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Local heterozygosity-fitness correlations with global positive effects on fitness in threespine stickleback

机译:局部杂合度-健身度相关性对三脊椎棘背式健身的整体积极影响

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The complex interactions between genetic diversity and evolution have important implications in many biological areas including conservation, speciation, and mate choice. A common way to study these interactions is to look at heterozygosity-fitness correlations (HFCs). Until recently, HFCs based on noncoding markers were believed to result primarily from global inbreeding effects. However, accumulating theoretical and empirical evidence shows that HFCs may often result from genes being linked to the markers used (local effect). Moreover, local effect HFCs could differ from global inbreeding effects in their direction and occurrence. Consequently, the investigation of the structure and consequences of local HFCs is emerging as a new important goal in evolutionary biology. In this study of a wild threespine stickleback (Gasterosteus aculeatus) population, we first tested the presence of significant positive or negative local effects of heterozygosity at 30 microsatellites loci on five fitness components: survival, mating success, territoriality, length, and body condition. Then, we evaluated the direction and shape of total impact of local HFCs, and estimated the magnitude of the impacts on fitness using regression coefficients and selection differentials. We found that multilocus heterozygosity was not a reliable estimator of individual inbreeding coefficient, which supported the relevance of single-locus based analyses. Highly significant and temporally stable local HFCs were observed. These were mainly positive, but negative effects of heterozygosity were also found. Strong and opposite effects of heterozygosity are probably present in many populations, but may be blurred in HFC analyses looking for global effects only. In this population, both negative and positive HFCs are apparently driving mate preference by females, which is likely to contribute to the maintenance of both additive and nonadditive genetic variance.
机译:遗传多样性与进化之间复杂的相互作用在许多生物领域都具有重要意义,包括保护,物种形成和配偶选择。研究这些相互作用的一种常见方法是查看杂合度-适合度相关性(HFC)。直到最近,人们仍认为基于非编码标记的氢氟碳化合物主要是由全球近亲繁殖产生的。但是,越来越多的理论和经验证据表明,HFC可能通常是由于基因与所使用的标记相关联而产生的(局部效应)。此外,局部效应氢氟碳化合物的方向和发生可能与全球近交效应不同。因此,对本地氢氟碳化合物的结构和后果的研究正在成为进化生物学的一个新的重要目标。在这项关于野生三脊背棘背G(Gasterosteus aculeatus)种群的研究中,我们首先测试了30个微卫星基因座上杂合性在五个适应性组成部分上存在显着的正向或负向局部效应的五个方面:生存,交配成功,地域性,长度和身体状况。然后,我们评估了局部HFC的总影响的方向和形状,并使用回归系数和选择差异估计了对健康的影响的大小。我们发现多基因座杂合度不是单个近交系数的可靠估计,这支持了基于单基因座分析的相关性。观察到高度重要且时间稳定的局部HFC。这些主要是正面的,但是也发现了杂合性的负面影响。杂合性的强而相反的影响可能存在于许多人群中,但在仅寻找整体影响的HFC分析中可能模糊不清。在这一人群中,阴性和阳性HFC显然都在推动雌性的择偶,这可能有助于维持加性和非加性遗传变异。

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