Category: Non-Video

  • Extensive Heat Waves Influence Drop in 2024 California Processing Tomato Forecast

    Contracted production for California processing tomatoes is forecast at 11.3 million tons, averaging 50.0 tons per acre. The current production forecast is 12 percent below last year’s contracted production of 12.8 million tons, and 2 percent below the May forecast. The projected harvested acreage of tomatoes grown under contract is 226,000 acres, down 11 percent from 2023.

    Mild spring temperatures and adequate water provided tomato growers with favorable planting conditions and a good start to the developing crop. However, extremely high temperatures throughout the summer and into harvest has negatively affected yields. There were concerns regarding curly top virus detected in the San Joaquin Valley, but no significant damage was reported.

    The processing tomato harvest began the first week of July in the southern Central Valley and progressed to the northern counties by the middle of August. Harvest is expected to finish in October, significantly earlier than last year. Quality is reported to be fairly good for the early crop, but the impact of the heat waves on late season plantings is uncertain.

    The Processing Tomato Advisory Board published shipments through August 24, 2024, showing a 29% increase compared to this time last year. However, shipments were significantly behind schedule in 2023 because the crop was delayed. Current shipments compared to the halfway point of last year indicate a decrease of 12%.

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

  • Brendan O’Donnell Selected as President/CEO of DFA and Safe Food Alliance

    DFA of California and Safe Food Alliance are pleased to announce the appointment of Brendan O’Donnell as their new President and CEO, effective August 1st, 2024. Brendan brings over two decades of extensive leadership experience in the food and agriculture industry, marked by his commitment to innovation, food safety, and sustainable practices.

    Prior to joining DFA and Safe Food Alliance, Brendan served as Global Segment Director, Nuts & Citrus at TOMRA Food, where he led global teams and spearheaded customer-focused product development initiatives. His tenure at TOMRA showcased his strategic acumen and ability to drive growth through effective leadership and market insights.

    “Looking ahead, we are very pleased with the appointment of Brendan O’Donnell to succeed Vaughn as President & CEO. Brendan has demonstrated extraordinary communication and leadership skills in his roles at TOMRA and Monte Vista Farming Company. These skills, along with his technical background, make him an excellent fit to lead the DFA/Safe Food Alliance organization,” said Brian Dunning, President & CEO
    of ShoEi Foods USA and current Chair of the DFA Board. “His vision aligns perfectly with our commitment to supporting the dried fruit, tree nut, and specialty crop industries, and I am confident in his ability to enhance our member services and strengthen our industry partnerships.”

    Throughout his career, Brendan has held pivotal roles at Monte Vista Farming Company and Sun Valley Rice, where he contributed significantly to business growth and market expansion. He holds an Executive Certificate in Negotiation from the University of Notre Dame’s Mendoza College of Business and a B.S. in Agricultural Systems and Environment from the University of California, Davis.

    “I am honored to join DFA and Safe Food Alliance at such an exciting time in our industry,” said Brendan O’Donnell. “I look forward to leveraging my experience to drive innovation, strengthen food safety standards, and support our members and partners as we navigate new opportunities and challenges ahead.”

    In addition to his professional achievements, Brendan is dedicated to his family and enjoys exploring the outdoors with his wife, Erin, and their two teenage children.

    About DFA of California

    Founded in 1908, DFA of California is a non-profit trade association dedicated to supporting the dried fruit, tree nut, and specialty crop industries. DFA supports processors through rigorous inspection services, member benefits, food safety training, and provides support on numerous export related matters. For more information, visit DFA of California.

    About Safe Food Alliance

    Safe Food Alliance provides a comprehensive range of food safety services designed specifically for food processors and manufacturers throughout California. As a full service food safety company, Safe Food Alliance provides third-party laboratory testing, complemented by extensive food safety training, consulting services, and third-party certification audits offered through a separate company, Safe Food Certifications.

  • Economic Analysis Reveals Significant Impacts of Pesticide Policies on California Lettuce Production

    Today, Californians for Smart Pesticide Policy (CSPP) released a comprehensive economic analysis highlighting possible implications of elements of California’s proposed Sustainable Pest Management (SPM) framework that would result in impacts on the state’s lettuce production industry. The study, conducted by economists Jarrett Hart, Duncan MacEwan, Jay Noel, and Amrith Gunasekara, underscores the critical need for effective and timely pest management solutions to safeguard the state’s agricultural productivity.

    The economic impact of pesticide restrictions is profound, with projections indicating a 7.3 percent decrease in California’s lettuce production due to restrictions on key pesticides such as neonicotinoids and pyrethroids. This would result in an annual loss of $160.3 million to producers and an additional cost of $694.28 million to consumers. Additionally, the shift in production from California to other regions like Arizona and Mexico would increase production costs and consumer prices, further straining the state’s agricultural economy.

    The consequences of delays in pesticide registration are equally concerning. The study reveals that California’s stringent and lengthy registration process leads to a reduction in lettuce production, with producers losing $42.8 million and costing consumers $139.3 million annually. The state’s process, which can extend 1-3 years following federal approvals, hinders innovation and delays the availability of new, effective pest management products to California growers.

    Market shifts and regulatory leakage are anticipated as a result of these proposed policies. The economic analysis predicts a modest short-run decrease in lettuce prices and a production shift from California to Arizona and Mexico. In the long run, more stringent pesticide policies would drive a significant portion of lettuce production out of California, resulting in increased prices throughout the supply chain, including for consumers.

    The implications of the proposed SPM framework are significant. While the SPM framework aims to phase out harmful pesticides, without viable alternatives, this policy could undermine California’s agricultural sector.

    CSPP is dedicated to balanced pesticide policies that protect California’s agriculture and economy while ensuring environmental sustainability and public health. We strive to promote informed decision-making through comprehensive research and economic analysis. For more information on this study and CSPP’s initiatives, please visit our website at https://ca4pestpolicy.org/.

  • Fruit Fly Quarantines Lifted in Contra Costa & Los Angeles Counties

    California Citrus Pest & Disease Prevention Program — The California Department of Food and Agriculture (CDFA) has officially declared an end to the Tau fruit fly quarantine in Los Angeles County, and an end to the Oriental fruit fly quarantine in Contra Costa County following the successful eradication of the invasive pests.

    Tau Fruit Fly Quarantine

    The Tau fruit fly quarantine, which was established in the Santa Clarita area of Los Angeles County, was the first-ever quarantine for the Tau fruit fly in the Western Hemisphere. It encompassed the city of Santa Clarita and surrounding areas in parts of Stevenson Ranch, Newhall, Castaic Junction, Oat Mountain and Del Valle.

    Thanks to the diligent efforts of Santa Clarita area residents, local agricultural officials, the Los Angeles County Department of Agricultural Commissioner/Weights and Measures, and officials from CDFA and the United States Department of Agriculture, the invasive pest has been successfully eradicated from the area as of June 28.

    “Following one of the largest statewide invasive fruit fly populations we’ve seen in a number of years in California, we’re incredibly proud that we’ve been able to successfully achieve eradication of the Tau fruit fly,” said Victoria Hornbaker, director of CDFA’s Plant Health and Pest Prevention Services Division. “The lifting of this quarantine proves that our efforts are working, and the responsiveness and cooperation of residents across California and our partners is critical to that success.”

    During the quarantine, crops that are hosts for the fruit fly — which include more than 300 varieties, such as citrus and other fruits, nuts, vegetables and berries — were not allowed to be moved from the properties where they were grown. Commercial crops were required to meet stringent treatment or processing standards before being harvested or moved.

    Oriental Fruit Fly Quarantine

    The announcement comes 10 months after officials first detected populations of the Oriental fruit fly in the area. This destructive pest has been eliminated through the cooperation and diligence of Contra Costa County residents and local agricultural officials, the California Department of Food and Agriculture (CDFA), working in coordination with the United States Department of Agriculture (USDA) and the Contra Costa County Agricultural Commissioner.

    “We’re pleased to report this is the third Oriental fruit fly quarantine lifted in California this year,” said Victoria Hornbaker, director of CDFA’s Plant Health and Pest Prevention Services Division. “These recent successes prove that through the cooperation of residents across the state and our partners, eradication of invasive species is possible.”

    While several fruit fly quarantines have now been lifted in California, additional quarantines remain and still threaten the state’s natural environment, agriculture and economy. To review all active quarantine maps, please visit CAFruitFly.com.

    When at home, residents are encouraged to stay vigilant for signs of invasive pests. To help prevent any future introductions of invasive species, residents should follow these guidelines:

    • Cooperate with agricultural officials and allow them access to your garden to place traps, inspect plants, conduct necessary treatments or remove potentially infested produce.
    • Determine if your property is located within an active quarantine area by visiting CAFruitFly.com.
    • Buy fruit trees and vegetable plants from licensed California nurseries. Purchasing agricultural goods from uncertified sources can spread invasive pests. Source your plants locally and responsibly. To find a licensed nursery near you, visit CDFA’s Directory of Licensed Nurseries.
    • Inspect your garden for signs of invasive fruit flies or maggots and report any findings to CDFA at 1-800-491-1899 or your local county agricultural commissioner’s office.
    • When entering the United States from another country, avoid bringing agricultural products — including fruits or vegetables. Help us protect our agricultural and natural resources and California’s unique biodiversity from invasive fruit flies — please Don’t Pack a Pest (dontpackapest.com) when traveling or mailing/receiving packages.

    To learn more about invasive species and how to protect the county’s fruits and vegetables, visit CAFruitFly.com or contracosta.ca.gov.

  • 2024 California Fresh Fig Season Gets Early Start

    Hot summer temperatures means good news for fresh fig lovers. Due to the extreme heat, the main harvest of the California Fresh Fig started a couple weeks earlier than usual, according to the California Fresh Fig Growers Association, and the fruit will be beautiful and plentiful well into the fall.

    “After years of drought and fires, California fig orchards are the healthiest they’ve been in years,” says Karla Stockli, Chief Executive Officer of the California Fresh Fig Growers Association. “This promises to be one of the best California Fresh Fig seasons we’ve ever seen!”

    This year’s first crop, known as the breba crop, delivered the first Mission figs of the season May-June. The main crop, now underway, is delivering plump and delicious varieties, such as Brown Turkeys, Missions and Sierras. Additional varieties will continue to become available through November.

    In California, there are four primary varieties of fresh figs offering unique flavor notes:

    • Mission. Purple and black skin with deep earthy flavor.
    • Brown Turkey. Light purple to black skin with robust flavor.
    • Sierra. Light-colored skin with a fresh, sweet flavor.
    • Tiger. Light yellow color with unique dark green stripes and a bright red-purple interior fruit with fruity, raspberry, citrus flavor.

    California’s fig growers continue to plant additional acres to meet consumer demand. From increased menu offerings in the restaurant industry to sampling and displays at grocery retailers, a comparable size crop to last year’s nearly 10 million pounds will be harvested in 2024. This is good news following the pandemic and decline in foodservice sales.

    While California Fresh Figs are available seasonally, California Dried Figs are a year-round staple, offering the same nutrition and taste benefits. Substitute dried figs for fresh in salads, sandwiches, pizzas, sauces, and more, to enjoy California Figs throughout the year.

    For recipes and more information, visit CaliforniaFigs.com.

    About the California Fig Advisory Board and the California Fresh Fig Growers Association
    The California Fig Advisory Board and California Fresh Fig Growers Association promote awareness and the use of California-produced dried and fresh figs domestically and internationally. California fig growers, processors and marketers fund the activities of the industry.

  • California Avocado Acreage Increases, 2023 Report Available

    Each year the California Avocado Commission partners with Land IQ to produce a Statewide Avocado Acreage and Condition Analysis report utilizing digital satellite imagery, aerial photography and analytical tools to survey California avocado groves. This data helps the Commission make informed budgeting and marketing decisions and provides industry members with spatial data concerning crop type, location, condition and density. See the full 2023 Report HERE.

    According to the report:

    • In 2023 there were 52,534 planted avocado acres
    • The majority of growing acreage is located in Ventura, San Diego, Santa Barbara, Riverside and San Luis Obispo Counties with a total of 50,818 planted acres
    • The five top-producing counties reported 1,059 new/young acres and 3,399 topped/stumped acres

    The report also provides acreage data by zip code, county, condition, year planted and density.

    The California Avocado Commission’s crop estimating team in conjunction with Land IQ uses the latest in remote sensing techniques to assess avocado acreage in production.  As technology continues to advance refinements in our fourth generation of remote sensing techniques were applied to satellite imagery collected during spring and summer months.  The imagery processing techniques include; segmentation into homogenous polygons, retention of tree crop polygons, calculation of average crop canopy moisture and vegetation indices, analysis of change maps from previous inventories, and classification of avocado groves into four categories; producing, topped/stumped, new/young, and abandoned.  Aerial imagery (for a real-world view), and satellite imagery (for spectral and temporal data) are integrated into previously classified avocado acreage and analyzed for current condition of California avocado acreage statewide.

  • Maintaining Microirrigation Systems

    Microirrigation systems — microsprinklers, drip emitters and drip tape — tend to provide better distribution/emission uniformity than other irrigation methods. However, the miniscule flow passages in these systems can become clogged and thus disrupt the uniformity of water applied to a crop. Clogging also decreases the amount of salt leaching around the lateral line.

    Late fall and winter are an ideal time to review irrigation systems for needed repairs or malfunctions. A great resource is the University of California’s Maintenance of Microirrigation Systems website that outlines various causes of microirrigation clogging and means of preventing or mitigating the problems.

    The first step in alleviating clogs is identifying the problem. Clogs can be caused by:

    • Particulates — sand, silt, clay — from surface water sources
    • Biological materials — algae, bacterial slimes — from surface water sources
    • Chemical precipitates — such as iron and calcium carbonate — from groundwater sources or fertigation

    To identify the issues, first flush water from the lateral lines through a nylon stocking or paint straining cloth and examining what material is collected. If you see mineral particles, you have identified your problem. If you notice that clogging tends to occur at the ends of the lines, this also tends to indicate particulate clogging.

    If you identify organic matter when flushing the line, then biological materials are the issue. You also can open the end of a lateral line and feel inside the tube to see if it is slimy. If so, biological materials are the source of your problem.

    If you note white, crusty materials or reddish staining of the soil near the emitters, this is indicative of chemical precipitates.

    Once you have identified the clogging source, you can take steps to address the issue.

    Particulate issues can be prevented by regular line flushing and the use of filters. The website provides a list of various filters and a table noting which filter to choose based on water source, particulates and irrigation system. To adequately flush the lines, water must flush at least 1 foot per second at the end of the drip line — 1 gallon/minute for 5/8” diameter and 2 gallons/minutes for 7/8” diameter drip lines.

    If organic matter is the source of the clogging, the best mode of treatment is a good filtration system combined with use of a biocide to remove the biological contaminants. Visit the UCANR site for a list of filters and the aforementioned “how to choose a filter” table.

    If calcium carbonate (lime) or iron is clogging your emitters, strong acid can make either disappear if emitters are left in it overnight. Lowering the pH (6 or below) of the water by injecting common acids — sulfuric acid, muriatic acid or hydrochloric acid — can help prevent clogging due to lime. UCANR provides specific formulas to help growers determine the injection rate needed to alter water pH.

    If high iron levels are the source of the clogging, aerating the water to oxidize the iron and then allowing the precipitates to settle before irrigating (a reservoir or settling basin is necessary) is the most practical option. Common acids also can be injected to decrease the pH of the water (4 or less).

    Other maintenance tasks include addressing leaks. For above ground systems, lines can be inspected routinely by using a motorized vehicles to drive along the lines when the irrigation system is running. Detecting leaks for subsurface drip systems is much more difficult, with many sources of the leaks being identified several feet from where the excessive water is detected. If the tail ends of your lateral lines are exposed, one of the best ways to test for leaks is to open just a few of the ends of the lines and note whether the waterflow is diminished.

    Because filters can clog frequently, many growers opt not to use screen washers in lateral lines and instead use primary and secondary filters to limit contaminants. Filter maintenance consists of occasionally backwashing them to remove collected matter. This can be done by removing and cleaning the screen or opening a valve and using the water pressure to remove buildup.

    As concerns pressure gauges, it is recommended these be installed upstream and downstream of filters and downstream from pressure-regulating valves. Liquid-filled pressure gauges are a preferred choice but tend to be more expensive. And remember to check the gauges, especially those exposed to the sun which may need to be replaced yearly. — By the California Avocado Commission

    For more information on routine microirrigation tasks, visit the UCANR website.

  • Transplanted Bees Help Blueberry Fields Flourish

    Pollinating bees are in decline, and those that remain may not be up to the task of pollinating all the crops needed to feed the nation. To help keep food on the table, researchers are looking to native wild bees to take up the slack, especially for blueberries and other fruit crops.

    “Honeybees are considered a universal crop pollinator worldwide, but their populations are in trouble, and they do not always pollinate certain crop plants efficiently,” said Blair Sampson, entomologist with the Agricultural Research Service’s Southern Horticultural Research Laboratory in Poplarville, MS. “Therefore, we [are turning] to wild native bees that share a much longer ecological history with our native North American crops.”

    Some of these native bees can be managed like the honeybee, which means beekeepers and farmers can relocate colonies from their home regions for deployment to where crops are blooming. Native bees are very docile when being handled and they take care of themselves with little need for human involvement. Sampson is studying such a native bee, the chimney bee (also known as the miner bee).

    Male chimney bee resting on a cluster of southern highbush blueberry flowers. (Photo by Blair Sampson, ARS)

    Chimney bees are turning out to be an important find for blueberry growers.

    In addition to the problem of declining populations, honeybees have difficulty pollinating blueberries due to their relatively short tongue and preference for other plants. Another wild bee, the southeastern blueberry bee, is an abundant and efficient specialist pollinator of blueberries throughout the Gulf Coast states. Unfortunately, many growers in lower-lying areas lack these bees or have too few of them in their fields. These blueberry bees cannot be managed, but the chimney bee, a close relative, can be actively managed and moved in to fill the pollinator void.

    While chimney bees are not yet commercially available, relocating them is fairly simple, Sampson said. Gathering chimney bee cocoons from nests in the soil that sticks to the roots of fallen trees or roadside clay outcrops requires careful excavation and skilled handlers, but nesting material can simply be sun-dried clay-rich mud gathered locally. Further, there is no need for specialized tools and costs are minimal.

    Chimney bees must be shipped while in a dormant state, then gently warmed to complete their development and emerge from their cocoons. Further, water and additional nesting material should be available to help them thrive.

    “These bees do not produce enough honey for us, just enough for themselves, hence, chimney bees’ principal role would be as fruit pollinators,” Sampson explained. “However, the chimney bee does show certain qualities that highlight their ideal candidacy for commercial management: they are flower generalists with a strong homing instinct, and hence will nest in the same location for many years. They also nest in dense aggregations and remain gentle around people near their nest sites.”

    Sampson said that adult chimney bees resemble small, fast-flying bumble bee workers, yet they nest and behave very differently.

    The bees get their name from their horizontal tubular nests that resemble tiny mine shafts in clay, which they harden into “adobe” with the help of water they collect. As they dig deeper into a clay bank, they use this excess clay to fashion a downward facing tube or “chimney” hanging off the nest entrance.

    Locating and relocating chimney bee nests is fairly easy, because they’re easy to find after construction projects or natural weather events disturb the land and give bees easy access to fresh-turned clay. After finding the nests, Sampson gathers earthen cocoons and moves them to where they are tested or released as fruit pollinators.

    “Since pollinator habitat is continually declining due to increasing urbanization and crop cultivation, managing wild native bees, such as chimney bees, can help conserve vital natural resources and help farmers increase their yields,” Sampson said. “And, for fruit, nuts, and vegetable crops, native bees will be an essential component for optimizing crop production per acre of land, which is vital for maintaining a stable global food supply.” – By Scott Elliott, USDA-ARS Office of Communications

  • Over Half of Mexican Tomato Production is Destined for the U.S.

    Mexico’s 2024 tomato production is forecast at 3.30 million metric tons (MMT), a two percent increase over 2023, driven by export demand and investment in protected agriculture systems. Production in 2023 is estimated at 3.22 MMT, down eight percent compared to the previous year due to water constraints from drought conditions in some production areas. Drought and adverse weather impacts remain the main challenges for Mexico’s tomato production. While some producers in Mexico have invested in protected production, other regions continue to produce in open fields, with lower yields and more exposure to climatic factors. Sinaloa remains the leading state in tomato production, contributing 22 percent of national production.

    The United States is Mexico’s top tomato export market, with 1.82 MMT in exports valued at USD 2.7 billion in 2023, up by one percent in terms of volume and ten percent in value compared to 2022. Investments in greenhouse technology in recent years has enabled producers to deliver better quality products.

    Production

    Mexico’s tomato production is forecast to increase two percent year-on-year in 2024 to 3.30 MMT, due to strong export demand, mainly from the United States. Production in 2023 showed an 8 percent decline compared with 2022, falling to 3.22 MMT. The top five tomato production states deliver over 51 percent of national production. Sinaloa remains the leading tomato producer with 22 percent of national production, followed by San Luis Potosí (13 percent) and Michoacán (7 percent). Baja California Sur, Jalisco, and Sonora each contribute 5 percent to total production.

    Adverse climate conditions have contributed to a shift towards protected production during the last decade, mainly production in greenhouses, shade houses, and high tunnels instead of open field cultivation. This shift decreased production in the short-term, while resulting in increased production over time as yields and produce quality rose. In the areas where open field cultivation predominates, adverse weather conditions such as drought, excessive rain, or abrupt temperature changes usually cause significant production losses. The shift towards protected tomato production in Mexico began in the early 2000s but accelerated during the beginning of the 2010s. The trend has been steadily increasing since then, as producers look to increase their yields.

    Mexico’s tomato production occurs throughout the year across several geographic regions. From December to April, the state of Sinaloa, Mexico`s largest open-field and shade house tomato producer, dominates the domestic market and exports over 80 percent of its crop to the United States. From May to November, the major producing states include San Luis Potosi, Michoacan, Baja California Sur, Jalisco, and Sonora.

    Mexico produces a wide variety of tomatoes, with the most common being the cherry, bola, and saladette varieties, which are popular for their sweet flavor and versatility. Other high end or gourmet tomatoes varieties, including grape and cocktail, are grown almost exclusively for export to the United States. A wide variety of tomatoes are used in the processing industry due to their intense flavor and high yield.

    Production varies seasonally, with peak production in October and the lowest production period in March. Local producers report efforts to extend their growing and harvesting season from 28 to 40 weeks, partly through the use of substrates growing material. For example, production of saladette tomatoes in Jalisco state begins in July and stretches into January, at which point the plants are transplanted to a new substrate to promote continued production.

    On average, growers can harvest around 30 kilograms per square meter over the course of the season, which equates to about 1 kilogram per square meter per week. Large producers enjoy year-round production due to improvements in water management, greenhouse production and other technology improvements.

    Profits have been constrained in recent years by Mexico’s strong “super peso” and the rising cost of substrates, labor, pesticides, and other inputs. Most producers obtain substrate from suppliers in Europe and Asia, while some partner with research institutions to develop their own substrate. In Mexico, greenhouse structures are made of steel, which has seen high prices in recent years but typically lasts around three years.

    Tomato prices tend to be highest from October to December, when production is lower outside of the top producing state of Sinaloa.

    Growing Conditions

    Mexico’s tomato production is year-round, with the October to December period accounting for 42 percent of production. In recent years Mexican tomato growers have been implementing and adapting protected growing methods to improve tomato yields. According to Government of Mexico data, approximately 66 percent of tomato production takes place in greenhouses while the remaining 34 percent is carried out in open fields. Protected production allows for better pest and disease management, resulting in better yields.

    Tomatoes require well-drained loamy or sandy loam soils, with moisture holding capacity. In Mexico, the best temperatures for tomato production are between 60°F and 85°F, with temperatures above or below this range tending to slow growth and fruit maturation. Ideal conditions also include constant sunlight, humidity of 65-85%, and between one and two inches of water per week.

    Consumption

    Graph 4: Monthly Share of Tomato Production

    According to the Government of Mexico, the annual per capita consumption of tomatoes is 12.7 kgs per person, making the tomato the number one vegetable consumed by Mexicans. Tomatoes are the foundation of Mexican cuisine, an integral part of the basic food basket, and essential to every Mexican household. Tomatoes are predominately used for sauces (both spicy and sweet), tacos, and stews. Tomatoes offer flavors that balance out the spicy elements of chili peppers, providing versatility to recipes used in both traditional and modern Mexican cooking.

    Trade

    Aside from distilled spirits and beer, tomatoes are the number two agricultural product exported to the United States at USD 2.71 billion, just behind avocados at USD 2.724 billion and ahead of berries at USD 1.971 billion. Mexico fulfills 25 percent of the worldwide demand, making it the eight largest producer worldwide.

    According to Trade Data Monitor, 2023 Mexican tomato exports totaled USD 3.02 billion and 2 million metric tons (MMT). The main export market is the United States with 99.8 percent of exports, followed by Canada and Japan. 2023 represented a record-breaking year for Mexican tomatoes being exported to the northern neighbor.

    Approximately 90% of saladette production is exported to the United States, with cherry, grape and other high end niche varieties exported almost entirely. According to producers, transport time from Mexican fields to U.S. supermarket shelves is about two days, via border ports in Texas and Arizona. Mexico’s 2023 tomato imports totaled less than USD 1 million, primarily from the United States.

    Policy

    The Tomato Suspension Agreement (TSA) between the U.S. Department of Commerce and signatory producers/exporters of fresh tomatoes grown in Mexico ensures that signatory producers and exporters sell Mexican tomatoes at or above the TSA reference price to eliminate the injurious effects of exports of fresh tomatoes to the United States. The Agreement, which was updated effective September 19, 2019, applies to all fresh and chilled tomatoes except tomatoes for processing. — By Manuel Mandujano, USDA Foreign Ag Service

  • Avocados Get Hot — 4 Things to Consider Next

    It’s been hot and there is leaf damage. Those damaged leaves can protect the tree now and the fruit. Don’t prune the trees until you see the full extent of the damage and can still use those dead leaves to protect the rest of the tree.
    Fruit drop happens soon after, or slowly, depressingly over several weeks after a heat wave. The stem turns brown, cutting off moisture to the fruit, and they drop.

    If you see significant leaf drop in your groves due to excessive heat, the following actions are recommended:

    • As soon as possible, whitewash branches exposed to the sun with special attention paid to branches on the west and south sides of the tree.
    • Trees that lose a significant portion of leaves cannot efficiently move water, therefore restrict irrigation amounts to ensure you avoid creating wet, soggy conditions that can lead to root rot. It’s best to irrigate less frequently and with smaller amounts of water.
    • Do not prune your trees — leave hanging leaves in place to protect the tree from sunburn. Once new tree growth has occurred (in the next 3 – 6 months), pruning can take place on living wood.
    • Adjust fertilization as you would with a frost-damaged tree: reducing the amount of fertilizer until the tree is re-established. If you see signs of a particular nutrient deficiency, adjust fertilization accordingly.— By Ben Faber, UC Cooperative Extension