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阿拉伯半岛的地理隔离和极端环境条件驱动灰红树林(白骨壤)快速多样化。

Rapid diversification of grey mangroves (Avicennia marina) driven by geographic isolation and extreme environmental conditions in the Arabian Peninsula.

作者信息

Friis Guillermo, Smith Edward G, Lovelock Catherine E, Ortega Alejandra, Marshell Alyssa, Duarte Carlos M, Burt John A

机构信息

Center for Genomics and Systems Biology (CGSB) and Mubadala ACCESS Center, New York University - Abu Dhabi, Abu Dhabi, United Arab Emirates.

Department of Biological Sciences, University of North Carolina at Charlotte, Charlotte, North Carolina, USA.

出版信息

Mol Ecol. 2024 Feb;33(4):e17260. doi: 10.1111/mec.17260. Epub 2024 Jan 10.

DOI:10.1111/mec.17260
PMID:38197286
Abstract

Biological systems occurring in ecologically heterogeneous and spatially discontinuous habitats provide an ideal opportunity to investigate the relative roles of neutral and selective factors in driving lineage diversification. The grey mangroves (Avicennia marina) of Arabia occur at the northern edge of the species' range and are subject to variable, often extreme, environmental conditions, as well as historic large fluctuations in habitat availability and connectivity resulting from Quaternary glacial cycles. Here, we analyse fully sequenced genomes sampled from 19 locations across the Red Sea, the Arabian Sea and the Persian/Arabian Gulf (PAG) to reconstruct the evolutionary history of the species in the region and to identify adaptive mechanisms of lineage diversification. Population structure and phylogenetic analyses revealed marked genetic structure correlating with geographic distance and highly supported clades among and within the seas surrounding the Arabian Peninsula. Demographic modelling showed times of divergence consistent with recent periods of geographic isolation and low marine connectivity during glaciations, suggesting the presence of (cryptic) glacial refugia in the Red Sea and the PAG. Significant migration was detected within the Red Sea and the PAG, and across the Strait of Hormuz to the Arabian Sea, suggesting gene flow upon secondary contact among populations. Genetic-environment association analyses revealed high levels of adaptive divergence and detected signs of multi-loci local adaptation driven by temperature extremes and hypersalinity. These results support a process of rapid diversification resulting from the combined effects of historical factors and ecological selection and reveal mangrove peripheral environments as relevant drivers of lineage diversity.

摘要

存在于生态异质性和空间不连续栖息地中的生物系统为研究中性和选择性因素在驱动谱系多样化中的相对作用提供了理想机会。阿拉伯半岛的灰红树林(白骨壤)分布在该物种分布范围的北缘,面临着多变且往往极端的环境条件,以及由于第四纪冰川周期导致的栖息地可用性和连通性的历史大幅波动。在此,我们分析了从红海、阿拉伯海和波斯湾/阿拉伯湾(PAG)的19个地点采集的全基因组测序样本,以重建该地区该物种的进化历史,并确定谱系多样化的适应机制。种群结构和系统发育分析揭示了与地理距离相关的显著遗传结构以及阿拉伯半岛周边海域内部和之间高度支持的分支。人口统计模型显示,分歧时间与最近冰川期的地理隔离和低海洋连通性时期一致,这表明红海和PAG存在(隐秘的)冰川避难所。在红海和PAG内部以及穿过霍尔木兹海峡到阿拉伯海都检测到了显著的迁移,这表明种群在二次接触时存在基因流动。遗传-环境关联分析揭示了高水平的适应性分化,并检测到由极端温度和高盐度驱动的多位点局部适应迹象。这些结果支持了由历史因素和生态选择共同作用导致的快速多样化过程,并揭示了红树林周边环境是谱系多样性的相关驱动因素。

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