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Assessing genetic variation for heat stress tolerance in Indian bread wheat genotypes using morpho-physiological traits and molecular markers

机译:使用静脉生理性状和分子标记评估印度面包小麦基因型中热应激耐受性遗传变异

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Heat stress greatly limits the productivity of wheat in many regions. Knowledge on the degree of genetic diversity of wheat varieties along with their selective traits will facilitate the development of high yielding, stress-tolerant wheat cultivar. The objective of this study were to determine genetic variation in morpho-physiological traits associated with heat tolerance in 30 diverse wheat genotypes and to examine genetic diversity and relationship among the genotypes varying heat tolerance using molecular markers. Phenotypic data of 15 traits were evaluated for heat tolerance under non-stress and stress conditions for two consecutive years. A positive and significant correlation among cell membrane stability, canopy temperature depression, biomass, susceptibility index and grain yield was shown. Genetic diversity assessed by 41 polymorphic simple sequence repeat (SSR) markers was compared with diversity evaluated for 15 phenotypic traits averaged over stress and non-stress field conditions. The mean polymorphic information content for SSR value was 0.38 with range of 0.12-0.75. Based on morpho-physiological traits and genotypic data, three groups were obtained based on their tolerance (HHT, MHT and LHT) levels. Analysis of molecular variance explained 91.7% of the total variation could be due to variance within the heat tolerance genotypes. Genetic diversity among HHT was higher than LHT genotypes and HHT genotypes were distributed among all cluster implied that genetic basis of heat tolerance in these genotypes was different thereby enabling the wheat breeders to combine these diverse sources of genetic variation to improve heat tolerance in wheat breeding programme.
机译:热应力极大地限制了许多地区的小麦的生产率。关于小麦品种遗传多样性以及选择性特征的知识将促进高产,耐胁迫小麦品种的发展。本研究的目的是确定与30种不同的小麦基因型中耐热性相关的静脉生理性状的遗传变异,并在使用分子标记物改变耐热性的基因型之间的遗传多样性和关系。在连续两年内评估15个特征的15个特征的表型数据。显示了细胞膜稳定性,冠层温度抑制,生物质,敏感性指数和谷物产量的正显着相关性。通过41多态简单序列重复(SSR)标记评估的遗传多样性与在平均压力和非应力场条件下平均的15个表型性状评估的多样性。 SSR值的平均多态信息含量为0.38,范围为0.12-0.75。基于均相生理性状和基因型数据,基于其耐受性(HHT,MHT和LHT)水平获得三组。分子方差分析解释了91.7%的总变化可能是由于耐热性基因型内的方差。 HHT之间的遗传多样性高于LHT基因型和HHT基因型在所有群体中分布,暗示这些基因型中的耐热性的遗传基础是不同的,从而使小麦育种者能够结合这些不同的遗传变异来源,以改善小麦养殖计划中的耐热性。 。

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