首页> 外文期刊>Evolution: International Journal of Organic Evolution >Assortative fertilization and selection at larval stage in the mussels Mytilus edulis and M-galloprovincialis
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Assortative fertilization and selection at larval stage in the mussels Mytilus edulis and M-galloprovincialis

机译:贻贝贻贝和M-galloprovincialis幼体期的分类施肥和选择

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Assortative mating (prezygotic isolation) and reduced hybrid fitness (postzygotic isolation) are typically invoked to explain the stability of hybrid zones. In the tension zone model. these factors work in opposition to migration, which promotes genetic homogeneity. Many marine animals migrate over long distances through a planktonic larval stage. Therefore. strong reproductive isolation is needed to maintain stable marine hybrid zones. However, surprisingly little is known about mating preferences and hybrid fitness in marine organisms. Smooth-shelled mussels (Mytilus spp.) form a well-known species complex, with hybridization over extensive areas such as the contact zone of M. edulis and M. galloprovincialis around European Atlantic coasts. This paper reports direct experimental evidence of assortative fertilization. hybrid larval inviability, and early heterosis for growth rate in M. edulis and M. galloprovincialis. Four crosses between pure M. edulis and M galloprovincialis were analyzed with a new polymerase-chain-reaction-based diagnostic marker. Gamete competition between taxa was allowed in two out of the four crosses. Genotype frequencies observed at an early stage (36 h after fertilization) unambiguously revealed assortative fertilization when gamete competition was allowed. A significant reduction in hybrid viability was subsequently observed during the larval stage. At the same stage an antagonistic effect, heterosis, was observed on growth rate. However, even if heterosis is observed in the F-1, it is expected to vanish in subsequent hybrid generations. Although specialization for different habitats and asynchronous spawning have been mentioned as factors contributing to the maintenance of the blue mussel hybrid zone in Europe, we argue that assortative fertilization and reduced hybrid fitness are important factors that also contribute to the stabilization of this zone. These results emphasize that multiple factors may act concomitantly in a barrier to gene flow, especially in complex life cycles. Furthermore, they show that assortative mating through gamete preference. as already demonstrated for sea urchins, may play a role in speciation processes taking place in the sea. [References: 41]
机译:通常使用分类交配(合子分离)和降低的杂交适应性(合子后分离)来解释杂交区的稳定性。在张力区模型。这些因素与迁移相反,后者促进了遗传同质性。许多海洋动物通过浮游幼虫阶段长距离迁移。因此。为了保持稳定的海洋杂种区,需要强有力的生殖隔离。然而,令人惊讶的是,人们对海洋生物的交配偏好和杂交适应性知之甚少。光滑的贻贝(Mytilus spp。)形成了一个众所周知的物种复合体,并在欧洲大西洋沿岸的可食蓝藻和盖氏蓝藻的接触区等广泛区域杂交。本文报道了分类施肥的直接实验证据。杂种幼虫的成活率,以及早期食用杂种优势对M. edulis和M. galloprovincialis的生长。用一种新的基于聚合酶链反应的诊断标记分析了纯净的食用支原体和盖洛普氏菌之间的四个杂交。在四个十字中的两个十字中允许在分类群之间进行配子竞争。在允许配子竞争的情况下,在早期(受精后36 h)观察到的基因型频率清楚地表明了分类受精。随后在幼体阶段观察到杂交活力的显着降低。在同一阶段,观察到对生长速率有拮抗作用,即杂种优势。但是,即使在F-1中观察到杂种优势,也有望在随后的杂种世代中消失。尽管已经提到了针对不同栖息地的专业化和异步产卵是有助于维护欧洲蓝贻贝杂交区的因素,但我们认为,不同的施肥和降低的杂交适应性也是促进该区稳定的重要因素。这些结果强调,多种因素可能在基因流动的障碍中同时起作用,尤其是在复杂的生命周期中。此外,他们还显示了通过配子偏好进行的交配。正如已经针对海胆所证明的那样,可能在海中发生的物种形成过程中起作用。 [参考:41]

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