Tag: UC ANR

  • Over 25 Farming Robots to be Featured at FIRA USA 2023 this Fall in Salinas

    Weeding, harvesting, picking, carrying,… Robots are today’s answer to many challenges facing agriculture. And they will show up this fall in Salinas for the second edition of FIRA USA. From September 19 to 21, the Salinas Sports Complex, home of the famous California Rodeo Salinas, will be the place to discover the autonomous farming solutions in action. During three days, expo, demos, pitch sessions and even a robot parade will take place in the Salad Bowl of the World. Please note that the traveling event through California FIRA USA not only focuses on vegetables: trees and vineyards are also at the heart of the environmental and labor issues that agriculture must address… just like FIRA USA!  For this reason, Malcolm Media is partnering with FIRA-USA, and California Ag Network, California Fruit & Vegetable, Pacific Nut Producer, and American Vineyard Magazines are among the proud sponsors of this special event, so be sure to come see us there.

    25+ robots for farming autonomously

    FIRA’s organizers, French association GOFAR, Western Growers and University of California ANR/The VINE announce that already 25 robots have signed up for FIRA USA 2023.

    “Even if FIRA USA 2022 in Fresno was already a success, this year marks a real turn: four months before the event, we already confirmed 25 robots – and it’s just the beginning!”notes Maialen Cazenave, co-director in charge of the partnerships at GOFAR. “Coming from California, other states in the US, and even from Europe, we expect another 10 to 20 robots to partner with us – and we have space to welcome them both on the exhibition area and on the demo zones (on vegetables, fruits, orchards, and vineyards)”.

    From weed control to fruits picking, robots main functions at FIRA USA

    Here is the list of the 25 robots from the companies that already confirmed their participation in FIRA USA 2023:

    • ●  Bluewhite (USA – California): Bluewhite’s Pathfinder transforms any brand of existing orchard or vineyard tractor into a fully autonomous fleet, capable of executing multiple tasks, such as spraying, herbicide, discing, mowing, or harvesting, with high precision and operating efficiency.
    • ●  Naïo Technologies (France and USA – California): Oz, Ted, Orio and Jo: light electric and autonomous ag. robots to offer a sustainable alternative to the use of herbicides that can interface with smart implements to offer a high precision weeding, seeding, mowing and a very precise guidance of the implements.
    • ●  Carbon Robotics (USA – California): high-precision LaserWeederTM leverages sophisticated AI deep learning technology, computer vision, robotics, and lasers.
    • ●  Stout Industrials (USA – California): the Stout Smart Cultivator is a software-defined, tractor-drawn implement that uses machine vision and artificial intelligence to cultivate and weed fields using mechanical blades.
    • ●  Agtonomy (USA): A fully electric, reference tractor that executes labor-intensive field missions such as mowing, spraying, transport, and weeding, in the toughest terrain.
    • ●  Ecorobotix (Switzerland): ARA is a high-precision sprayer developed by Ecorobotix, which enables the ultra-targeted application of herbicides, fungicides, insecticides or fertilizers, reducing the use of them up to 95%.
    • ●  Solinftec (Brazil): scouting robot that scans the crops and record their growth rates, plant health the prevalence of any weeds, suited for farms around 500 acres and works with several types of row crops including corn, soybeans, cotton, wheat, canola and many others.
    • ●  Nexus Robotics (Canada): weeding and scouting robot that provides farmers with real-time information about the size and health of their crops.
    • ●  Verdant Robotics (USA – California): multi-action, autonomous farm robot capable of millimeter-accurate spraying, laser weeding, and AI-based digital crop modeling.
    • ●  GUSS Automation (USA – California): GUSS autonomous sprayers provide a solution to labor challenges while increasing efficiency, precision and safety in orchards, vineyards, and high-density orchards.
    • ●  SeedSpider (USA – California): the WeedSpider can be configured to efficiently and accurately mechanically weed, mechanically thin, or precision spray commercial vegetable crops.
    • ●  Farm-ng (USA – California): Amiga is a modular, all-electric micro-tractor that can turn-in-place, haul, lift, carry tools, cultivate, and is easy to adapt to any farm’s cropping systems and cultural practices.
    • ●  Monarch Tractor (USA – California): fully electric, driver-optimal, smart Tractor platform built to empower farmers by enabling profitable implementation of sustainable and organic practices.●  Mantis Ag Technologies (USA – California): from thinners to sprayers and cultivators, the line of products turns intelligence, automation and data into smart, practical solutions for growers.●  Burro (USA – California): Burros use computer vision, high precision GPS, and AI to follow people to navigate autonomously from A to B while carrying various payloads.●  Robotics Plus (New Zealand): modular platform, designed to accommodate swappable attachments for spraying – mowing, trimming and weed control under development.●  Aigen (USA – Washington) : robotics platform powered by the sun, directly. Like a plant! We aim for affordability and scale, while others aim for high profit margins. We start with the farmer first, and build our platform from there.●  EDETE (Israel): end-to-end artificial pollination service comprising 2 steps that mimics the natural pollination process: 1. collecting and 2. distributing pollen.●  K.U.L.T. (Germany): agricultural machines for soil cultivation and weeding solutions for vegetable production, field crops, ornamental production, herbs, grassland, vineyards, orchards,

      ●  Sabanto (USA – Iowa): aftermarket autonomy system installed on tractors.

      The US largest in-field demo zone for robots

      FIRA USA will host the largest demo zone of farming robots.

      Managed by Triangle Farms, Pacific Ag Rentals and the University of California, the crops will be available for the robots to show their functions on vegetables, fruits, orchards and vineyards.

      To exhibit and/or make a robot demos, manufacturers can contact Maialen Cazenave:

      fira.usa@fira-agtech.com

      Registrations to FIRA USA 2023 are open, please visit: www.fira-usa.com

      About GOFAR

      The GOFAR non-profit organization undertakes to promote and develop the agricultural robotics sector at international level. Like RobAgri, whose objective is to facilitate the technical development of agricultural robots, GOFAR meets the increasing need for visibility and networking of the agricultural robotics sector.

      About Western Growers

      Founded in 1926, Western Growers represents local and regional family farmers growing fresh produce in Arizona, California, Colorado and New Mexico. Our members and their workers provide over half the nation’s fresh fruits, vegetables and tree nuts, including nearly half of America’s fresh organic produce. Some members also farm throughout the U.S. and in other countries so people have year-round access to nutritious food. For generations, we have provided variety and healthy choices to consumers.

      About The Vine, UC ANR

      The VINE, an initiative of University of California, Agriculture and Natural Resources, is California’s agriculture, food, and biotech innovation network. Our mission is to harness the power of open innovation to help industries and entrepreneurs grow and scale globally while catalyzing technology innovation and commercialization for productive, sustainable, and equitable food systems.

      We connect entrepreneurs to a vast network of public and private sector resources, build collaborations that accelerate technology solutions to solve industry challenges, and grow regional capacity to support global innovation as an economic opportunity.

  • Trials of New Almond Varieties Pay Dividends

    In the 1970s, the Almond Board of California began supporting Regional Variety Trials (RVTs) to provide a mechanism to test the performance of new varieties across the diverse almond growing regions in the State of California and to extend that information to local growers. Previous and current RVTs have been designed to evaluate new varieties or selections in a semi-commercial (20 to 40 trees per variety) manner and compare them to standard varieties such as Nonpareil, Mission, and currently accepted pollinizer varieties.

    One of the main outputs of the first two generations of RVTs was to fully document the performance of the top 14 out of 15 varieties most currently adopted in California. These first two RVTs identified good pollinizers for Nonpareil, collected key horticulture and almond quality data, and discarded many undesirable pollinizers before they were widely adopted.

    The third, and current generation of RVTs started in 2014 and is already in the process of identifying top performers. For instance, the USDA breeder recently released selection Y116-161-99, as the new variety ‘Yorizane’ variety due to the consistent novelties of the variety, including self-fertility, high yields and good kernel quality recorded in the current RVT. The current RVT brings key novelties in comparison to the previous generations such as the fact that all the trees were planted in the same year (2014), in multiple locations (Butte, Stanislaus & Madera Counties) and with statistical repetitions.

    For nearly 50 years the Almond Board has partnered with the University of California (UC) to conduct Regional Variety Trails (RVTs) that provide a mechanism by which ABC, researchers and industry members can evaluate new varieties across the diverse almond-growing regions in the state.

    Due to the contribution of these RVTs, our industry has been able to adopt a wide range of varieties that offer a versatile supply of almond kernel and confer competitive advantage to growing almonds in California. Thanks to the outputs of these RVTs, our industry counts on multiple pollen compatible varieties (i.e. Fritz, Price, Aldrich, Wood Colony, Monterey, etc) that adequately cover Nonpareil bloom. The RVTs have identified varieties that are more resistant to pests and diseases such as NOW (i.e. Price and Butte) and Hull Rot (i.e. Monterey, Carmel, and Fritz), respectively. RVT outputs have expanded our harvesting and processing operations by identifying the Sonora group (harvested 7-13 days after Nonpareil), the Price group (harvested 15-21 days after Nonpareil), and the Carmel group (harvested 29-34 days after Nonpareil), among others. Also, the data collection in these RVTs have served to group varieties by their ease of nut removal (i.e. Butte, and Price fall in the easy category while Merced falls in the difficult category), hull split date, vigor, etc.

    This investment in varietal research has resulted in the commercialization of new UC varieties in the past 20 years such as: Kester, Sonora, Sweetheart and Winters. And thanks to the RVTs and the ongoing collaboration with the USDA breeder Craig Ledbetter, we can now add Yorizane – another self-compatible variety with many intriguing characteristics — to the mix. It is the latest example of ABC research and collaboration with the UC coming to fruition, with many other new varietals potentially still in the pipeline from the current RVT.


    Understanding the benefits, trade-offs

    At The Almond Conference (TAC) 2020 breakout session in December, ABC Associate Director of Agricultural Research Sebastian Saa told growers that evaluating more self-compatible varieties like Yorizane remains a priority. Self-compatible varieties potentially require fewer pollinators in the orchard because the pollen only has to move a short distance – from one blossom to another blossom of the same tree – rather than from one blossom to another blossom a tree row or more away.

    There are other advantages, Saa said: “Self-compatible trees can be grown in blocks of the same variety, allowing for more efficiency at harvest time. ‘One shake, one harvest,’” he said.

    Many of the most recent new varieties created in California and around the world are also are self-compatible. Saa said that CA new varieties typically bloom about the same time as Nonpareil but are harvested a couple of weeks later and therefore could be viable options for growers seeking to transition to off-ground harvesting.

    During the online discussion at the breakout session, a grower asked Saa if there is an increased risk of resiliency to diseases or pests with self-compatible varieties, especially if there is less genetic diversity within an orchard.

    “If we adopt one self-compatible variety, then there is a potential risk,” Saa acknowledged, “but if we adopt multiple self-compatible varieties from different genetic background, then the risk remains low, and our resilience is improved. Our goal is to enhance variety diversification for the California almond industry by adopting better almond varieties that respond to different market demands as well as provide enhanced traits such as self-compatibility.”

    In addition to learnings around self-compatible varieties, TAC attendees also had an opportunity to hear from Phoebe Gordon, a UC Cooperative Extension orchard crops farm advisor in Merced County. Gordon manages one of the RVT sites in Madera County (others are located in Butte and Stanislaus counties). Since 2017, she and her peers have tested various pollinator varieties paired with alternating rows of Nonpareil trees.

    “We test all varieties for bloom timing, bloom profusion, hullsplit timing, yields, defects and insect damage, and observe any disease issues,” Gordon explained.

    She said early results in the RVT indicate that some of the pollinator varieties may have higher yields than Nonpareil, but cautioned that “we need to look at entire lifespan of these varieties.”


    Research requires patience

    Developing a new variety can take many years, if not decades. Craig Ledbetter, a research geneticist with the Agricultural Research Service, based at the San Joaquin Valley Agricultural Sciences Center in Parlier, was directly involved with the development of Yorizane.

    He said the first seedling was planted in 1999. Its kernel attractiveness and ease of cracking – combined with self-fertilization — quickly separated it from other alternatives, Ledbetter said. Annual tests on roller crackers also showed its kernels damage less often than Nonpareil. Then, the RVT that began in 2014 revealed Yorizane’s heavy yield potential.

    “Yorizane provides a varietal option to growers to establish a more efficient single-variety orchard,” Ledbetter explained. “As a part of the RVT, it has been evaluated in blind tests by industry personnel for kernel attributes and has been found to have excellent kernel appearance and marketing potential.”

    Limited quantities of Yorizane already are available at many of California’s leading tree nurseries.


    Partners key to long-term success

    Yorizane is just one example of the ongoing value and importance of the Almond Board’s long-term investment in research, development and real-word, in-the-orchard testing of new varietals. It is a critical partnership between the industry and the U.S. Department of Agriculture’s Agricultural Research Service (USDA/ARS), the University of California system, and private breeders and nurseries in California.

    Chuck Fleck, director of horticulture research at Sierra Gold Nurseries near Yuba City, said there are many other exciting scientific advances on the horizon. Although Sierra Gold’s variety development program is relatively young, he said its team plans to eventually release almond varieties and rootstocks that provide growers with many advantageous genetic characteristics.

    Fleck pointed to the work of two researchers – Malli Aradhya of the USDA and Tom Gradziel of UC Davis – as being especially promising. Aradhya’s has focused on helping growers overcome abiotic (atmosphere, chemical elements, sunlight/temperature, wind and water) as well as biotic (soil, floom, leaves and wood) challenges in their orchards. Gradziel is working to bring new germplasm into almonds’ fairly narrow genetic base as well as exploring alternative rootstock options to more effectively deal with abiotic and biotic issues.

    “Perennial crop breeding takes years to see successes and breakthroughs,” Fleck explained. “Because it can take decades before such successes come to light, the resulting varieties — and therefore the breeding program’s true value — is not easily discerned until long after their inception.”


    Factsheets will inform growers

    It hasn’t always been easy to efficiently communicate breakthroughs in the genetic world or promising results from RVTs to growers. That’s why so many industry officials are excited about the rollout of varietal fact sheets co-created by the Almond Board, UC-ANR, and the Fruit and Nut Center (FNC) at UC Davis.. These factsheets  are housed on a new website that will launch later this year at the FNC center. The first fact sheet debuted is on Yorizane and can be viewed here.

    “The data that is being generated is important and frequently actionable, but to date there has not been a particularly convenient way to access the results from these research projects,” said Julia Stover-Blackburn, director of Fruit and Nut Center. “ABC and UC-ANR do a great job of communicating findings at The Almond Conference and other meetings throughout the year, but we anticipate that making these results findable in the same place will help extend the reach.”

    She said the website will have an overview of various almond-breeding resources but primarily will serve as a repository for the findings of the most recent Regional Variety Trial. A second site is under construction to serve as a repository for almond rootstock trial findings. The hope, Stover-Blackburn explained, is that the sites “will be a resource for both researchers and growers looking to see how various varieties and rootstocks compare in these extensive trials.”

    “These data are valuable for growers making decisions about new plantings and for researchers making decisions about what varieties to include in other projects,” she said.

    The importance of RVTs cannot be overstated. Saa said 14 of the 15 most popular almond varieties in California are the product of trials. Initiation is already under way for the next RVT, which Saa expects to plant on the ground late in 2022 or early in 2023 and continue for a decade or more. He said the next trial likely will include many novelties in comparison to the current regional trial and that ABC is already working to identify the ad hoc research team.

    “Having third-party data collection about how that variety performs in different regions of the state is very valuable to growers, nurseries and handlers,” Saa said. “We need to know the weaknesses and strengths of varieties. There is no perfect variety. Some growers are looking for different things, like harvest times or kernel characteristics. There is no doubt that we need a diverse supply of almonds varieties.”

    Gordon said RVTs allow horticultural characteristics like yield, bloom overlap and harvest timing to be compared in an unbiased setting.

    “If there are conditions that are conducive to disease development, they can also be a way to compare relative susceptibilities to diseases,” she said. “They also allow growers and PCAs to see new varieties in person before committing.”

    Industry members interested to learn more about ongoing research should stay tuned for a report that will be issued this spring summarizing the RVT data collected in the past four years.

    In addition, industry members are encouraged to check out this session from The Almond Conference 2020 during which Gordon and other experts provide information on the latest varieties and selections under evaluation, in addition to discussing ABC’s overall breeding strategy.

    Finally, in 2020, the Almond Board published a comprehensive breeding report that provides an evaluation of national and international varieties and selections currently under evaluation or available in the market. Those interested in sinking their teeth into this topic are welcome to review this report. — 
    Almond Board of California