<mets:mets OBJID="eprint_11600" LABEL="Eprints Item" xsi:schemaLocation="http://www.loc.gov/METS/ http://www.loc.gov/standards/mets/mets.xsd http://www.loc.gov/mods/v3 http://www.loc.gov/standards/mods/v3/mods-3-3.xsd" xmlns:mets="http://www.loc.gov/METS/" xmlns:mods="http://www.loc.gov/mods/v3" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"><mets:metsHdr CREATEDATE="2023-07-05T14:21:02Z"><mets:agent ROLE="CUSTODIAN" TYPE="ORGANIZATION"><mets:name>OAR@ICRISAT</mets:name></mets:agent></mets:metsHdr><mets:dmdSec ID="DMD_eprint_11600_mods"><mets:mdWrap MDTYPE="MODS"><mets:xmlData><mods:titleInfo><mods:title>Genome-wide transcriptome and physiological analyses provide new insights into peanut drought response mechanisms</mods:title></mods:titleInfo><mods:name type="personal"><mods:namePart type="given">S</mods:namePart><mods:namePart type="family">Bhogireddy</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">A</mods:namePart><mods:namePart type="family">Xavier</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">V</mods:namePart><mods:namePart type="family">Garg</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">N</mods:namePart><mods:namePart type="family">Layland</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">R</mods:namePart><mods:namePart type="family">Arias</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">P</mods:namePart><mods:namePart type="family">Payton</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">S N</mods:namePart><mods:namePart type="family">Nayak</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">M K</mods:namePart><mods:namePart type="family">Pandey</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">N</mods:namePart><mods:namePart type="family">Puppala</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">R K</mods:namePart><mods:namePart type="family">Varshney</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:abstract>Drought is one of the main constraints in peanut production in West Texas and eastern New Mexico&#13;
regions due to the depletion of groundwater. A multi-seasonal phenotypic analysis of 10 peanut&#13;
genotypes revealed C76-16 (C-76) and Valencia-C (Val-C) as the best and poor performers under deficit&#13;
irrigation (DI) in West Texas, respectively. In order to decipher transcriptome changes under DI, RNAseq&#13;
was performed in C-76 and Val-C. Approximately 369 million raw reads were generated from 12&#13;
different libraries of two genotypes subjected to fully irrigated (FI) and DI conditions, of which ~329&#13;
million (90.2%) filtered reads were mapped to the diploid ancestors of peanut. The transcriptome&#13;
analysis detected 4,508 differentially expressed genes (DEGs), 1554 genes encoding transcription&#13;
factors (TFs) and a total of 514 single nucleotide polymorphisms (SNPs) among the identified DEGs.&#13;
The comparative analysis between the two genotypes revealed higher and integral tolerance in C-76&#13;
through activation of key genes involved in ABA and sucrose metabolic pathways. Interestingly, one&#13;
SNP from the gene coding F-box protein (Araip.3WN1Q) and another SNP from gene coding for the lipid&#13;
transfer protein (Aradu.03ENG) showed polymorphism in selected contrasting genotypes. These SNPs&#13;
after further validation may be useful for performing early generation selection for selecting drought responsive&#13;
genotypes.</mods:abstract><mods:classification authority="lcc">Groundnut</mods:classification><mods:classification authority="lcc">Drought</mods:classification><mods:classification authority="lcc">Genetics and Genomics</mods:classification><mods:originInfo><mods:dateIssued encoding="iso8061">2020-03</mods:dateIssued></mods:originInfo><mods:originInfo><mods:publisher>Nature Research</mods:publisher></mods:originInfo><mods:genre>Article</mods:genre></mets:xmlData></mets:mdWrap></mets:dmdSec><mets:amdSec ID="TMD_eprint_11600"><mets:rightsMD ID="rights_eprint_11600_mods"><mets:mdWrap MDTYPE="MODS"><mets:xmlData><mods:useAndReproduction>
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