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Genomic Analysis of Aspergillus Section Terrei Reveals a High Potential in Secondary Metabolite Production and Plant Biomass Degradation
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Lost in translation: What we have learned from attributes that do not translate from Arabidopsis to other plants
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Duplications and losses of genes encoding known elements of the stress defence system of the Aspergilli contribute to the evolution of these filamentous fungi but do not directly influence their environmental stress tolerance
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JGI Scientists Pen Genome Watch Articles
… Tanja Woyke and other JGI researchers made their debut writing for the Nature Reviews Microbiology column last year — … latest article, published January 27, is about engineering plants and their microbiomes for more sustainable … . “My experience putting the articles together and working with Andrea has been amazing,” says Woyke. “It’s a …
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Restoring wetlands on intensive agricultural lands modifies nitrogen cycling microbial communities and reduces N2O production potential
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Microbial communities and biogeochemical functioning across peatlands in the Athabasca Oil Sands region of Canada: Implications for reclamation and management
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Community‐Level Metabolic Shifts Following Land Use Change in the Amazon Rainforest Identified by a Supervised Machine Leaning Approach
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The fungus that made itself at home
… Retracing how the dry rot Serpula lacrymans adapted to a new … so destructive in houses. A study involving six brown rot fungi reveals the genomic changes Serpula lacrymans has … User Facility, compared the genomes of two strains of fungi Serpula lacrymans – var. lacrymans from Europe and …
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Genome Sequence of the Chestnut Blight Fungus Cryphonectria parasitica EP155: A Fundamental Resource for an Archetypical Invasive Plant Pathogen.
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High quality permanent draft genome sequence of Phaseolibacter flectens ATCC 12775T, a plant pathogen of French bean pods
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Fungal and plant gene expression in the Tulasnella calospora–Serapias vomeracea symbiosis provides clues about nitrogen pathways in orchid mycorrhizas
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A comparative genomics screen identifies a Sinorhizobium meliloti 1021 sodM-like gene strongly expressed within host plant nodules
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