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How do species barriers decay? Concordance and local introgression in mosaic hybrid zones of mussels.物种屏障如何消解?贻贝镶嵌杂交区的一致性和局域渐渗
J Evol Biol. 2021 Jan;34(1):208-223. doi: 10.1111/jeb.13709. Epub 2020 Oct 18.
2
Towards the completion of speciation: the evolution of reproductive isolation beyond the first barriers.朝着物种形成的完成:超越第一道障碍的生殖隔离进化。
Philos Trans R Soc Lond B Biol Sci. 2020 Aug 31;375(1806):20190528. doi: 10.1098/rstb.2019.0528. Epub 2020 Jul 13.
3
Replicated anthropogenic hybridisations reveal parallel patterns of admixture in marine mussels.重复的人为杂交揭示了海洋贻贝混合的平行模式。
Evol Appl. 2019 Nov 22;13(3):575-599. doi: 10.1111/eva.12879. eCollection 2020 Mar.
4
Twin introductions by independent invader mussel lineages are both associated with recent admixture with a native congener in Australia.独立入侵贻贝谱系的两次引入均与近期在澳大利亚与本地同属物种的混合有关。
Evol Appl. 2019 Sep 18;13(3):515-532. doi: 10.1111/eva.12857. eCollection 2020 Mar.
5
Cryptic diversity in smooth-shelled mussels on Southern Ocean islands: connectivity, hybridisation and a marine invasion.南大洋岛屿上光滑壳贻贝的隐秘多样性:连通性、杂交与一次海洋入侵。
Front Zool. 2019 Aug 6;16:32. doi: 10.1186/s12983-019-0332-y. eCollection 2019.
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Detecting the True Extent of Introgression during Anthropogenic Hybridization.检测人为杂交过程中的真实渗入程度。
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Deleterious variation shapes the genomic landscape of introgression.有害变异塑造了基因渐渗的基因组景观。
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8
Temporal dynamics of genetic clines of invasive European green crab () in eastern North America.北美东部入侵性欧洲绿蟹()遗传渐变群的时间动态。
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Coadapted genomes and selection on hybrids: Fisher's geometric model explains a variety of empirical patterns.协同适应的基因组与杂种选择:费希尔几何模型解释了多种实证模式。
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Analysis of Genome-Wide Differentiation between Native and Introduced Populations of the Cupped Oysters Crassostrea gigas and Crassostrea angulata.中国牡蛎和近江牡蛎的本地和引种群体的全基因组分化分析。
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人为杂交在海洋中:与入侵物种管理相关的三个进化问题。

Anthropogenic hybridization at sea: three evolutionary questions relevant to invasive species management.

机构信息

AD2M, Station Biologique de Roscoff, Sorbonne Université, CNRS, Roscoff, France.

School of Biological Sciences, The University of Queensland, St Lucia, Queensland, Australia.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2020 Aug 31;375(1806):20190547. doi: 10.1098/rstb.2019.0547. Epub 2020 Jul 13.

DOI:10.1098/rstb.2019.0547
PMID:32654643
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7423285/
Abstract

Species introductions promote secondary contacts between taxa with long histories of allopatric divergence. Anthropogenic contact zones thus offer valuable contrasts to speciation studies in natural systems where past spatial isolations may have been brief or intermittent. Investigations of anthropogenic hybridization are rare for marine animals, which have high fecundity and high dispersal ability, characteristics that contrast to most terrestrial animals. Genomic studies indicate that gene flow can still occur after millions of years of divergence, as illustrated by invasive mussels and tunicates. In this context, we highlight three issues: (i) the effects of high propagule pressure and demographic asymmetries on introgression directionality, (ii) the role of hybridization in preventing introduced species spread, and (iii) the importance of postzygotic barriers in maintaining reproductive isolation. Anthropogenic contact zones offer evolutionary biologists unprecedented large scale hybridization experiments. In addition to breaking the highly effective reproductive isolating barrier of spatial segregation, they allow researchers to explore unusual demographic contexts with strong asymmetries. The outcomes are diverse, from introgression swamping to strong barriers to gene flow, and lead to local containment or widespread invasion. These outcomes should not be neglected in management policies of marine invasive species. This article is part of the theme issue 'Towards the completion of speciation: the evolution of reproductive isolation beyond the first barriers'.

摘要

物种引入促进了具有长期地理隔离历史的分类单元之间的二次接触。因此,人为接触区为物种形成研究提供了有价值的对比,在自然系统中,过去的空间隔离可能是短暂的或间歇性的。对于具有高繁殖力和高扩散能力的海洋动物,对人为杂交的研究很少,这些特征与大多数陆地动物形成鲜明对比。基因组研究表明,即使在数百万年的分化之后,基因仍能流动,入侵贻贝和被囊动物就是例证。在这种情况下,我们强调三个问题:(i)高繁殖体压力和人口统计学上的不对称性对基因渐渗方向的影响,(ii)杂交在防止引入物种传播中的作用,以及(iii)合子后障碍在维持生殖隔离中的重要性。人为接触区为进化生物学家提供了前所未有的大规模杂交实验。除了打破空间隔离的高度有效生殖隔离屏障外,它们还允许研究人员探索具有强烈不对称性的不寻常人口统计学背景。结果是多种多样的,从渐渗淹没到基因流动的强烈障碍,导致局部容纳或广泛入侵。在海洋入侵物种的管理政策中,不应忽视这些结果。本文是主题为“迈向物种形成完成:超越第一道障碍的生殖隔离进化”的一部分。