Tag: Vegetables West Magazine

  • Processing Tomato Variety Evaluation for Tolerance/Susceptibility to New Soilborne Pathogen

    In recent years, there has been an increase in crown rot/vine decline problems in processing tomatoes. Many tolerant, as well as several susceptible tomato cultivars, have been identified from previous efforts funded by CTRI. The number of fields in the Sacramento Valley with confirmed Fusarium falciforme vine decline has been increasing each year. In 2022, eight new tomato fields were diagnosed in Sutter and Colusa counties, for a total of 20 fields since 2019. In 2021 and 2022, we worked with AgSeeds and evaluated processing tomato varieties in field trials for their tolerance or susceptibility to Fusarium falciforme by rating disease severity and sending diagnostic samples to the Swett lab at UC Davis for confirmations. Unfortunately, in 2021, we were unable to confirm F. falciforme in the particular fields we evaluated, however, in 2022, all three fields in Sutter County where we evaluated trials were positive for F. falciforme, along with Fusarium crown and root rot in 2/3 fields. We evaluated fields for advanced decline and whole plant collapse. Yield data was provided by AgSeeds. Below is a table with the average number of declined plants at our three field sites in Sutter County. The table also includes percent decline and yield for two of the fields. Also worth noting, field #2 was evaluated the day before harvest, whereas field #1 was evaluated a couple weeks before harvest and field # 3 was not harvested due to September rain events in 2022.

    The varieties with the highest decline are similar to results we have seen at other sites over the years and a more comprehensive table (developed by UCCE Vegetable Crops Advisor, Brenna Aegerter, in San Joaquin County) which can be found in my December 2022 newsletter. If you are interested in more results and information from other regions of the state, you can see Brenna’s article on pages 4-5 in the UCCE San Joaquin County Field Notes newsletter from February 2023. — By Brenna Aegerter, UCCE San Joaquin; Co-PIs: Tom Turini, UCCE Fresno; Amber Vinchesi-Vahl, UCCE Colusa/Sutter/Yuba; Cassandra Swett, UC Davis Extension Pathology Specialist; Collaborators: AgSeeds (Funded by California Tomato Research Institute)

  • Kern County Potato Variety Trial Field Day, June 21

    The Annual UC Cooperative Extension and California Potato Research Advisory Board (CPRAB) Variety Trial Field Day is an opportunity to see tubers of potentially new varieties, how they performed this year, and how they performed compared to standard varieties. The event will take place on Wednesday, June 21 from 10 a.m. to 12:30 p.m. at Hart Memorial Park (8 miles northeast of downtown Bakersfield via Hwy 178 and Alfred Harrell Hwy).  Entries include varieties from numerous USDA, state, and private breeding programs. This year’s entries include Russets, chippers, reds, yellows, and specialty types. Tubers will be shown as how they look straight from the field after being washed.

    This is an opportunity to express your evaluations and recommendations about these varieties to University researchers, breeders, seed growers, and fellow growers.

    LOCATION! The Potato Field Day will be held in the shade near the bank of the Kern River at HART PARK. It will be located on the east end of the park in Section 2, just off Alfred Harrell Highway. Please see map on back for directions to Hart Park. Snacks and refreshments will be available.

    Potato Grower Meeting: You should be receiving a notice from the CPRAB for the annual potato grower’s dinner and informal meeting to be held the evening of the field day.

    For further information contact:

    Jaspreet Sidhu, Kern County Cooperative Extension, 661-304-8870 Nathan Sano, California Potato Research Advisory Board, 559-591-0436

  • Duda Farm Fresh Foods Launches “Sizzling Sweet Summer” Consumer Sweepstakes

    Duda Farm Fresh Foods, a leading grower of fresh vegetables and citrus,launches the “Sizzling Sweet Summer Sweepstakes.” The seasonal contest aims to encourage consumers to get a little corny this summer, with a promotion centered around Dandy® sweet corn and positioning the company as the premier brand when grocery shopping this season.

    Dandy seeks to elevate the consumption of fresh U.S. grown sweet corn among shoppers with corn inspired recipes, cooking tips, nutrition information, super corny facts, and by giving consumers the chance to win the ultimate summer prize pack.

    “We’ve seen corn become synonymous with the summer season, especially on the grill and in fresh salads or dips,” said Nichole Towell, senior director of marketing and packaging procurement at Duda Farm Fresh Foods. “Though we are known for our celery products, we are excited to showcase our Dandy sweet corn throughout this promotion and to offer our shoppers more insight on cooking and enjoying the vegetable!”

    Now through July 7th, consumers can enter the Sizzling Sweet Summer Sweepstakes for a chance to win one grand prize pack featuring a brand name 20-piece stainless steel grill set, a seasoned cast iron grill pan, a denim cooking apron, spiral corn holders, a heavy duty oven mitt, and a $500 gift card to stock up on additional grilling needs. Duda will also be choosing one winner every week during the promotion to take home Dandy sweet corn and a $100 gift card.

    Duda Farm Fresh Foods will utilize a 360-degree marketing strategy that includes a regional TV segment, public relations efforts, influencer support, corn use and application inspiration, online advertising, as well as email and social media campaigns to increase sweepstakes entries and drive demand for the product in stores.

    Dandy sweet corn is available in bulk as well as a pre-shucked and pre-cut tray pack options to help reduce meal prep time and offer a bit more convenience to cater to shoppers’ busy lifestyles. The brand takes care to grow and harvest the best sweet corn of the season from farms in Florida, Georgia, and Michigan.

    For additional information, please visit www.dudafresh.com or follow Dandy Fresh Produce social media platforms for daily inspiration at Facebook, Twitter, and Instagram.

    About Dandy® Celery

    For nearly 100 years, Duda Farm Fresh Foods has been a leading grower, shipper, processor and marketer of fresh vegetables and citrus. Known for their superior celery, the company has expanded their facilities over the years to accommodate recent developments such as celery juicing and other health and wellness trends in order to provide consumers with the freshest celery possible. With primary locations in Florida, California, Arizona, Georgia and Michigan, Duda Farm Fresh Foods carries a commitment to innovation and sustainability and believes in growing a healthy future for generations to come. The company is a wholly owned subsidiary of A. Duda & Sons, Inc., a family-owned, diversified land company headquartered in Oviedo, Fla. For more information, please visit www.dudafresh.com.

  • Ocean Mist® Farms Announces Lori Bigras As Communications Manager

    Ocean Mist Farms, the leading grower and marketer of fresh artichokes in North America, is pleased to announce veteran agricultural industry marketer Lori Bigras has joined Ocean Mist Farms as Communications Manager. With this hiring, Ocean Mist Farms has brought on an experienced professional with over twenty years in the produce industry.

    In her new role, Bigras will be responsible for leading the day-to-day management of Ocean Mist Farms social media marketing initiatives. She will also manage all trade and consumer public relations activities, develop, write, and manage the company’s bi-weekly fresh produce blog, and create comprehensive marketing plans to boost brand image, increase customer engagement and improve conversions.

    “I’m so excited to join the marketing team at this almost 100-year-old legacy company and industry giant,” said Bigras. “This role will allow me to use my experience to help elevate both consumer and trade brand awareness for Ocean Mist Farms.”

    Prior to accepting the position, Bigras has worked for industry-leading agriculture companies in the fresh segment for much of her career. She studied business and marketing at Vermont College (Montpelier, VT) and UCSC (University of California, Santa Cruz) where she studied design. A native New Englander, Bigras has called Santa Cruz, Calif. home since the 80’s.

    “The experience Lori brings to this position is unmatched,” said Mark Munger, Director of Sales & Marketing at Ocean Mist Farms. “With her proven track record and experience in produce marketing and the agricultural industry at large, Lori will bring immediate value to Ocean Mist Farms and the marketing department.”

    About Ocean Mist Farms

    Ocean Mist Farms, a fourth-generation family-owned business in Castroville, CA, the largest grower of fresh artichokes in North America, is committed to delivering the highest standards in the industry for food safety, product quality, customer service, innovation, and sustainability. The company’s full line of 30+ fresh vegetables include their award-winning green and purple artichokes, as well as their Season & Steam value-added line of products. To stay up to date on the 2023 artichoke season, follow Ocean Mist on Instagram. To learn more about Ocean Mist Farms, visit www.oceanmist.com. For great recipe inspiration and preparation tips, consumers can follow the brand on Pinterest, Facebook, Instagram, LinkedIn and Twitter.

  • Researchers Study How Plants Respond to Changing Climate

    Farmers know that heat stress and drought are hard on plants. But what, exactly, is happening to the plants under these conditions, and what can we do about it? These questions are becoming ever more urgent as we move toward a future with more carbon dioxide (CO2) in the air, more heat, and more erratic weather.

    At ARS, researchers set out to understand in detail how plants respond to these stresses, using tomatoes as their first test subject. Tomato plants are often grown in greenhouses because they are viewed as a high-cost, high-value crop. Jennifer Boldt is a research horticulturist at the Application Technology Research Unit in Wooster and Toledo, OH, who specializes in studying crops grown in controlled environments, such as high tunnels, greenhouses, indoor vertical farms in warehouses, or shipping containers.

    “The idea behind this research is that we are asking, ‘How do different environmental conditions potentially affect how nutrients are taken up by the roots of the plant, and what implication does that have for plant growth or the quality of the plants that are being grown?’” she said.

    In response to elevated temperature and carbon dioxide (right), tomato leaves shift to a more vertical orientation and soybean leaves exhibit increased leaf cupping. (Photo courtesy of Dileepa Jayawardena, University of Toledo)

    Previous research showed that conditions like heat, elevated CO2, and drought change the ways that plants function, but there was little research on how the combination of those conditions affects them.

    “Under my purview, we were able to say, ‘let’s not look at one factor individually, but what happens when we have multiple factors that are changing at the same time – high temperature and high CO2, or drought and high CO2,’” explained Boldt. “Under that combination of drought and CO2, the plants weren’t able to take up nutrients as much, so we had lower levels of nitrogen and phosphorus in the leaves. Nitrogen is a key component in proteins, and so if you have less nitrogen, then the plant is not going to be as green, and it’s going to grow more slowly, and any edible portion of the plant is going to be less nutritious.’”

    The reasons for that reaction are a function of the plant’s response to changed conditions. Boldt explained that, under current CO2 conditions, plants grow and take up nitrogen at a certain rate, creating a balance. However, under high CO2, the plants grow more, but they’re not necessarily taking up more nitrogen at that same elevated rate, so the end result is a higher ratio of carbon to nitrogen in the plant.

    Tomato plants await the start of a research study that will examine plant responses to elevated temperature and carbon dioxide. (Photo courtesy of Dileepa Jayawardena, University of Toledo)

    “It appears that the nitrogen concentration has gone down, but it’s just because the plant has put on more bulk more quickly,” she said, “because it’s taken that CO2 and turned it into sugars and structural components in the plant.”

    To perform the research, Boldt collaborated with colleagues from the University of Toledo. The team wanted to understand more about why they were seeing lower rates of nitrogen uptake. They knew that nutrients in the plant tissues could be affected by environmental conditions, but didn’t know whether it was because the plants were taking up fewer nutrients from soil, or because there were things going on within the plant that prevented the nutrients from moving up to the top part of the plant where they could be utilized.

    They found that under the combination of elevated CO2 and heat, the leaves of their tomato plants were oriented much more vertically than under current conditions. Typically, the horizontal leaf position helps plants capture sunlight well. When, in response to stress, the leaves turn up vertically, they capture less light, and ultimately, said Boldt, “aren’t able to utilize all of their systems as efficiently.” One result of that decreased efficiency: relatively less nitrogen.

    Measuring the rate of photosynthesis in a tomato leaf. (Photo courtesy of Dileepa Jayawardena, University of Toledo).

    A natural next question was whether or how these results might translate to other plants, especially commodity crop plants. To find out, Boldt decided to look at plants that are typically grown as field-based crops. She examined the effects of changed conditions on barley, corn, and big bluestem (a type of prairie grass). In all cases, she found that the combination of conditions inhibited nutrient uptake, with some variation by type of plant.

    Given these findings, what can farmers do to support their crop plants? Boldt’s research showed that the problem was not in the plant’s ability to take nutrients up from the soil, so adding more fertilizer is unlikely to help. Instead, the issue is what the plant does with nutrients as it captures them. To address that, farmers would need plants that operate differently; Boldt suggests that looking to breeders may be the best approach. The ultimate goal, then, is that her research could lead to the development of plants that are better able to manage the distribution of nutrients as plants face hotter growing conditions with more CO2 and drought. — By Kathryn Markham, USDA-ARS Office of Communications

  • Leon Panetta, Chairman of the Panetta Institute of Public Policy, Will Keynote the Salinas Biological Summit

    Former Defense Secretary Leon Panetta, the Chairman of the Panetta Institute of Public Policy, will deliver the keynote address at the Salinas Biological Summit, speaking on the topic of food security and innovation. Registration is now open to attend the event, which will be held June 20-21, 2023 at CSU Monterey Bay’s Salinas City Center.

    Co-presented by Western Growers and New Zealand-based agrifood tech consultancy Wharf42, the 2023 Salinas Biological Summit will provide an opportunity for growers to increase their awareness of available biological solutions to address their soil and plant needs, as well as a chance for agricultural businesses to learn about the disruptive science and start-up activity led by innovators in the crop protection space.

    “We are honored and pleased that Secretary Panetta will be joining us as the keynote speaker for the Salinas Biological Summit,” said Dennis Donohue, Executive Director of the Western Growers Center for Innovation and Technology. “His focus on food security, innovation and the value of global collaboration by the ag sector underscores the importance of the WG biological initiative.”

    Unanimously confirmed in 2011 by the U.S. Senate as the 23rd Secretary of Defense,  Panetta has had a 50-year career in public service at the highest levels of government.  As Secretary of Defense, he established a new defense strategy and expanded service opportunities for women and others regardless of race, creed, color or gender.  As Director of the CIA, he successfully led the operation that brought Osama bin Laden to justice.

    Panetta began his public service career in 1964 as a First Lieutenant in the U.S. Army, receiving the Army Commendation Medal, and then served as a legislative assistant to U.S. Senator Tom Kuchel.  In 1969, he was appointed Director of the Office for Civil Rights at the Department of Health, Education and Welfare, where he was responsible for enforcing equal education laws.

    Elected to Congress in 1976, Panetta represented the California Central Coast district for 16 years and created the Monterey Bay National Marine Sanctuary. In 1993, he was sworn in as Director of the U.S. Office of Management and Budget for the Clinton administration and later was appointed White House chief of staff, working to achieve a balanced federal budget.

    In 1997, Panetta returned to his home town of Monterey to establish and co-direct The Panetta Institute for Public Policy, a non-partisan, not-for-profit study center that seeks to inspire men and women to lives of public service.

    Additional speakers at the Salinas Biological Summit include Dave Puglia, President & CEO of Western Growers; Karen Ross, Secretary of the California Department of Food and Agriculture; Julie Henderson, Director, California Department of Pesticide Regulation; Don Cameron, Vice President and General Manager of Terranova Ranch; Pam Marrone, CEO and Founder, Chestnut Bio Advisors; and Scott Kumar, SVP of Global R&D at Driscoll’s.

    Hotel accommodations and the agenda for the Salinas Biological Summit can be found here. Accredited members of the press can register for free by clicking here.

    About Western Growers:

    Founded in 1926, Western Growers represents local and regional family farmers growing fresh produce in California, Arizona, Colorado and New Mexico. Western Growers’ members and their workers provide over half the nation’s fresh fruits, vegetables and tree nuts, including half of America’s fresh organic produce. Connect and learn more about Western Growers on Twitter and Facebook.

  • Early Season INSV Infections in Lettuce Reduced From 2022 Levels

    Grower-Shipper Association of Central California – Possibly due to colder winter and spring weather conditions as well as mitigation strategies taken by farmers, pest and disease pressure associated with the Thrips-Vectored Impatiens Necrotic Spot Virus (INSV) have lessened in leafy greens fields as compared to 2022. As observed and reported by the Grower Shipper Association’s (GSA) INSV Task Force, this reduced pressure in the early growing season has resulted in dramatically fewer infections and, so far, lower pest populations as we move into the spring leafy greens harvest.

    What is INSV? Lettuce fields are infected by INSV via thrips migrating from infected host plants. Plants infected by INSV can have dark spotting and yellowing, which resembles the effects of sunburn on the leaves. Another plant disease, Pythium wilt (PW), often accompanies INSV infections and causes the plant to wilt or collapse making this truly a complicated pest/disease issue for farmers.

    In 2022, INSV infections in the Salinas Valley resulted in yield reductions in many fields resulting in consumers experiencing limited product availability in some areas.

    To identify and respond to INSV pressure as well as accelerate research mitigation strategies to control INSV, GSA launched its INSV Task Force in 2021. The Task Force is a collaborative effort between industry and the academic/research communities. In addition to funding provided directly by GSA, the organization helped to secure a one-million-dollar grant from the California Department of Food and Agriculture (CDFA) for INSV and soil-borne disease research priorities. And in April 2023, GSA helped obtain a supplemental $200,000 grant through CDFA to further critical efforts.

    “One of our major initiatives was tracking thrips and corresponding disease pressure to identify infection trends that have helped guide research strategies,” explains Christopher Valadez, GSA President. “We found that an important mitigation strategy to lower pest pressure is weed abatement since weeds are good hosts for thrips. By encouraging increased weed control on farms as well as working with the state and county agricultural commissioners’ offices on abatement efforts along roadways, businesses, and open spaces, we’re reducing the opportunity for thrips to find spots to over-winter and lay eggs in spring.”

    Valadez adds that in 2022, disease pressure was exacerbated by unseasonably warm weather stretches which caused prolonged stress on the plant making the lettuce more susceptible to disease impacts. “The unseasonably cold weather we’re experiencing this year is positively impacting early-season INSV infections,” he says.

    In addition, GSA’s Task Force continues to assess varietal resistance, examine treatment efficacy trials and conduct grower education and outreach programs specific to these diseases.

    “Our thanks to Mary Zischke who heads up GSA’s task force as well as the farm advisors, scientists, and industry members for their diligent work on this very complex issue,” Valadez says. “Their efforts are crucial to prevent significant impacts from INSV infections, which can affect many in our communities including farmers, farm workers, processors, and facility employees.

  • Two Upcoming UC Davis Strawberry Breeding Field Days

    The UC Davis Strawberry Breeding Program is having two field days coming up.  The first, on May 24, will be held in Lompoc and the second will be held on June 14 at Meridien Road in Prunedale.  Both field days will feature the program’s day-neutral varieties.

    More details about each meeting are on the pdf fliers attached below.

    Attached Files

    UCD Day Neutral Field Day Agenda Lompoc English 
    UCD Day Neutral Field Day Agenda Prunedale English 

  • Does Growing Location Influence Garlic Flavor and Health Benefits?

    Garlic is mainly consumed as a spice or condiment, giving flavor and aroma to other foods. And what gives garlic those wonderful aromas and flavors? Mainly, substances called “organosulfur compounds” that are stored in the bulbs.

    Different garlic cultivars accumulate varying amounts and types of these compounds, resulting in garlics with different flavor intensity and aromas.

    Examples of the phenotypic diversity in four Argentine garlic cultivars. Garlic gets is flavor and aroma from organosulfur compounds, which can also have health benefits. Credit: Pablo Cavagnaro

    In addition to its use in adding flavor to foods, folk medicine has attributed a multitude of health benefits to garlic consumption for centuries. These range from treating heart disease to its use as an antiparasitic agent. It wasn’t until recently that some of these claims were backed up by scientific research. Among them are blood thinning, antihypertensive, antioxidant, and anti-cancer properties.

    Most of these health-enhancing properties have been attributed, at least partially, to the same type of organosulfur compounds that account for garlic’s flavor. In addition, garlic contains phenolic compounds which seem to contribute to the antioxidant health effects. Research suggests that garlics with greater concentrations of these compounds will have greater health benefits.

    As with many other vegetables, a quality trait in garlic is how well the crop stores after harvest, called postharvest conservation. This allows garlic growers and packers to store the garlics until a more convenient price is reached in the market. It also allows a longer shelf-life in the grocery store with reduced sprouting, dehydration, and softening of the bulbs.

    Garlic cultivars vary in the expected length of their postharvest conservation. Research has shown that garlic – and other bulbous vegetables like onion – had better postharvest conservation as the water content in their bulbs decreased. So, if the bulbs have more solid content (and less water content) at harvest, their postharvest performance is better. Thus, because total solids content is easy to measure, this trait is often used to predict the postharvest quality of garlics and onions.

    Garlic cultivars vary genetically in their ability to accumulate these compounds that influence the flavor, health-related properties, and postharvest conservation of garlic bulbs. Our team tested growing location and environment to find if they also influenced these attributes.

    For our research project, we cultivated 12 Argentine garlic cultivars in four locations of Mendoza, Argentina, over two years. This is the main region for garlic production in Argentina. The locations vary in climatic and soil characteristics. Once we harvested the garlics at each location, we analyzed them for total organosulfur, phenolics, and solids content, as indicators of their flavor intensity, health-related properties, and postharvest quality.

    Examples of the phenotypic diversity in four Argentine garlic cultivars. Garlic gets is flavor and aroma from organosulfur compounds, which can also have health benefits. Credit: Pablo Cavagnaro

    We found that among all the cultivars and locations, the level of organosulfur compounds in the garlic bulbs varied more than fourfold. Most of this variation was due to the location and interactions between the cultivars and the locations. Only 30-40% of the variation was due to the genetic variation among the cultivars.

    These results indicate that the growing conditions, and some interactions between cultivars and locations, are more important than the cultivar itself for flavor development and health-related properties associated with organosulfur compounds levels. Interestingly, we found substantial variation between Lujan de Cuyo and Santa Rosa. Lujan de Cuyo has colder temperatures, and soils containing greater organic matter and low salinity. Santa Rosa has higher temperatures, low organic matter and high soil salinity. This means that the Santa Rosa location is recommended for producing pungent garlics with high nutraceutical value. Lujan de Cuyo can be used to produce garlics with mild flavor.

    Similar results were found for phenolics concentration. The results suggest that to produce garlics with high phenolic content and antioxidant activity, selecting the best location in combination with particular cultivars is perhaps more relevant than the cultivar itself.

    Field trial of the garlic cultivars evaluated in San Martin, Mendoza, Argentina. Scientists studied whether location influenced the flavor and aroma in garlic in 4 different areas. Credit: Pablo Cavagnaro

    Solids content – which influences the postharvest conservations – was the trait less influenced by the environment. A single garlic cultivar, called Castaño INTA, had the highest solids content across all the locations tested. Coincidently, this cultivar usually has the longest postharvest conservation among the Argentine garlic cultivars.

    Altogether, our results indicate that garlic flavor, health-enhancing properties, and postharvest quality are strongly influenced by the growing conditions and their interactions with the cultivar. They are influence to a lesser extent by the cultivar itself. In conclusion, it is important to characterize these garlic attributes under different growing conditions to identify suitable cultivars and locations for specific production purposes (e.g., obtaining mild or pungent garlics, or garlics with high organosulfur and phenolic content to produce dietary supplements with high levels of phytochemicals). The identification of cultivars that consistently yield high levels of these compounds across different growing conditions is particularly valuable for garlic breeding programs. — By Pablo Cavagnaro and Karina Barboza, National Council of Scientific and Technical Research (CONICET) and the National Institute of Agricultural Technology (INTA), Argentina

  • The Seven Deadly Sins That Impact Produce Quality

    Produce quality may seem to lie in the eye of the beholder, but there are seven deadly sins that can cause produce to lose quality before it is purchased or received by the customer. The first deadly sin observed by produce buyers is that many growers do not harvest produce at the correct maturity stage. In many cases, the produce is harvested overripe, leading to increased spoilage and waste.

    Years ago, I sold at a famers’ market and needed to augment my early-season tomato supply with a few boxes of tomatoes purchased from the local wholesale outlet. I could not make the trip to purchase the tomatoes myself, so I had my partner make the trek to the wholesaler. When he delivered the 30 lb. boxes of tomatoes, I could see tomato juice oozing through the boxes and fruit flies covering the lids. Each box was filled with overripe and soft tomatoes. At best, the tomatoes were canners, and none of them would grace my display at the farmer’s market. As a grower, ensure you are harvesting your crop at the proper stage of development for your market channel.

    The second deadly sin involves the careless handling, packing, and shipping of produce. When fruit is cracked, bruised, or crushed, it has no market value and will reduce your profit margins. One operation that I worked with meticulously harvested tomatoes in their fields and transported them in their truck from their field to their broker.

    The boxes were new, the fruit were harvested at the correct stage for the market channel, and the tomatoes were delivered promptly to the broker. The broker called the grower later in the week after receiving the product and informed the grower that they had received complaints from the end customer about the damaged and bruised tomato fruits. At first, the grower was defensive until he realized how badly his dirt driveway was rutted. When he transported the tomatoes from the field, he drove up a driveway that had ruts that would swallow most vehicles. He pleaded with the broker to give him another chance, and prior to his next shipment, he re-graded the farm driveway to eliminate the ruts.

    When the tomatoes were delivered to the broker, the grower waited anxiously by phone for another round of complaints. When no complaints emerged, the grower reached out to the broker to check on the last order and hopefully obtain a new one. The broker told the grower that he received no complaints and doubled the tomato order for the next week. Something simple like re-grading the driveway improved his product quality and helped him to retain a valued customer.

    The Food Safety Modernization Act has hopefully improved the sanitation of produce in the marketplace, but there are still instances where produce quality has been compromised by soil and organic debris. Improper sanitation is another deadly sin when it comes to marketing fresh produce. When produce is soiled by debris of any kind, it may represent a food safety hazard. When a buyer purchases a soiled product, they will need to wash and re-sanitize the produce before sale, which cuts into their profit margin. When growing and shipping produce, always consider the safety of the produce being shipped and make sure that it is free of soil and debris.

    Another of the seven deadly sins for produce growers deals with delays in pre-cooling or suboptimal cooling of produce after harvest. Wholesale market channels like supermarkets and wholesale distributors desire to maximize the shelf-life and quality of the produce that they receive from growers. Sub-optimal cooling or delays in precooling robs produce of its shelf-life and hastens the deterioration and decay of produce.

    Sweet corn is one of the most popular fresh market vegetables, but it will ‘lose” approximately 50% of its natural sugars through respiration in one day at room temperature. Sweet corn stored at 32°F will only convert 5% of the sugars in a day, so if the sweet corn is handled properly, a higher quality product will be delivered to the end-consumer.

    Improper shipping and storage of fresh produce can significantly impact produce quality and can hasten deterioration and decay. When produce is shipped or stored above the optimal temperature for the crop, it will lose quality due to respiration. If produce is shipped or stored too cold or below the optimal temperature, it may develop cold injury symptoms that may mar its appearance while impacting shelf-life and produce quality.

    One Amish tomato grower that I work with has raised high-quality tomatoes for years and sells them through wholesale channels on a regular basis. A new buyer approached him about selling breakers (tomatoes starting to turn color) for distribution through their company. The Amish grower would harvest the tomatoes, sanitize them in his packing house, and then deliver them to the buyer’s warehouse in new, clean, labeled boxes. The grower took great care in handling his tomatoes and was selling to multiple wholesalers in addition to this new buyer.

    About two weeks after the first shipment to this new buyer, the grower received an angry call and was told that he was not going to be paid for any of his tomatoes because they were unsaleable. The Amish grower was upset but did not want to be taken advantage of by the new buyer, so he asked if he could pick up any of his tomatoes that had been shipped to the new buyer’s warehouse that had not been sold or distributed. The buyer reluctantly agreed, so the grower arranged to have his tomatoes brought back to his farm so he could see what the buyer was talking about.

    When the truck pulled into his farm lane, the Amish grower dropped everything and began examining the boxes of tomatoes that he had shipped to the buyer. The first thing that struck him was that the buyer had returned 100% of the tomatoes that had been shipped. The second thing that he noticed was that the tomatoes had not ripened and that much of the fruit was soft and contained black lesions that were not on the fruit when they were sent to the buyer.

    Initially perplexed, the grower decided to contact me (his local Penn State Extension Educator) to visit his operation to look at the tomatoes that had been returned to him. When I looked at the fruit, I told him that it looked like a chilling injury on the fruit, and since he had not received any complaints from his other buyers, I suspected that the problem was probably the result of his buyer storing the tomatoes at suboptimal temperatures in their warehouse.

    Improper cooling and handling of produce at any level can impact product quality and marketability. In this case, poor temperature management at the warehouse facility caused the Amish grower to lose revenue even though it was beyond his control. Temperature management is critical when shipping and storing all produce.

    Ethylene exposure is one deadly sin that is often ignored by many growers. Ethylene exposure can hasten the ripening and deterioration of some produce. Ethylene is a natural gaseous hormone that is generated in climacteric fruit/vegetables. Climacteric fruits/vegetables are ethylene producers and will continue to ripen after harvest. Non-climacteric fruits/vegetables must be harvested when mature (fully ripe) because they will not continue to ripen after leaving the plant. Tomatoes and cantaloupe are excellent examples of climacteric fruit/vegetables that will ripen after harvest. Common non-climacteric fruits that will not ripen after they leave the plant include strawberries, blueberries, and grapes. Eggplant and cucumber are non-climacteric vegetables and must be harvested when fully ripe for the best consumer quality.

    Climacteric fruits/vegetables, as ethylene producers, have the potential to ripen too quickly or deteriorate after harvest. Exposure to ethylene gas in the storage facility or warehouse can hasten the ripening, deterioration, and decay of climacteric fruits and vegetables. Growers can preserve fruit/vegetable quality by carefully managing ethylene gas levels in the produce storage areas.

    Air exchange (ventilation) in the storage facility with fresh atmospheric air is the traditional method of ethylene management on the farm and in many storage facilities. Replenishing or replacing the air at regular intervals with ethylene-free air will lower the concentration of ethylene gas in the storage facility, thus delaying the ripening, deterioration, and decay of the produce being stored.

    Ethylene gas can also be absorbed or adsorbed through the use of highly porous sheets or pads containing activated carbon or zeolite in the storage facility. Other techniques used to remove ethylene gas in produce storage facilities are primarily used by large facilities because of the cost of implementation and management. Some of the techniques used to manage ethylene gas in storage facilities include ozone-based oxidation, thermal catalytic oxidation, photocatalytic oxidation, biofiltration, vacuum ultraviolet radiation photolysis, plasma, and potassium permanganate. While each of these various systems has a place in the produce industry for ethylene management, most of the growers that I work with utilize ventilation-based systems to manage ethylene levels in their storage facilities to maintain high-quality produce.

    The last of the dead seven deadly sins for produce growers involves relative humidity management in a storage facility or warehouse. Too much humidity coupled with poor temperature management creates the perfect environment for post-harvest diseases to inflict damage on the crop in storage. One potato grower that I worked with stored potatoes in a modified bank barn with fresh air inlets providing ventilation to the stored potatoes. This grower could not use electricity because of his religious beliefs and had to rely on natural ventilation to manage the humidity levels in his storage facility.

    The grower contacted me to visit his operation because he was observing a significant level of decay in his stored potatoes. When I inspected his storage facility, I needed an umbrella because of the amount of free water in the form of condensation that was forming on the sheet metal that he had affixed to the barn floor above. It was apparent to both of us that we had to increase the air movement in the storage area.

    After my visit, the grower modified his storage facility by increasing cross ventilation and by installing a fan that operated off hydraulic pressure. The increased air circulation, coupled with some strategic placement of insulation between the ceiling and the barn floor, reduced the condensation and the subsequent humidity levels in the storage facility. While the storage conditions were not perfect, the grower was able to reduce his storage rot issues dramatically.

    Low relative humidity in a storage facility can be just as problematic as excess humidity. When the crop’s relative humidity is below optimum, the stored produce will lose moisture, and the skin will shrivel. Some small-scale growers try to use standard refrigerators for storing produce on their farms. These units are frequently designed to maintain a relative humidity lower than what is recommended for many crops. Refrigerator temperatures may also fluctuate wildly because of their smaller size.

    One grower who was using a refrigerated unit could not understand why the produce quality stored in the refrigerated unit was relatively poor when he took it to market. The grower had no way to “audit” the refrigerated unit to evaluate the temperature and relative humidity levels, so I lent him a data logger that he could place in his refrigerated unit that would monitor temperature and relative humidity levels at 15-minute intervals for 24 hours a day for seven days. When I retrieved the datalogger, we plugged it into my laptop and reviewed the data. The temperature in the unit was inconsistent, and it frequently exceeded the recommended 32°F storage temperature that is recommended by postharvest experts for green beans.

    When we looked at the relative humidity values in the refrigerated unit, we found that the unit was maintaining a relative humidity level between 65-70%, which was too low for most crops. Most vegetable crops are recommended to be stored at a relative humidity level of 95% to prevent a loss in quality. By auditing the refrigerated unit with the datalogger, this grower realized for the first time that his refrigerated unit was contributing greatly to the quality issues that he was observing in his green beans and other stored crops. — By Thomas Ford, Penn State University Extension