Title:
New Genomic Regions Identified for Resistance to Spot Blotch and Terminal Heat Stress in an Interspecific Population of Triticum aestivum and T. spelta

dc.contributor.authorSudhir Navathe
dc.contributor.authorAjeet Kumar Pandey
dc.contributor.authorSandeep Sharma
dc.contributor.authorRamesh Chand
dc.contributor.authorVinod Kumar Mishra
dc.contributor.authorDinesh Kumar
dc.contributor.authorSarika Jaiswal
dc.contributor.authorMir Asif Iquebal
dc.contributor.authorVelu Govindan
dc.contributor.authorArun Kumar Joshi
dc.contributor.authorPawan Kumar Singh
dc.date.accessioned2026-02-07T10:57:58Z
dc.date.issued2022
dc.description.abstractWheat is one of the most widely grown and consumed food crops in the world. Spot blotch and terminal heat stress are the two significant constraints mainly in the Indo–Gangetic plains of South Asia. The study was undertaken using 185 recombinant lines (RILs) derived from the interspecific hybridization of ‘Triticum aestivum (HUW234) × T. spelta (H+26)’ to reveal genomic regions associated with tolerance to combined stress to spot blotch and terminal heat. Different physiological (NDVI, canopy temperature, leaf chlorophyll) and grain traits (TGW, grain size) were observed under stressed (spot blotch, terminal heat) and non-stressed environments. The mean maturity duration of RILs under combined stress was reduced by 12 days, whereas the normalized difference vegetation index (NDVI) was 46.03%. Similarly, the grain size was depleted under combined stress by 32.23% and thousand kernel weight (TKW) by 27.56% due to spot blotch and terminal heat stress, respectively. The genetic analysis using 6734 SNP markers identified 37 significant loci for the area under the disease progress curve (AUDPC) and NDVI. The genome-wide functional annotation of the SNP markers revealed gene functions such as plant chitinases, NB-ARC and NBS-LRR, and the peroxidase superfamily Cytochrome P450 have a positive role in the resistance through a hypersensitive response. Zinc finger domains, cysteine protease coding gene, F-box protein, ubiquitin, and associated proteins, play a substantial role in the combined stress of spot blotch and terminal heat in bread wheat, according to genomic domains ascribed to them. The study also highlights T. speltoides as a source of resistance to spot blotch and terminal heat tolerance. © 2022 by the authors.
dc.identifier.doi10.3390/plants11212987
dc.identifier.issn22237747
dc.identifier.urihttps://doi.org/10.3390/plants11212987
dc.identifier.urihttps://dl.bhu.ac.in/bhuir/handle/123456789/40492
dc.publisherMDPI
dc.subjectBipolaris sorokiniana
dc.subjectIndo–Gangetic plain
dc.subjectresistance
dc.subjectterminal heat
dc.titleNew Genomic Regions Identified for Resistance to Spot Blotch and Terminal Heat Stress in an Interspecific Population of Triticum aestivum and T. spelta
dc.typePublication
dspace.entity.typeArticle

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