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Taraxacum kok-saghyz (rubber dandelion) genomic microsatellite loci reveal modest genetic diversity and cross-amplify broadly to related species

机译:蒲公英(橡胶蒲公英)基因组微卫星基因座揭示了适度的遗传多样性,并广泛地与相关物种交叉扩增

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Taraxacum kok-saghyz (TKS) carries great potential as alternative natural rubber source. To better inform future breeding efforts with TKS and gain a deeper understanding of its genetic diversity, we utilized de novo sequencing to generate novel genomic simple sequence repeats markers (gSSRs). We utilized 25 gSSRs on a collection of genomic DNA (gDNA) samples from germplasm bank, and two gDNA samples from historical herbarium specimens. PCR coupled with capillary electrophoresis and an array of population genetics tools were employed to analyze the dataset of our study as well as a dataset of the recently published genic SSRs (eSSRs) generated on the same germplasm. Our results using both gSSRs and eSSRs revealed that TKS has low- to- moderate genetic diversity with most of it partitioned to the individuals and individuals within populations, whereas the species lacked population structure. Nineteen of the 25 gSSR markers cross-amplified to other Taraxacum spp. collected from Southeastern United States and identified as T. officinale by ITS sequencing. We used a subset of 14 gSSRs to estimate the genetic diversity of the T. officinale gDNA collection. In contrast to the obligatory outcrossing TKS, T. officinale presented evidence for population structure and clonal reproduction, which agreed with the species biology. We mapped the molecular markers sequences from this study and several others to the well-annotated sunflower genome. Our gSSRs present a functional tool for the biodiversity analyses in Taraxacum, but also in the related genera, as well as in the closely related tribes of the Asteraceae.
机译:蒲公英作为传统的天然橡胶来源具有巨大的潜力。为了更好地为TKS未来的育种工作提供信息并加深对其遗传多样性的了解,我们利用从头测序来产生新的基因组简单序列重复标记(gSSR)。我们在来自种质库的基因组DNA(gDNA)样本和历史标本室标本的两个gDNA样本中利用了25 gSSR。 PCR结合毛细管电泳和一系列的群体遗传学工具被用来分析我们研究的数据集,以及最近在同一种质上产生的基因SSR(eSSRs)的数据集。我们同时使用gSSR和eSSR的结果表明,TKS具有低至中等的遗传多样性,其中大部分被划分为个体和种群内的个体,而该物种缺乏种群结构。 25个gSSR标记中有19个与其他蒲公英属植物交叉杂交。收集自美国东南部,通过ITS测序鉴定为T. officinale。我们使用了14个gSSR的子集来估计T. officinale gDNA集合的遗传多样性。与强制性异型杂交TKS不同,T。officinale提供了种群结构和克隆繁殖的证据,这与物种生物学相符。我们将这项研究和其他几个研究的分子标记序列映射到标注良好的向日葵基因组上。我们的gSSR为蒲公英,相关科以及菊科的密切相关部落的生物多样性分析提供了一种功能性工具。

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