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一种泛热带海鸟群体间的遗传结构:对亚种验证和保护的意义。

Genetic structuring among colonies of a pantropical seabird: Implication for subspecies validation and conservation.

作者信息

Humeau Laurence, Le Corre Matthieu, Reynolds Silas James, Wearn Colin, Hennicke Janos C, Russell James C, Gomard Yann, Magalon Hélène, Pinet Patrick, Gélin Pauline, Couzi François-Xavier, Bemanaja Etienne, Tatayah Vikash, Ousseni Bacar, Rocamora Gérard, Talbot Patrick, Shah Nirmal, Bugoni Leandro, Da Silva Denis, Jaeger Audrey

机构信息

UMR PVBMT Université de La Réunion CIRAD Saint-Denis Cedex 9 La Réunion France.

UMR ENTROPIE Université de La Réunion IRD CNRS Saint-Denis Cedex 9 La Réunion France.

出版信息

Ecol Evol. 2020 Sep 29;10(21):11886-11905. doi: 10.1002/ece3.6635. eCollection 2020 Nov.

Abstract

Investigations of the genetic structure of populations over the entire range of a species yield valuable information about connectivity among populations. Seabirds are an intriguing taxon in this regard because they move extensively when not breeding, facilitating intermixing of populations, but breed consistently on the same isolated islands, restricting gene flow among populations. The degree of genetic structuring of populations varies extensively among seabird species but they have been understudied in their tropical ranges. Here, we address this across a broad spatial scale by using microsatellite and mitochondrial data to explore the population connectivity of 13 breeding populations representing the six subspecies of the white-tailed tropicbird () in the Atlantic, Indian, and Pacific Oceans. Our primary aim was to identify appropriate conservation units for this little known species. Three morphometric characters were also examined in the subspecies. We found a clear pattern of population structuring with four genetic groups. The most ancient and the most isolated group was in the northwestern Atlantic Ocean. The South Atlantic populations and South Mozambique Channel population on Europa were genetically isolated and may have had a common ancestor. Birds from the Indo-Pacific region showed unclear and weak genetic differentiation. This structuring was most well defined from nuclear and mtDNA markers but was less well resolved by morphological data. The validity of classifying white-tailed tropicbirds into six distinct subspecies is discussed in light of our new findings. From a conservation standpoint our results highlight that the three most threatened conservation units for this species are the two subspecies of the tropical North and South Atlantic Oceans and that of Europa Island in the Indian Ocean.

摘要

对一个物种整个分布范围内的种群遗传结构进行调查,可以获得有关种群间连通性的宝贵信息。在这方面,海鸟是一个有趣的类群,因为它们在非繁殖期广泛迁徙,促进了种群间的混合,但却始终在同一孤立岛屿上繁殖,限制了种群间的基因流动。海鸟物种之间种群遗传结构的程度差异很大,但在其热带分布范围内对它们的研究较少。在这里,我们通过使用微卫星和线粒体数据,在广泛的空间尺度上探讨了代表大西洋、印度洋和太平洋上白尾热带鸟()六个亚种的13个繁殖种群的种群连通性。我们的主要目标是为这个鲜为人知的物种确定合适的保护单元。我们还研究了亚种的三个形态特征。我们发现了一个有四个遗传组的明显种群结构模式。最古老和最孤立的群体位于大西洋西北部。南大西洋种群和欧罗巴岛上的莫桑比克海峡南部种群在基因上是孤立的,可能有一个共同的祖先。来自印度-太平洋地区的鸟类表现出不明确且微弱的遗传分化。这种结构从核标记和线粒体DNA标记中最为明确,但通过形态学数据的解析度较低。根据我们的新发现,讨论了将白尾热带鸟分为六个不同亚种的有效性。从保护的角度来看,我们的结果突出表明,该物种最受威胁的三个保护单元是热带北大西洋和南大西洋的两个亚种以及印度洋欧罗巴岛的亚种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f28/7663974/39d9d0f3e8c4/ECE3-10-11886-g001.jpg

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