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首页> 外文期刊>Annals of Agricultural Science >Biochemical, physiological and phenological genetic analysis in common bean ( Phaseolus vulgaris L.) under salt stress
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Biochemical, physiological and phenological genetic analysis in common bean ( Phaseolus vulgaris L.) under salt stress

机译:盐胁迫下普通菜豆的生化,生理和物候遗传分析

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Salinity is one of the most important abiotic stresses affecting agricultural productivity. The present study investigated combining abilities, heterosis and heritability estimates of common bean under salinity conditions for biochemical, physiological and phenological traits using a half-diallel cross. The salinity stress treatments were applied during all the vegetative cycle. Genetic analysis revealed highly significant genotypic variations between the four parents and their six hybrids, indicating a genetic variability and possibility of genetic improvement using such genetic material of common bean for salinity tolerance. Both general (GCA) and specific (SCA) combining abilities were highly significant for all the studied traits under all conditions, revealing the important role of both additive and dominant gene effects in the inheritance of these traits. The ratio GCA/SCA indicated preponderance of the additive effects for all the studied characters. The parental genotypes Améliore Roza and Coco nain proved to be the best combiners for salinity tolerance; on the other hand the crosses namely Amina?×?Améliore Roza; MGT?×?Améliore Roza and Coco nain?×?Amina recorded significant heterosis percentage relative to mid-parent (MP) and better parent (BP) for almost all the traits, the same crosses recorded significantly positive SCA effects. Diallel analysis revealed high heritability in broad-sense for salinity tolerance, while moderate to high narrow-sense heritability suggests a large breeding population and possible selection for salt tolerance. The results of this study confirmed that salinity tolerance is expressed by a different set of genes that could be pyramided using different genotypes to enhance salinity tolerance.
机译:盐分是影响农业生产力的最重要的非生物胁迫之一。本研究调查了盐度条件下普通豆的生化,生理和物候性状的结合能力,杂种优势和遗传力估计,使用半圆角杂交。在所有的营养循环中都进行了盐分胁迫处理。遗传分析显示,四个亲本及其六个杂种之间的基因型差异很大,这表明遗传变异性和利用这种普通豆遗传物质耐盐性进行遗传改良的可能性。在所有条件下,常规(GCA)和特异性(SCA)的结合能力对于所有研究的性状都非常重要,这揭示了加性和显性基因效应在这些性状遗传中的重要作用。 GCA / SCA的比值表明所有研究字符的累加效应占优势。事实证明,亲本基因型AmélioreRoza和Coco nain是耐盐性最好的组合。另一方面,十字架是Amina?×?AmélioreRoza; MGT?×?AmélioreRoza和Coco nain?×?Amina几乎所有性状相对于中亲(MP)和亲本(BP)表现出显着的杂种优势百分比,相同的杂交记录显示出明显的正SCA效应。 Diallel分析显示,广义上的耐盐性遗传力很高,而中等至高的狭义遗传力则表明繁殖种群众多,并且可能选择耐盐性。这项研究的结果证实了盐度耐受性是由一组不同的基因表达的,这些基因可以使用不同的基因型进行金字塔化以增强盐度耐受性。

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