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首页> 外文期刊>BMC Plant Biology >Population structure, genetic diversity and downy mildew resistance among Ocimum species germplasm
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Population structure, genetic diversity and downy mildew resistance among Ocimum species germplasm

机译:罗汉果种质种群结构,遗传多样性和抗霜霉病性

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摘要

The basil (Ocimum spp.) genus maintains a rich diversity of phenotypes and aromatic volatiles through natural and artificial outcrossing. Characterization of population structure and genetic diversity among a representative sample of this genus is severely lacking. Absence of such information has slowed breeding efforts and the development of sweet basil (Ocimum basilicum L.) with resistance to the worldwide downy mildew epidemic, caused by?the?obligate oomycete Peronospora belbahrii. In an effort to improve classification of relationships 20 EST-SSR markers with species-level transferability were developed and used to resolve relationships among a diverse panel of 180 Ocimum spp. accessions with varying response to downy mildew. Results obtained from nested Bayesian model-based clustering, analysis of molecular variance and unweighted pair group method using arithmetic average (UPGMA) analyses were synergized to provide an updated phylogeny of the Ocimum genus. Three (major) and seven (sub) population (cluster) models were identified and well-supported (P?
机译:罗勒(Ocimum spp。)属通过自然和人工异交保持了丰富的表型和芳香族挥发物多样性。严重缺乏该属代表性样品中的种群结构和遗传多样性的表征。缺乏此类信息减缓了甜罗勒(Ocimum basilicum L.)的育种工作,并抵抗了由专性卵菌菌Peronospora belbahrii引起的全球霜霉病流行。为了改善关系的分类,开发了20种具有物种水平可转移性的EST-SSR标记,并用于解决180个Ocimum spp多样性小组之间的关系。对霜霉病反应不同的种质。从嵌套的基于贝叶斯模型的聚类,分子方差分析和使用算术平均值(UPGMA)分析的未加权对组方法获得的结果可协同工作,以提供Ocimum属的最新系统发育。分别通过0.433和0.344的PhiPT(ΦPT)值确定了三个(主要)和七个(子)种群(集群)模型并得到了良好的支持(P <0.001)。簇之间的等位基因频率支持了先前发展的同素多倍体基因组结构假说。证实了k1 O.basiculum簇隐性种群结构的证据,表明基因流的普遍性。 UPGMA分析为36录入,抗DM的k3群集提供了最佳分辨率,并始终提供强大的引导支持。尽管k3簇是DM抗药性的丰富来源,但如多重无菌F1杂种所证明的那样,生殖屏障阻碍了抗性渗入商业上重要的k1品系。位于k1和k3之间的k2簇代表了可育回交后代所证明的可转移的耐受性来源。 90个登录号的k1集群对霜霉病很敏感,登录号“ MRI”代表DM抵抗力的唯一来源。高水平的遗传多样性支持了Ocimum spp中观察到的表型多样性。加入。 EST-SSRs对分子多样性提供了可靠的评估,可用于其他研究以增加Ocimum属的遗传关系的分辨率。阐明了Ocimum spp之间的种群结构和遗传关系。种质为改善DM抗性育种策略和对未来疾病暴发的更快反应提供了基础。

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