Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

Dataset Information

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High resolution survey of drought, high salinity, heat and cold stress-induced transcriptome of bioenergy feedstock model plant western poplar (Populus trichocarpa) accession Nisqually-1


ABSTRACT: Abiotic stress is a major factor affecting the growth, development, yield and quality in plants including the important biomass yield such as in a bioenergy feedstock crops. In a first of its kind, RNA-seq based high resolution survey of abiotic stress-induced transcriptome of bioenergy feedstock model plant western poplar (Populus trichocarpa accesion Nisqually-1) was carried out by way of 81 libraries made from total RNA isolated from three tissues, mature vascular leaf, stem xylem and root sampled from plants subjected to untreated control and treated with four individual stress treatments cold, heat, drought and high salinity. For every tissue and treatment type including controls, three individual plants were used per treatment as biological replicates. This research project is supported by the DOE Office of Science, Office of Biological and Environmental Research (BER), USA, grant no. DE-SC0008570

INSTRUMENT(S): Illumina HiSeq 2000

ORGANISM(S): Populus trichocarpa

SUBMITTER: Pankaj Jaiswal 

PROVIDER: E-MTAB-5540 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Abiotic Stresses Modulate Landscape of Poplar Transcriptome via Alternative Splicing, Differential Intron Retention, and Isoform Ratio Switching.

Filichkin Sergei A SA   Hamilton Michael M   Dharmawardhana Palitha D PD   Singh Sunil K SK   Sullivan Christopher C   Ben-Hur Asa A   Reddy Anireddy S N ASN   Jaiswal Pankaj P  

Frontiers in plant science 20180212


Abiotic stresses affect plant physiology, development, growth, and alter pre-mRNA splicing. Western poplar is a model woody tree and a potential bioenergy feedstock. To investigate the extent of stress-regulated alternative splicing (AS), we conducted an in-depth survey of leaf, root, and stem xylem transcriptomes under drought, salt, or temperature stress. Analysis of approximately one billion of genome-aligned RNA-Seq reads from tissue- or stress-specific libraries revealed over fifteen millio  ...[more]

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