Genetic polymorphism of populations and phylogeny of the Central Siberian Polygonum (Polygonaceae) section using ISSR and chloroplast markers

I. E. Yamskikh, N. N. Tupitsyna, K. K. Ryabova, M. G. Kutsev
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Abstract

This article is devoted to the study of genetic polymorphism of populations and phylogeny of Polygonum section using ISSR and chloroplast markers. Section Polygonum is a taxonomically complex group. Identification of individuals is complicated because of the small size of plants, the processes of interspecific hybridization, heterocarpy, phenological and ecological plasticity. In this work, the genetic variability of six populations of five knotweed species growing in Krasnoyarsk was studied. ISSR analysis revealed that the level of genetic diversity in the populations varies from 4.17 % to 35.83 % and has maximum values for genetically close species P. sabulosum (P = 35.83 %) and P. arenastrum (P = 22.5–30 %). Minimum values of genetic diversity were observed for populations of P. aviculare (P = 4.17 %) and P. calcatum (P = 5 %). The studied populations are characterized by a very high level of genetic differentiation (Gst = 0.78) and reliably belong to different species. On the similarity dendrogram (UPGMA), individuals of these species form clearly distinct clades. The genetic structure of populations using STRUCTURE also shows a reliable division of individuals into 5 clusters corresponding to the studied species. Phylogenetic analysis using the trnL-trnF chloroplast region shows the presence of a 5-nucleotide deletion and two transversions that makes it possible to divide the studied group of Polygonum into two morphologically different clusters. The first group is formed by P. arenastrum, P. calcatum, P. caspicum, P. sabulosum and characterized by the absence of a main shoot, a gradual reduction of leaves to the top of shoots and the perianth dissection by 1/2 of its length. The second group includes P. aviculare, P. boreale, P. neglectum, P rectum that have a main shoot, heterophilly, perianth dissection by 2/3–3/4 of its length. Two substitutions have been identified in the matK sequences, however it is less informative for solving taxonomic issues of the studied group.
利用 ISSR 和叶绿体标记研究中西伯利亚蓼科(蓼科)种群的遗传多态性和系统发育
本文致力于利用 ISSR 和叶绿体标记研究蓼科种群的遗传多态性和系统发育。蓼科在分类学上是一个复杂的类群。由于植株较小、种间杂交、异形、物候和生态可塑性等原因,对个体的鉴定非常复杂。这项研究对生长在克拉斯诺亚尔斯克的五个结缕草物种的六个种群的遗传变异性进行了研究。ISSR 分析表明,这些种群的遗传多样性水平从 4.17 % 到 35.83 % 不等,遗传关系密切的物种 P. sabulosum(P = 35.83 %)和 P. arenastrum(P = 22.5-30%)的遗传多样性值最大。P. aviculare(P = 4.17 %)和 P. calcatum(P = 5 %)种群的遗传多样性值最小。所研究的种群具有很高的遗传分化水平(Gst = 0.78),并可靠地属于不同的物种。在相似性树枝图(UPGMA)上,这些物种的个体形成了明显不同的支系。使用 STRUCTURE 方法进行的种群遗传结构分析也显示,这些个体可靠地分为 5 个群组,与所研究的物种相对应。利用 trnL-trnF 叶绿体区域进行的系统进化分析表明,存在一个 5 核苷酸缺失和两个转位,因此可以将所研究的蓼属植物群分为两个形态不同的群。第一组由 P. arenastrum、P. calcatum、P. caspicum、P. sabulosum 组成,其特征是没有主枝,叶片逐渐减少到嫩枝顶端,花被长度减少了 1/2。第二组包括 P. aviculare、P. boreale、P. neglectum、P rectum,它们有主枝、异穗,花被剥离长度为其长度的 2/3-3/4。在 matK 序列中发现了两个替换,但这对解决所研究群体的分类问题信息量较小。
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