Assessing Genetic Variability in Wheat (Triticum aestivum L.) Under Timely and Late Sown Conditions for Tolerance Towards Terminal Heat Stress

Uttej Karla, V. K. Choudhary, Satish Kumar Singh, S. Vignesh, Anvesh Ellandula
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Abstract

A field experiment was conducted at wheat experimental farm, Post Graduate College of Agriculture, DRPCAU, Pusa, Bihar to quantify the genetic variability among twenty-nine wheat genotypes under timely and late sowing conditions for tolerance towards terminal heat stress during rabi 2020–2021.  The trial was performed in three replications using Randomized Block Design. The study included estimates of genetic variability parameters such as mean, range, phenotypic coefficient of variability, genotypic coefficient of variability, broad-sense heritability, and genetic advance over % of mean. The ANOVA estimations showed that there’s considerable variation across genotypes for all twelve traits investigated across both environments. Traits like grains spike-1 and harvest index displayed considerable genotypic and phenotypic variances across both environments indicating the relevance of these traits in stress conditions. Tillers plant-1 and grain yield plant-1 displayed high genotypic and phenotypic coefficient of variation in timely and late conditions respectively. High heritability reported for traits like days to 50% flowering, canopy temperature, harvest index, grain yield plant-1, tillers plant-1, thousand grain weight and grains spike-1 in both conditions. Under both conditions, tillers plant-1, grains spike-1, harvest index and grain yield plant-1 reported strong heritability along with high genetic advance over % of mean. As a result, direct selection may be made using these features for further genotype improvement under stress conditions for improved heat tolerance.
评估小麦(Triticum aestivum L.)在适时播种和晚播条件下耐受终期热胁迫的遗传变异性
在比哈尔邦普萨的 DRPCAU 农业研究生院小麦试验农场进行了一项田间试验,以量化 2020-2021 年雨季期间 29 个小麦基因型在适时播种和晚播条件下对终期热胁迫耐受性的遗传变异。 试验采用随机区组设计,三次重复。研究包括对遗传变异参数的估计,如平均值、范围、表型变异系数、基因型变异系数、广义遗传率和平均值百分比的遗传进展。方差分析估计结果表明,在两种环境下调查的所有 12 个性状中,不同基因型之间存在相当大的差异。谷粒穗数-1 和收获指数等性状在两种环境下都显示出相当大的基因型和表型变异,表明这些性状在胁迫条件下的相关性。在适期和晚期条件下,单株穗数-1 和单株谷粒产量分别显示出较高的基因型和表型变异系数。在两种条件下,50%开花天数、冠层温度、收获指数、单株谷粒产量-1、单株分蘖产量-1、千粒重和单株穗粒数等性状的遗传率都很高。在这两种条件下,分蘖株数-1、谷粒穗数-1、收获指数和谷粒产量株数-1的遗传率都很高,且遗传进展超过平均值的百分比。因此,在胁迫条件下,可利用这些特征进行直接选择,进一步改良基因型,提高耐热性。
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