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首页> 外文期刊>Plant molecular biology reporter >Evaluation of Genetic Diversity of Chilli Landraces from North Eastern India Based on Morphology, SSR Markers and the Pun1 Locus
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Evaluation of Genetic Diversity of Chilli Landraces from North Eastern India Based on Morphology, SSR Markers and the Pun1 Locus

机译:基于形态,SSR标记和Pun1基因座的印度东北辣椒地方品种遗传多样性评估

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The chilli (Capsicum sp.) germplasm found throughout North Eastern (NE) India exhibits wide variability in fruit morphology, pungency, bearing habit and crop duration. As the genetic resources of chilli landraces from this region are not well documented, it is likely that they have hitherto unknown alleles and/or genes for economically important traits. In this study, 53 chilli accessions from different areas of this NE region were evaluated for genetic diversity using various morphological characters and 50 simple sequence repeat markers. It was found that erect and campanulate fruit types are grouped in separate clusters. The number of alleles per locus ranged from 3 to 9 with an average of 5.36. The average polymorphic information content value was 0.52. Percentage variation among populations, within individuals of population and within individuals was found to be 34, 57.9 and 8.05 %, respectively, indicating diversity in the landraces sampled. Allele mining across acyltransferase 3 (AT3) gene in a set of landraces led to identification of new single nucleotide polymorphisms (SNPs). Sequence analysis of the 2,349 bp AT3 region revealed the presence of a total of 79 SNPs and 3 indels. This overview of diversity of chilli landraces from NE India paves the way for conservation and utilisation of germplasm and contributes to the development of systematic breeding strategies.
机译:在印度东北部地区发现的辣椒种质在水果形态,刺激性,习性和作物持续时间方面表现出很大的差异。由于该地区的辣椒地方品种的遗传资源没有得到很好的记录,因此它们可能具有迄今未知的等位基因和/或具有重要经济性状的基因。在这项研究中,使用各种形态学特征和50个简单序列重复标记对来自该东北地区不同地区的53个辣椒种质进行了遗传多样性评估。发现直立和钟状的果实类型被分为不同的簇。每个基因座的等位基因数量在3到9之间,平均为5.36。平均多态信息含量值为0.52。种群之间,种群内和个体内的百分比变化分别为34%,57.9%和8.05%,这表明所采样的地方物种具有多样性。在一组地方品种中跨越酰基转移酶3(AT3)基因的等位基因挖掘导致鉴定新的单核苷酸多态性(SNP)。对2,349 bp AT3区的序列分析显示,总共存在79个SNP和3个插入缺失。来自印度东北部的辣椒地方品种的多样性概述为种质的保护和利用铺平了道路,并为系统育种策略的发展做出了贡献。

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