Complete replicate terabase metagenome (TmG.2.0) of grassland soil microbiome collections from KPBS field site in Manhattan, KS. Metagenome (unclassified soil sequencing) Data DOI Package, version 2.0.
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Complete replicate terabase metagenome (TmG.2.0) of grassland soil microbiome collections from COBS field site in Boone County, IA. Metagenome (unclassified soil sequencing) Data DOI Package, version 2.0.
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Complete replicate terabase metagenome (TmG.2.0) of grassland soil microbiome collections from IAREC field site in Prosser, WA. Metagenome (unclassified soil sequencing) Data DOI Package, version 2.0.
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Viral communities detected from three large grassland soil metagenomes with historically different precipitation moisture regimes.
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Pending Review Microbiomes contribute to multiple ecosystem services by transforming organic matter in soil. Extreme shifts in the environment, such as drying-rewetting cycles during drought, can impact microbial metabolism of organic matter by altering their physiology and function. These...
The rhizosphere represents a dynamic and complex interface between plant hosts and the microbial community found in the surrounding soil. While it is recognized that manipulating the rhizosphere has the potential to improve plant fitness and health, engineering the rhizosphere microbiome through...
Agriculture is the largest source of greenhouse gases (GHG) production. Conversion of nitrogen fertilizers into more reduced forms by microbes through a process known as biological nitrification drives GHG production, enhances proliferation of toxic algal blooms, and increases cost of crop...
A major challenge in biotechnology and biomanufacturing is the identification of a set of biomarkers for perturbations and metabolites of interest. Here, we develop a data-driven, transcriptome-wide approach to rank perturbation-inducible genes from time-series RNA sequencing data for the discovery...
Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson Influenza A Virus Experiment IM102 The purpose of this experiment was to evaluate the mouse host response to Influenza A virus (subtype H7N9) wild-type strain Influenza A/Anhui/1/2013 (AH1-WT) virus and mutants NS1-103F/106M (AH1-F/M) and...
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Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson Influenza A Virus Experiment IM103 The purpose of this experiment was to evaluate the host response to Influenza A virus (subtype H5N1) wild-type strain Influenza A/Vietnam/1203/2004 (VN1203) virus, mutant VN1203-NS1trunc124, and mock...
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Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson West Nile Virus Experiment WCB001 The purpose of this experiment was to evaluate the host response to West Nile virus (strain WNV-NY99) wild-type clone 382 and mutant 382-E218A 2 nt virus infection. Sample data was obtained from mouse (strain...
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Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson West Nile Virus Experiment WCT001 The purpose of this experiment was to evaluate the host responseto West Nile virus (WNV-NY99) wild-type (strain 382) and mutant 382-E218A 2 nt virus infection. Sample data was obtained from mouse (strain C57BL...
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Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson Influenza A Virus Experiment IM101 The purpose of this experiment was to evaluate the host mouse response to Influenza A virus (subtype H5N1) wild-type strain Influenza A/Vietnam/1203/2004, Influenza A/Vietnam/1203/2004 mutant strains PB2-627E...
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Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson MERS-CoV Experiment MM001 The purpose of this experiment was to evaluate the host response to wild-type MERS-CoV virus infection. Sample data was obtained from primary mouse (strain C57BL/6J) whole lung for mRNA, proteomics, metabolomics, and...
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Last updated on 2024-02-11T22:41:43+00:00 by LN Anderson West Nile Virus Experiment WDC011 The purpose of this experiment was to evaluate the host response to West Nile virus (strain WNV-NY99) wild-type clone 382 and mutant 382-E218A virus infection. Sample data was obtained from primary mouse...