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Diversification of the fern genus Cryptogramma across time and space.

机译:蕨类Cryptogramma跨时空的多样化。

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摘要

I examined diversification, biogeographic history and polyploidy within the parsley ferns (Cryptogramma) across multiple time scales. Cryptogramma is a small circumboreal genus of rock ferns in the large, diverse family Pteridaceae and is most closely related to the Asian genus Coniogramme and the monotypic Central American genus Llavea. I generated a combined six locus plastid sequence alignment (rbcL , rbcL-accD, rbcL-atpB, rps4-trnS, trnG-trnR, and trnP-petG) and a low-copy nuclear marker (gapCp) alignment for 40 accessions. Phylogenetic analysis of these datasets using maximum parsimony, maximum likelihood, and Bayesian inference demonstrate that all three genera are reciprocally monophyletic, with Cryptogramma and Coniogramme most closely related to one another. This analysis also recovered the monotypic Cryptogramma section Homopteris and sect. Cryptogramma as reciprocally monophyletic. Within sect. Cryptogramma, the unambiguously supported phylogeny supported recognizing most described species as reciprocally monophyletic clades that are mostly allopatric and can be delineated by a few morphological characters. The nuclear DNA phylogeny supported the hypothesis that the allotetraploid Cr. sitchensis originated from a hybridization event between the Asian Cr. raddeana and the Beringian Cr. acrostichoides, and the plastid DNA phylogeny revealed that Cr. acrostichoides was the maternal parent. In contrast, the tetraploid Cr. crispa appears to have originated as an autopolyploid from an undiscovered or extinct ancestor. Further phylogenetic investigation of European Cryptogramma species using DNA sequence data from 15 accessions from Europe and southwest Asia revealed that Pleistocene glacial cycles have created genetic partitioning of Cr. crispa into eastern and western clades and have also led to the formation of the Turkish auto-octoploid Cr. bithynica with Cr. crispa as the parental taxon. Divergence time estimates for key nodes were inferred using Bayesian analysis of the plastid data set coupled with secondary time constraints to reveal that crown group Cryptogramma began diversifying in the Oligocene, with most present-day species originating in the Pliocene and Pleistocene. The genus was inferred by likelihood-based ancestral area reconstruction of the chronogram and geographic distribution data to have originated in east Asia, with four colonization events reconstructed by vicariance or dispersal to the New World. My Bayesian Analysis of Macroevolutionary Mixtures (BAMM) showed no significant difference in speciation rates across time or among clades. The morphological stasis of Cryptogramma and its stable speciation rates in response to climate cycles during the Pleistocene suggest it will survive future range shifts caused by anthropogenically induced climate change.
机译:我检查了欧芹蕨类植物(隐球菌)在多个时间范围内的多样性,生物地理历史和多倍性。隐字法是大型蕨类科中蕨类植物的一个小圆角周缘属,与亚洲锥虫属和中美洲单型属拉维亚属最密切相关。我生成了一个组合的六个基因座质体序列比对(rbcL,rbcL-accD,rbcL-atpB,rps4-trnS,trnG-trnR和trnP-petG)和一个低拷贝核标记(gapCp)比对40个种质。使用最大简约性,最大似然和贝叶斯推论对这些数据集进行系统发育分析表明,所有这三个属都是单亲的,而隐密码术和锥虫关系最为密切。该分析还恢复了同型隐虫科和同胞异种。密码术相互成对。在宗派内。密码学,明确支持的系统发育,支持将大多数描述的物种识别为相互单系进化枝,这些进化枝大多是同种异体的,可以通过一些形态特征来描绘。核DNA系统发育支持异源四倍体Cr的假说。 Sitchensis起源于亚洲Cr之间的杂交事件。 raddeana和Beringian Cr。刺五加虫和质体DNA系统发育揭示铬。 acrostichoides是父母。相反,四倍体Cr。 crispa似乎是起源于未发现或灭绝祖先的同倍体。使用来自欧洲和西南亚的15个种质的DNA序列数据对欧洲隐球菌物种进行了进一步的系统发育研究,结果表明,更新世的冰川周期已经造成了Cr的遗传分配。脆皮进入东西部进化枝,也导致了土耳其自身八倍体铬的形成。铬的Crynenica。薄脆饼干作为父母的分类单元。使用质体数据集的贝叶斯分析和次要时间约束来推断关键节点的发散时间估计,以揭示冠群隐图法在渐新世开始多样化,当今大多数物种起源于上新世和更新世。该属是通过对年代图的基于似然的祖先区域重建和地理分布数据来推断的,这些祖先起源于东亚,其中四个殖民化事件是通过疏远或分散到新世界而重建的。我的宏观进化混合物的贝叶斯分析(BAMM)显示,整个时间或进化枝间的形态形成率没有显着差异。 Cryptogramma的形态学停滞及其稳定的物种形成速率,响应更新世期间的气候周期,表明它将能够承受由人为诱发的气候变化引起的未来范围变化。

著录项

  • 作者

    Metzgar, Jordan S.;

  • 作者单位

    University of Alaska Fairbanks.;

  • 授予单位 University of Alaska Fairbanks.;
  • 学科 Biology.;Botany.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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