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基于环介导等温扩增技术(LAMP)的分子性别鉴定在具有不同性别特异性线粒体基因组的雌雄异体海洋双壳贝类()中的应用

LAMP-based molecular sexing in a gonochoric marine bivalve () with divergent sex-specific mitochondrial genomes.

作者信息

Le Cam Sabrina, Brémaud Julie, Malkócs Tamás, Kreckelbergh Eugénie, Becquet Vanessa, Dubillot Emmanuel, Garcia Pascale, Breton Sophie, Pante Eric

机构信息

Laboratoire Littoral Environnement et Sociétés (LIENSs) UMR 7266 CNRS - La Rochelle Université La Rochelle France.

Département de sciences biologiques Université de Montréal Montréal Québec Canada.

出版信息

Ecol Evol. 2023 Aug 25;13(8):e10320. doi: 10.1002/ece3.10320. eCollection 2023 Aug.

Abstract

Taking advantage of the unique system of doubly uniparental inheritance (DUI) of mitochondria, we developed a reliable molecular method to sex individuals of the marine bivalve . In species with DUI (~100 known bivalves), both sexes transmit their mitochondria: males bear both a male- and female-type mitogenome, while females bear only the female type. Male and female mitotypes are sufficiently divergent to reliably PCR-amplify them specifically. Loop-mediated isothermal amplification (LAMP) is a precise, economical and portable alternative to PCR for molecular sexing and we demonstrate its application in this context. We used 154 individuals sampled along the Atlantic coast of France and sexed microscopically by gonad examination to test for the congruence among gamete type, PCR sexing and LAMP sexing. We show an exact match among the sexing results from these three methods using the male and female mt- genes. DUI can be disrupted in inter-specific hybrids, causing unexpected distribution of mitogenomes, such as homoplasmic males or heteroplasmic females. To our knowledge, DUI disruption at the intra-specific scale has never been tested. We applied our sexing protocol to control for unexpected heteroplasmy caused by hybridization between divergent genetic lineages and found no evidence of disruption in the mode of mitochondrial inheritance in . We propose LAMP as a useful tool to accelerate eco-evolutionary studies of DUI. It offers the opportunity to investigate the potential role of, previously unaccounted-for, sex-specific patterns such as sexual selection or sex-specific dispersal bias in the evolution of free-spawning benthic species.

摘要

利用线粒体独特的双单亲遗传(DUI)系统,我们开发了一种可靠的分子方法来鉴定海洋双壳贝类的性别。在具有DUI的物种(约100种已知双壳贝类)中,两性都会传递它们的线粒体:雄性同时拥有雄性和雌性类型的线粒体基因组,而雌性只拥有雌性类型的线粒体基因组。雄性和雌性线粒体类型差异足够大,能够通过PCR特异性地可靠扩增。环介导等温扩增(LAMP)是一种用于分子性别鉴定的精确、经济且便携的PCR替代方法,我们在此展示了其应用。我们使用了沿法国大西洋海岸采集的154个个体,通过性腺检查进行显微镜下性别鉴定,以测试配子类型、PCR性别鉴定和LAMP性别鉴定之间的一致性。我们使用雄性和雌性线粒体基因表明,这三种方法的性别鉴定结果完全匹配。DUI在种间杂交中可能会被破坏,导致线粒体基因组出现意外分布,例如同质性雄性或异质性雌性。据我们所知,种内尺度的DUI破坏从未被测试过。我们应用我们的性别鉴定方案来控制由不同遗传谱系杂交引起的意外异质性,并且在[具体物种名称未给出]中未发现线粒体遗传模式被破坏的证据。我们提出LAMP作为加速DUI生态进化研究的有用工具。它提供了一个机会来研究以前未被考虑的性别特异性模式,如性选择或性别特异性扩散偏差在自由产卵底栖物种进化中的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9230/10450836/b7bd0400c0ba/ECE3-13-e10320-g003.jpg

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