Study of diversity in thermo-tolerant advanced lines of Wheat (Triticum aestivum L.) for Morpho-physiological, Yield and its Contributing Traits

R. Aggarwal, S. Marker, Ankit Phansal
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Abstract

The present study was carried out to examine the genetic diversity among 151 thermo-tolerant advanced breeding lines of wheat for two experimental years during Rabi 2017-18 and 2018-19. The data were recorded in both the seasons for total 23 traits i.e. 18 quantitative characters to study variability, heritability, genetic advance and genetic divergence and 5 morphological characters. ANOVA showed significant differences for all the characters except flag leaf width, in both experimental seasons and for gluten content in season Rabi 2018-19 indicating the presence of a substantial amount of genetic variability which thus revealed different genetic backgrounds of genotypes. High estimates of both GCV and PCV were observed for biological yield in both experimental years. High heritability with high genetic advance was recorded for all quantitative characters except flag leaf width and gluten content indicating the predominance of additive gene effects and hence the possibilities of effective selection for the improvement of these traits. D 2 analysis grouped these lines into 10 clusters in which cluster VII was biggest cluster with 26 lines. Further diversity analysis revealed that cluster IV and VII followed by Cluster VI and Cluster VII were most divergent from each other, and the genotypes present in them may be used as parents for further hybridization program to develop desirable heat type in wheat. Analysis of 5 morphological characters i.e. leaf type, rachis colour, leaf shape, waxiness and stay green habit, depicted that HUW-213 x NW-1076 followed by HALNA x RAJ-4037 were found above average yielders and terminal heat tolerant primarily due to their semi-erect leaf type, green rachis color, broad leaf shape, stay green habit and less days to maturity as compared to checks.
小麦(Triticum aestivum L.)耐热高级系形态生理、产量及其贡献性状多样性的研究
本研究采用拉比2017-18和2018-19两个试验年,对151个小麦耐热高级选育品系的遗传多样性进行了研究。在两个季节记录了23个性状(18个数量性状)和5个形态性状的资料,研究变异率、遗传力、遗传进阶和遗传分化。方差分析显示,除旗叶宽度外,两个试验季节的所有性状和拉比2018-19季节的面筋含量均存在显著差异,表明存在大量的遗传变异,从而揭示了基因型的不同遗传背景。在两个实验年份中,GCV和PCV的生物产量估计值都很高。除旗叶宽度和面筋含量外,其余数量性状均表现出高遗传力和高遗传进阶性,说明加性基因效应占主导地位,为这些性状的改良提供了有效选择的可能性。d2分析将这些株系分为10个聚类,其中聚类VII最大,有26个株系。进一步的多样性分析表明,聚类IV和VII之间的差异最大,其次是聚类VI和聚类VII之间的差异最大,这些聚类中存在的基因型可以作为亲本进行进一步的杂交计划,以培育小麦理想的热型。对叶型、轴色、叶形、蜡度、留绿习性5个形态性状的分析表明,HUW-213 × NW-1076继之以HALNA × RAJ-4037,其叶型半直立、轴色绿、叶形宽、留绿习性和成熟期较短,是高于平均产量和末端耐热性的品种。
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