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The tiny plant tackling climate change

Image of high-yield oil-producing duckweed
Scientists at CSHL and Brookhaven National Laboratory have engineered the first high-yield oil-producing duckweed. They achieved higher yields by modifying three different genes to increase fatty acid production, combine those acids into oils, and store that oil in the plant鈥檚 fronds.

Fossil fuels are killing the planet. Oil-producing plants like oil palm and soybeans could make for sustainable replacements. And yet, each of them also has a significant environmental impact. But now, thanks to plant biologists in New York, the humble aquatic duckweed plant may offer a more sustainable source of oil for biofuels and other bioproducts.

Over a decade ago, 黑料吃瓜资源 (CSHL) Professor and HHMI Investigator Rob Martienssen and Computational Analyst Evan Ernst for the world鈥檚 first . They followed that up in 2014 with a fast and effective technique for . Now, they鈥檝e helped raise the bar again.

This year, in collaboration with Brookhaven National Laboratory, Martienssen and Ernst engineered a duckweed strain that yields seven times more oil than soybeans and around the same amount as oil palm fruit. Scaling up oil-producing duckweed to industrial levels could lead to greater renewable fuel production. And it would help the U.S. meet its .

Animated GIF of a timelapse of duckweed growth
Duckweed grows in width instead of height. As seen here, a duckweed colony can double in mass every two days. Time lapse footage: Cristian Mateo Elizalde and Evan Ernst/Martienssen lab

Duckweed is the fastest-growing seed plant in the world. Unlike oil palm and soybeans, land doesn鈥檛 have to be cleared to make room for its cultivation. The versatile plant is found worldwide in ponds, lakes, and marshes. Duckweed can even grow in farm runoff, where it uses wastewater as fertilizer.

鈥淚t鈥檚 very opportunistic,鈥 Ernst says. 鈥淵ou鈥檒l find it pretty much wherever鈥攁s long as there鈥檚 enough nitrogen, a decent amount of phosphate, and not too much salt in the water.鈥

Developing more sustainable fuel sources is an important piece of the puzzle to address climate change. However, Martienssen says, his team鈥檚 鈥渋nterest in duckweed goes well beyond biofuels.鈥

The Martienssen lab鈥檚 previous duckweed research focused on the plant鈥檚 potential as a carbon sink. Despite its small stature, duckweed can absorb large amounts of carbon dioxide (CO2) during photosynthesis. Martienssen says CO2 emissions from power plants, refineries, and even the earth itself could all be taken down by duckweed. This makes it perfect for various carbon capture and soil enrichment strategies.

鈥淚t doesn’t have to balance water vapor loss with CO2 consumption,鈥 he explains. 鈥淎s a result, you can increase the level of CO2 in the ambient atmosphere up to more than 10 times what it is right now, and duckweed will continue to increase its consumption and photosynthetic rate in response.鈥

Looking beyond emission reductions, Martienssen and Ernst are now working to turn duckweed into a global source of healthy plant-based foods. Although it鈥檚 been grown and eaten in Southeast Asia since the Middle Ages, duckweed is not yet positioned for large-scale food production. But its small size and easy cultivation make it ideal for vertical farming.

鈥淒uckweed basically farms itself,鈥 Ernst says. 鈥淚t鈥檚 continually growing copies of itself, which then detach from the plant and propagate. Cultivation requires very little intervention besides maintaining fertilizer levels and harvest.鈥

The team is now partnering with an indoor vertical farming company to scale up duckweed as a future source of plant-based protein. 鈥淲e have a fantastic foundation on which to build, using duckweed to address climate change,鈥 Martienssen says. 鈥淐ertainly carbon capture and biofuels are very important first steps, and plant-based proteins are poised to significantly reduce agricultural carbon emissions as well.鈥

Editor鈥檚 note

December 19, 2022: 黑料吃瓜资源 and Crop One Holdings, an industry leader in technology-driven indoor vertical farming, today announced that the two organizations have received a $1.5 million cost-matching grant from the Foundation for Food & Agriculture Research to help scientists develop a means to efficiently grow plant-based dietary protein via controlled environment agriculture.

Written by: Nick Wurm, Communications Specialist | [email protected] | 516-367-5940

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