Evaluation of Genetic Variability of Bread Wheat Genotypes under Normal Irrigation and Water Stress Conditions Using Multivariate Analysis

Y. Salama, Khamis I. Saad
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Abstract

The data collected were used to study the genetic diversity in 24 bread wheat genotypes originating from genotypes (22) from Bahteem Gene Bank, Genetic Resources Research Department, Agricultural Research Center, Giza, Egypt, and two check varieties (Sakha 94 and Giza 168). An experiment arranged on a randomized complete block design with three replications was performed in normal irrigation and drought stress conditions. Variance analysis indicated highly significant differences among the genotypes in all traits. Also, there is considerable variability among genotypes in all traits. The presence of genetic diversity among genotypes was recorded in our study. Percent decrease due to drought stress was a positive value for all traits, except chlorophyll content. Broad sense heritability values were very high under normal irrigation for days to heading, days to anthesis, days to maturity and grain yield per faddan. In both conditions, spike per m had direct positive effects with 0.487 and 0.363 while days to heading showed more negative effects with (-0.408) and (-0.562) respectively. The cluster analysis divided the genotypes into five groups under different (normal or stress) conditions, genetic divergence has been found related to several genetic and non-genetic conditions like the extent of genotype x environment interaction and components of genetic variation. Accordingly, results give a good chance to achieve genotypic improvement of wheat through the hybridization among genotypes taken from different clusters .where, genotypes 14, 2, 11, 23, 17 and 20 had high yielding and divergent under water shortage stress conditions for yield improvement in bread wheat
利用多变量分析评价正常灌溉和水分胁迫条件下面包小麦基因型的遗传变异
利用收集到的数据,研究了来自埃及吉萨农业研究中心遗传资源研究部Bahteem基因库的22个基因型和2个对照品种(Sakha 94和Giza 168)的24个面包小麦基因型的遗传多样性。试验采用随机完全区组设计,3个重复,在正常灌溉和干旱胁迫条件下进行。方差分析表明,各性状基因型间差异极显著。此外,所有性状的基因型之间也存在相当大的差异。我们的研究记录了基因型之间存在遗传多样性。除叶绿素含量外,干旱胁迫对其他性状的影响均为正。在抽穗期、开花期、成熟期和亩产正常灌水条件下,广义遗传力值非常高。两种条件下,穗数/ m的直接正效应分别为0.487和0.363,而抽穗天数的负效应更明显,分别为(-0.408)和(-0.562)。聚类分析将不同(正常或胁迫)条件下的基因型分为5组,发现遗传差异与基因型与环境相互作用程度、遗传变异成分等遗传和非遗传条件有关。结果表明,通过不同群体的基因型杂交,可以很好地实现小麦的基因型改良。其中,14、2、11、23、17和20型在缺水胁迫条件下高产且分化,可用于面包小麦的产量改良
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