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  2. Agricultural Education A1
  3. ICAR-Indian Agricultural Statistics Research Institute B7
  4. AEdu-IASRI-Publication
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Please use this identifier to cite or link to this item: http://krishi.icar.gov.in/jspui/handle/123456789/44551
Title: Harnessing Next Generation Sequencing in Climate Change: RNA-Seq Analysis of Heat Stress-Responsive Genes in Wheat (Triticumaestivum L.)
Other Titles: Not Available
Authors: Ranjeet R. Kumar
Suneha Goswami
Sushil K. Sharma
Yugal K. Kala
Gyanendra K. Rai
Dwijesh Chandra Mishra
Monendra Grover
Gyanendra P. Singh
Himanshu Pathak
Anil Rai
Viswanathan Chinnusamy
Raj D. Rai
ICAR Data Use Licennce: http://krishi.icar.gov.in/PDF/ICAR_Data_Use_Licence.pdf
Author's Affiliated institute: ICAR::Indian Agricultural Research Institute
Sher-e-Kashmir University of Agricultural Sciences and Technology
ICAR::Indian Agricultural Statistics Research Institute
Published/ Complete Date: 2015-10-01
Project Code: Not Available
Keywords: Heat-responsive transcripts
Wheat
Illumina HiSeq
Publisher: Not Available
Citation: Not Available
Series/Report no.: Not Available;
Abstract/Description: Wheat is a staple food worldwide and provides 40% of the calories in the diet. Climate change and global warming pose a threat to wheat production, however, and demand a deeper understanding of how heat stress might impact wheat production and wheat biology. However, it is difficult to identify novel heat stress associated genes when the genomic information is not available. Wheat has a very large and complex genome that is about 37 times the size of the rice genome. The present study sequenced the whole transcriptome of the wheat cv. HD2329 at the flowering stage, under control (22 – 3C) and heat stress (42C, 2 h) conditions using Illumina HiSeq and Roche GS-FLX 454 platforms. We assembled more than 26.3 and 25.6 million high-quality reads from the control and HS-treated tissues transcriptome sequences respectively. About 76,556 (control) and 54,033 (HS-treated) contigs were assembled and annotated de novo using different assemblers and a total of 21,529 unigenes were obtained. Gene expression profile showed significant differential expression of 1525transcripts under heat stress, of which 27 transcripts showed very high (>10) fold upregulation. Cellular processes such as metabolic processes, protein phosphorylation, oxidations-reductions, among others were highly influenced by heat stress. In summary, these observations significantly enrich the transcript dataset of wheat available on public domain and show a de novo approach to discover the heat-responsive transcripts of wheat, which can accelerate the progress of wheat stress-genomics as well as the course of wheat breeding programs in the era of climate change.
Description: Not Available
ISSN: Not Available
Type(s) of content: Research Paper
Sponsors: Not Available
Language: English
Name of Journal: Omics- A Journal of Integrative Biology
Volume No.: 19(10)
Page Number: 632–647
Name of the Division/Regional Station: Not Available
Source, DOI or any other URL: 10.1089/omi.2015.0097
URI: http://krishi.icar.gov.in/jspui/handle/123456789/44551
Appears in Collections:AEdu-IASRI-Publication

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