利用反转录转座子和微卫星对埃及栽培柑橘及其近缘种进行遗传评价

IF 0.4 Q4 VETERINARY SCIENCES
M. Amar
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引用次数: 2

摘要

综述了21个LTR-REMAP和27个SSR标记对柑橘属20个基因型遗传变异的鉴别能力、效率和能力的评价。LTR-REMAP图谱的标记指数(MI)是SSR图谱的1.28倍,凸显了LTR-REMAP检测的独特性。该标记在低分类水平上具有较高的敏感性和较强的证据,特别是对埃及酸的区分,而SSR仅能在群体水平上进行区分。有趣的是,热图聚类分析(HCA)和主成分分析(PCA)数据绘制了柑橘科物种中准确的单系注释聚类,提供了柑橘真种与近缘杂交种之间没有重叠类群的明确识别,导致它们被放置在不同的分支中。分子技术的应用将有助于克服埃及柑橘品种鉴定、遗传变异等方面的障碍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic Assessment of Some Egyptian Cultivated Citrus and its Relatives using Retrotransposons and Microsatellite
detailed overview of evaluating 21 LTR-REMAP and 27 SSR markers in the discriminating capacity, efficiency and ability of the genetic variability among 20 genotypes in the genus Citrus . The LTR-REMAP profile displayed 1.28 fold higher value of marker index (MI) compare to the SSR profile, highlights the distinctive nature of LTR-REMAP assay. This marker was more sensitive and provided much more evidence to discriminate at low taxonomic levels, especially for Egyptian acidic, whereas, SSR can differentiate within the group level only. Intriguingly, the heatmap cluster analysis (HCA) and principal component analysis (PCA) data drew an accurate monophyletic annotations cluster in Citreneae species, offer unambiguous identification without overlapping groups between true species and related hybrids of citrus, resulted in their placement in different clades. The use of molecular technologies will help to overcome the obstacles of cultivars identification, genetic variability in the Egyptian citrus breeding.
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
77
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