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Validation and association of candidate markers for adult migration timing and fitness in Chinook Salmon

机译:Chinook Salmon成人移民时机候选标记的验证与关联

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摘要

Recent studies have begun to elucidate the genetic basis for phenotypic traits in salmonid species, but many questions remain before these candidate genes can be directly incorporated into conservation management. In Chinook Salmon (Oncorhynchus tshawytscha), a region of major effect for migration timing has been discovered that harbors two adjacent candidate genes (greb1L, rock1), but there has been limited work to examine the association between these genes and migratory phenotypes at the individual, compared to the population, level. To provide a more thorough test of individual phenotypic association within lineages of Chinook Salmon, 33 candidate markers were developed across a 220 Kb region on chromosome 28 previously associated with migration timing. Candidate and neutral markers were genotyped in individuals from representative collections that exhibit phenotypic variation in timing of arrival to spawning grounds from each of three lineages of Chinook Salmon. Association tests confirmed the majority of markers on chromosome 28 were significantly associated with arrival timing and the strongest association was consistently observed for markers within the rock1 gene and the intergenic region between greb1L and rock1. Candidate markers alone explained a wide range of phenotypic variation for Lower Columbia and Interior ocean‐type lineages (29% and 78%, respectively), but less for the Interior stream‐type lineage (5%). Individuals that were heterozygous at markers within or upstream of rock1 had phenotypes that suggested a pattern of dominant inheritance for early arrival across populations. Finally, previously published fitness estimates from the Interior stream‐type lineage enabled tests of association with arrival timing and two candidate markers, which revealed that fish with homozygous mature genotypes had slightly higher fitness than fish with premature genotypes, while heterozygous fish were intermediate. Overall, these results provide additional information for individual‐level genetic variation associated with arrival timing that may assist with conservation management of this species.
机译:最近的研究已经开始阐明鲑鱼类中表型性状的遗传基础,但在这些候选基因可以直接纳入保护管理之前留下了许多问题。在Chinook Salmon(Oncorhynchus Tshawytscha)中,已经发现了一种主要效果对迁移时序的区域,其中哈博尔斯两个相邻的候选基因(Greb1l,Rock1),但是有限的工作来检查这些基因与个人的迁移表型之间的关联,与人口相比,水平。为了在奇努克鲑鱼的谱系内提供更彻底的个体表型关联的测试,在先前与迁移正时相关的220kb区域上产生33种候选标记。候选和中性标记在来自代表性收集的个体中的基因分型,其表现出到达时序的表型变异,从奇努克鲑鱼的三个谱系中的每个三个谱系中的产卵场。结合试验证实了染色体28上的大部分标记与到达时序显着相关,并且始终如一地观察到Rock1基因内标记物的最强的关联和GREB1L和ROCK1之间的代际区域。单独的候选标记对低哥伦比亚和室内海洋型谱系进行了广泛的表型变异(分别为29%和78%),但内部流式谱(5%)较少。在Rock1内或上游标记的杂合的个体具有表型,表明跨越人群早期到达的主要遗传模式。最后,先前公布的室内流型谱系的健身估计能够与到达时序的关联测试和两个候选标记,显示出具有纯合成熟基因型的鱼类的健身略高于具有早期基因型的鱼类,而杂合鱼是中间体的。总体而言,这些结果为可以协助该物种保护管理的到达时序提供了与抵达时序相关的个人级别遗传变化的额外信息。

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