCAP. Outreach is conducted through meeting with growers and providing easily accessible online resources, such as disease control information on the CucCAP website. In addition, the team created a cucurbit genomics database website to serve as a central portal for genomics data and research.

    “Using modern genomic tools, we can more efficiently introduce and combine genes for different resistances while maintaining high yield and important fruit quality traits,” Grumet said. “This is critically needed given the tremendous losses that can be caused by these destructive diseases.” – By Cameron Rudolph, Michigan State University

  • Purple Sweetpotatoes for Thanksgiving, Christmas & More

    Bright-orange sweetpotatoes are a staple of many American Thanksgiving dinners and are often prepared with a traditional family recipe. But this year, why not start a new tradition with purple-fleshed sweetpotatoes?

    Both colors of sweetpotato are high in dietary fiber, vitamins, and minerals, but the purple varieties are also rich in health-beneficial antioxidants called anthocyanins and phenolic acids. Anthocyanins are plant pigments that make blueberries blue and cherries cherry-red, and the antioxidant activities in purple sweetpotatoes can be at similar levels to these antioxidant-rich fruits. Various studies have indicated that anthocyanins and phenolics from purple‐fleshed sweetpotatoes may have potential health benefits.

    A team of scientists from the Agricultural Research Service’s Food Science and Market Quality and Handling Research Unit in Raleigh, NC, collaborated with researchers at North Carolina State University to find ways to preserve purple-fleshed sweetpotatoes’ anthocyanin levels during processing into products like juice or natural colorants. Typically, heat is used during processing, but heat changes the flavor and prevents isolation and use of sweetpotato starch and fiber. But if heat is not used, then the flesh quickly browns due to the same enzymes that turn sliced apples brown.

    The scientists wanted to figure out a heat-free way to extract the juice and pigments directly from the raw purple sweetpotato. After those are extracted, what’s left is raw starch and fiber (pomace), each with its own uses and benefits.

    The team successfully used water containing a small amount of citric acid, a substance naturally present in citrus fruits, to inactivate the browning enzymes and preserve an appealing reddish-purple color in the fresh juice and pomace. Preserving the high anthocyanin content makes these products desirable as functional ingredients in beverages and other food products. This research can pave the way for sweetpotato processors to produce new, value-added products. The team published the study in the Journal of Food Science in 2019.—By Sue Kendall, USDA ARS Office of Communications.

  • University of Florida Awarded Grants to Continue Fight Against Citrus Greening

    University of Florida researchers hope to discover new methods to help citrus growers fight the deadly citrus greening (or Huanglongbing) disease with cost effective, long-term sustainable treatments with the support of recently awarded federal grants.  Three teams of scientists from UF’s Institute of Food and Agricultural Sciences received nearly $4.5 million in U.S. Department of Agriculture funds to study new ways to manage the invasive insect causing millions of damage to Florida’s citrus crops.

    “These grants build on an existing portfolio of success in finding solutions to combat citrus greening throughout Florida’s citrus groves,” said Michael Rogers, director of UF/IFAS Citrus Research and Education Center and coordinator of the UF/IFAS statewide citrus program. “They will contribute to the solutions we are providing that support citrus growers in sustainably and profitably growing citrus throughout the state.”

    Managing the Asian citrus psyllid with the environment in mind

    Bryony Bonning, eminent scholar and professor in entomology and nematology, leads a team from Gainesville and the UF/IFAS Citrus Research and Education Center in Lake Alfred, Florida in a project that uses a bacteria-derived pesticidal protein combined with gene silencing to manage the invasive Asian citrus psyllid (ACP) population. The long-term goal of the proposed work is to create an environmentally benign approach for citrus growers to control ACP that works within an integrated pest management (IPM) strategy. The project intends to identify the optimal components for an ACP control product for grower use.

    The grant project aims to: 1) optimize ACP-active proteins derived from the bacterium Bacillus thuringiensis (Bt) that suppress psyllid populations, 2) further develop genetic solutions that would disrupt ACP, and 3) screen for the best combination of these methods for use against ACP. On completion of this project, researchers will be well positioned to produce transgenic citrus and/or trap plants that will suppress ACP populations for use by citrus growers.

    This method of effective vector control, combined with other measures will help the citrus industry in Florida rebound, and protect the industries in California and Texas. The results of this research are anticipated to reduce the need for tree removal and replanting as well as reduce insecticide applications, and increase yields and fruit quality, contributing to the long-term profitability and sustainability of U.S. citrus production.

    Attacking citrus greening from the inside out

    Amit Levy, assistant professor of plant pathology, received a NIFA grant to examine how the Candidatus Liberibacter asiaticus (CLas) bacteria interacts with a narrow tissue – known as the phloem – which is buried inside the stem of the citrus tree. CLas resides in and plugs the phloem in the stem of the citrus tree, leading to inhibition of sugar and nutrient transport into the tree’s sink tissues, including the fruit. Eliminating these plugs can presumably result in renewed sugar transport and increased fruit yields.

    However, there is a significant gap in understanding CLas-phloem interactions in citrus, which has been a major limiting factor for controlling the disease. Levy and a team of UF/IFAS researchers and Sainsbury lab and Cornell University scientists plan to address these challenges with a novel seed coat-based system that supports in-depth analyses of phloem dynamics and CLas-phloem interactions in HLB-affected citrus. The project will identify key players required for phloem plugging, host immune response and CLas colonization inside the phloem. These key players can later become novel targets for manipulation with gene editing techniques that can be translated into usable products, such as transgene-free CRISPR/Cas9 edited plants to block the disease propagation and movement, and increase sugar and nutrient translocation into fruit thus increasing tolerance or resistance to HLB.

    A Novel Therapeutic Strategy For HLB-Infected Trees

    Huanglongbing (HLB)-resistant or tolerant citrus trees are the long-term solution for citrus greening disease.  Existing research has generated transgenic citrus lines that provide robust tolerance to HLB. These transgenic lines are already in field tests as a potential management possibility for HLB. However, these trees will have to go through an extensive approval process before being made available to growers.

    A research team lead by UF/IFAS microbiology and cell science professor Zhonglin Mou and faculty from the UF/IFAS Citrus Research and Education Center and UF/IFAS Southwest Research and Education Center are working to speed up this process by reproducing the greening resistant or tolerant genetic makeup in non-transgenetically modified plants by gene editing using CRISPR/Cas9. This is a better long-term approach but will take time.

    The primary goal of this project is to develop an interim treatment for HLB. The project hopes to turn off the genes that negatively control the citrus immune system and result in disease symptoms in citrus when exposed to disease-causing pathogens. Coupled with other work to target the HLB-causing bacterium itself, the overall goal is to develop new management strategies making citrus varieties highly tolerant to this disease. The project will use a vector derived from citrus tristeza virus (CTV) to remove negative regulation of the citrus immune system, leading to improved immune response and HLB tolerance. The same CTV vector will also deliver antimicrobial peptides to reduce HLB pathogens.

    The synergism between the immune system-provided tolerance and the antimicrobial peptide-mediated pathogen reduction is expected to provide effective control of the HLB disease. Importantly, CTV naturally occurs in the field and does not make genetic changes to the citrus genome, and thus the employed strategy is a non-transgenic approach. — By Ruth Borger, University of Florida

    The mission of the University of Florida Institute of Food and Agricultural Sciences (UF/IFAS) is to develop knowledge relevant to agricultural, human and natural resources and to make that knowledge available to sustain and enhance the quality of human life. With more than a dozen research facilities, 67 county Extension offices, and award-winning students and faculty in the UF College of Agricultural and Life Sciences, UF/IFAS brings science-based solutions to the state’s agricultural and natural resources industries, and all Florida residents.

  • USDA Measures Vegetable Chemical Usage

    Interviewers from the U.S. Department of Agriculture’s National Agricultural Statistics Service (NASS) will interview more than 160 Washington and Oregon vegetable growers in order to gather information for the Vegetable Chemical Use Survey this fall.

    The survey will collect information on pesticides used, acres treated and rates applied to seven targeted vegetable crops. In addition to Northwest producers, vegetable growers in 14 other states will also hear from NASS, as the agency collects comprehensive U.S. vegetable production practices information.

    “Participation in the Vegetable Chemical Use Survey is vital to all participants in this key agricultural sector,” said Christopher Mertz, director of the Northwest Regional Office. “Responses from vegetable growers will help ensure that chemicals critical to crop production remain available on the market.”

    Survey response is protected by federal law (Title V, Subtitle A, Public Law 107-347), which keeps respondent identity and answers confidential.

    Survey results will be published online in NASS’s Quick Stats database next year. This database and all NASS reports are available on the agency’s website: nass.usda.gov. For more information on NASS surveys and reports, call the NASS Northwest Regional Office at 1-800- 435-5883. 

  • CDFA Prune Handlers Annual Report

    California Department of Food & Agriculture — Prunes produced by handlers in 2019 totaled 9,791 tons, down from the 10,728 tons reported in 2018. This figure does NOT include prunes purchased from other handlers or producers.

    The total 2019 prune crop purchased from producers, for whom pricing had been finalized, reached 38,336 tons at an average price of $1,456 per ton, down significantly from the $1,715/ton average of 2018. This price is rounded to the nearest dollar per ton and includes all bonuses and allowances.

    Purchases from producers, for whom pricing was NOT finalized, totaled 39,828 tons. The average “good faith” estimate of the final weighted average price for this tonnage was $2,133 per ton.

    The quantity of all prunes purchased from producers was 78,164 tons for the 2019 crop. This figure does not include prunes produced by the handler or purchased from other handlers. The weighted average size count of tons purchased from producers was 57 for the French varieties and 58 for the Non-French varieties.

    The tonnage produced by the handler plus tonnage purchased from producers for the 2019 prune crop was 86,879 tons of French prunes and 1,077 tons of Non-French prunes for a total of 87,956 tons.

    Information contained in this report was supplied by prune handlers to fulfill reporting requirements of Sections 55601.7 and 55601.8 of the Food and Agricultural Code. The report includes all tonnages of prunes that were either produced by the handler or purchased from producers. The final weighted average price, including bonuses and allowances, has been reported for all contracts which were finalized.

    All 2019 crop transactions completed through the close of business on August 31, 2020 are included in this report. A “good faith” estimate of final weighted average price was reported for those contracts which were not final on the same date. The data are shown by major varieties at the State level only.

    DEFINITIONS

    Producer: A person or operator who is responsible for the prunes in the unprocessed state. A dehydrator operator is considered the producer of prunes if they grew or purchased fresh prunes and dehydrated them.

    Handler: Firm that processes and markets prunes.

    Finalized Purchases: Tonnage purchased from producers, for which a pricing contract has been completed.

    Non-Finalized Purchases: Contracted tonnage, for which a final price has not yet been determined.

    Free Tonnage: Tonnage received by a handler, for which the only Federal marketing order regulation is a minimum quality or size standard. Reserve tonnage is the tonnage set aside as authorized by a Federal marketing order.

    Weighted Average Price: Weighted average price reflects prices or “good faith” estimates of prices as reported by handlers and include any bonuses or allowances.