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首页> 外文期刊>African Journal of Biotechnology >Multivariate analysis of germination ability and tolerance to salinity in Agropyron desertorum genotypes in greenhouse condition
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Multivariate analysis of germination ability and tolerance to salinity in Agropyron desertorum genotypes in greenhouse condition

机译:温室条件下Agropyron desertorum基因型发芽能力和耐盐性的多元分析

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Salinity stress is one of the major problems for crop production in arid and semiarid regions of the world. Hence, germination ability and salt stress tolerance ofAgropyron desertorum?were evaluated using ten genotypes originally collected from different areas of Iran in greenhouse condition. Five different concentrations of NaCl solution were used in this experiment. Analysis of variance showed considerable variation in all the germination attributes under salinity stress. Principal component analysis revealed that first and second components accounted for about 97.6% of the total variation among the traits studied. The first component included root length, plumule length, seedling length and seed vigor and accounted for 62.3% of the total variation among the traits. This component is entitled as the seed germination ability. Hierarchical cluster analysis classified the genotypes in three groups. In conclusion, selection for the higher amount of the traits roots length, plumule length, seedling length and seed vigor can improve the seed germination ability and salinity tolerance in?A. desertorum?genotypes at the seedling stage in greenhouse condition. Furthermore, crosses between the genotypes classified in the clusters 1 and 3 can cause the broadening of genetic variation and possibility of the efficient selection among the progenies obtained from these crosses.
机译:盐分胁迫是世界干旱和半干旱地区作物生产的主要问题之一。因此,使用最初从伊朗不同地区的温室条件收集的十个基因型,评估了沙漠芒草的发芽能力和盐胁迫耐受性。在该实验中使用了五种不同浓度的NaCl溶液。方差分析表明,在盐分胁迫下,所有发芽特性均存在相当大的差异。主成分分析表明,第一和第二成分约占所研究性状总变异的97.6%。第一个组成部分是根长,幼果长,幼苗长和种子活力,占性状总变异的62.3%。该成分被称为种子发芽能力。层次聚类分析将基因型分为三类。综上所述,选择更多的性状,如根长,毛羽长度,幼苗长度和种子活力,可以提高种子的发芽能力和耐盐性。温室条件下幼苗期的沙漠菌基因型。此外,在聚类1和3中分类的基因型之间的杂交可引起遗传变异的扩大和从这些杂交获得的后代中有效选择的可能性。

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