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Genome Insider

Stories where genes and genomes are key to solving energy and environmental challenges. Hear diverse voices in science talk about their JGI-supported research to better understand — and harness — the superpowers encoded in plants, fungi, microalgae, environmental viruses, and bacteria to contribute to a more sustainable world.

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A Spectrum of Sorghum

This year, the JGI helped a collaborative team produce a pangenome for Sorghum bicolor — a collection of many, many sorghum genome sequences. Lined up and analyzed consistently, these data let researchers compare and learn from a range of different versions of this plant. This opens the door to growing sorghum — and other crops — to more effectively produce biofuels and bioproducts. In the…

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The Mobilome in the Mire

For years, researchers have known that many datasets miss a key part of microbial genomes: the mobile genetic elements, or MGEs, that can move between organisms. But now, deep sequencing and new analysis methods are bringing this mobilome into light, and opening up new options for engineering these microbes in the future. Join Sarah Bagby (Case Western Reserve University) and Simon Roux (JGI) as…

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SIPs with Standards

Stable Isotope Probing (SIP) is a powerful technique for studying microbial communities. These experiments can show which microbes are handling specific nutrients, or what they're doing with those nutrients, and even how quickly. But there's a catch: SIP labwork and analysis can be very demanding. The JGI offers SIP analysis to make these experiments accessible to more researchers. Ultimately, the…

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Adopt-A-Genome

In this episode, undergraduates adopt genomes that the JGI sequenced, but never published in the literature. These students analyze the genomes, write reports, and publish first-author papers, making the data available for future research. Hear from Rekha Seshadri (JGI) and Matt Escobar (California State San Marcos) about how the Adopt-A-Genome project got started. Plus, Kalyani Maitra (California…

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Gotta Catch 'Em Gall

Kasey Markel and Patrick Shih (UC Berkeley and the Joint BioEnergy Institute) are looking for new ways to engineer plants. So they’ve looked into wasps that program oak trees to grow structures called galls. In this episode, hear from Kasey and Patrick about how this project unfolded, and how they worked with the JGI's metabolomics program to find out more about these weird little pods. Links from…

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A Redesign for Yeast’s Genome, Chromosome by Chromosome - Jef Boeke, Weimin Zhang & Leslie Mitchell

To engineer yeast to do more, and understand genomes in general, Jef Boeke, Weimin Zhang (NYU Langone Health) and Leslie Mitchell (Neochromosome) have worked to replace yeast’s native chromosomes with synthetic versions. This project has turned out to be an international collaboration, with some artistic endeavors along the way. Eventually, the goal is to create an entirely human-generated yeast…

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Forest Fungi, Seagrass, and a New View of Symbiosis

Three stories of JGI-supported research, connected to nutrient cycles. Francis Martin and Lucas Auer discuss their work on communities of forest floor fungi. Allison Joy looks into seagrass meadows' carbon sequestration with insights from Adam Healey and Xiao Ma. And Karen Serrano and Benjamin Cole explain their research on the symbiotic relationship between mycorrhizal fungi and plant roots.…

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What Happens To a Rainforest When You Dial Up Drought? - Linnea Honeker and Malak Tfaily

Rainforests store a big fraction of all the carbon on Earth, and soil microbes play a key role in pulling that carbon out of the atmosphere. This episode, researchers take a look at what happens to that storage when a rainforest hits a drought. Tag along with their experiments in a fully enclosed, human-made ecosystem: Biosphere 2. Links from this episode: Submit your own proposal to work with the…

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The Megadata of Lake Mendota - Part 3: Boating Out to David Buoy

This is the third and final episode of our series on a giant metagenome assembly from Wisconsin’s Lake Mendota. In the last two episodes, we’ve covered the specialized software and supercomputers behind this project. But every part of this project depends on lakewater samples — so this episode is a look at how researchers get these specialized snapshots of a freshwater ecosystem. Links from this…

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The Megadata of Lake Mendota - Part 2: Souped Up Computing

This series is the story of a giant metagenome assembly from Wisconsin’s Lake Mendota. In this episode: a look at the supercomputing that stitches together large datasets with the assembler program MetaHipMer2. Oak Ridge National Lab is home to two supercomputers — Summit and Frontier — that process terabytes of data with MetaHipMer2. And the National Energy Research Scientific Computing (NERSC)…

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