Voice Your Value: Positioning the Wine Industry to a New Administration
April 25 – 27, 2017
Grand Hyatt Washington D.C.
1000 H St NW Washington, DC 20001 (202) 582-1234
April 25 – 27, 2017
Grand Hyatt Washington D.C.
1000 H St NW Washington, DC 20001 (202) 582-1234

Davis, Calif., (March 6, 2017) – Kate Scow, a professor of soil science and soil microbial ecology at UC Davis, keeps plastic bags filled with soil on her desk.
We are meeting in her office in Plant and the Environmental Sciences Building on campus, not out at Russell Ranch, where she’s the director of the university’s unique 300-acre research facility studying the long-term impacts of management practices and climate on agricultural sustainability. California is finally rainy again. “Our soils are sopping wet and it’s kind of hard to move around there right now,” says Scow.
One of the bags is filled with crumbly light-brown earth that holds together in small clumps. It’s from an organically-managed tomato field. Another bag holds an almost solid, gray block of dirt, like a brick of cement.
“It’s because it was tilled when it was wet. The structure has completely broken down.” She grabs the bag and holds it up. “But you might be surprised that even this boulder has some microorganisms in it. They are everywhere.”
Microbial ecology is one of Scow’s primary research areas. What she is trying to understand is how we can refocus agricultural practices “below-ground” and enhance the activity of beneficial microorganisms. Just a few of her recent research projects include looking at the sensitivity of bacteria and fungi to tillage and cover crops, and the impacts of mineral fertilizer on managed and nonmanaged agricultural systems.
Even though microbes in soil are essential for life on earth, scientists readily admit they still know relatively little about them. What they do know is that they are very, very plentiful and very, very diverse.

“A gram of soil — about a quarter of a teaspoon — can easily contain a billion bacterial cells and several miles of fungal filaments,” says Scow.
And how many different types of organisms might be in the soil? “Soil is overwhelmingly diverse, with an estimated 10,000 to 50,000 different taxa in a teaspoon of soil. These numbers are difficult to guess and keep getting adjusted as we learn more about the soil microbiome through sequencing efforts,” says Scow, referencing genomic sequencing, which identifies organisms by their unique genetic traits.
Unlike Scow, when most of us drive by a freshly plowed agricultural field, we see dirt. We might picture the presence of a few bugs, maybe worms, but essentially, most of us see soil as an inanimate substrate into which plants grow.
But soil is actually a living entity, a diverse ecosystem that is one of the most complex on the planet. And it is one that is essential for human life through all the functions it provides — food production, water purification, greenhouse gas reduction, and pollution cleanup, to name a few.
“A lot of processes that are really important in soil, like the decomposition of organic material, goes into building up the soil structure — the aggregates — which are the structural units of soil,” says Scow. “These aggregates determine how well the water drains when it rains, how well it is retained when it gets dry. And the exchange of gases — like the ability to get oxygen to plant roots — is determined by the structure of the soil.”
What you see when you turn over a shovelful of healthy soil isn’t just happenstance. “Microbes are the architects that build that structure,” says Scow. And she points out that how we manage our farm soils can determine whether we help or hinder these microscopic structural engineers.
Gut microbes have received a lot of attention in recent years as researchers continue to unlock the complex relationship between human health and what is living in our intestines.
For humans there are helpful prebiotics and probiotics. It turns out that the Lactobacillus bulgaricus and Streptococcus thermophiles bacteria in yogurt are good for us. But are there similar “good bacteria” for plants and soils?
I ask Radomir Schmidt, a postdoctoral researcher in Kate Scow’s lab, that question. He laughs. “That’s the million-dollar question. We know there are a lot of soil microbes but we don’t know what a lot of them do. Not yet, anyway.”
He explains that there are helpful microbes in soil, but that researchers don’t yet know how interactions between soil microbes lead to different practical outcomes.
Microbes have incredibly diverse functions in the soil. There are nitrifying microbes that convert ammonium to nitrite, and then nitrate. There are microbes that can metabolize fertilizers and pesticides and even pollutants. But even though the properties of some soil microbes are known, there is a lot still to learn, such as how important teamwork among different organisms is in providing these services.
I had met Schmidt when he was attending a microbiome workshop on campus sponsored by the Office of Research to help UC Davis researchers network about possible interdisciplinary microbiome projects. He was there to brainstorm projects like carbon sequestration.
Soil has become a focus for looking at ways to mitigate climate change. Healthy soil is more resilient in a changing environment. It also nourishes plants, which allows the plants to remove carbon dioxide — a greenhouse gas — from the atmosphere.
And the soil itself is also a massive repository for carbon: It houses the carbon compounds of decaying plants and animals, as well as everything that lives within the soil — from microbes to worms to tree roots. And carbon is essential for soil microbes to be able to flourish.
Research has shown that changes to agricultural practices could increase the carbon stored in the soil. A 20-year study at Russell Ranch found that adding compost and cover crops to fields that grew tomatoes in rotation with corn increased the amount of soil carbon by 37 percent.
Kate Scow also took part of a long-term project led by Jeff Mitchell, a University of California Agriculture and Natural Resources Cooperative Extension specialist, that looked at the impact of conservation agriculture on the amount of carbon in the soil. The eight-year study in the San Joaquin Valley found that conservation agriculture practices could increase the amount of carbon sequestered in the soil by about 45 percent.
The state of California is so interested in the potential of soil to mitigate climate change that the California Department of Food and Agriculture allocated $7.5 million for the Healthy Soils Initiative, which has the goals of building soil carbon and reducing agricultural greenhouse gas.
Schmidt’s Ph.D. is in bacterial genetics. He began in Scow’s lab doing genetic sequencing and gradually transitioned into working more directly with agriculture. He likes getting out of the lab. “The main project I am working on right now are the effects of no-till agriculture and cover cropping on the microbiome. We know pretty well the general effects of not tilling the soil and growing cover crops but we know much less about effects on specific members of the microbial community,” says Schmidt.
For example, he points out that fungi are particularly sensitive to the physical disturbance brought about by tillage, whereas many bacteria are not as affected. For the bacteria, what mattered more was food — whether the cover crop was there are not. There may be tradeoffs with the different practices, which is one of many reasons the research is so important.
And sometimes the research results are unexpected. When Kelly Gravuer, then a Ph.D. student in Scow’s lab, did a study adding poultry compost to to three different types of soil, she was pretty sure the microbial diversity in the nutrient-poor soil would increase. It did not. It went down
“Clearly, we still have a lot to learn about how to translate knowledge gained from plant and animal experiments to the vastly different world of microbes,” says Gravuer.
Lessons from Deforestation and Regeneration in the Amazon

Jorge L. Mazza Rodrigues, a professor in the UC Davis Department of Land, Air and Water Resources, has been studying the impact of deforestation in the Amazon rainforest since 2008.
His first project was in Rondônia, a state close to the Bolivian border and with the distinction of having the highest rate of deforestation in the Amazon. Later, Rodrigues added a second research project, in the state of Pará, on the northern side of the Amazon. “They have big differences in how much rain they get,” says Rodrigues.
He is in the Northern Hemisphere most of the year, and this quarter he is teaching a seminar on methods in microbiome research. We meet in his office in the Plant and Environmental Sciences Building. Dozens of name badge lanyards from the various conferences he has attended dangle from his coat rack below his bicycle helmet.
Rodrigues studies the changes to the soil microbiome when primary forests are converted to pasture. “There are very few primary forests in the United States. So, we have been working with tropical systems these days because that’s the next frontier in agricultural systems.”
About 20 percent of the Amazon rainforest has been removed — converted into pastures to raise cattle. Brazil ranks among the world’s top four exporters of beef. The fact that the United States has so few primary forests is one reason Rodrigues tries to avoid judgment about the deforestation in the Amazon despite its impact on the environment.
“From my privileged position I’m not going to tell someone not to do what the U.S. did.” He sees his role as assisting with their decisions. “We might help people if we say ‘let’s help you to achieve what you want to achieve.’”
To convert pristine rainforest into pasture, the old-growth trees are removed and sold, and then everything left is burned. He says the burning can go on for weeks.
The changes to ecosystem diversity are obvious and dramatic after the conversion. “You’ve removed all the plants and the trees and then you have maybe one grass. You go from a large number of animal species to maybe one or two species — cows and very few birds,” says Rodrigues.
But what he is there to study is what is not so visible: He wants to know has happened to the microorganisms in the soil.
He gives, as an example, Acidobacteria. Acidobacteria is a large, diverse phylum of bacteria. “As the name suggests, they like more of an acidic environment, lower pH soils like the ones that we find in the Amazon forest,” says Rodrigues.
But after the forest has been burned, all the ashes fertilize the soil and increase the pH, making it more alkaline. “Those guys don’t like that,” he says. The Acidobacteria that had been in the forest are not found in the pasture. “They are gone because the environment has changed.”
Rodrigues has published numerous studies on the microbiome. One looked at the loss of fungal diversity in the Amazon. Another recent paper looked at the nitrogen-methane cycle in the Amazon based on the microbial communities associated with it. In another, he worked with microbiome researchers from China, which is going through the same type of deforestation happening in the Amazon.
And he’s also involved in projects closer to home, including a project in California with Kate Scow measuring the microbial emission rates of methane that are being released at farms using dairy manure for compost. “What we learned to do in the Amazon we are applying to California dairy farms,” says Rodrigues.
Because the converted pastures in the Amazon are not fertilized, they end up with poor-quality soil and are usually abandoned after seven to 10 years. One hopeful sign he sees for environmental recovery in the Amazon is what happens next.
“If you still have forest surrounding this pasture, the forest will start to colonize again. It starts as a dirty pasture — a few bushes, trees here and there — then it takes over again. It’s not as beautiful and big as the primary because of the size of the trees — it takes 350 years for a big tree to grow — but it’s returning to that system. And we have seen that the microbial functions return as well,” says Rodrigues.
He points out that a secondary forest is growing and can capture more carbon than the primary forest that had been in climax was able to capture.
“As long as we maintain corridors and maintain the areas of primary forest, it can reseed that area. Animals can move in and out. We can maintain the biodiversity, and the structure of the environment.”
When we talk about the ability of microbes to survive in such different environments, he describes how he had helped a colleague isolate microbes that had been living deep underground in the frozen permafrost in Siberia. Living in ice.
“They were alive, but they were just waiting to get a certain amount of nutrients.” He describes how a different colleague isolated viable microbes from the frozen remains of a mammoth from the last ice age. “They came back to life. They were still viable,” says Rodrigues.
“There are estimates that microbes have been here for 3.8 billion years on the planet. The planet around 4.8 billion years and the first indications of microbial life around 3.8 billion years,” says Rodrigues.
Rodrigues’ work with microbes has given him tremendous respect for the organisms. “I admire them.” He smiles. “Those guys can survive.”
Tulare, Calif., (March 6, 2017) – The Kiwanis Club of Tulare will present its 57th Farmer of the Year award to Doug Mederos owner of Doug Les Farms. The award luncheon will be held Wednesday, March 29, 2017 at 12:00 pm at the Heritage Complex in Tulare. Tickets are available for $25 in advance from Kiwanis Club members and various businesses in Tulare, tickets will be $30 at the door.
Doug grew up on a dairy and diversified farm just four miles from Tulare. He graduated from Tulare Western High School, College of the Sequoias and Cal Poly. He returned to the family dairy after graduating college and became a partner in P & M Farms with his father, uncle and cousin. Later he was the owner of a dairy and farm with his cousin Larry Pires for over 15 years operating under the business name of Pires and Mederos Dairy. In 1996, Doug branched off on his own and began farming with his wife Leslie as Doug Les Farms.
Today Doug Les Farms is over 1,000 acres, which includes land he owns, leases, and custom farms for others. He primarily farms cotton, beans, alfalfa, corn, almonds and pistachios.
Doug has a long and distinguished record of community service and leadership. He is currently president of the Oak Valley School Board, which he was elected to serve on as a trustee in 1999. For over 20 years he has been a board member of the Mid Valley Cotton Growers. He is a past director and current member in the Tulare County Cabrillo Civic Club. He has also been involved in youth sports for many years, and served as an assistant coach to the TWHS boys and girls golf teams.
Doug has been involved with the Tulare Softball Association and Tulare Little League, as well as the TWHS Volleyball team and Soccer club. In addition he has been a proud sponsor of the American Cancer Society Relay for Life, and the National Alliance for Mental Illness here in Tulare County.
Doug and his wife Leslie have three children, Jared, Tyler, and Madison. He has been a lifelong resident of Tulare and a proud local leader and civic member of the community.
Tickets are available at Garton Tractor, Machado Hay, and Rabobank in Tulare. For information contact Celeste Moore, event chair at 686-5854.
Sacramento, Calif., (March 6, 2017) – The California State Board of Food and Agriculture will be discussing issues related to safe drinking water in disadvantaged communities at its upcoming meeting on Tuesday, March 7th. The meeting will be held from 10 a.m. to 3 p.m. at the California Department of Food and Agriculture, 1220 N Street – Main Auditorium, Sacramento, CA 95814.
“All Californians have a right to safe drinking water,” said CDFA Secretary Karen Ross. “Finding broad long-term solutions for impacted communities is critical and involves many stakeholders. The agricultural community is an active participant in those discussions and farmers and ranchers continue to use the latest research findings and best practices to protect groundwater supplies.”
Invited speakers include: Darrin Polhemus, State Water Resources Control Board; Laurel Firestone, Community Water Center; Wade Crowfoot, Water Foundation; Cindy Tuck, Association of California Water Agencies; Gail Delihant, Western Growers; Tim Johnson, California Rice Commission; Emily Rooney, Agricultural Council of California; David Cory, Consultant and Ismael Herrera, California Partnership for the San Joaquin Valley.
“Water quality issues associated with drinking water are taken very seriously by agriculture,” said President Craig McNamara, California State Board of Food and Agriculture. “Long term solutions to water quality challenges should include consideration of a public role at the state and federal levels.”
The California State Board of Food and Agriculture advises the governor and the CDFA secretary on agricultural issues and consumer needs. The state board conducts forums that bring together local, state and federal government officials, agricultural representatives and citizens to discuss current issues of concern to California agriculture.
All meetings are open to the public and attendance is welcome.
Follow the board on Twitter at: www.twitter.com/Cafood_agboard
Visalia, Calif., (March 3, 2017) – The Citrus Research Board (CRB) has announced its workshop speakers for the 2017 Citrus Showcase, being held on March 2 at the Visalia Convention Center. CRB-hosted workshops will be held in the San Joaquin Room of the convention center.
James Thomson, Ph.D., is a Research Scientist at the USDA-ARS Crop Improvement and Genetics Research Unit in Albany, California. He will lead a one-hour workshop on “Developing Genome Targeting Technology for Precise DNA Modification” beginning at 8:00 a.m. The workshop will focus on ongoing CRB-funded research into the Recombinase Mediated Cassette Exchange (RMCE) technology as a means to add specific traits of interest to popular California citrus scion and rootstock varieties. An explanation of the genetic engineering process to generate transgenic citrus plants with novel, beneficial traits, including incorporation of huanglongbing resistance traits, will be discussed. The concept and commercialization possibilities of marker removal available with this approach will also be presented.
At 10:00 a.m., the CRB will offer a one-hour workshop on “Protecting the California Citrus Industry from Invasive Pests at the Ports of Entry and Borders.” Speaker Nikki Thomas is the Director of the Agriculture Safeguarding Division within the U.S. Customs and Border Protection (CBP), Office of Field Operations, Agriculture Programs and Trade Liaison. Every year, CBP agriculture specialists intercept tens of thousands of pests that have been identified through scientific risk assessment as dangerous to the health and safety of US agricultural resources. Thomas will discuss what is being done in the western US at ports of entry and borders to protect the California citrus industry from these invasive pests.
The California Department of Pesticide Regulation (CDPR), has approved 1.5-hours of other continuing education units for PCAs, QALs and private applicators. Please arrive by 7:45 a.m. to register for your units.
The CRB will also have a booth at the showcase, where county farm advisors, CRB researchers and CRB staff will be on hand to answer questions.
For more information about registering for the 2017 Citrus Showcase, please contact California Citrus Mutual at 559.592.3790. To learn more about CRB-sponsored workshops, phone 559.738.0246 or e-mail events@citrusresearch.org.
Visalia, Calif., (March 3, 2017) – Tulare County Agricultural Commissioner released the current status today of Major crops in the most valued county in the California Ag portfolio. They report that growers continue to wait for fields to dry out sufficiently so that they can resume planting winter grain and field crops. Lodging has occurred in mature wheat fields due to the recent high winds and rain of last week.
Field work in vineyards and orchards continues with: pruning, tying, berm sanitation, and brush shredding. Some early varieties of stone fruit are beginning to bloom. Cherries are beginning to bloom. Kiwifruit are being exported to the Dominican Republic, Japan, Mexico, and Taiwan. Some almond orchards are beginning to bloom, and bee colonies are being moved in for pollination. Almonds are being exported China, Colombia, France, Hong Kong, India, Israel, Japan, Jordan, Korea, Malaysia, Mexico, the Netherlands, New Zealand, Pakistan, South Africa, Spain, Taiwan, Thailand, Trinidad and Tobago, and the United Kingdom. Pistachios are being sent to China, Germany, Hong Kong, and Spain. In drier locations the removal of older orchards and vineyards continues in preparation for replanting with new varieties.
The citrus harvest is continuing. All the recent rains are having some impact on overall quality. Navel oranges and Mandarins are being shipped to Australia, China, El Salvador, Guatemala, Japan, Korea, Malaysia, Mexico, the Netherlands, New Zealand, Peru, the Philippines, Singapore, Taiwan, and Thailand. Cara Cara oranges are being shipped to Hong Kong, Japan, Korea, Malaysia, Singapore, Taiwan, and Thailand. Minneola tangelos are sent to Hong Kong, Japan, Malaysia, the Philippines, and Singapore. Grapefruit and pomelos are being exported to Japan. Lemons are being exported to Hong Kong, Japan, Malaysia, Mexico, the Philippines and Singapore. Orange groves are being hedge-rowed and skirted. A few growers are starting to net the seedless tangerines to prevent cross pollination by bees during the coming bloom.
Squash are currently being planted in hot tunnels. New fields are being prepared for spring planting. Strawberries fields continue to thrive. Previously planted onions continue to progress well.
Rangeland and dryland pasture quality continue to improve with all the recent rainfall. Condition is excellent due to continued rainfall and warmer weather.
Bare root rose nursery stock continues to be received, processed, and shipped out. Shipments of wholesale nursery stock are picking up as spring sales begin in earnest. Local bare root nurseries are busy digging stock as weather and soil conditions allow. Some mature olive trees continue to be dug for landscape purposes.
Sacramento, Calif., (March 3, 2017) – The Bureau of Reclamation today announced the initial 2017 water supply allocation for Central Valley Project contractors in the Friant Division, Eastside Division and Municipal & Industrial Water Service Contractors in the American River Division.
“The 2017 water year has been an extreme year thus far, with precipitation throughout the Central Valley on track to be the highest in our historic records,” said Reclamation’s Acting Mid-Pacific Regional Director Pablo Arroyave. “As such, Reclamation is taking an approach to the announcement of CVP water allocations this year that differs from our historic practice.”
Given that inflow to Shasta Lake has already exceeded the volume necessary to be certain that this is not declared a Shasta Critical Year, Reclamation has notified the Sacramento River Settlement Contractors, San Joaquin River Exchange Contractors and Refuge Contractors of that fact. Regarding the remainder of the allocations to CVP contractors, although the CVP is operationally integrated, each individual reservoir has unique and specific operational criteria that must also be met. With this initial allocation announcement, Reclamation is targeting districts that receive water directly from Folsom, New Melones and Millerton reservoirs given the large snow pack and unusually high projected runoff this spring and summer.
The remaining water service contractors can expect an initial contract allocation amount in mid-to-late March. As Reclamation continues to refine the water supply allocation for these contractors, Reclamation will take advantage of the current hydrology to ensure specific districts’ water needs are met to the maximum extent practicable. While this allocation approach is warranted now, in future years Reclamation will continue to strive to release initial allocations for all water users in February.
Specific to the South-of-Delta water service contractors, a substantial amount of CVP water is already in storage south of the Delta, and the Federal share of San Luis Reservoir will be full within the first week of March. Given the extraordinary large snow pack and very high river flows this year, much of the water currently in storage in the Federal share of San Luis Reservoir will be available for delivery to CVP water service contractors this spring and summer.
Reclamation currently estimates that at least 900 thousand acre-feet of water will be available for delivery to South-of-Delta water service contractors this year, and additional supplies will likely be available once seasonal operational forecasts are developed later in March. The 900 taf estimate represents the combined delivery of both 2017 CVP supplies and carryover supplies from last year. The exact amount of each type of supply is subject to hydrologic conditions this spring, and the overall allocation of water south of the Delta must be validated by the operational studies to be based on the March 1 snow surveys and runoff forecasts.
The California Department of Water Resources reports that as of Feb. 27, 2017, the statewide average snow water equivalent in the Sierra Nevada was 45 inches, as compared to 21 inches on Feb. 27, 2016. Precipitation is currently over 200 percent of the seasonal average to date for the Sierra Nevada for this point in the water year (beginning Oct. 1, 2016).
Reclamation determines the allocation of water for CVP contractors based upon many factors, including hydrologic conditions, reservoir storage levels, water quality requirements, water rights, contractual obligations and endangered species protection measures. After evaluating these factors, Reclamation is announcing the initial allocation to the following:
American River Division Contractors
Friant Division Contractors
Eastside Water Service Contractors
This initial allocation is based on a conservative estimate of the amount of water that will be available for delivery to these CVP water users and reflects current reservoir storages, precipitation, and snowpack in the Central Valley and Sierra Nevada. “We will continue to carefully monitor hydrologic conditions and collaborate with our stakeholders and partners to manage our water resources as effectively as possible,” said Arroyave.
The CVP began the 2017 water year last October with 4.9 million acre-feet of carryover storage in six key CVP reservoirs — Shasta, Trinity, Folsom, Millerton, New Melones and the Federal share of San Luis Reservoir. This is 82 percent of the 15-year average annual carryover and 2 million acre-feet more than the amount with which the Mid-Pacific Region began WY 2016 on Oct. 1, 2015.
As the water year progresses, changes in hydrology and opportunities to deliver additional water will influence future allocations. Water supply updates will be made as appropriate and posted at http://www.usbr.gov/mp/cvp-water/index.html .
For additional information, please contact the Public Affairs Office at 916-978-5100 (TTY 800-877-8339) or emailmppublicaffairs@usbr.gov.
February 17, 2017
TO: County Agricultural Commissioners of Butte, Colusa, Glenn, Merced, San Joaquin, Stanislaus, Sutter, Tehama, Yolo, Yuba Counties
SUBJECT: EMERGENCY APPLICATION OF FUNGICIDES TO ORCHARDS WITH STANDING WATER
County Agricultural Commissioners have notified the Department of Pesticide Regulation that there is a need for emergency aerial applications of fungicides to orchards with standing water because the unusual wet weather throughout the Sacramento Valley has made ground applications difficult, at best. Significant economic crop losses are expected if these applications are not made. Therefore, we are authorizing the emergency application of several fungicides to orchards with standing water only. This will be in effect until June 1, 2017.
The label must provide for use of the material on the intended crop. Products containing one or more of the following fungicide active ingredients may be applied to orchards with standing water: alumino tris (o-ethyl phosphonate), azoxystrobin, calcium polysulfide, captan, chlorothalonil, copper, copper oxychloride, copper hydroxide, cyprodinil, difenoconazole, iprodione, fenbuconazole, fenhexamid,fluopyram, mancozeb, metalaxyl, myclobutanil, propiconazole, pyrimethanil, tebuconazole, thiophanate-methyl, trifloxystrobin and the combination of boscalid and pyraclostrobin (trade name Pristine) and the combination of pyraclostrobin and fluxapyroxad (trade name Merivon). These labels contain precautionary statements that warn against application to water and indicate that drift or runoff may be hazardous to fish and other aquatic organisms. Applications shall not be made, that may cause state waterways to be contaminated.
The Department of Pesticide Regulation has notified the California Department of Fish and Wildlife and does not expect that these uses will result in adverse effects to fish and wildlife providing the following conditions are met:
1. Water must be standing and will not flow into state waterways where fish and wildlife are likely to be affected. Applications are not allowed if water is flowing off the intended application site.
2. Standing water will not be pumped from the orchard after the fungicide application. 3. Applications are made in accordance with all other label directions.
No fungicide application shall occur if:
1. Soil moisture is at field capacity and a storm event, forecasted by the National Oceanic and Atmospheric Administration (NOAA) or National Weather Service (NWS), is to occur within 48 hours following application; or
2. A storm event likely to produce runoff from the treated area is forecasted by NOAA/NWS to occur within 48 hours following the application.
Growers shall be responsible for determining which orchards meet the above criteria. The commissioner is to assure, insofar as possible, that the required conditions are met. To ensure standing water remains on site, DPR requests CAC staff conduct additional inspections to flooded orchards during this timeframe.
If you have any questions, please contact your Enforcement Branch Liaison assigned to your county.
Sincerely,
Original Signature Regina Sarracino for:
Donna Marciano
Branch Chief, Enforcement Branch 916-324-4100
cc: Ms. Stella McMillin, Department of Fish and Wildlife
Mr. George Farnsworth, DPR Associate Director
Mr. Joe Marade, DPR Agricultural Commissioner Liaison
Ms. Pamela Wofford, DPR Environmental Program Manager I Mr. Ken Everett, DPR Environmental Program Manager I
MARCH 7TH, 9TH & 15TH 9:00 -11:00 AM
Come join us to learn about the benefits cover crops can provide for your orchard!
This collaborative field day hosted by Project Apis m. and Kamprath Seeds will demonstrate how cover crops can improve soil health while improving the health and vitality of bees. Expert speakers from the grower and beekeeping community will be presenting information on:
Los Banos, Calif., (March 2, 2017) – (The following is a statement by Executive Director Jason Peltier of the San Luis & Delta-Mendota Water Authority on 2017 CVP Allocation Announcement)
“There are few words left to describe our reaction to this year’s unusual allocation announcement for South of Delta Central Valley Project water users. Some areas are receiving a 100 percent allocation while others in the immediate vicinity will have to wait weeks to find out what their 2017 water supply will be.
Federal fishery agencies have completely hijacked the water supply system that was built for the purpose of supplying water to farms and numerous communities, and have rendered it impossible for our partners at the US Bureau of Reclamation to operate it as intended.
“There are two months left in the rainy system and California reservoirs are already brim full and making flood releases. The state is on track for the wettest year on record. There is almost nowhere to store additional water and yet our federal partners have been unable to figure out how to share nature’s abundance between ever increasing environmental demands and the water users who are paying for the system.
“The delays and miniscule allocations that have plagued the system over the last 20 years have real consequences for people and the economy. We must return some sense of balance to the system. “