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Temporal dynamics in a red alga dominated geothermal feature in Yellowstone National Park
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Cultivating Symbiotic Antarctic Microbes
… cells, the first member of the Archaea isolated from Deep Lake, the coldest place on Earth known to support life, …
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Innovative Technology Improves Our Understanding of Bacterial Cell Signaling
… external illumination, making them difficult to use inside deep tissues. Additionally, all plants, many bacterial …
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JGI@25: Studying Sorghum’s Survival Skills
… aligning it with over 50 other diverse sorghum genomes. Deep sequencing and genetic linkage analysis improve the …
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Nikos Kyrpides
… Pavlopoulos GA et al. (2023) Unraveling the functional dark matter through global metagenomics. Nature . … Microbiomes in Transition (MinT), PNNL; EarthCube Oceanography & Geobiology Environmental Omics (ECOGEO) RCN, …
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Hot springs viruses at Yellowstone National Park have ancient origins and are adapted to thermophilic hosts
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How to Submit Sequencing Samples
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Taking Stock of the Known and Unknown Microbial Space
… to curate and cultivate what is still unknown.  “We took a deep dive into over 1.8 million bacterial and archaeal …
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Geoarchaeota: a new candidate phylum in the Archaea from high-temperature acidic iron mats in Yellowstone National Park
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Metagenomes and Metagenome-Assembled Genomes from Substrate-Amended Hot Spring Sediment Incubations from Yellowstone National Park
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Genome sequence of the acid-tolerant Burkholderia sp. strain WSM2232 from Karijini National Park, Australia
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Genome sequence of the acid-tolerant Burkholderia sp. strain WSM2230 from Karijini National Park, Australia
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