Genetic Analysis of Drought Tolerance in Minicore Collection and Segregating Populations of Groundnut Arachis hypogaea L
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Abstract
An investigation on genetic analysis of drought tolerance in ICRISAT minicore
newlinecollection and recombinants of groundnut was undertaken during summer 2017-18 to
newlinesummer 2019-20 at MARS, UAS, Dharwad. Significant genetic variation was observed
newlinein minicore collections study as evidenced by wider range and moderate to high PCV
newlineand GCV for most of the quantitative, root, oil quality traits studied. High heritability
newlineand GAM were recorded for all root traits studied and for most of the quantitative traits
newlineand oil quality traits. For drought component traits like RWC, SPAD chlorophyll
newlinemeter reading (SCMR), membrane stability index (MSI), stomata frequency (SF), SLA,
newlineSLW, photosynthetic rate, stomata conductance and transpiration rate that had low to
newlinemoderate PCV, GCV with high heritability with moderate to high GAM.
newlineCorrelation analysis during the two seasons indicated that high RWC at pegging
newlineand pod development stage, high SCMR, low SLA, increased root length, root volume,
newlineMSI at all stages studied, SF 60 DAS, photosynthetic rate at 60 DAS, stomata
newlineconductance at 60 DAS, transpiration rate at 60 DAS had contributed for high drought
newlinetolerance index for maintenance pod yield under stress condition. Further, the ability of
newlinegenotype to maintain physiological traits and yield components could aid groundnut
newlinegenotypes in sustaining high pod yield under stress conditions. The reduction in mean
newlineperformance of genotypes under moisture stress condition was observed. However,
newlinehigher SCMR, RWC, SLA, SF, root length were noted in some of the genotypes viz.
newlineICG-3343, ICG-2773, ICG-11855, ICG-3421 and ICG-11219. Superior recombinants
newlineidentified for high pod yield with high oleic acid under water stress conditions were viz.,
newlineDh-256×Dh-245-5-1, Dh-256×ICGV-02266-10-1 and Dh-257×ICGV-02266-35-1.
newlineSingle marker analysis in selected lines revealed association of SSR marker TC6E01
newlinewith pod yield under moisture stress conditions and TC5A06 with SCMR under
newlinemoisture stress conditions.