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Development of high transferability cpSSR markers for individual identification and genetic investigation in Cupressaceae species

机译:开发用于黄瓜科物种个体识别和遗传研究的高转移性cpSSR标记

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摘要

Given the low substitution rate in plastomes, the polymorphic and codominant nature of chloroplast SSRs (cpSSRs) makes them ideal markers, complementing their nuclear counterpart. In Cupressaceae, cpSSRs are mostly paternally inherited, thus, they are useful in mating systems and pollen flow studies. Using e‐PCR, 92 SSR loci were identified across six Cupressaceae plastomes, and primers were designed for 26 loci with potential interspecific transferability. The 26 developed cpSSRs were polymorphic in four genera, Platycladus, Sabina, Juniperus, and Cupressus and are suitable for Cupressaceae molecular genetic studies and utilization. We genotyped 192 Platycladus orientalis samples from a core breeding population using 10 of the developed cpSSRs and 10 nuclear SSRs, and these individuals were identified with high confidence. The developed cpSSRs can be used in (1) a marker‐assisted breeding scheme, specifically when paternity identification is required, (2) population genetics investigations, and (3) biogeography of Cupressaceae and unraveling the genetic relationships between related species.
机译:由于质体置换率低,叶绿体SSR(cpSSRs)的多态性和共性使其成为理想的标记物,补充了它们的核对应物。在柏科中,cpSSRs多为父系遗传,因此在交配系统和花粉流动研究中很有用。使用e-PCR,在六个柏科质体组中鉴定出92个SSR基因座,并针对26个基因座设计了引物,具有潜在的种间转移能力。 26个已开发的cpSSRs在Platycladus,Sabina,Juniperus和Cupressus四个属中具有多态性,适用于柏科分子遗传研究和利用。我们使用10个已开发的cpSSR和10个核SSR对来自核心育种种群的192个侧柏侧柏进行了基因分型,并以高可信度鉴定了这些个体。所开发的cpSSRs可用于(1)标记辅助育种方案,特别是在需要鉴定亲子鉴定的情况下;(2)种群遗传学研究;以及(3)柏科的生物地理学,并揭示相关物种之间的遗传关系。

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