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International Collaboration Sheds Light on Ocean Acidification’s Impact on Shellfish

April 10, 2019 — The following was released by NOAA Fisheries:

Emilien Pousse has been fascinated by the sea since learning to scuba dive with his father. He wasn’t always as keen on computer programming.

Yet here he is, a post-doctoral researcher from France, working to calibrate a computer model that describes the energy budgets of two commercially important shellfish – oysters and surfclams.

But first, he must know more about the consequences of ocean acidification on the metabolism and shell development of these creatures. He’s in the process of conducting those experiments with shellfish experts at the NEFSC Milford Lab.

Back in France, Emilien pursued his master’s degree with a math professor who required students to learn computer modeling skills. While some students enjoyed it, initially Emilien did not. Despite this, his internship advisor convinced him to apply for a Ph.D. project in the marine ecology doctoral program at Université de Bretagne Occidentale in Brest, France, though the project also involved modeling.

After conducting experiments for his dissertation, Emilien persevered in learning computer programming and discovered the dynamic energy budget theory on which his shellfish model is based.

“Little by little, I understood computer modeling,” Emilien says. When he began to see it as a tool to understand how oysters function, learning became easier. “I needed to learn some new skills to understand computer modeling, but it allowed me to learn more about the physiological processes of oysters and other marine animals,” Emilien reflected.

Oysters are a major industry in France. In 2012, a large bloom of Alexandrium minutum, a toxic algae known to cause paralytic shellfish poisoning, caused the oyster fishery in the Bay of Brest to close for several weeks during the summer and led to considerable economic disruption.

This algal bloom inspired Emilien’s doctoral work, which focused on modeling the accumulation of paralytic shellfish toxins in oysters. His dissertation was part of a multidisciplinary project, which engaged marine biologists, policy experts and researchers studying food safety.

While he was wrapping up his dissertation, a group of collaborators from the Milford Lab, led by lab director and shellfish expert Gary Wikfors, visited the university to conduct an experiment. The lab has a 25-year long (and counting) collaborative relationship with researchers in France. A colleague who had previously conducted research in Milford introduced Emilien to the group. Research chemist Shannon Meseck mentioned that she was looking for a post-doctoral researcher to work on a modeling project with shellfish, which was exactly the opportunity that Emilien had been looking for.

While driving home from that meeting, he weighed whether to apply for the job. The opportunity would mean moving thousands of miles away from home for two years. Ultimately, the excitement of coming to the United States and working with scientists in Milford won out. Emilien knew the project would allow him to grow as a researcher, flex his computer modeling skills, and expand his knowledge to understand the effects of ocean acidification. He was also excited to experience American culture and live close to New York City.

Although Emilien is currently studying the Eastern oyster, Crassostrea virginica, a native of the US East Coast, he admits his favorite oyster to eat is the European flat oyster, Ostrea edulis. No matter the species, he likes to eat oysters on the half shell, with a little bit of vinegar and shallots. Emilien hopes the results of his research will help shellfish growers plan and be resilient in the face of a changing ocean.

Story originally posted by NOAA Fisheries 

Lawmakers propose new funding to study Oregon’s warming ocean, threats to fishing industry

April 10, 2019 — The Pacific Ocean off Oregon has been ground zero for the impacts of climate change, beginning with a 2007 crisis in the state’s oyster industry.

Since then, acidification and hypoxia events off Oregon’s coast have been increasing, scientists say.

Now, state lawmakers are weighing a bill aimed at understanding and countering those impacts, which have the potential to decimate the state’s crab, shrimp, and shellfish industries.

Senate Bill 260 would allocate $1.9 million from the state general fund toward various projects to monitor and respond to a warming Pacific.

Read the full story at the Salem Statesman Journal

Inside Rhode Island’s Quahog Industry, A Shrinking Workforce

April 8, 2019 — “What I’m trying to do is I’m trying to get underneath all the shells and try to get to the quahogs,” says Dave Ghigliotti. He’s been a shellfisherman in Rhode Island for over 30 years. I went with him to dig for quahogs just off of Rocky Point State Park in Narragansett Bay.

There’s some debate over the name quahog. Some people use it to talk about the biggest clams. But basically all the hard shelled clams we eat here in Rhode Island are one species: the Northern Quahog. Other names you might have heard — like littlenecks, topnecks, cherrystones or chowder clams — describe the different sizes.

When Ghigliotti got into the business, there were about 2,000 licensed commercial quahoggers in the state. Now, the number is less than half that.

Some left the industry because the money isn’t great. Ghigliotti says clam prices have barely gone up since the ’80s. And, he adds, quahoggers have to compete for space on the bay with the growing number of oyster farms.

“That industry’s growing, so they’re always looking for space. And the problem is, once they lease a piece of real estate we can’t fish it anymore. We’re really pretty migratory. You see these guys here today, but once this place has had kind of its day, we move on to another place,” Ghigliorri says.

Read the full story at WBUR

Cooke Inc. Acquires All Seas Wholesale, Inc.

March 19, 2019 — The following was released by Cooke Inc:

Cooke Inc. (“Cooke”), a New Brunswick company and parent of Cooke Aquaculture Inc., has acquired All Seas Wholesale, Inc. of California, a distributor of up to forty species of fresh seafood, live shellfish, and frozen seafood products. The transaction was completed in mid-February of this year.

For 33 years, All Seas Wholesale, Inc. has been proudly servicing the San Francisco Bay area’s hotels, country clubs, airline & event caterers, upscale retail markets, and restaurants as a same day purveyor of the finest quality seafoods.

“Purchasing All Seas allows us to continue to strengthen our vertical integration and distribute our True North Seafood products to additional markets,” said Glenn Cooke, CEO of Cooke Inc. “All Seas prides itself on being able to receive an order early in the morning and have it delivered fresh to the customer to serve on their lunch menu that same day, and that fits very well with our drive for high standards in both top quality products and customer satisfaction.”

“We are thrilled to have joined the Cooke family of companies,” said Peggy Howse, General Manager, All Seas Wholesale. “Cooke is respected globally for delivering delicious, sustainable seafood products and now All Seas Wholesale will be taken to the next level serving customers.”

“95% of All Seas Wholesale employees have been with the company for over 10 years,” added Howse. “Our devoted professionals have united with the top seafood team dedicated to offering freshest seafood imaginable.”

The terms of the transaction have not been disclosed as both companies are private family-owned businesses.

Cooke Inc. is showcasing it’s fresh, sustainable True North Seafood Company branded products this week in Boston, MA, at Seafood Expo North America, in booths 1133 & 1233.

Read the full release here

Now we know how much global warming is reducing the world’s seafood harvest

March 14, 2019 — Among all the knotted problems in the global food supply, it’s hard to think of one that has received more focused attention than global fisheries and the challenges of overexploitation, ecological intricacy, regulatory responses, and failures.

And yet, after decades of international treaties and sustainability studies and harvest limits  — some of the latter volunteered by industry  — a majority of the world’s most important fishing stocks continue to decline.

Overfishing remains the key driver; other factors include pollution and habitat destruction. A typical status report will mention climate change, too, always as an afterthought, an emerging force whose impact cannot yet be calculated.

That changed at the end of February with publication in the journal Science of groundbreaking research that filtered out all other factors, then measured the influence of a warming ocean all on its own. Its unusual approach was to generate a “hindcast,” looking backward through nearly a century of data on seawater temperature and laying these against a standard measure of abundance for fish and shellfish  — maximum sustainable yield  — that has been in use since 1930.

Read the full story at MinnPost

ASMFC Seeks Proposals for Regional Pilot Projects in Support of Sustainable Aquaculture Proposals Due April 15, 2019

March 1, 2019 — The following was released by the Atlantic States Marine Fisheries Commission:

The Atlantic States Marine Fisheries Commission (Commission), in partnership with the National Oceanic and Atmospheric Administration (NOAA), is seeking proposals to develop regional pilot projects in support of sustainable aquaculture. Specifically, pilot programs should partner with industry to develop techniques and business models to grow domestic seafood production. A priority are projects that consider promising but less commercially developed technologies for species managed by the Commission or those species that contribute to healthy marine habitats, including finfish, shellfish and seaweed.

The NOAA Fisheries FY19 budget contains the “Regional Pilots in Sustainable Aquaculture” provision that authorizes the funding. In addition to this specific item, the budget also focuses renewed interest on maintaining and further developing existing aquaculture capabilities at NOAA Fisheries.

NOAA Fisheries, through the Commission, is making $525,000 available for the funding period of July 1, 2019 to June 30, 2020. Individual proposals should fall within a range from $50,000 to $200,000. Any investigator seeking support for this period must submit, as a single file, an electronic proposal by email no later than 5:00 p.m. EST on Monday, April 15, 2019. Awards and start dates for successful projects will be announced by May 20, 2019. Please see the Request for Proposals (RFP) for complete proposal details, qualifying requirements, and submission instructions. The RFP is available at http://www.asmfc.org/files/RFPs/ASMFCAquacultureRFP_March2019.pdf.

The Gulf and Pacific States Marine Fisheries Commissions have also issued similar RFPs seeking proposals relevant to their respective regions. For more information, please contact Dr. Louis Daniel at ldaniel@asmfc.org or 252.342.1478.

MAINE: New England fish forum kicks off with shellfish day

February 28, 2019 — New England’s largest fishing industry trade show is getting started with a focus on the region’s shellfish business.

Thursday is the first day of the 2019 Maine Fishermen’s Forum. The event runs through Saturday. Organizers say Thursday is the event’s “Shellfish Focus Day.”

The day will include seminars about outreach and education in the shellfish industry, as well as about shellfish science and management of shellfish species. The shellfish business is a major piece of the fishing industry in New England, where fishermen harvest scallops, softshell clams, quahogs are other valuable species from the Atlantic Ocean and coastal areas.

Read the full story from the Associated Press at The Washington Times

Could This Tool Save Washington’s Shellfish?

February 25, 2019 — SEAFOOD NEWS — Washington is home to thousands of marine species. Salmon, crabs and bivalve shellfish like oysters and clams fuel both the aquatic food chain and human fisheries — and they thrive under stable levels of acidity, salinity and other marine growing conditions.

But over the past few decades, climate change has acidified the world’s oceans at an unprecedented rate, threatening the biodiversity that defines our region and supports these fisheries. As the concentration of carbon dioxide in our atmosphere increases, the ocean dissolves more of it at the surface — producing conditions in Puget Sound and beyond that exacerbate shell deformation, promote toxic algal blooms and create other hurdles to healthy waters. According to the Washington State Blue Ribbon Panel on Ocean Acidification, 30 percent of Washington’s marine species are in danger from it.

Ultimately, stopping ocean acidification requires unprecedented international mobilization to reduce greenhouse gases. But if scientists and others could predict the complex undersea interactions that enable its worst effects, they could pull the trigger on short-term, local solutions that might help people and wildlife work around them. Researchers at the University of Washington have invented a computer model to do just that. Each day, LiveOcean compiles a vast array of ecosystemic data — currents, salinity, temperature, chemical concentrations, organic particles and more — to create a three-dimensional, 72-hour forecast for the undersea weather of the Pacific Northwest.

This is a particularly welcome tool for the state’s $270 million shellfish industry, which produces more farmed bivalves than the next two most productive states combined, according to the U.S. Department of Agriculture.

On the shores of Puget Sound, carbon emissions, excessive nutrient runoff and warming temperatures have made waters that used to be ideal for shellfish farming less dependable, resulting in catastrophic die-offs of oyster larvae in the late 2000s. According to the University of Washington’s Washington Ocean Acidification Center (WOAC), Willapa Bay hasn’t produced any natural oysters for the majority of the past decade, forcing shellfish farmers to purchase “seeds” from hatcheries.

“We know that the seawater chemistry conditions are different now than in the preindustrial era — we see pteropods with pitting and holes in their shells that are due to corrosive seawater conditions,” WOAC Co-Director Dr. Jan Newton said by email. “The CO2 increase is largely (~90%) due to emissions from fossil fuel combustion.”

But with help from LiveOcean, aquaculture has a shot at adapting farming schedules to the ebbs and flows of mercurial ocean chemistry before more permanent solutions are in place. The state-commissioned model is designed to forecast ocean-circulation patterns and underwater environmental conditions up to three days out. Eventually, it could help everyone in the region get a better understanding of how a changing climate impacts a major source of food, funds, fun and regional pride.

Designed by 10 researchers over the course of 15 years, LiveOcean is finally available to Pacific Northwest shellfish farmers (and the public at large) ahead of the 2019 spring oyster spawning season. LiveOcean was pursued in earnestafter Gov. Jay Inslee’s 2012 Blue Ribbon Panel on Ocean Acidification recommended the state “establish the ability to make short-term forecasts of corrosive conditions for application to shellfish hatcheries, growing areas and other areas of concern.” The panel created WOAC and allocated $325,000 toward LiveOcean, which is also funded by the National Science Foundation and the National Oceanic and Atmospheric Administration..

Understanding how water moves is essential to predicting where and when instances of high acidification will be most damaging to shellfish farms, beachgoers and more. The ocean always circulates: The currents scoop up surface water, pull it into the depths of the ocean, then dredge it upward in what LiveOcean lead researcher Parker MacCready calls “underwater rivers.” These cycles circulate water over the course of decades. When water “upwells” back to the surface, carrying nutrients and dissolved carbon dioxide, it’s been out of sight for 30 to 50 years. “It is the biggest thing controlling water properties in the Salish Sea,” MacCready says.

These days, the “river” is returning with more nutrients and carbon dioxide — reflections of increased fossil fuel use, agriculture and other human activities during the 1970s. Because we know atmospheric carbon dioxide has increased since then, scientists say we can expect to see even worse ocean acidification in the future. And the interaction between human fossil fuel output and agricultural runoff with Puget Sound’s natural geography can make things worse.

“Relative to other coastal regions, Puget Sound is somewhat different in its expression of acidification,” Newton says. “Warming can be intensified or prolonged due to Puget Sound’s retentive nature.”

A system as dynamic as Puget Sound needs dynamic monitoring, and that’s where LiveOcean comes in.

“[LiveOcean] models circulation — currents and mixing — and, at the same time, all the things that are moved with the currents: salt, heat, oxygen, nitrate, phytoplankton, zooplankton, detritus, and carbon variables like dissolved inorganic carbon [DIC, like CO2)] and alkalinity,” MacCready says. “You need to have a really big computer, and deep knowledge of many ocean processes — like physics, chemistry and biology.”

LiveOcean draws on lots of types of data. It sources real-time river-flow information from the U.S. Geological Survey and Environment Canada and three forecasts for conditions in rivers, the ocean and surface and atmosphere.

LiveOcean isn’t the only model for underwater forecasts in the Puget Sound and greater Salish Sea region, but it’s unique in significant ways. LiveOcean is the only one that publicly forecasts oxygen concentration (which decreases as acidity increases, putting animals at risk of hypoxia), pH (the primary measurement of acidity), and aragonite (the most important mineral used by oysters to build their shells, and which decreases with acidity). Acidicified water corrodes and sometimes dissolves protective shells, forcing shellfish to expend extra energy on basic life functions.

Equipped with this data, LiveOcean can be used to predict where acidified water will move throughout the coastal ocean, estuaries, the Salish Sea and ultimately 45 rivers. Shellfish growers can then ideally use that information to determine when and where they should release sensitive larvae, which spend their first few days of life developing shells and essential organs. To ensure shellfish larvae survive through their first two days of life, aquaculture managers release larvae during peak levels of photosynthesis and aragonite. When adults have to battle corrosion to keep growing, they’re not putting energy into reproducing.

“We are still working on the best way to get that to shellfish growers in a meaningful way. [Like how] some clever app developer distills all the terabytes of a weather simulation into a few useful sun and cloud icons on your phone,” MacCready says. “We are not there yet, but that is a key task for this spring.”

According to Bill Dewey, director of public affairs at Taylor Shellfish Co., shellfish hatcheries can account for the majority of acidic events by fixing water chemistry as it enters the hatcheries, making forecasts less essential to overall planning. They inject more basic (less acidic) mixtures into treatment systems, adjust pumping times, and add shell-building minerals to oyster environments.

“Where [forecasting] remains critical is for those in the industry who have what we refer to as remote setting stations,” Dewey says.

Setting stations — land-based tanks filled with mesh bags of oyster shells and heated seawater — are where oyster larvae start their lives. Operators place the free-swimming, hatchery-hatched larvae in the tanks, where they “set” by attaching themselves to discarded oyster shells and making them their own.

“They are vulnerable to all sorts of stresses as they make this difficult transition, including bad water chemistry,” he says. “These operations don’t typically have water chemistry monitoring and treatment capacity, to where LiveOcean predictions could help them ensure they are setting under optimal conditions.”

LiveOcean is also the only ocean model that forecasts for microscopic plantlike organisms called phytoplankton, which shellfish eat. Phytoplankon are the essential first link of most marine food chains: the more phytoplankton, the more organic matter in the ocean. However, this can lead to increases in algae blooms, which cover the ocean’s surface and limit oxygen and sunlight. When the blooms die, they create dead zones and add to the ocean’s mounting CO2 reserves.

While LiveOcean was developed with the shellfish industry in mind, its ability to predict water movement throughout Puget Sound makes it useful for other applications.

NOAA uses LiveOcean to track toxic algal blooms and make decisions about beach closures for coastal razor clam harvests.

LiveOcean’s forecasts also feed into tailored apps meant for tuna fishermen, boaters, beachgoers and more. It also models historical ocean events, which helps researchers make projections for how animals and substances travel through the ocean. Elizabeth Brasseale, a UW graduate student in oceanography, used LiveOcean to explore the origin of invasive green crabs that began infesting the West Coast in the late ’80s. Knowing where the crabs come from will inform attempts to eradicate them.

“Their range has been expanding, but in all that time they haven’t entered the Puget Sound,” Brasseale says. Using LiveOcean, she was able to see how the Salish Sea’s current patterns act like a force field keeping the invasive larvae out.

Some green crabs snuck into Puget Sound between 2014 and 2016, when an intermittent patch of warm water called “the Blob” appeared, mystifying oceanographers. Data from LiveOcean uncovered the conditions that allowed the infestation, and it can predict when and where it might happen again.

“By using LiveOcean as a backcast, we can see what the ocean was doing during those years that allowed the larvae to get in,” Brasseale says. “By using LiveOcean as a forecast, we can watch for recurrences of those ocean patterns and know if we’re going to be vulnerable to invasive larvae.”

LiveOcean’s potential for creating new and  extended applications is only just beginning to be explored.  Recently, parasitic burrowing shrimp have infested Pacific Northwest oyster farms. They’re usually held at bay by fresh water, and that got Dewey to thinking about how LiveOcean could investigate the problem.

“Some speculate that damming the Columbia has contributed to the proliferation of the shrimp, so there are no more floods and major freshwater events in the bays to kill the shrimp,” he says. “Perhaps with LiveOcean and knowledge of the shrimps’ life cycle, freshwater releases from the dams could be done to both benefit salmon and control shrimp.”

As more people apply the tool in different ways, a better picture of ocean dynamics will inform how humans adapt to it in the Pacific Northwest.

“[We’re developing] the ability to see seawater conditions and how they change in time and space. It is exciting that the applications are so numerous,” Newton says, noting oil spill tracking potential. “We gain very basic information on how Puget Sound functions. This tool opens doors to many new avenues of research and understanding.”

The following was released by SeafoodNews.com, a subscription site. It is reprinted with permission.

NORTH CAROLINA: Commercial Fishing Assistance Offered

February 25, 2019 –Some North Carolina commercial fishermen can receive financial help from the Hurricane Florence Commercial Fishing Assistance Program.

The state Division of Marine Fisheries was to mail packets last week to those that are eligible based on October and November landings. Packets are only being sent to those fishermen who had lower landings in October and/or November 2018 as compared to their average landings from the same months in the previous three years.

The second round of payments from the program, the state legislature appropriated $11.6 million to DMF to help commercial fishermen and shellfish harvesters who suffered income losses from harvest reductions due to Hurricane Florence.

Read the full story at the Coastal Review

Generations of Maine fishermen keep shuckin’ in the cold

February 22, 2019 — The salt water of Casco Bay is in Alex Todd’s blood.

“I can’t imagine doing anything else,” he said as he headed out off Chebeague Island with the sun just starting to peak above the horizon.

His boat, the Jacob & Joshua, named after his sons are out on these waters year-round.

Todd’s 17-year-old son Joshua was spending his February school vacation out on the boat fishing for scallops.

Joshua and sternman Levi Gloden pulled in shellfish in subzero temperatures as ice started to build up on the deck.

“It’s harder on them than it is on me,” Alex Todd said.

As the boat’s captain, Todd careful picks locations to drag the ocean floor for the prized shellfish, all from the comfort of the heated cabin where he sips his morning coffee.

“Every once in a while I’ll open the door and say, ‘Now do you think I should take a shirt off or? You know what I’m getting a little hot,’” Todd said. “I get a kick out of it but they don’t see the humor as much.”

That sense of humor is what keeps the crew going through the harsh winter months.

With every catch, Joshua and Levi alternate jobs, then sort and measure every shellfish by hand and throwing them in baskets.

Read the full story at News Center Maine

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