Tag: Vegetables West Magazine

  • USDA Launches New Farmers.gov Features to Help with H2A Applications, Managing Loans

    (WASHINGTON, D.C., April 2019)– Agriculture Secretary Sonny Perdue announced today that the U.S. Department of Agriculture (USDA) launched two new features on farmers.gov to help customers manage their farm loans and navigate the application process for H2A visas.

    “Customer service is our top priority at USDA and these new features will help our customers as they manage their farm loans and navigate the H-2A temporary agricultural visa program,” said Secretary Perdue. “In my travels across the country, I have consistently heard people express a desire for greater use of technology in the way we deliver programs at USDA. As we adopt new technology, we are introducing simple yet innovative approaches to support our farmers, ranchers, producers, and foresters as they support the nation every day. It’s my goal to make USDA the most effective, most efficient, most customer-focused department in the entire federal government, and farmers.gov is a big step in that direction.”

    In 2018, Secretary Perdue unveiled farmers.gov, a dynamic, mobile-friendly public website combined with an authenticated portal where customers will be able to apply for programs, process transactions and manage accounts.

    Navigating the H-2A Visa Process:

    Focused on education and smaller owner-operators, this farmers.gov H-2A Phase I release includes an H-2A Visa Program pageand interactive checklist tool, with application requirements, fees, forms, and a timeline built around a farmer’s hiring needs.

    You may view the video at this following link: youtu.be/E-TXREaZhnI

    The H-2A Visa Program – also known as the temporary agricultural workers program – helps American farmers fill employment gaps by hiring workers from other countries. The U.S. Department of Labor, U.S. Citizenship and Immigration Services, U.S. Department of State, and state workforce agencies each manage parts of the H-2A Visa Program independently, with separate websites and complex business applications.

    Over the next several months, USDA will collaborate further with the U.S. Department of Labor on farmers.gov H-2A Phase II – a streamlined H-2A Visa Program application form, regulations, and digital application process that moves producers seamlessly from farmers.gov website to farmers.gov portal to U.S. Department of Labor’s IT systems.

    Managing Farm Loans Online:

    The self-service website now enables agricultural producers to login to view loan information, history and payments.

    Customers can access the “My Financial Information” feature by desktop computer, tablet or phone. They can now view:

    • loan information;
    • interest payments for the current calendar year (including year-to-date interest paid for the past five years);
    • loan advance and payment history;
    • paid-in-full and restructured loans; and
    • account alerts giving borrowers important notifications regarding their loans.

    To access their information, producers will need a USDA eAuth accountto login into farmers.gov. After obtaining an eAuth account, producers should visit farmers.govand sign into the site’s authenticated portal via the “Sign In / Sign Up” linkat the top right of the website.

    Currently, only producers doing business as individuals can view information. Entities, such as an LLC or Trust, or producers doing business on behalf of another customer cannot access the portal at this time, but access is being planned.

    Google Chrome, Mozilla Firefox or Microsoft Edge are the recommended browsers to access the feature.

    About farmers.gov:

    USDA is building farmers.gov for farmers, by farmers. Future self-service features available through the farmers.gov portal will help producers find the right loan programs for their business and submit loan documents to their service center.

    With feedback from customers and field employees who serve those customers, farmers.gov delivers farmer-focused features through an agile, iterative process to deliver the greatest immediate value to America’s agricultural producers – helping farmers and ranchers do right, and feed everyone.

  • Consumer Trends to Increase Demand for CA Processing Tomatoes

    Processing tomato growers in California had a great crop last year, and are more efficient than ever before at producing a quality crop as efficiently as possible. But now more than ever, we need to follow consumer trends closely to determine how to better appeal to the consumer audience to increase demand for this great commodity. Watch this interview with with Alec Wasson from the Tomato Products Wellness Council on how they are reaching consumers today. Read more about it in the coming issue of Vegetables West Magazine. Don’t currently receive Vegetables West? Subscribe for free at https://malcolmmedia.com/vegetables-west-magazine-subscriptions/
  • Western Growers Hires Human Resources Veteran Anna Bilderbach

    Western Growers is proud to announce the recent hire of Anna Bilderbach, who will serve as the Learning and Development Manager on the Human Resources team. Bilderbach brings more than two decades of experience in HR-related training. In her role as Learning and Development Manager, Bilderbach is responsible for conducting all training for Western Growers member farmers and the agricultural community, in both English and Spanish. Additionally, she will be supporting the learning and development initiatives within the Western Growers.

    “Anna is such an incredible addition to our human resources team,” said Karen Timmins, Senior Vice President of Human Resources. “Her extensive background in both customer relations and human resources has awarded her with the perfect skillset to continue pushing forward Western Growers’ mission of advancing the agriculture industry by providing the training services and resources our farmers need to thrive.”

    Having extensive experience in Financial Services, Non-Profit and Manufacturing as a career coach, project manager and trainer, Bilderbach has perfected her abilities to coach and develop talent in both small businesses and large corporations. Additionally, she has a proven track record of increasing organizational effectiveness, improving healthy company cultures and helping employees better improve customer experiences.

    “My training and background in Training/HR/Organizational Development has allowed me the opportunity to work with the entire employee life-cycle, from hire to retire.” said Bilderbach. “I’m truly excited and eager to be of service to our members and the team here at Western Growers. At the end of the day, my job is going to help employees engaged in agriculture develop personally and professionally, which is a win-win in my book.”

    Bilderbach received academic training at the University of California, Irvine, in Human Resources Management. She also studied business at Riverside Community College.

  • 100+ Water Ag Organizations Urge Congress to Address Western Water Challenges

    Over 100 organizations representing water and agricultural interests in the Western U.S. urged Congress today to use any infrastructure package under consideration to help address severe hydrological conditions in the West.

    “As a nation we must continually invest in the Western water infrastructure necessary to meet current and future demands,” the groups stated in a letter sent to key congressional committees and Western senators. “Our existing water infrastructure in the West is aging and in need of rehabilitation and improvement.”

    President Trump has said infrastructure might be one area that both political parties in the 116th Congress can agree upon. The Democratic Party’s to-do list also includes an ambitious infrastructure program. Rep. Peter DeFazio (D-OREGON) – one of the recipients of the letter – now chairs the House Transportation and Infrastructure Committee, where he intends to lead efforts to produce a multi-billion-dollar infrastructure bill to fund transportation and water projects.

    “As water flows down from the Colorado Rockies – not unlike the water wheels of days gone by – it still drives the economies of thousands of communities on its way to the ocean,” said Colorado Fruit and Vegetable Growers Association President Robert Sakata. “As we ask more of this precious resource, we can’t ignore the creaks and groans from outdated infrastructure, as well as the offerings of new technologies to improve water use efficiency.”

     

    “The recent wet weather notwithstanding, we know that persistent drought conditions in the western United States are the new normal,” said Western Growers President and CEO Tom Nassif . “For this reason, our nation must invest, in earnest, in the long-term security of our water supplies in the West.”

    The letter underscores that water conservation, water recycling, watershed management, conveyance, desalination, water transfers, groundwater storage, and surface storage are all needed in a diversified management portfolio.

    “We need you to ensure that Western water users have every tool available to survive and recover from years of drought and to prepare for the hard, dry years the future may hold,” the letter states. “We call upon each of you to push forward on infrastructure and in so doing you must use any infrastructure package to not only address our nation’s chronic needs surrounding roads and bridges, but to also include water infrastructure needs for storage and conveyance.”

  • UCCE Biologicals Conference Introduces New Crop Protection Tools for Growers

    Biocontrol agents, beneficial microbes, entomopathogenic fungi and bacteria that can enhance crop production — these were all topics of discussion at the recent UC Cooperative Extension Ag Innovations Conference in Santa Maria, led by UCCE Entomology & Biologicals Advisor Surendra Dara.  Watch this brief interview with Surendra as he shares more about what was discussed.

  • The Benefits of Environmental Monitoring

    Each year roughly 48 million people get sick, 128,000 are hospitalized, and 3,000 die from
    foodborne illnesses according to the CDC. As our food supply becomes progressively more
    globalized, the need to strengthen food safety systems in and between countries has become
    much more apparent.

    Legislation like the Food Safety Modernization Act (FSMA)now enables the Food & Drug
    Administration (FDA) to better protect consumers by strengthening food safety systems for
    foodborne illnesses, which are mostly preventable and are a significant public health burden.
    With the creation of FSMA, the FDA has become more proactive towards food safety
    prevention. One solution to the ever-growing issue of foodborne illness is the inclusion of a
    robust Environmental Monitoring Program (EMP).

    Understanding Environmental Monitoring

    According to FDA rule Verification of Implementation and Effectiveness CFR 21 section 117.165
    and the Food Safety Modernization Act (FSMA) Final Rule for Preventive Controls for Human
    Food:

    A facility who has identified a potential environmental pathogen or indicator organism
    as a hazard to ready-to-eat (RTE) foods are required to include an EMP in their food
    safety plan. A trained Preventive Controls Qualified Individual (PCQI) needs to review
    EMP test results to ensure that the Food Safety Plan is being followed.

    It is necessary for a FSMA EMP compliant Food Safety Plan to include:

    •  Established, written and scientifically valid procedures
    •  Identified testing microorganisms, adequate locations, and number of collection sites
    •  Identified timing and frequencies for collecting and testing samples
    • Identified Corrective Action Procedures in compliance with CFR 21 section 117.150
    •  Testing performed by an accredited laboratory.

    The Benefits

    The purpose of an EMP is to identify problem areas where potentially harmful microorganisms
    may be harboring, becoming a source of contamination; as well as verifying the effectiveness
    of sanitation programs. Several benefits of an EMP include:

    • Validation and verification of cleaning and sanitation programs. i.e., procedures and
      frequency
    • Provides data of the overall effectiveness of your sanitary program, personnel
      practices, and operations procedures
    • Provides data about indicator organisms, spoilage organisms, and pathogens to
      prevent outbreaks
    • Determines if facility maintenance is required, i.e., filter changes
    • Acts as a baseline microbiological assessment of a facility’s environment
    • Helps users find and eliminate potential contamination sites before it has spread

    Areas of Concern

    There are many routes environmental pathogens and other harmful organisms can be
    introduced directly into your facility. Some of these routes are by raw materials, ingredients,
    supplies, equipment, and vehicles, as well as personnel, visitors and pests. Two harmful
    pathogens to keep track of are Salmonella and Listeria.

    Salmonella

    Salmonella is a widespread and resilient bacteria that is found in the environment. It can
    survive in “dry” manufacturing environments, as well as “wet” manufacturing environments.
    Essentially, it is a versatile bacteria that has the potential to causes harm when you
    aren’t proactive.

    According to the CDC, Salmonella causes around 1 million foodborne illnesses, 19,000
    hospitalizations and 380 deaths in the United States annually.

    Not only can Salmonella result in foodborne illnesses, but it can also result in a costly recall for
    your company. FDA currently considers Salmonella to be the top environmental pathogen of
    concern in low moisture foods. Outbreaks and recallscaused by Salmonella have been linked
    to raw chicken, ground beef, pre-cut melon, and breakfast cereals. There is also a history of
    recalls in tree nuts, nut butter, alfalfa sprouts, cantaloupes, and chicken.
    Our article “Salmonella- The Most Common Bacterial Foodborne Disease”goes into detail
    about Salmonella and effective ways for you to prevent it in your facility.

    Listeria

    Listeria bacteria is prevalent in the environment. It is found in soil, water, and
    decaying vegetation.There are six types of listeria, but only Listeria
    monocytogenes (L. monocytogenes) is considered harmful to humans.

    L. monocytogenes is persistent in and around equipment and the processing
    environments in harborage sites. It can survive and grow at refrigerated
    temperatures, tolerate high salt concentrations such as a brine tank, and
    survive frozen storage for extended periods. Due to these factors, L.
    monocytogenes presents a severe food safety concern.

    According to CDC, L. monocytogenes causes about 1,600 foodborne illnesses and 260
    people deaths in the United States annually. Outbreaks and recalls are regularly linked to
    ready-to-eat RTE sliced meats, frozen vegetables, packages salads, dairy products, and
    cantaloupes.

    How to be Proactive

    To systemically combat these pathogens, a robust Environmental Monitoring Program usually
    utilizes zoning concepts. Zones are a useful tool that can help you in site selection within your
    facility. The EMP zoning concept divides risks into four zones based on the level of risk to
    product contamination with Zone 1 being the highest.

    Zone 1– Direct or indirect Food Contact Surfaces (FCS), i.e. product conveyors, product
    chutes, storage hoppers, slicers, worktables and employee hands.

    Recommended testing for zone 1 are:

    • Aerobic Plate Count (APC)
    • Enterobacteriaceae (TEB)
    • Adenosine Triphosphate (ATP) rapid testing

    Pathogens need to be tested in special circumstances such as a response to Positive
    Salmonella product result.

    Zone 2– Non-FCS that are adjacent to or close to zone 1, i.e., equipment supports, frames,
    control panels, weight scales, floor drains and air filters.

    Recommended organisms to be tested:

    • Salmonella spp
    • Listeria spp

    Both of these tests need to be performed weekly.

    Zone 3– Non-FCS within process area but further
    removed from product contact surfaces in open
    product areas, i.e., forklifts, walls, floors, ceilings,
    wash stations and brooms.

    Recommended organisms to be tested:

    • Salmonella spp
    • Listeria spp

    Both of these tests need to be performed weekly.

    Zone 4– Non-FCS outside of the processing areas,
    i.e., locker rooms, cafeteria, hallways, trash areas,
    wash stations outside of production areas and
    loading docks.

    Recommended organisms to be tested:

    •  Salmonella spp
    •  Listeria spp

    Both of these tests need to be performed weekly.

    If you find a positive environmental result in any of the zones, immediately quarantine the
    area and put affected product on hold. Next, thoroughly investigated the area both visually
    and with microbial testing.

    Understanding Vector Swabbing

    The best way to investigate a positive
    environmental result is with vector swabbing.
    Vector swabbing determines the extent of the
    contamination and to establish potential root
    causes of the contamination.

    Diagram is courtesy of the PEM Guidance on Environmental
    Monitoring, Almond Board of California

    Vector swabbing involves sampling of multiple environmental sample sites around the initial positive site in a radial patter. This approach gives you the best possible coverage of
    the environment.

    What to remember when swabbing:

    •  Vector swabbing needs to be sampled before cleaning the initial positive site.
    • Make sure the area is thoroughly cleaned and sanitized, taking great care not to
      spread the contamination to surrounding areas.
    •  Take additional environmental after the cleaning process.
    • You need to obtain three consecutive days of negative results until you can return to
      your regular EMP.

    Sampling

    After you have established your zones and your
    proposed action plan in the event of a positive environmental sample, you now need to
    samples the intended sites. Various methods can be used for collecting environmental
    samples such as sterile swabs and sponges. When collecting these types of samples, the
    surface area sampled can vary depending on the target site. An acceptable sampling area for
    indicator organisms is 40-200 in 2 and for pathogens is 40-400 in 2 .

    If the sampling collection is post sanitizer application, make sure the sterile swab and
    sponge has a neutralizing buffer. The neutralizing buffer counteracts cleaners and sanitizers
    that have been used- we want to find any surviving bacteria if they are present. Environmental
    samples are to be promptly submitted to an accredited Laboratory for testing. Ideally,
    environmental samples should be transported <45 o F and processed within 48 hours.

    Next Steps

    The cost of environmental contamination can be high, so you must ask yourself what risk you
    are willing to take? To save yourself a lot of trouble ensure you have an effective and robust
    Environmental Monitoring Program!

    With one, you can guarantee that you find any potential contamination risk and eliminate it
    before any possible cross-contamination of your product occurs. It is important to remember
    that commitment is needed throughout the facility, from senior management and cascading
    down to the rest of the workforce. Sufficient resources, both in capital and personnel to do an
    adequate job are also needed, and while the thought of creating a new EMP may seem like a
    daunting task, the outcome is not only beneficial for your facility but also to the consumer.

    Safe Food Alliance offers an online course for Environmental Monitoring to help you
    understand what Environmental Monitoring is, what the requirements for FSMA are, and other
    information to help with creating and understanding your Environmental Monitoring
    program.

  • Salmonella – The Most Common Bacterial Foodborne Disease

    Salmonella – we all know it’s bad for us but why? What is it? Where does it come from? Why
    should we care? Does my company have a plan in place if something tests positive?
    With all the news lately about one recall after another, it is easy to be tormented with endless
    questions. I am here to tell you that with a food safety plan and proper testing, Salmonella is a threat that
    you can handle.

    Background of Salmonella

    Salmonella is one of the most difficult foodborne pathogens to eliminate. Not correctly
    dealing with the pathogen is harmful to your company’s reputation and pocketbook.
    According to an annual study done by Food Safety News, foodborne illness in the United
    States has an annual estimated cost of $77.7 to $152 billion, not including reduced customer
    confidence, recall losses, litigation or the cost from public health agencies who respond to the
    outbreak (8).

    Salmonella itself is a motile, facultative anaerobe bacterium which causes salmonellosis. That
    means that Salmonella is a fast-moving bacterium, that can survive with or without oxygen,
    and causes Salmonellosis (Salmonella infection). Salmonellosis is the way to describe being
    symptomatically infected by Salmonella.

    Salmonella was first isolated in 1885 by an assistant to American scientist, Dr. Daniel Salmon.
    Since then, scientists have discovered many different variations (~2,500 serotypes) of
    Salmonella which can cause infection. The bacteria cause illness for 4 to 7 days. In some cases,
    Salmonella can escape from the intestines and enter the bloodstream. Once in the
    bloodstream, it infects other body sites causing severe infections. Children under the age of
    five, elderly, and people with weakened immune systems are most likely to have severe
    infections. Research has shown that Salmonella infections are more likely to occur during the
    summer months. Therefore extra care must be taken from May thru August to prevent
    outbreaks in your facility.

    Illustration from Food Safety News

    By the Numbers
    In 2018 the Centers for Disease Control and Prevention (CDC) estimated:

    • 1,027,567 cases of Salmonella
    • 19,336 resulted in hospitalizations
    • 378 of cases resulted in death
    • Roughly 13% of all foodborne deaths come from Salmonella

    How Do You Become Infected?

    Salmonella is in raw and undercooked eggs, poultry, meat, fresh fruits, vegetables, nuts,
    water, and unpasteurized dairy products. To grow, Salmonella colonizes in the intestines of
    animals and spreads through feces. Humans can also spread the pathogen. Not washing
    hands after a bowel movement followed by direct contact with another person, touching a
    surface, or preparing food leads to transmission. If you think not washing your hands is the
    only cause, you thought wrong. Water infected with the bacteria can provide an optimum
    environment for growth. When contaminated water spreads onto irrigate crops, the final
    product delivers the bacteria into the consumers home.

    Why Test for Salmonella?

    • Public health impact (deaths, hospitalizations)
    • Contamination in water (Adulteration of the food supply chain)
    • Company Reputation (Loss of consumer confidence)
    • Recalls, FDA Investigations (Time and lost money, black mark on company name)
    • Economic loss (Bankruptcy, cost of finding recalled product)
    • Lawsuits, prison sentences (Selling food known/unknown to be positive

    As you can see, Salmonella has a genuine impact on the longevity of a business.

    2018 Salmonella Outbreaks and Cost:

    Map

    How to Prevent Salmonella:

    The easiest way to prevent Salmonella in products is by having good manufacturing
    practices, washing hands, and testing.

    Washing your hands is the easiest way to help prevent the spread of Salmonella. Besides
    washing your hands, testing your product for Salmonella is standard practice for most
    companies. Both Safe Food Alliance Lab locations have years of experience helping
    companies test for Salmonella. With Safe Food Alliance, results are readily available 48 to 72
    hours after receipt. If you would like to send in a sample of your commodity for analysis, click
    here.

    Safe Food Alliance utilizes methods validated by the Association of Official Agricultural
    Chemists (AOAC), a group closely linked to the FDA and the USDA. If you receive a positive
    result, confirmation steps are taken to provide you with even more confidence that the
    samples are accurate. All testing is done according to industry standards.

    Another method for detection of Salmonella is testing via swabbing at the facility. Swabbing
    ensures that proper sanitation processes are being met and helps avoid cross-contamination.
    Environmental swabs also detect the pathogen on the surfaces of machinery, walls, floors, or
    anywhere else in your facility. This type of testing needs to be done regularly and at various
    locations. So don’t let it slip by! To learn more about getting swabs for testing, please contact
    Kyla Ihde at kylai@safefoodalliance.com.

    Safe Food Alliance is currently offering an Environmental Monitoring online class which
    outlines the swabbing process and guidelines. For more information about the online course,
    please visit https://academy.safefoodalliance.com/.

  • Breeding a Better Strawberry:Scientists Uncover Genetic Roadmap of Cultivated Strawberry

    Consumers want strawberries to be red, sweet, ripe and juicy, like those fresh picked from a garden. Suppliers want them to be easy to handle and ship, without getting squished. Commercial strawberry growers need their crops to be high-yielding and disease-resistant.

    An international team of scientists led by the University of California, Davis, and Michigan State University has taken a step that might allow breeders to grow a strawberry to satisfy all those needs. They’ve sequenced and analyzed the genome of the cultivated strawberry, which will provide a genetic roadmap to help more precisely select desired traits. The study was published today (Feb. 25) in the journal Nature Genetics.

    “Without the genome we were flying blind,” said Steven Knapp, professor of plant sciences and director of the UC Davis Strawberry Breeding Program. “It was like having a library of books, but all the books’ pages were blank.”

    Protecting strawberries from disease

    The U.S. is the world’s largest producer of strawberries, and almost 90 percent of them are grown in the cool, coastal climates of California. Growers are constantly struggling to fight off diseases like Fusarium wilt, Verticillium wilt and Macrophomina without having to use fumigants. The assembled genome will allow scientists to pinpoint specific genes that can protect the plant against diseases. Strawberries can also have diseases that may involve several different genes, similar to complex diseases in humans. Sequencing the genome will help unravel that complexity.

    “The genome sequence is powerful because it provides scientists with barcodes for nearly all the genes in strawberry. We can use that information to identify genes that play an important role in traits of agricultural importance,” said Knapp.

    Similarly, scientists may also be able to find genes in the strawberry that lead to increased flavor or aroma for the consumer, while maintaining the firmness and shelf life for producers.

    strawberriesOrigins of the strawberry

    Patrick Edger, co-corresponding author with Michigan State University, and his team also deciphered the complex evolutionary history of the cultivated strawberry. While humans are diploid species, meaning each cell contains two complete sets of chromosomes, one from each parent, the cultivated strawberry is an octoploid. Each cell in a strawberry plant contains eight complete sets of chromosomes, so untangling its evolution is a feat.

    “Strawberry has a rich history that spans the globe, ultimately culminating in the fruit we enjoy today,” said Edger.

    Other UC Davis authors in the study include postdoctoral scholars Thomas Poorten and Michael Hardigan. The study was funded by the USDA National Institute of Food and Agriculture, the National Science Foundation, and the California Strawberry Commission.

    — By Amy Quinton in Food & Agriculture

  • NMSU Farmington Research Center Participating in Potatoes USA Variety Study

    FARMINGTON – Approximately 5,000 semi-truck loads of potatoes leave the Four Corners region every year. The spuds are headed to dinner tables via retail stores and snack processors.

    The dinner potatoes are grown by Navajo Agriculture Products Industry, while those headed to potato chip processing are grown by 2 men with potatoes an independent contractor renting NAPI farm land.

    Located in the middle of the potato fields is New Mexico State University’s Agricultural Science Center at Farmington, which is conducting variety trials to help the two producers improve their crop quality and yield.

    Potatoes produce more revenue per acre than any other crop that can be produced in the Four Corners region.
    NMSU is one of 12 land-grant university research farms in the United States conducting potato variety trials in cooperation with Potatoes USA, a grower’s group.

    Potatoes USA is an industry-funded marketing organization that promotes five main potato products: fresh table-stock potatoes, fresh chipping potatoes, seed potatoes, frozen potato products and dehydrated potato products.

    “Producers pay 3 cents a hundred-weight to Potatoes USA to provide services that help customers around the world increase demand for potatoes,” said Charles Higgins, president of Higgins Farms Inc. and consultant through Potatoes USA. “The organization invests in marketing and product management research to help grow the potato business.”

    NMSU has benefited from the organization’s investment in research through grant funds for equipment specific for potato research.

    “This year variety trials of 33 table cultivars and 22 chip cultivars were conducted at the Farmington research center fields,” Higgins said. “We are looking for chip varieties that have better chemical stability from storage for potato chips, and varieties that have better appearance for supermarkets.”

    Since NMSU established the research farm 50 years ago on the mesa south of Farmington, variety trials of an array of crops have been done to help NAPI and Four Corners region agricultural producers be more profitable.

    “We are combining research and practical experience to obtain the best results,” said Aaron Benally, NAPI organic/conventional crop director. “The variety trials at NMSU help us to not waste time and money on crops that will not produce well in our environment and climate.”

    As consumer trends shift toward organic produce, NAPI has expanded its farming practice to include organic potatoes. Potatoes_man

    “Because of regulations regarding what chemicals can be used on organic fields, we are transitioning a portion of our farm in order to help NAPI determine which organic crops they might want to grow by looking at pest control methods that are best for their operation,” said Kevin Lombard, superintendent of NMSU’s Farmington facility.

    NMSU has conducted extensive research on evapotranspiration at the Farmington facility. That water research has determined consumptive use indexes and efficient water application strategies on crops grown in the area. This information has helped NAPI and other agriculture producers to be better stewards of water in the semi-arid region.

    Water application research includes determining water-use production function of the crop. This project includes developing and evaluating formulae to predict water application and consumptive use of the crop.

    NMSU assistant professor Koffi Djaman, whose professional field of expertise includes soil and water resources, irrigation engineering and crop response to irrigation, has extended the water research into the potato fields where he is measuring soil moisture with soil probes that transmit data to office computers and cell phones.

    Sensors in the probe at four-inch intervals measure the soil moisture content at different depths.

    “With this system we can tell when we need to water and how much irrigation water is needed,” Djaman said. “After a rain, we can determine how deep that moisture has gone and add the amount needed to meet crop evapotranspiration efficiently.”

    The partnership between NMSU, NAPI and Potatoes USA is helping the region contribute one percent of all potatoes produced in the United States

  • “Growing New Roots” Vegetable Grafting Webinar Series

    Members of the SCRI Grafting Project Team have organized a grafting webinar series. Each month a webinar will be offered, covering a different topic about the science and technology of vegetable grafting. Below is a schedule of future webinars, as well as links to past webinars.

    Upcoming Webinars:

    Date: February 21, 2019
    Time: 2PM (Eastern Time)
    Title: Grafting Experience with Open Field Production of Green-picked Fresh Market and of Processing Tomato in California
    Presenters:Dr. Brenna Aegerter and Gene Miyao, University of California, Cooperative Extension, San Joaquin County and Yolo/Solano/Sacramento counties, respectively
    Sign up: Coming soon.

    Date: March 8, 2019
    Time: 11AM-Noon (Eastern Time)
    Title: Vegetable Grafting Making It Affordable and Beneficial to US Growers
    Presenter:Dr. Richard Hassell, Clemson University
    Sign up: Coming soon.

    Date: April 11, 2019
    Time: 11AM-Noon (Eastern Time)
    Title: Management of Diseases on Cucurbit Rootstock and Scion Seedlings in Greenhouse Environments
    Presenter:Dr. Anthony (Tony) Keinath, Clemson University
    Sign up: Coming soon.

    Date: May 14, 2019
    Time: 11AM-Noon (Eastern Time)
    Title: Grafting to Increase Production for Small-acreage and High Tunnel Tomato Growers
    Presenter:Dr. Cary Rivard, Kansas State University
    Sign up: Coming soon.
    Past Webinars:

    Date: January 31, 2019
    Title: Use of Vegetable Grafting for Soil-Borne Disease Management
    Presenter: Dr. Frank Louws, North Carolina State University

    Date: November 29, 2018
    Title: Indoor Production of High Quality Grafted Plants: Benefits and Energy Optimization
    Presenter: Dr. Ricardo Hernández, North Carolina State University

    Date: October 18, 2018
    Title: Developing a New Tomato Grafting Machine
    Presenter: Yuji Masaki, Kusakabe Kikai Co. Ltd., Osaka Japan

     

    Vegetable Grafting Webinar Series are organized by SCRI CAP Project Team.
    Contact for questions: Chieri Kubota (kubota.10@osu.edu)