首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Nucleotide diversity patterns at the drought-related DREB2 encoding genes in wild and cultivated common bean (Phaseolus vulgaris L.).
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Nucleotide diversity patterns at the drought-related DREB2 encoding genes in wild and cultivated common bean (Phaseolus vulgaris L.).

机译:野生和栽培普通豆(菜豆)中与干旱相关的DREB2编码基因的核苷酸多样性模式。

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Common beans are an important food legume faced with a series of abiotic stresses the most severe of which is drought. The crop is interesting as a model for the analysis of gene phylogenies due to its domestication process, race structure, and origins in a group of wild common beans found along the South American Andes and the region of Mesoamerica. Meanwhile, the DREB2 transcription factors have been implicated in controlling non-ABA dependent responses to drought stress. With this in mind our objective was to study in depth the genetic diversity for two DREB2 genes as possible candidates for association with drought tolerance through a gene phylogenetic analysis. In this genetic diversity assessment, we analyzed nucleotide diversity at the two candidate genes Dreb2A and Dreb2B, in partial core collections of 104 wild and 297 cultivated common beans with a total of 401 common bean genotypes from world-wide germplasm analyzed. Our wild population sample covered a range of semi-mesic to very dry habitats, while our cultivated samples presented a wide spectrum of low to high drought tolerance. Both genes showed very different patterns of nucleotide variation. Dreb2B exhibited very low nucleotide diversity relative to neutral reference loci previously surveyed in these populations. This suggests that strong purifying selection has been acting on this gene. In contrast, Dreb2A exhibited higher levels of nucleotide diversity, which is indicative of adaptive selection and population expansion. These patterns were more distinct in wild compared to cultivated common beans. These approximations suggested the importance of Dreb2 genes in the context of drought tolerance, and constitute the first steps towards an association study between genetic polymorphism of this gene family and variation in drought tolerance traits. We discuss the utility of allele mining in the DREB gene family for the discovery of new drought tolerance traits from wild common bean.
机译:普通豆是一种重要的豆类食品,面临着一系列非生物胁迫,其中最严重的就是干旱。由于其驯化过程,种族结构以及起源于在南美安第斯山脉和中美洲地区发现的一组野生普通豆的起源,该作物作为分析基因系统发育的模型而非常有趣。同时,DREB2转录因子已参与控制干旱胁迫的非ABA依赖性反应。考虑到这一点,我们的目标是通过基因系统分析深入研究两个DREB2基因的遗传多样性,这些基因可能与耐旱性相关。在这项遗传多样性评估中,我们分析了104种野生和297种栽培普通豆的部分核心集合中的两个候选基因Dreb2A和Dreb2B的核苷酸多样性,分析了来自全球种质的共401种普通豆基因型。我们的野生种群样本涵盖了从半中生到非常干燥的栖息地,而我们的栽培样本呈现出从低到高的各种耐旱性。两种基因均显示出非常不同的核苷酸变异模式。相对于先前在这些人群中调查的中性参考基因座,Dreb2B表现出非常低的核苷酸多样性。这表明强烈的纯化选择一直作用于该基因。相反,Dreb2A表现出更高水平的核苷酸多样性,这表明适应性选择和种群扩展。与栽培普通豆相比,这些模式在野外更为明显。这些近似值表明了Dreb2基因在耐旱背景下的重要性,并构成了对该基因家族的遗传多态性与耐旱性状变异之间关联研究的第一步。我们讨论了在DREB基因家族中进行等位基因挖掘的实用性,用于发现野生普通豆的新的耐旱性状。

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