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基因型与环境的相互作用驱动了杂种区域中遗传变异的维持。

Genotype-by-environment interactions drive the maintenance of genetic variation in a L. hybrid zone.

作者信息

Folio Dorinda Marie, Gil Jordi, Caudron Arnaud, Labonne Jacques

机构信息

Université de Pau et des Pays de l'Adour UMR INRAE-UPPA Ecobiop Saint-Pée-sur-Nivelle France.

SCIMABIO Interface Thonon-les-Bains France.

出版信息

Evol Appl. 2021 Oct 30;14(11):2698-2711. doi: 10.1111/eva.13307. eCollection 2021 Nov.

Abstract

Allopatric gene pools can evolve in different directions through adaptive and nonadaptive processes and are therefore a source of intraspecific diversity. The connection of these previously isolated gene pools through human intervention can lead to intraspecific diversity loss, through extirpation of native populations or hybridization. However, the mechanisms leading to these situations are not always explicitly documented and are thus rarely used to manage intraspecific diversity. In particular, genotype-by-environment (GxE) interactions can drive postzygotic reproductive isolation mechanisms that may result in a mosaic of diversity patterns, depending on the local environment. We test this hypothesis using a salmonid species () in the Mediterranean (MED) area, where intensive stocking from non-native Atlantic (ATL) origins has led to various outcomes of hybridization with the native MED lineage, going from MED resilience to total extirpation full hybridization. We investigate patterns of offspring survival at egg stage in natural environments, based on parental genotypes in interaction with river temperature, to detect potential GxE interactions. Our results show a strong influence of maternal GxE interaction on embryonic survival, mediated by maternal effect through egg size, and a weak influence of paternal GxE interaction. In particular, when egg size is large and temperature is cold, the survival rate of offspring originating from MED females is three times higher than that of ATL females' offspring. Because river temperatures show contrast at small scale, this cold adaptation for MED females' offspring constitutes a potent postzygotic mechanism to explain small-scale spatial heterogeneity in diversity observed in MED areas where ATL fish have been stocked. It also indicates that management efforts could be specifically targeted at the environments that actively favor native intraspecific diversity through eco-evolutionary processes such as postzygotic selection.

摘要

异域基因库可以通过适应性和非适应性过程朝着不同方向进化,因此是种内多样性的一个来源。通过人类干预将这些先前隔离的基因库连接起来,可能会导致种内多样性丧失,这是通过本地种群的灭绝或杂交实现的。然而,导致这些情况的机制并不总是有明确记录,因此很少用于管理种内多样性。特别是,基因型与环境(GxE)的相互作用可以驱动合子后生殖隔离机制,这可能会导致多样化模式的镶嵌,具体取决于当地环境。我们在地中海(MED)地区使用一种鲑科鱼类()来检验这一假设,在该地区,来自非本地大西洋(ATL)种群的密集放流导致了与本地MED谱系杂交的各种结果,从MED的恢复力到完全灭绝 完全杂交。我们根据与河流水温相互作用的亲本基因型,研究自然环境中卵期后代的存活模式,以检测潜在的GxE相互作用。我们的结果表明,母体GxE相互作用对胚胎存活有强烈影响,通过卵大小的母体效应介导,而父体GxE相互作用的影响较弱。特别是,当卵大且温度低时,来自MED雌性的后代存活率比ATL雌性的后代高三倍。由于河流水温在小尺度上存在差异,MED雌性后代的这种冷适应构成了一种强大的合子后机制,可解释在放养了ATL鱼类的MED地区观察到的小尺度空间多样性异质性。这也表明,管理工作可以专门针对那些通过合子后选择等生态进化过程积极促进本地种内多样性的环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3482/8591331/bf676b1d4ed4/EVA-14-2698-g001.jpg

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