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首页> 外文期刊>Biochemical Systematics and Ecology >Assessment of genetic diversity and population structure of Chinese wild almond, Amygdalus nana, using EST- and genomic SSRs.
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Assessment of genetic diversity and population structure of Chinese wild almond, Amygdalus nana, using EST- and genomic SSRs.

机译:利用EST和基因组SSR评估中国野生杏仁(Amygdalus nana)的遗传多样性和种群结构。

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Amygdalus nana L., commonly known as wild almond, is an endangered wild relative of cultivated almond, which has great potential in almond crop breeding. In this study, we used microsatellite (SSR) loci derived from both expressed sequence tag (EST) and anonymous genomic sequence to explore the genetic diversity and population structure of A. nana in Xinjiang of China. Seven natural populations were collected across the whole distribution of A. nana in China, including populations from both inside (four populations) and outside (three populations) the established protected areas. A total of 22 and 19 alleles were detected from the seven pairs of EST and genomic SSR loci, respectively. Generally, the genomic SSRs showed lower levels of variation than EST-SSRs, which may partially due to the higher cross-species transferability in EST-SSRs than in genomic SSRs. The population-level genetic diversity (A=1.84, P=50.00%, Ho=0.3491, HE=0.2271) was lower than cultivated almond and several wild fruit species with similar breeding system. Most of the genetic variation (82.16%) was partitioned within populations. In particular, the population collected from Tacheng County (outside the protected areas) had the highest levels of genetic diversity and had significantly different genetic constitution from other populations.
机译:Amygdalus nana L.,通常被称为野生杏仁,是栽培杏仁的濒危野生近缘种,在杏仁作物育种中具有巨大潜力。在这项研究中,我们使用了来自表达序列标签(EST)和匿名基因组序列的微卫星(SSR)基因座,以探究 A的遗传多样性和种群结构。娜娜在中国新疆。在整个 A分布中收集了七个自然种群。 nana 在中国,包括已建立的保护区内部(四个人口)和外部(三个人口)的人口。分别从7对EST和基因组SSR位点中分别检测到22个和19个等位基因。通常,基因组SSR的变异水平低于EST-SSR,这可能部分是由于EST-SSR中的跨物种转移能力高于基因组SSR。群体水平的遗传多样性( A = 1.84, P = 50.00%, H o = 0.3491,< i> H E = 0.2271)低于栽培的杏仁和几种具有相似育种系统的野生果树种。大多数遗传变异(82.16%)分布在种群内。特别是,从塔城县(保护区外)收集的种群具有最高的遗传多样性,并且遗传构成与其他种群明显不同。

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