Tag: USDA

  • California Citrus Growers Invited to Apply for CA-CRaFT ACP Mitigation

    Through support from the USDA Huanglongbing Multi-Agency Coordination Group (HLB-MAC) the Citrus Research Board (CRB) is initiating a California focused Citrus Research and Field Trials (CA-CRaFT) project. The overarching goal of CA-CRaFT is to demonstrate the effects of additional mitigations on Asian citrus psyllid control within commercial citrus groves across the various citrus growing regions in California. This project will measure psyllid levels within treated groves as a year-by-year measurement and relative to the regional psyllid levels. The additional mitigations are expected to help reduce psyllid populations and inform growers of best practices. The project results will be shared on a regional, statewide, and national basis.

    To be considered for the program, growers should be actively following current UC IPM guidelines and interested in working with the CRB to test the effect of additional psyllid control methods

    Producers may choose one or more of the following mitigations:

    Preventative Mitigations

    • Barrier mesh fencing
    • Living windbreaks
    • Trap crops

    Threshold-based Mitigations

    • Biological control agent releases
    • Pesticide treatments (border sprays, psyllid repellents, ant control)

    Priority will be given to CA citrus groves with ongoing psyllid pressures and/or in proximity to major psyllid risk factors (i.e., transportation corridors, residential areas).

    Compensation will be provided based on mitigations adopted.

    Informational webinars will be held on September 8 and September 14, 2022. To learn more and register, please click on the respective links below.

    Submit the application BELOW no later than October 1, 2022.

  • Navel Oranges Dominate CA Citrus Production, Mandarin Acreage on the Rise

    The Pacific Regional Office of the USDA’s National Agricultural Statistics Service (NASS) conducts an acreage survey of California citrus growers as funding is available. The purpose of this survey is to provide bi-annual citrus acreage, which includes information on new plantings and removals. It is the continuation of a long series of industry-funded Citrus Acreage surveys. Resulting data reveals that the navel orange by far continues to dominate California citrus acreage and production; however, while bearing acreage of navels has been on a decline, mandarins and mandarin hybrids are trending higher than in previous years, with a significant amount of nonbearing acreage in the ground this year.  Overall, the industry has seen an increase in citrus acreage over the past couple years in the state.

    Users are cautioned that this report consists of two parts:

      • ➢  Table1 shows estimated statewide bearing acreage for the 2018-19, 2019-20 and 2020-21 seasons.

      • ➢  Tables 2, 3, and 4 show detailed acreage data by type, variety, and year planted — as voluntarily reported by citrus growers and maintained in NASS’ database.

    With perfect information, the estimated statewide bearing acreage and the detailed acreage data would be the same. Generally, this will not be the case for the following reasons:

    • ➢  A voluntary survey of approximately 5,400 citrus growers is unlikely to ever attain 100 percent completeness.

    • ➢  It is difficult for USDA/NASS to detect growers who are planting citrus for the first time. 

    PROCEDURES

    The major source of the citrus detailed acreage data was a questionnaire mailed to all citrus growers currently in NASS’ database. The mailing was sent in January 2022. The questionnaire contained previously reported crop, variety, and acreage information preprinted. Producers were asked to update the information with new plantings, removals, and any other corrections. New growers were mailed a blank questionnaire. Growers were given about eight weeks to respond by mail. A telephone follow-up was then undertaken. Data collection ended in July 2022.

    To arrive at the estimated statewide bearing acreage, the NASS citrus acreage database was compared with pesticide application data maintained by County Agricultural Commissioners and the Department of Pesticide Regulation.

    ACKNOWLEDGMENTS

    The USDA, NASS Pacific Regional Office sincerely appreciates the many orchard operators, owners, and management firms that provided their acreage information. Funding for the survey was provided by the California Citrus industry.

  • May is National Salad Month, Celebrate with More US Grown Salad on the Table

    What is arguably the foundational ingredient in salad? Lettuce! USDA’s National Institute of Food & Agriculture (NIFA) supports research that is leading to stronger, healthier, more disease-resistant lettuce cultivars. See what NIFA is doing to keep healthy, safe salads on the menu for consumers everywhere.

    Current funded projects in California and Illinois include the following:

    The USDA Agricultural Research Service, Pacific West Area, in Albany, California, is working to improve the safety and survival of lettuce during fresh-cut processing and cold storage. Mechanical damage of processed leaf tissue offers new opportunities for the proliferation of E. coli, the main bacterial agent that causes lettuce-linked foodborne outbreaks. Researchers are working to identify lettuce cultivars that effectively reduce population sizes of E. coli upon shredding and cold storage and characterize defense responses on cut tissue.

    The USDA Agricultural Research Service in Berkeley, California, is studying the prevention of pathogen contamination in agriculture water in lettuce production. Researchers are developing and implementing a screening tool to test the effectiveness of sanitizer, antimicrobial resistance and tolerance to oxidizing compounds, and provide recommendations on keeping resistant strains from developing.

    The University of California – Davis is enhancing the use of resources to increase sustainable lettuce production in changing climates. This research project seeks to improve water, nitrogen and phosphate use in lettuce, and determine heat/cold/saline tolerance, to improve lettuce’s resilience. The research findings will be shared with breeders and students.

    The University of Chicago is modifying lettuce by altering its genetic makeup without introducing genetically modified genes. Researchers are using tiny fibers to inject substances that will enable changing the gene content of lettuce.

  • U.S. Fresh Potatoes Begin Export To Mexico

    The U.S. Department of Agriculture’s (USDA) Animal and Plant Health Inspection Service (APHIS) and Mexico’s national plant protection organization (SENASICA) announce that the United States has begun exporting potatoes beyond the 26-kilometer border zone that previously marked the limit of their export.  The two countries reached an agreement late last year to expand that market access for U.S. potatoes, something that the United States has sought for more than 25 years.

    “Through this accomplishment, we are delivering better markets for U.S. farmers, supporting economic growth, and providing access to our southern neighbors to the high-quality and safe products our farmers work hard every day to grow and sustain.  USDA will continue to fight for new and expanded markets for American products as we help the nation build back better,” said U.S. Department of Agriculture Secretary Tom Vilsack.

    The U.S. potato industry estimates that this access for U.S. fresh potatoes to all of Mexico will provide a market potential of $250 million per year, in five years. This is an increase of $190 million from the current export value of $60 million.

  • U.S. Highbush Blueberry Council Seeks Nominees for Importer 2, 3, 4 and Exporter 2, 3, 4 Positions

    The USHBC Industry Relations Committee is seeking nominees to be considered for USHBC Importer #2, #3, & #4, Exporter #2 (Canada), Exporter #3 (Peru), and Exporter #4 (Mexico) positions on the Council. Nominees are being sought for the three-year term, except for Exporter #3 & #4 whose initial term is 2 years, that begins January 1, 2023.

    The committee plans to present a slate of potential nominees to the USHBC Executive Committee for consideration by July 31, 2022. The Council will then make final candidate selections at the next USHBC Meeting. At this meeting, the Council will recommend to the U.S. Secretary of Agriculture a final candidate for three importer members and alternates, and three exporter members and alternates, along with two additional candidates for each of these six positions, for consideration by the Secretary for final appointments.

    Blueberry industry members interested in being considered for the USHBC Importer #2, #3, #4 or Exporter #2 (Canada) Member and Alternate positions are asked to complete a USHBC Importer/Exporter Nominee Application and send their completed application to the USHBC via fax at (916) 983-9022 or email to elections@blueberry.org no later than Friday, April 29, 2022.

    The USHBC has adopted a diversity outreach plan to attempt to achieve a diverse representation on the council. USHBC programs and meetings are open to all individuals. The USHBC prohibits discrimination in all its programs and activities on the basis of race, color, national origin, sex, religion, age, disability, political beliefs, sexual orientation, genetic information, parental status and marital or family status. It is USHBC policy that membership on the council and its committees reflect the diversity of individuals served by its programs. To accomplish this objective, the USHBC will strive to attain representation of growers and other industry participants from diverse backgrounds on the council and USHBC committees. To this end, the USHBC strongly encourages women, minorities and persons with disabilities to seek nominations to the USHBC and to participate in council and USHBC committee activities.

    Producers and importers of highbush blueberries approved the establishment of the USHBC through a referendum conducted by the USDA Agricultural Marketing Service in 2000. The USHBC was formally established in August 2000. The program is funded by an assessment of $18 per ton on domestic highbush blueberries, and $18 per ton on fresh and processed imported highbush blueberries. Market promotion activities funded through the USHBC began in January 2002.

    About the U.S. Highbush Blueberry Council

    Established in 2000, The U.S. Highbush Blueberry Council (USHBC) is a federal agriculture research and promotion program with independent oversight from the United States Department of Agriculture (USDA). USHBC represents blueberry growers and packers in North and South America who market their blueberries in the United States and overseas, and works to promote the growth and well-being of the entire blueberry industry. USHBC was established by blueberry growers and currently has 2,500 growers, packers and importers. USHBC is committed to providing blueberries that are grown, harvested, packed and shipped in clean, safe environments. Learn more at ushbc.org.

  • Researchers Harness the Sun’s Rays to Fight Strawberry Disease

    While not exactly the stuff of sci-fi movies, scientists have developed a “ray gun” that emits a light hazardous to a pestilence that devastates many types of crops. Fumiomi Takeda, a research horticulturalist, and Wojciech Janisiewicz, retired research plant pathologist, from the Agricultural Research Service (ARS) Innovative Fruit Production, Improvement, and Protection unit in Kearneysville, WV, led a team that used shortwave ultraviolent light (UV-C) to kill powdery mildew fungus.

    UV-C is a very specific part of the ultraviolet light spectrum. UV-C is produced by the sun but does not reach Earth’s surface because it is absorbed by the ozone layer in the upper atmosphere. That’s a good thing, because UV-C is harmful to humans and plants when exposed to excessive amounts or for a long time.

    “We conducted research to administer UV-C on powdery mildew-infected strawberry plants without causing harmful effects on the plant, such as leaf burn, fruit softening, or color darkening to determine whether it would be a good alternative to controlling powdery mildew with pesticides,” Takeda said.

    On strawberry plants, powdery mildew appears as white powdery spots or fuzzy growth on both sides of leaves and on stems. Moderate to severe infection reduces the ability of leaves to employ photosynthesis – the process that plants use to synthesize foods from carbon dioxide and water. Powdery mildew can kill flowers, harden immature fruit, and reduce fruit quality and marketable yields.

    If not controlled, the disease can cause a significant economic loss, especially to plants grown in greenhouses or high tunnels. In Japan and western Europe, where over 90% of strawberry production is in the greenhouse and under high tunnels, powdery mildew is the primary cause of fruit quality loss.

    UV-C light kills microorganisms (fungi, bacteria, and viruses) and even arthropod pests by damaging their DNA.

    According to Takeda and Janisiewicz, UV-C application is most effective at night because microbes and mites have a natural, light-activated special mechanism for repairing their damaged DNA. When UV-C is used during the day, high doses are needed to kill microbes, but those high doses are damaging to plants. To avoid this problem, they irradiated microbes with UV-C at night.

    “Night-time application of 30-60 seconds allowed for control of powdery mildew, botrytis gray mold, and anthracnose fruit rot causing fungal pathogens at much lower doses for an effective kill and, more importantly, below the threshold that causes damage to the strawberry plants,” Takeda said.

    A severe case of powdery mildew on a zinnia (Photo by Stephen Ausmus).

    In addition to strawberries, USDA scientists have used UV-C light on tomato plants and ornamental crops to control fungal pathogens and arthropod pests, such as greenhouse whitefly, flower thrips, and two-spotted spider mite.

    ARS collaborated with TRIC Robotics in Newark, DE, to design and test the UV-C application robots at multiple locations, including California, where they have been field tested for over 10 months. The UV-C, non-chemical approach for fungal and pest control has shown so much success that it is on the brink of widespread commercial application.

    “With the development of our autonomous UV-C application in the field, it is not so much a question of whether UV-C light treatments can be applied effectively, but how soon commercial platforms for UV-C application will be available to large and small strawberry growers across the country,” Takeda said. – By Scott Elliott, USDA ARS

  • Citrus Canker in Nursery Stock Sold to CA, CDFA & USDA Take Action to Identify & Destroy Affected Plants

    Citrus Pest & Disease Prevention Program — The United States Department of Agriculture’s Animal and Plant Health Inspection Service (APHIS) has confirmed the presence of citrus canker disease in a nursery in South Carolina. The nursery sells plants to consumers through online sales, including four locations in California since August 2021. Retail nurseries did not receive these plants.

    Citrus canker causes citrus leaves and fruit to drop prematurely, and results in lesions on citrus leaves, stems and fruit. Fruit infected with the bacterium that causes citrus canker (Xanthomonas axonopodis) is safe to eat, but it may not be marketable because of the lesions. The disease affects all citrus varieties. Citrus canker is not harmful to people or animals.

    Together with state partners, APHIS is working to collect and destroy the plants shipped to consumers in 11 states and trace plants that were sold to determine additional locations of potentially infected plants. The states include Alabama, California, Florida, Georgia, Louisiana, Mississippi, Nevada, Oregon, South Carolina, Texas and Washington.

    The California Department of Food and Agriculture (CDFA) was notified that four residential properties throughout the state had ordered citrus nursery stock from the South Carolina nursery. Upon being notified of the recall, CDFA staff successfully verified that one order was not filled, removed and destroyed the recalled trees from two of the three remaining residential properties and is working to connect with the recipients of the final shipment (as of March 9). All additional host plants on these properties were surveyed and sampled for citrus canker disease and submitted for analysis, and delimitation surveys will also be conducted around these locations. These swift actions by APHIS and CDFA are focused on protecting the citrus industry as well as nurseries and other establishments that sell citrus plants wholesale and direct to consumers.

    Currently, citrus canker is found throughout Florida and in limited areas of Louisiana and Texas. APHIS is working with state partners to contain the disease, and federal and state quarantines exist in these states. Additionally, citrus canker was recently confirmed in Alabama, and APHIS is working with state partners to establish a federal quarantine to parallel the state quarantine.

    If you live in one of the 11 states and bought citrus plants online that came from South Carolina between Aug. 5, 2021 – Feb. 17, 2022, please keep your plants for now. If you purchased a plant or plants that might be infected, APHIS and/or state officials will contact you in the next several days to collect and properly dispose of any plants purchased from the nursery. You can also call your local USDA office with additional questions. Contact information can be found at www.aphis.usda.gov/planthealth/sphd.

    To learn more about APHIS’ regulations for citrus canker, please visit https://www.aphis.usda.gov/aphis/ourfocus/planthealth/plant-pest-and-disease-programs/pests-and-diseases/citrus/citrus-canker.

    For questions about citrus canker in California or other pests or diseases, please call CDFA’s toll-free Pest Hotline at 1-800-491-1899.

  • CA Prune Board Advances Study of Prunes and Bone Health

    The California Prune Board (CPB) is leading the way in investigating a connection between prunes and favorable bone through a growing body of evidence spanning two decades. Building on this remarkable and extensive research, the organization is announcing recently published scientific data supporting the role prunes may play in optimal bone health, while previewing a pipeline of clinical trials currently underway.

    “The science has shown us that something unique is going on with prunes, as we’ve uncovered some remarkable connections to bone health,” said Donn Zea, Executive Director, California Prune Board. “With every study we learn something more compelling further piquing our curiosity. Our research program has more to explore, and we’re excited to see where this takes us in terms of learning more about the benefits of prunes for bone health.”

    RECENTLY PUBLISHED HIGHLIGHTS

    In a recent review paper published in Advances in Nutrition titled, “The Role of Prunes in Modulating Inflammatory Pathways to Improve Bone Health in Postmenopausal Women,” researchers from Pennsylvania State University examined the relationship between prune consumption, oxidative stress, inflammation, and favorable bone health outcomes, summarizing the results of preclinical and clinical trials. They reported that the bone-protective effects of prunes found in postmenopausal women appear to be connected to the antioxidant and anti-inflammatory activity that prunes stimulate within the body. Moreover, the authors also suggested that prunes’ favorable effect on bone may be partially explained by changes in the gut microbiota that can come from regular prune consumption.

    Additionally, in a USDA-funded clinical trial recently published in Nutrients, titled “The Short-term Effects of Prunes in Improving Bone in Men,” investigators from Florida State University sought to test the effect of daily prune consumption on bone metabolism in 35 men over the age of 50 who had some bone loss. The early findings showed a reduction in osteocalcin, a biomarker of bone turnover, and an increase in what’s known as the OPG:RANKL ratio, indicating prunes may have a positive effect on bone status after just three months of eating this whole fruit daily. These preliminary findings are a subset of a larger study with results that have not yet been published but are anticipated in the next 12-18 months.

    “As a researcher it’s exciting to see a positive change in bone turnover in these men from prune consumption after a relatively short period of time. We anticipate even more favorable results in bone status once the men have completed a full year of eating prunes every day,” said Principal Investigator Bahram Arjmandi, PhD, RDN, Professor and Director, Center for Advancing Exercise and Nutrition Research on Aging, Florida State University.

    RESEARCH UNDERWAY

    In addition to this recently published data, the following nutrition studies from highly credentialed research institutions are currently in progress and working toward completion or journal publication:

    Randomized Controlled Trial of Dietary Supplementation with Prunes on Bone Density, Bone Geometry, and Bone Strength in Postmenopausal Women

    Principal Investigator: Mary Jane De Souza, PhD – Pennsylvania State University

    With a cohort of over 200 postmenopausal women, this is the largest clinical trial to date to investigate the effect of prunes on bone status as a non-pharmaceutical plant-based strategy to combat bone breakdown.

    The Effects of 12-months of Prune Consumption on Bone Mineral Density and Bone Turnover Markers in Korean Postmenopausal Women with Osteopenia

    Principal Investigator: Peter Clifton, PhD – University of South Australia

    Co- Principal Investigator: Yoona Kim, PhD, RD, Gyeongsang National University, Korea

    This clinical trial in South Korea is the first study outside of the United States to investigate the bone protective benefits of daily consumption of prunes in Korean osteopenic postmenopausal women.

    The Impact of Consuming California Prunes on Bone Health of Young Women Using Hormonal Contraceptives

    Principal Investigator: Shirin Hooshmand, PhD, RD – San Diego State University

    The study is investigating the impact of prune consumption on bone formation and in preventing or slowing bone loss in young women 18-25 years old taking hormonal contraceptives.

    “Bone health, whether optimizing bone formation early in life or preventing bone loss in adulthood, is critical at all life stages given that the human skeleton is dynamic, undergoing a continuous cycle of building and breaking down bone,” said Andrea N. Giancoli, MPH, RD, Nutrition Advisor, California Prune Board. “We are aiming to better understand the role of prunes in this cycle that is strongly correlated to gut health, inflammation, and oxidative states within the body.”

    While it remains unclear what bioactive compounds in prunes are responsible for the beneficial effects on bone, the prune-positive bone health story may be partially due to the array of vitamins and minerals in California Prunes known to influence bone status, namely boron, potassium, copper and vitamin K. Prunes are also rich in phenolic compounds, which research suggests may inhibit bone breakdown and stimulate bone formation. Key future directions to bridge the gap in the areas of bone and the gut-bone axis are on the research horizon.

    CREATING A VISION FOR THE FUTURE 

    Advancing bone-focused nutrition research and expanding the connection to the gut-bone axis, while also exploring clinical trials in various life stages and international populations is at the heart of the California Prune Board’s strategic vision for continued research into the next decade.

    The integrity of the California Prune Board’s nutrition research program is demonstrated by the renowned research and academic institutions with whom it has partnered and the rigorous process that ensures credible research decisions.

    A top-caliber nutrition research advisory panel, led by Mary Jo Feeney, MS, RDN, FADA, FAND, helps to guide these California Prune nutrition research efforts. The panel is comprised of highly experienced researchers and nutrition experts from academic institutions, including Tufts University, Cleveland Clinic, Pennsylvania State University, University of Minnesota, and San Diego State University. This independent advisory panel provides vision and oversight of the nutrition research program and ensures scientific rigor for every project that explores the nutritional and health benefits of California Prunes.

    The California Prune Board is deeply committed to the scientific rigor of nutrition research. For more details on previously published research, visit: https://californiaprunes.org/healthy-living/benefits-of-prunes/additional-research/

    REFERENCES

    Damani JJ, De Souza MJ, VanEvery HL, Strock NCA, Rogers CJ. The Role of Prunes in Modulating Inflammatory Pathways to Improve Bone Health in Postmenopausal Women. Adv Nutr. 2022 Jan 3:nmab162. Epub ahead of print.

    George KS, Munoz J, Ormsbee LT, Akhavan NS, Foley EM, Siebert SC, Kim JS, Hickner RC, Arjmandi BH. The Short-Term Effect of Prunes in Improving Bone in Men. Nutrients. 2022 Jan 10;14(2):276.

    ABOUT THE CALIFORNIA PRUNE BOARD

    The California Prune Board was established in 1952 to represent growers and handlers under the authority of the California Secretary of Food and Agriculture. California is the world’s largest producer of prunes with orchards across 14 counties in the Sacramento and San Joaquin valleys. Promoting a lifetime of wellness through the enjoyment of California Prunes, the organization leads the premium prune category with generations of craftsmanship supported by California’s leading food safety and sustainability standards.

    California Prunes. Prunes. For life.

  • Despite Production Challenges, Egypt to Continue as World’s Largest Fresh Orange Exporter

    The USDA Foreign Agricultural Service (FAS) in Cairo anticipates Egypt to maintain its position as the number one orange exporter in MY 2021/22 despite production challenges. In marketing year (MY) 2021/22, FAS Cairo forecasts fresh orange exports to reach 1.45 million metric tons (MMT) down from 1.67 MMT in MY 2020/21. Post attributes the decrease in exports to lower production amid unfavorable climate conditions. Russia, Saudi Arabia, Netherlands, India, Bangladesh, United Arab Emirates, China, United Kingdom, Ukraine, and Oman are likely to remain Egypt’s top ten export destinations for fresh oranges. 

    Planted Area:

    In MY 2021/22, FAS Cairo forecasts total planted area in oranges at 168,000 hectares (ha), similar to the previous marketing year. MY 2020/21 planted area at 168,000 ha remains unchanged from the USDA official estimate. Most of the area planted with oranges is located in desert reclaimed lands which account for 70 percent of the total area. Plantations in the Nile Delta region account for 30 percent of the total orange planted area.

    Post estimates MY 2021/22 total harvested area at 135,000 ha, a 6.9 percent decrease from last year. The decrease in area harvested is attributed to an approximately 7.2 percent decrease in the number of bearing trees from the previous year due to unfavorable weather conditions during flowering time that negatively impacted fruit set, and hence the harvest as a result.

    Production:

    In MY 2021/22, FAS Cairo forecasts orange production to decrease by almost 16 percent, or 570,000 MT to 3 MMT. The decrease in production is attributed to severe weather conditions and fluctuating temperatures during flowering of the trees which impacted fruit set and production. Orange production in the Nile Delta was also impacted by a 25-30 percent increase in fertilizer prices due to higher costs of production and larger exports by the fertilizer industry to capture higher prices in the global market. Typical land ownership in the Nile Delta is an acre or less.

    Post is also revising the MY 2020/21 estimate upwards by 170,000 MT to 3.57 MMT from the USDA official projection of 3.4 MMT. We attribute the increase in production to higher yields and favorable weather conditions last season during the flowering time that positively impacted fruit set and hence the production as a result.

    Most of Egypt’s orange production come from commercial farms on reclaimed desert land established during the last three decades, rather than the Nile Valley where land ownership is fragmented and farmers cannot afford the necessary level of investment for sustainable orange production. Despite these challenges, replacing old orchards with newer trees, improving on-farm irrigation techniques, adopting up-to date nutrient management programs, and reducing post-harvest losses are ongoing efforts by growers associations and the government.

    Orange is the major citrus 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 extend 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 and it is medium to large-sized with a 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 2021/22, FAS Cairo forecasts that fresh oranges domestic consumption will decrease by 19.3 percent to reach 1.25 MMT. Decrease in local consumption is attributed to lower production and more growers directing their produce towards exports as worldwide orange demand is on the rise. Globally, consumers have increased their utilization of fresh oranges amid the COVID-19 pandemic due to its high vitamin C content.

    In MY 2021/22, utilization of oranges by the processing sector is forecast to decrease by approximately 14.3 percent from the previous marketing year as a result of the anticipated lower fresh orange production and higher costs of the processing sector production and transportation which is reflected in consumer prices. MY 2020/21 fresh domestic consumption and processing estimates remains unchanged from the USDA official estimate.

    Trade:

    In MY 2021/22, FAS Cairo forecasts orange exports to decrease by approximately 13.2 percent to reach 1.45 MMT. We attribute this decrease to anticipated lower production which will affect the export volume. FAS Cairo anticipates Egypt to maintain its position as the number one orange exporter in MY 2021/22, despite production challenges due to severe climate conditions.

    Post is revising upward the estimates of fresh orange exports in MY 2020/21 to 1.67 MMT from the USDA official estimate of 1.5 MMT.

    Post attributes this increase in exports to higher production, more growers linked to international markets and a rise in global prices amid increased consumer demand.

    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.

    The Central Administration for Plant Quarantine (CAPQ) of the Ministry of Agriculture and Land Reclamation (MALR) and the Agricultural Export Council (AEC) have agreed to start the orange export season on December 15, 2021 for the MY 2021/22. 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 2020/21, Egyptian orange exports reached 111 countries compared to 104 countries in MY 2019/20 with Russia, Saudi Arabia, Netherlands, India, Bangladesh, United Arab Emirates, China, United Kingdom, Ukraine, and Oman as Egypt’s top ten export destinations for oranges. Post expects that the top ten export destinations in MY 2021/22 will remain unchanged from MY 2020/21 (Figure 1).

    Figure 1: Top Ten Markets for Egypt’s Fresh Orange Exports

    Successful joint efforts by the Egyptian government and the private sector to open new markets such as New Zealand, Brazil, and Japan and other markets over the last few years will increase orange exports. These joint efforts have also contributed to the application of a modernized tracking systems for oranges exports during the stages of cultivation, production, packaging and export.

    The success of Egypt’s export policy in opening new markets and establishing a traceability system have contributed to Egypt being the top orange exporter in the world during the past 5 years with a total volume of 8.32 MMT. All of these developments support a positive outlook for Egyptian orange exports as well as encouraging agribusinesses to invest in establishing new facilities or expanding capacity.

    Egypt’s exports of fresh oranges to its top ten destinations in MY 2020/21 amounted to 1.27 MMT compared to 1.06 MMT in MY 2019/20, an increase of almost 20.5 percent. In MY 2020/21, Egypt’s fresh orange exports to the top ten destinations constituted 75 percent of total exports compared to 77 percent of total exports in MY 2019/20.

    Metric Tons

    This drop is due to a smaller overall export volume in MY 2019/20 (1.37 MMT) compared to 1.67 MMT of fresh orange exports in MY 2020/21. It is also reflected in higher export volumes to key markets as well as exploring new export ones.

    In MY 2020/21, the most significant increase in Egypt’s fresh orange exports were to India with a more than threefold increase compared to the previous marketing year due to higher demand by Indian consumers amid the COVID-19 pandemic. Exports to Bangladesh have also increased a great deal, by 75 percent. Exports to Russia increased by 15 percent and Egyptian orange exports to Saudi Arabia have also increased, by 6 percent. Exports to the Netherlands increased by 11 percent in MY 2020/21 compared to MY 2019/20.

    In contrast, Egyptian orange exports to the Chinese market dropped by roughly 32 percent in MY 2020/21 compared to the previous marketing year due to inflated freight prices.

    Marketing:

    Russia: Turkey and South Africa are Egypt’s main competitors in the Russian market. However, Egypt’s total exports to Russia in CY 2021 (Jan-Sep) was at 238,560 MT exceeding both origins by a wide margin South Africa at 36,929 MT and Turkey shipped 34,822 MT. Egypt’s total exports to Russia in CY 2020 was at 211,113 MT, also exceeding both origins by a wide margin Turkey at 112,353 MT and South Africa shipped 77,045 MT. (Source: Trade Data Monitor, LLC)

    Saudi Arabia: Egypt’s main competitors in the Saudi Arabian market are traditionally South Africa, Spain, and Lebanon. In CY 2021 (Jan-Sep), Egypt’s exports of fresh oranges to the Saudi Arabian market amounted to 245,569 MT exceeding the three origins by wide margins. South African exports amounted to 61,740 MT, Spain’s exports at 10,788 MT, followed by Lebanese fresh orange exports at 8,380 MT. In CY 2020, Egypt was also the leading exporter to Saudi Arabia with a total of 254,486 MT versus 89,373 MT exported by South Africa. followed by Lebanon at 24,358 MT, and Spain at 15,348 MT. (Source: Trade Data Monitor, LLC)

    EU- 28: Egypt’s main competitors in the European Union are South Africa and Morocco. In CY 2020, South Africa exported 453,745 MT versus 211,697 MT exported by Egypt followed by Morocco at 74,864 MT. In CY 2021 (Jan-Aug), Egypt’s exports of fresh oranges to the European Union have increased by 22 percent compared to the same period in CY 2020 amounting to 308,384 MT, and exceeding South Africa which shipped 158,932 followed by Morocco at 45,454 MT. (Source: Trade Data Monitor, LLC)

    India: South Africa is Egypt’s competitor in this market. In CY 2020, Egyptian exports amounted to 26,665 MT while South Africa supplied 11,000 MT to the Indian Market. In CY 2021 (Jan-Sep), Egypt’s exports of fresh oranges to India amounted to 126,271 MT exceeding the South African origin by wide margins. In CY 2021 (Jan-Sep), South Africa shipped only 12,179 MT to India. (Source: Trade Data Monitor, LLC).

    Bangladesh: Egypt’s main competitor in the Bangladeshi market are mainly India and South Africa. In CY 2021 (Jan-Sep), Egypt’s exports of fresh oranges to Bangladesh amounted to 107,000 MT, India at 62,531 MT and South African exports amounted to 40,127 MT. In CY 2020, India was the leading

    exporter to Bangladesh with a total of 127,914 MT versus 66,000 MT exported by South Africa and another 66,000 MT exported by Egypt. (Source: Trade Data Monitor, LLC)

    China: South Africa is Egypt’s main competitor in this market. In CY 2020, Egyptian exports to the Chinese market amounted to 112,373 MT while South Africa supplied 105,000 MT. In CY 2021 (Jan- Sep), Egypt’s exports of fresh oranges to the Chinese market amounted to 86,130 MT, and South African exports amounted to 66,861 MT. (Source: Trade Data Monitor, LLC)

    United Arab Emirates: In CY 2020, South Africa exported 89,527 MT versus 138,611 MT exported by Egypt. In CY 2021 (Jan-Aug), Egypt’s exports of fresh oranges to the UAE market amounted to 49,432 MT, and South African exports amounted to 76,420 MT (Source: Trade Data Monitor, LLC).

    United Kingdom: Egypt’s competitors in the UK market are mainly Spain and South Africa. In CY 2021 (Jan-Sep), Egypt’s exports of fresh oranges to the United Kingdom amounted to 64,000 MT, Spain at 66,000 MT, and South African exports amounted to 45,386 MT. In CY 2020, Spain was the leading exporter to the United Kingdom with a total of 93,500 MT versus 67,800 MT exported by South Africa, followed by Egypt which shipped 55,217 MT to the UK market. (Source: Trade Data Monitor, LLC)

    Ukraine: In CY 2020, Egyptian exports to Ukraine amounted to 41,600 MT while Turkey supplied 30,639 MT. In CY 2021 (Jan-Sep), Egypt’s exports of fresh oranges to the Ukrainian market amounted to 48,192 MT and Turkish exports amounted to 5,291 MT, a 70 percent decline compared to the same period in CY 2020. (Source: Trade Data Monitor, LLC)

    Oman: In CY 2020, Egypt exported 35,770 MT to Oman versus 13,171 MT exported by South Africa. In CY 2021 (Jan-Sep), Egypt’s exports of fresh oranges to Oman amounted to 35,000 MT, and South African exports amounted to 10,000 MT (Source: Trade Data Monitor, LLC). — By Ahmed Wally, USDA Foreign Agricultural Service

  • CA Tomato Processors Forecast Larger Crop In 2022

    USDA National Agricultural Statistics Service  As of January, California’s tomato processors reported they have, or will have, contracts for 12.2 million tons in 2022, which is an increase of 10% compared to 11.1 million contracted tons forecast in the August 2021 California Processing Tomato Report. Processors estimate that the contracted production for 2022 will come from 245,000 acres, generating an average yield of 49.8 tons per acre. The contracted planted acreage forecast is 7% higher than the 2021 acreage of 229,000 reported under contract in August.

    The USDA-NASS Pacific Regional Office surveyed California’s tomato processors for their intended contract acreage and tonnage for the upcoming 2022 season. The data reported by processors was either tonnage with derived acreage, or acreage with derived tonnage.

    This early processing tomato estimate is funded by the California League of Food Producers.