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Tectonic and climatic impacts on the biota within the Red River Fault evidence from phylogeography of Cycas dolichophylla (Cycadaceae)

机译:苏铁(Cycas dolichophylla)(苏铁科)的植物地理学证据表明该构造和气候对红河断裂带内的生物群有影响

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摘要

Dramatic crustal deformation and river incision in Southwest China induced by the Indo-Asian collision have long been argued to contribute to the complicated landscapes, heterogeneous environment and abundant biodiversity in this region. However, biological impacts in promoting intraspecific phylogeographical subdivision and divergence along the Red River Fault zone (RRF) remain poorly understood. To investigate the possible biological effects of tectonic movements and environment variations within the RRF, the phylogeography of Cycas dolichophylla-an endemic but widely distributed Cycas in Southwest China and North Vietnam along the RRF were carried out based on four chloroplast DNA intergenic spacers (cpDNA), three nuclear DNA sequences (nDNA) and 16 simple sequence repeat variations (SSR). Two different phylogeographical patterns were detected: a Southwest-Northeast break across the RRF disclosed by chlorotypes and a China-Vietnam separation revealed by SSR. A Bayesian skyline plot from cpDNA data demonstrated a historical increasing, but a recent declining, dynamic in population size during the Pleistocene. Consequently, we infer it is the local environmental variation during Cenozoic that contributed to the complex landscape and microclimate mosaics, facilitating speciation and divergence of C. dolichophylla. Subsequently, the Quaternary climatic fluctuations coupled with human activities profoundly influenced the genetic structure and demographic history of this species.
机译:长期以来,一直有人认为由印度洋-亚洲碰撞引起的中国西南部剧烈的地壳变形和河流切割造成了该地区复杂的景观,异质环境和丰富的生物多样性。然而,对促进沿红河断裂带(RRF)的种内系统地理学细分和发散的生物学影响仍然知之甚少。为了研究构造运动和环境变化在RRF中的可能的生物学效应,基于四个叶绿体DNA基因间隔子(cpDNA)对中国西南和越南北部的地方性但分布广泛的Cycas dolichophyllala进行了系统地理学分析。 ,三个核DNA序列(nDNA)和16个简单序列重复变异(SSR)。检测到两种不同的植物地理学模式:叶绿体揭示的跨RRF的西南-东北断裂和SSR揭示的中国-越南分离。来自cpDNA数据的贝叶斯天际线图显示,在更新世期间,人口规模发生了历史性增长,但最近有所下降。因此,我们推断,新生代的局部环境变化导致了复杂的景观和微气候镶嵌,促进了C. dolichophylla的物种形成和发散。随后,第四纪气候波动以及人类活动深刻影响了该物种的遗传结构和人口历史。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Ying Zheng; Jian Liu; Xun Gong;

  • 作者单位
  • 年(卷),期 -1(6),-1
  • 年度 -1
  • 页码 33540
  • 总页数 10
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

  • 入库时间 2022-08-21 10:56:40

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