Results
… Marike Palmer and Brian Hedlund study organisms living in hot springs. Hear how their recent work revealed more about the …
Learn more
… The BioSANS instrument is at the Center for Structural Molecular Biology … the Environmental Molecular Sciences Laboratory hosted a webinar to showcase how researchers can gain access to the Biological Small-Angle Neutron Scattering … The U.S. Department of Energy Joint Genome Institute, a DOE Office of Science User Facility located at Lawrence …
Learn more
… we understood plants and how they adapt to their ever-changing environments better? We could unlock new innovations to drive more productive food, medicine, and bioenergy crops. But most available genomes are …
Learn more
… it wouldn’t exist without cyanobacteria; they began oxygenating Earth over two billion years ago. A team of researchers … Yellowstone National Park to study how cyanobacteria are living, communally, in microbial mats. Along the way, they’ve encountered …
Learn more
… and have two sets of chromosomes, one from each parent. In contrast, many crops have multiple sets of chromosomes … and maize, sugarcane can grow on nutrient-poorer soils and does not need to be planted annually. The modern sugarcane … the size of the human genome). As part of a proposal by the DOE’s Joint BioEnergy Institute (JBEI), the JGI was part of …
Learn more
… As waters warm due to climate change, corals are in mortal peril. But corals comprise multiple organisms: a … When warm waters stress corals, it might be their microbes, including their photosynthetic partner, that help them take the …
Learn more
… Dr. Grigoriev joined the JGI in 2003, following his postdoctoral training at UC Berkeley and work in the … to learn more about the program's areas of focus, major initiatives and more. … BA/MS in Biophysics, Moscow Engineering Physics Institute, Moscow, Russia PhD in Molecular …
Learn more
… Kelly Wrighton and her group at Colorado State University in Fort Collins have a massive undertaking: sequencing the world’s river microbiomes. And they’re …
Learn more
… and Tim Kostolansky of De La Salle High School expressed an interest in learning more about the principles of synthetic biology, Robert …
Learn more
… Despite their diminutive stature, “short plants” such as mosses could be uniquely powerful in helping scientists link plant genetic sequences to what they do. …
Learn more
… To engineer yeast to do more, and understand genomes in general, Jef Boeke, Weimin Zhang (NYU Langone Health) and Leslie Mitchell …
Learn more
… In our warming world, we’ll need corn, sorghum and other crops to grow well in worse conditions: with more heat, less water and less fertilizer. Grasses do better in these conditions, so plant biologists James Schable, …
Learn more

