An integrated metagenomic, metabolomic and transcriptomic survey of Populus across genotypes and environments

Author:

Schadt ChristopherORCID,Martin Stanton,Carrell Alyssa,Fortner Allison,Hopp DanORCID,Jacobson DanORCID,Klingeman DawnORCID,Kristy Brandon,Phillips Jana,Piatkowski BryanORCID,Miller Mark A.,Smith MontanaORCID,Patil Sujay,Flynn Mark,Canon ShaneORCID,Clum Alicia,Mungall Christopher J.,Pennacchio ChristaORCID,Bowen Benjamin,Louie Katherine,Northen TrentORCID,Eloe-Fadrosh Emiley A.ORCID,Mayes Melanie A.,Muchero Wellington,Weston David J.ORCID,Mitchell Julie,Doktycz MitchelORCID

Abstract

AbstractBridging molecular information to ecosystem-level processes would provide the capacity to understand system vulnerability and, potentially, a means for assessing ecosystem health. Here, we present an integrated dataset containing environmental and metagenomic information from plant-associated microbial communities, plant transcriptomics, plant and soil metabolomics, and soil chemistry and activity characterization measurements derived from the model tree species Populus trichocarpa. Soil, rhizosphere, root endosphere, and leaf samples were collected from 27 different P. trichocarpa genotypes grown in two different environments leading to an integrated dataset of 318 metagenomes, 98 plant transcriptomes, and 314 metabolomic profiles that are supported by diverse soil measurements. This expansive dataset will provide insights into causal linkages that relate genomic features and molecular level events to system-level properties and their environmental influences.

Funder

DOE | SC | Biological and Environmental Research

Publisher

Springer Science and Business Media LLC

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