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中国红河地区同域分布的滇南苏铁(苏铁科)的物种界定、遗传多样性及种群历史动态

Species delimitation, genetic diversity and population historical dynamics of Cycas diannanensis (Cycadaceae) occurring sympatrically in the Red River region of China.

作者信息

Liu Jian, Zhou Wei, Gong Xun

机构信息

Key Laboratory for Plant Diversity and Biogeography of East Asia, Kunming Institute of Botany, Chinese Academy of Sciences Kunming, China ; Key Laboratory of Economic Plants and Biotechnology, Kunming Institute of Botany, Chinese Academy of Sciences Kunming, China ; University of Chinese Academy of Sciences Beijing, China.

Key Laboratory for Plant Diversity and Biogeography of East Asia, Kunming Institute of Botany, Chinese Academy of Sciences Kunming, China ; Key Laboratory of Economic Plants and Biotechnology, Kunming Institute of Botany, Chinese Academy of Sciences Kunming, China.

出版信息

Front Plant Sci. 2015 Sep 8;6:696. doi: 10.3389/fpls.2015.00696. eCollection 2015.

Abstract

Delimitating species boundaries could be of critical importance when evaluating the species' evolving process and providing guidelines for conservation genetics. Here, species delimitation was carried out on three endemic and endangered Cycas species with resembling morphology and overlapped distribution range along the Red River (Yuanjiang) in China: Cycas diananensis Z. T. Guan et G. D. Tao, Cycas parvula S. L. Yang and Cycas multiovula D. Y. Wang. A total of 137 individuals from 15 populations were genotyped by using three chloroplastic (psbA-trnH, atpI-atpH, and trnL-rps4) and two single copy nuclear (RPB1 and SmHP) DNA sequences. Basing on the carefully morphological comparison and cladistic haplotype aggregation (CHA) analysis, we propose all the populations as one species, with the rest two incorporated into C. diannanensis. Genetic diversity and structure analysis of the conflated C. diannanensis revealed this species possessed a relative lower genetic diversity than estimates of other Cycas species. The higher genetic diversity among populations and relative lower genetic diversity within populations, as well as obvious genetic differentiation among populations inferred from chloroplastic DNA (cpDNA) suggested a recent genetic loss within this protected species. Additionally, a clear genetic structure of C. diannanensis corresponding with geography was detected based on cpDNA, dividing its population ranges into "Yuanjiang-Nanhun" basin and "Ejia-Jiepai" basin groups. Demographical history analyses based on combined cpDNA and one nuclear DNA (nDNA) SmHP both showed the population size of C. diannanensis began to decrease in Quaternary glaciation with no subsequent expansion, while another nDNA RPB1 revealed a more recent sudden expansion after long-term population size contraction, suggesting its probable bottleneck events in history. Our findings offer grounded views for clarifying species boundaries of C. diannanensis when determining the conservation objectives. For operational guidelines, the downstream populations which occupy high and peculiar haplotypes should be given prior in-situ conservation. In addition, ex-situ conservation and reintroduction measures for decades of generations are supplemented for improving the population size and genetic diversity of the endemic and endangered species.

摘要

在评估物种的进化过程以及为保护遗传学提供指导方针时,划定物种界限可能至关重要。在此,对中国红河(元江)沿岸形态相似且分布范围重叠的三种特有濒危苏铁物种进行了物种界定:滇南苏铁Z. T. Guan et G. D. Tao、多歧苏铁S. L. Yang和多胚苏铁D. Y. Wang。利用三个叶绿体(psbA-trnH、atpI-atpH和trnL-rps4)和两个单拷贝核(RPB1和SmHP)DNA序列对来自15个种群的137个个体进行了基因分型。基于细致的形态比较和分支单倍型聚合(CHA)分析,我们提议将所有种群归为一个物种,其余两个并入滇南苏铁。合并后的滇南苏铁的遗传多样性和结构分析表明,该物种的遗传多样性相对低于其他苏铁物种的估计值。种群间较高的遗传多样性和种群内相对较低的遗传多样性,以及从叶绿体DNA(cpDNA)推断出的种群间明显的遗传分化,表明该受保护物种近期存在遗传损失。此外,基于cpDNA检测到滇南苏铁具有与地理相对应的清晰遗传结构,将其种群范围划分为“元江-南混”流域和“俄甲-解排”流域组。基于合并的cpDNA和一个核DNA(nDNA)SmHP的种群历史分析均显示,滇南苏铁的种群数量在第四纪冰川期开始减少,之后没有扩张,而另一个nDNA RPB1显示在长期种群数量收缩后最近出现了突然扩张,表明其历史上可能存在瓶颈事件。我们的研究结果为在确定保护目标时厘清滇南苏铁的物种界限提供了有根据的观点。对于操作指南,应优先就地保护占据高且独特单倍型的下游种群。此外,补充数十代的迁地保护和重新引入措施,以增加该特有濒危物种的种群数量和遗传多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cde/4562272/a98935abf00e/fpls-06-00696-g0001.jpg

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