亚马逊地区硬脊灰蝶(灰蝶科)的遗传种群结构

Laura V. Campos, M. Stech, S. M. de Oliveira, Astrid MUÑOZ-ORTIZ, H. Steege, Jaime URIBE-M.
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引用次数: 0

摘要

我们研究了哥伦比亚亚马逊四个低地雨林(Amazonas、Caquetá、Putumayo和Vaupés)从树基到树冠的垂直梯度中附生苔藓植物的群落结构和多样性。64种取样的苔藓植物中的每一种都被划分为从基部(Z1)到外部冠层(Z6)的六个高度区。作为一个子项目,我们使用苔草Cheilolejeunea rigidula(Lejeuneaceae)作为我们的模式物种进行了一项遗传种群研究,该研究发生在所有六个高度区。除了来自研究地点的65个成功测序的样本外,我们还包括了来自圭亚那和巴西(马瑙斯和塔帕霍斯)的硬脊灰蝶个体,以调查该物种在整个亚马逊地区的连通性和遗传结构,并根据苔藓高度区评估遗传结构。哥伦比亚、巴西和圭亚那的每个地点都被认为是一个亚群。已测序的叶绿体标记(部分atpB基因、部分psbA基因/psbA-trnH间隔区)在亚马逊和树木高度区之间几乎没有变化。核标记(ITS)显示了一种空间结构,表明整个亚马逊地区的亚群存在遗传分化,但刚性C.rigidula在树木高度上几乎没有遗传分化。亚马逊地区的梯度显示了遗传距离和地理距离之间的关系,表明了传播的局限性(P<0.001)。在地方和区域尺度上,我们的研究结果表明,传播可以对种群和社区产生主导影响,增加连通性。
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Genetic population structure of Cheilolejeunea rigidula (Lejeuneaceae) in the Amazon region
We studied the community structure and diversity of epiphytic bryophytes in a vertical gradient from tree base to canopy in four lowland rain forest sites of the Colombian Amazon (Amazonas, Caquetá, Putumayo, and Vaupés). Each of the 64 sampled phorophytes was divided into six height zones from the base (Z1) to the outer canopy (Z6). As a subproject, we carried out a genetic population study using the liverwort Cheilolejeunea rigidula (Lejeuneaceae) as our model species, which occurred in all six height zones. In addition to 65 successfully sequenced samples from the study sites, we included individuals of C. rigidula from Guiana and Brazil (Manaus and Tapajos) to investigate the connectivity and genetic structure of this species across the Amazon region and to evaluate the genetic structure based on phorophyte height zones. Each site in Colombia, Brazil and Guiana was considered a subpopulation. The sequenced chloroplast markers (partial atpB gene, partial psbA gene/psbA-trnH spacer) showed little variation across the Amazon and the height zones on the trees. The nuclear marker (ITS) showed a spatial structure indicating genetic differentiation of subpopulations across the Amazon, but little genetic differentiation of C. rigidula along the height of the trees. The gradient across the Amazon shows a relationship between genetic distance and geographic distance, indicating dispersal limitations (P<0.001). At local and regional scales, our results suggest that dispersal can have a dominant effect on populations and communities, increasing connectivity.
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