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Signatures of selection for bonamiosis resistance in European flat oyster (Ostrea edulis): New genomic tools for breeding programs and management of natural resources

机译:欧洲扁牡蛎(食用牡蛎)抗邦氏病选择的签名:育种计划和自然资源管理的新基因组工具

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摘要

The European flat oyster (Ostrea edulis) is a highly appreciated mollusk with an important aquaculture production throughout the 20th century, in addition to playing an important role on coastal ecosystems. Overexploitation of natural beds, habitat degradation, introduction of non‐native species, and epidemic outbreaks have severely affected this important resource, particularly, the protozoan parasite Bonamia ostreae, which is the main concern affecting its production and conservation. In order to identify genomic regions and markers potentially associated with bonamiosis resistance, six oyster beds distributed throughout the European Atlantic coast were sampled. Three of them have been exposed to this parasite since the early 1980s and showed some degree of innate resistance (long‐term affected group, LTA), while the other three were free of B. ostreae at least until sampling date (naïve group, NV). A total of 14,065 SNPs were analyzed, including 37 markers from candidate genes and 14,028 from a medium‐density SNP array. Gene diversity was similar between LTA and NV groups suggesting no genetic erosion due to long‐term exposure to the parasite, and three population clusters were detected using the whole dataset. Tests for divergent selection between NV and LTA groups detected the presence of a very consistent set of 22 markers, located within a putative single genomic region, which suggests the presence of a major quantitative trait locus associated with B. ostreae resistance. Moreover, 324 outlier loci associated with factors other than bonamiosis were identified allowing fully discrimination of all the oyster beds. A practical tool which included the 84 highest discriminative markers for tracing O. edulis populations was developed and tested with empirical data. Results reported herein could assist the production of stocks with improved resistance to bonamiosis and facilitate the management of oyster beds for recovery production and ecosystem services provided by this species.
机译:欧洲扁牡蛎(Ostrea edulis)是备受赞誉的软体动物,在整个20世纪中都具有重要的水产养殖产量,此外还对沿海生态系统起着重要作用。天然床的过度开发,栖息地的退化,非本地物种的引进和流行病的爆发严重影响了这一重要资源,特别是原生动物寄生虫Bon鱼Bonamia ostreae,这是影响其生产和保护的主要问题。为了确定潜在的与邦氏病抗性相关的基因组区域和标记,对分布在整个欧洲大西洋沿岸的六个牡蛎床进行了采样。自1980年代初以来,其中三人已暴露于这种寄生虫并表现出一定程度的先天性抵抗力(长期感染组,LTA),而其他三人至少在取样日期之前没有B.ostreae(纯净组,NV) )。共分析了14,065个SNP,包括来自候选基因的37个标记和来自中等密度SNP阵列的14,028个。 LTA组和NV组之间的基因多样性相似,这表明由于长期暴露于寄生虫而没有遗传侵蚀,并且使用整个数据集检测到三个种群群。 NV和LTA组之间的差异选择测试检测到存在22个非常一致的标记集,这些标记位于假定的单个基因组区域内,这表明存在与B.ostreae抗性相关的主要定量性状基因座。此外,已鉴定出324个与bonamiosis以外的因素有关的异常基因座,从而可以完全区分所有牡蛎床。开发了一种实用工具,其中包括84种用于区分食用麦芽球菌的最高判别标记,并通过经验数据进行了测试。本文报道的结果可协助生产具有增强的抗邦米虫病能力的种群,并促进牡蛎床的管理,以恢复该物种提供的产量和生态系统服务。

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