首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Dehydrin variants associated with superior freezing tolerance in alfalfa (Medicago sativa L.)
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Dehydrin variants associated with superior freezing tolerance in alfalfa (Medicago sativa L.)

机译:紫花苜蓿变体与苜蓿(Medicago sativa L.)的优异抗冻性相关

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A cDNA (msaCIG) encoding a cold-inducible YK dehydrin in alfalfa (Medicago sativa spp. sativa) was shown to share extensive homology with sequences from other species and subspecies of Medicago. Differences were mainly the result of the occurrence of large indels, amino acids substitutions/deletions and sequence duplications. Using a combination of a bulk segregant analysis and RFLP hybridization, we uncovered an msaCIG polymorphism that increases in frequency in response to recurrent selection for superior freezing tolerance. Progenies from crosses between genotypes with (D+) or without (D) the polymorphic dehydrin significantly differed in their tolerance to subfreezing temperatures. Based on the msaCIG sequence, we looked for intragenic variations that could be associated to the polymorphism detected on Southern blots. Amplifications with primers targeting the 3o half side of msaCIG revealed fragment size variations between pools of genotypes with (+) or without () the polymorphism. Three major groups of amplicons of 370 nt (G1), 330 nt (G2), and 290 nt (G3) were distinguished. The G2 group was more intensively amplified in pools of genotypes with the polymorphic dehydrin and was associated to a superior freezing tolerance phenotype. Sequences analysis revealed that size variation in the 3o half was attributable to the variable occurrence of large indels. Single amino acid substitutions and/or deletions caused major differences in the prediction of the secondary structure of the polypeptides. The identification of dehydrin variants associated to superior freezing tolerance paves the way to the development of functional markers and the fixation of favorable alleles in various genetic backgrounds.
机译:苜蓿(Medicago sativa spp。sativa)中编码冷诱导型YK脱水蛋白的cDNA(msaCIG)已显示与来自Medicago的其他物种和亚种的序列具有广泛的同源性。差异主要是由于大插入缺失,氨基酸取代/缺失和序列重复的出现所致。结合使用大量分离物分析和RFLP杂交,我们发现了msaCIG多态性,该基因的频率随着响应反复选择而提高了频率,以实现出色的冷冻耐受性。来自具有(D +)或不具有(D)多态性脱水蛋白的基因型之间的杂交后代对亚冰冻温度的耐受性显着不同。基于msaCIG序列,我们寻找可能与Southern印迹检测到的多态性相关的基因内变异。用针对msaCIG 3o半边的引物进行的扩增揭示了具有(+)或不具有()多态性的基因型库之间的片段大小差异。区分了三大类扩增子:370 nt(G1),330 nt(G2)和290 nt(G3)。 G2组在具有多态脱水蛋白的基因型库中更密集地扩增,并与优异的耐冻性表型相关。序列分析表明,3o半的大小变化可归因于大插入缺失的可变发生。单个氨基酸取代和/或缺失在多肽二级结构的预测中引起主要差异。与优异的耐寒性相关的脱水蛋白变异体的鉴定为功能标记的发展和各种遗传背景中有利等位基因的固定铺平了道路。

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