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Applications of Multiple Nuclear Genes to the Molecular Phylogeny, Population Genetics and Hybrid Identification in the Mangrove Genus Rhizophora

机译:多种核基因在红树林类根瘤菌的分子系统发育,种群遗传和杂种鉴定中的应用

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摘要

The genus Rhizophora is one of the most important components of mangrove forests. It is an ideal system for studying biogeography, molecular evolution, population genetics, hybridization and conservation genetics of mangroves. However, there are no sufficient molecular markers to address these topics. Here, we developed 77 pairs of nuclear gene primers, which showed successful PCR amplifications across all five Rhizophora species and sequencing in R. apiculata. Here, we present three tentative applications using a subset of the developed nuclear genes to (I) reconstruct the phylogeny, (II) examine the genetic structure and (III) identify natural hybridization in Rhizophora. Phylogenetic analyses support the hypothesis that Rhizophora had disappeared in the Atlantic-East Pacific (AEP) region and was re-colonized from the IWP region approximately 12.7 Mya. Population genetics analyses in four natural populations of R. apiculata in Hainan, China, revealed extremely low genetic diversity, strong population differentiation and extensive admixture, suggesting that the Pleistocene glaciations, particularly the last glacial maximum, greatly influenced the population dynamics of R. apiculata in Hainan. We also verified the hybrid status of a morphologically intermediate individual between R. apiculata and R. stylosa in Hainan. Based on the sequences of five nuclear genes and one chloroplast intergenic spacer, this individual is likely to be an F1 hybrid, with R. stylosa as its maternal parent. The nuclear gene markers developed in this study should be of great value for characterizing the hybridization and introgression patterns in other cases of this genus and testing the role of natural selection using population genomics approaches.
机译:Rhizophora属是红树林的最重要组成部分之一。它是研究红树林生物地理,分子进化,种群遗传学,杂交和保护遗传学的理想系统。但是,没有足够的分子标记来解决这些问题。在这里,我们开发了77对核基因引物,这些引物显示了在所有5个根瘤菌属物种中的成功PCR扩增以及在尖头鸦片中的测序。在这里,我们提出了三个初步的应用程序,它们使用已开发的核基因的一个子集来(I)重建系统发育,(II)检查遗传结构,(III)鉴定根瘤菌中的自然杂交。系统发育分析支持以下假说:根瘤菌已在大西洋-东太平洋(AEP)地区消失,并已从IWP地区重新定殖,大约为12.7 Mya。在中国海南的4个自然界红点石。种群的种群遗传学分析显示,遗传多样性极低,种群分化强烈和广泛的混合,这表明更新世冰川,尤其是最后一次冰川期,极大地影响了该点的种群动态。在海南我们还验证了海南尖头鸦片和手写笔之间的形态中间个体的杂交状态。根据五个核基因和一个叶绿体基因间隔子的序列,该个体很可能是F1杂种,以R. stylosa作为其母本。在这项研究中开发的核基因标记对于表征该属其他情况下的杂交和渗入模式以及使用种群基因组学方法测试自然选择的作用应具有重要价值。

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