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Eelgrass Proves to Be Much Younger Than We Thought
… able to spread quickly and establish itself in a variety of new environments.  This all started roughly 250,000 years … form of another species, so the scientists had to use the genome itself.   Approximately 67 million years ago, the … event, doubling all of its chromosomes.  Over time, the new and old chromosome copies begin to diverge and mutate …
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Nikos Kyrpides
Dr. Kyrpides joined the DOE Joint Genome Institute in 2004 to lead the Genome Biology Program and the development of the comparative analysis platforms for microbial genomes and metagenomes (IMG). He became the Metagenomics …
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Polar Phytoplankton Need Zinc to Cope with the Cold
… researchers at the U.S. Department of Energy (DOE) Joint Genome Institute (JGI), a DOE Office of Science User Facility located at … Berkeley National Laboratory (Berkeley Lab) through the JGI Community Science Program (CSP) .  Through this …
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Cultivating Symbiotic Antarctic Microbes
… and the biosphere), including the global carbon cycle. The JGI is sequencing large numbers of microbes and microbial … consequences of microbe-microbe interactions. Using metagenomes recovered directly from environmental samples and … , a team led by Rick Cavicchioli at the University of New South Wales along with researchers at the U.S. …
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A Community Resource for Secondary Metabolite Researchers
… over 1.3 million publicly available bacterial and archaeal genome and contig sources.  The Impact Secondary metabolites … The U.S. Department of Energy (DOE) Joint Genome Institute (JGI), a DOE Office of Science User Facility located at … from isolate and metagenome data.   The SMC ( smc.jgi.doe.gov ) is designed with two main objectives. First …
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From Sample Shipments to Sequences – A Tour of the JGI’s Sequencing Pipeline
Every year, the JGI sequences around 35,000 samples — from plants, algae, … the sequencing lab. So today, Chris Daum walks through the JGI’s sequencing pipeline, where there are freezers with …
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Obtaining genomes from uncultivated environmental microorganisms using FACS–based single-cell genomics
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Comparative genomics reveals a dynamic genome evolution in the ectomycorrhizal milk‐cap (Lactarius) mushrooms
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Comparative genomics reveals dynamic genome evolution in host specialist ectomycorrhizal fungi
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Comparative genomics of Coniophora olivacea reveals different patterns of genome expansion in Boletales
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Rediscovery by Whole Genome Sequencing: Classical Mutations and Genome Polymorphisms in Neurospora crassa
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Protocol for single-cell isolation and genome amplification of environmental microbial eukaryotes for genomic analysis
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