Tag: Agricultural Technology

  • UC ANR Connect Seeks Ag Tech for California Crops

    Applications are now open for UC ANR Connect, a grower-informed commercialization program operated by UC ANR Innovate, the innovation arm of University of California Agriculture and Natural Resources, in partnership with ag tech venture firm Farmhand Ventures. Applications will be accepted through Sept. 18.

    Selected companies receive commercialization support, direct feedback from California growers and agricultural professionals, industry connections and the opportunity to demonstrate their technology live at a field day.

    The current application cycle is focused on commercially available technologies for permanent crops, including fresh fruit, table grapes, pistachios, desert vegetables, berries, citrus and avocados.

    “Entering the California market requires more than a strong technology. Companies need to understand how farmers make decisions, how their products fit into agricultural operations and what it takes to earn trust,” said Helle Petersen, director of UC ANR Innovate. “UC ANR Connect gives companies a structured way to build that understanding while developing relationships across California agriculture.”

    The program begins with challenges identified by California growers and agricultural professionals. UC ANR Innovate’s advisory board and agricultural partners help define priority needs and evaluate whether applicants have commercially available solutions that are relevant to those needs.

    Participants engage directly with growers, UC Cooperative Extension advisors, researchers and industry partners through customer-discovery conversations and feedback sessions. That input helps companies refine their value proposition, strengthen their market positioning and communicate more effectively with the people who may use, recommend or support their products.

    “The unique thing about our program is that it starts with grower priorities based on their biggest operational constraints,” said Hannah Johnson, industry lead for UC ANR Connect. “We are looking for teams that have solutions to those problems and are ready to build lasting relationships in California agriculture.”

    The program culminates in a live field-day demonstration, where companies show their technology in an agricultural setting, explain how it works and answer questions from growers and other attendees. The demonstrations give companies immediate, practical feedback while allowing growers to evaluate emerging technologies before considering adoption.

    During its first two years, UC ANR Connect has worked with 55 companies through eight program cycles and brought more than 1,000 growers, researchers, agricultural professionals and industry representatives to its field days.

    Past participants have included Carbon Robotics, Verdant Robotics, Sami Robotics, Bonsai Robotics and Verdi Ag, with technologies spanning weed control, equipment automation, irrigation management, mechanical pollination, disease detection and harvest assistance.

    Applications must be submitted by Sept. 18, 2026. Learn more and apply at ucanr.edu/site/uc-anr-innovate/ucanr-connect.

    UC ANR Innovate will host a virtual information session for prospective applicants and other interested stakeholders on Sept. 10, 2026, at 8 a.m. PDT. The webinar will explain how the program works, who should apply, how companies are selected and what participating companies can expect.

    Register for the webinar at https://ucanr.zoom.us/webinar/register/WN_5x2lvlO-SjWcQjUIW3PFdQ#/registration.

  • Turning Food Scraps into Opportunities

    For every juicy tomato or crunchy almond California grows, there’s a pile of pulp, hulls or scraps that often goes to waste. A new online tool, created by University of California, Davis researchers, tracks those agricultural byproducts aiming to find innovative ways to put them to use.

    The Byproduct Database, maintained by the AI Institute for Next Generation Food Systems, is an ongoing research project that includes a catalog of byproducts like fruit skins and nut shells, and potential ways to reuse them across different industries.

    Edward “Ned” Spang, principal investigator and associate professor with the Department of Food Science and Technology, said about one third of the food produced worldwide, doesn’t get eaten. The database consolidates information about food waste in one place, detailing what the various leftovers are made of and where they’re available in the state. Spang believes it could help guide decisions on reducing waste by potentially turning these materials into new products for food, cosmetics or pharmaceutical industries.

    “In the food production space, there’s a lot of edible material, or potentially valuable material, that’s been overlooked for a long time as waste,” Spang said. “So, the questions we are trying to understand include: ‘How much of this material is out there? What is it composed of? Where is it? When is it available?’”

    Tomatoes, almonds, pistachios and pomegranates

    The pilot phase of the database currently features four major crops: tomatoes, almonds, pistachios and pomegranates. As the research team continues to gather data, they will update the site to include other crops and byproducts, including wine grapes, stone fruits and citrus. In collaboration with Ilias Tagkopoulos with the Department of Computer Science, Spang is looking into developing and applying AI tools to expand the site faster and with less manual work.

    For pistachios, the website illustrates that the largest byproduct is the hull, which is often discarded, and that undersized pistachios could be a valuable resource if there was a market for it. The website helps outline the various byproducts for potential upcycling, where leftovers are transformed into new ingredients. Local companies are already developing new products using materials such as brewers’ spent grain (a byproduct of beer production), okara (a fibrous byproduct from soymilk production) and grape pomace (leftovers from winemaking).

    Researchers are looking at where food gets lost in the field and at the processing plant. With tomatoes, some get damaged on the vine, others get tossed out for not meeting quality standards. Spang said those leftovers, or side streams, are opportunities for upcycling.

    “It’s a material that’s already been cultivated, harvested and processed, so anything you do that’s economically productive means that all the resources embedded in that material, like fertilizer, water and energy, were not wasted in vain,” said Spang, who also directs the Robert Mondavi Institute of Wine and Food Science. “It is a real win-win opportunity.”

    Finding new uses

    The skin and pulp of a tomato contain lycopene, an antioxidant known for its health benefits. Users of the website can visualize where these leftover tomato parts, and its valuable lycopene, are found, helping to imagine new ways to make use of this healthy compound.

    “We expect our primary user to be entrepreneurs who are looking for new business models in upcycling, or who might have an advanced extraction technology to derive value from some of these overlooked materials,” Spang explained. “But producers and growers would also benefit as new revenue streams deliver value up and down the food supply chain.”

    The database will soon include cost estimates and economic variables to help users make more informed decisions. This will allow them to assess factors like how much lycopene is in a byproduct, its value per milligram and the costs associated with extracting it.

    New space for agricultural innovation on campus

    The research project is funded by a grant from the Resnick Agricultural Innovation Research Fund, created by a $50 million gift by Lynda and Stewart Resnick, co-owners of The Wonderful Company. Part of that donation also establishes the Resnick Center for Agricultural Innovation, currently under construction on campus, that will include a large space for biomass staging and extraction, a process to pull valuable compounds from fruits, vegetables and grain residues.

    Food waste happens, but this work is helping build a food system that wastes less and supports sustainability, which Spang hopes will excite everyone.

    “We have to be a little more creative with our food system,” he said. “We can make our current food system more productive by investigating novel upcycling ideas and processing systems that create more revenue for producers and hopefully deliver more value to consumers as well.” — By Tiffany Dobbyn, College of Agricultural and Environmental Sciences, UC Davis, tadobbyn@ucdavis.edu

  • Bills to Support Central Valley Specialty Crop Producers Reintroduced

    Congressman David Valadao (CA-22) has reintroduced two bipartisan bills to improve the domestic specialty crop industry—the Specialty Crop Domestic Market Promotion Program Act and the Specialty Crop Mechanization Assistance Act. California produces the most specialty crops in the country in both quantity and diversity, with over 400 commodities produced in the state per year. These bills would make technology and resources available so they can access new markets and remain competitive.

    Congressman Valadao originally introduced these bills in the 118th Congress.

    “Specialty crops are a cornerstone of Central Valley agriculture, but due to challenges like labor shortages, supply chain disruptions, and rising costs, it’s been difficult for farmers to stay competitive,” said Congressman Valadao. “We need to ensure our growers are best equipped to handle these obstacles, and these bills will give them the tools needed to expand into new markets, invest in modern technology, and continue putting fresh, nutritious food on tables across the country.”

    “CFFA is again proud to have worked with the California Table Grape Commission to co-lead this collaborative effort to promote U.S. produce domestically and help equip our farmers with the tools and technologies they need to thrive in a rapidly changing world. I would like to thank Congressman Valadao for reintroducing these bills that aim to support the modern needs of American agriculture. These bills will support farmers and their employees to ensure that America continues to be a global leader in agricultural production,” said President of the California Fresh Fruit Association, Daniel Hartwig.

    “California table grape growers are grateful to Congressman Valadao for his leadership in reintroducing the Specialty Crop Domestic Market Promotion Program Act and the Specialty Crop Mechanization Assistance Act. These measures address two of the most pressing challenges our industry faces—expanding consumer demand and addressing critical labor shortages. Investments in market development will help ensure consumers know when U.S.-grown produce is in season and available, while mechanization assistance will support growers in overcoming labor challenges. Together, these efforts strengthen the competitiveness of U.S. specialty crops, provide consumers with greater access to healthy, nutritious produce, and support the long-term viability of family farms in California and across the nation,”

    said President of the California Table Grape Commission, Ian LeMay.

    Additional co-sponsors include: Rep. Josh Harder (CA-09), Rep. Julia Brownley (CA-26), Rep. Jimmy Panetta (CA-21), and Rep. Doug LaMalfa (CA-01).

    The Specialty Crop Domestic Market Promotion Program Act would create a program that helps specialty crop producers market their products to access American markets. It replicates the popular Market Access Program (MAP) through USDA’s Agriculture Marketing Service (AMS) specifically for specialty crop producers to break into niche domestic markets.

    Read the full text of the bill here.

    The Specialty Crop Mechanization Assistance Act makes it easier for specialty crop producers to remain competitive in the face of labor shortages by making expensive automation technology more accessible to producers. This bill aims to create a reimbursement-based cost-share program which would permit growers and processors to invest more in these time and money-saving technologies.

    Read the full text of the bill here.

  • Are Autonomous Self-Driving Tractors Legal in California?

    As California’s agricultural industries progress towards a more sustainable future with new technologies and innovations, current Cal OSHA regulations (unless changed) may hinder their progress, particularly with regard to autonomous or self-driving tractors.  Watch this brief video with Michael Miiller from the California Association of Winegrape Growers as he explains.
     
    Please thank this video’s sponsor Suterra for their industry support.
  • Are Autonomous Self-Driving Tractors Legal in California?

    As California’s agricultural industries progress towards a more sustainable future with new technologies and innovations, current Cal OSHA regulations (unless changed) may hinder their progress, particularly with regard to autonomous or self-driving tractors.  Watch this brief video with Michael Miiller from the California Association of Winegrape Growers as he explains.
     
    Please thank this video’s sponsor Suterra for their industry support.