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Interdisciplinary delegation from the University of Duisburg-Essen explores collaborative opportunities with Lawrence Berkeley National Laboratory
… A two-day kick-off meeting held at Lawrence Berkeley National Laboratory … JGI Director Nigel Mouncey expressed enthusiasm about the potential of this collaboration stating, “We already … spectroscopic methods in conjunction with microfluidics into a powerful tool to address many of the research …
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The Power of One, Amplified
… A preview of how large-scale single cell genomics complements … microbes help regulate the planet’s nutrient cycles and are potentially of use in fields ranging from agriculture to … hot springs, including Dewar Creek. Continuing explorations into this unique environment, researchers from the …
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Creating an Energy Market for Miscanthus
… Miscanthus , an attractive addition to your garden and a potential fuel for the future. But, to be competitive in the …
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The fungus that made itself at home
… information from similar organisms, researchers have gained insights on why the dry rot ( Serpula lacrymans ) is so … plant mass for conversion to sustainable, alternative biofuels and bioproducts. This study lends insights on how the fungus has responded to manmade changes …
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An Addiction Crucial to a Fungus’ Reproduction
… A fungus relies on bacteria to regulate key components of its reproductive machinery The Science To better … and the impact this mutualistic interaction has on these potential large-scale biodiesel producing fungi. Summary In … host lipid metabolism. As these oil-producing fungi are potential sustainable sources of alternative fuels, so …
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JGI announces 2023 CSP Functional Genomics awardees
…   Each year, the JGI accepts proposals for state-of-the-art functional genomics research from potential users who need help translating genomic information into biological function. Through our CSP Functional …
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The Rhizosphere Responds: Rich Fen Peat and Root Microbial Ecology after Long-Term Water Table Manipulation
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Defining the eco-enzymological role of the fungal strain Coniochaeta sp. 2T2.1 in a tripartite lignocellulolytic microbial consortium
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Soil exchange rates of COS and CO18O differ with the diversity of microbial communities and their carbonic anhydrase enzymes
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Microbial Community Analyses Inform Geochemical Reaction Network Models for Predicting Pathways of Greenhouse Gas Production
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The Tale of a Neglected Energy Source: Elevated Hydrogen Exposure Affects both Microbial Diversity and Function in Soil
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Differential depth distribution of microbial function and putative symbionts through sediment-hosted aquifers in the deep terrestrial subsurface
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