首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Polygenic basis for adaptive morphological variation in a threatened Aotearoa | New Zealand bird, the hihi (Notiomystis cincta)
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Polygenic basis for adaptive morphological variation in a threatened Aotearoa | New Zealand bird, the hihi (Notiomystis cincta)

机译:威胁AOTEAROA的适应性形态变异的多种必要基础 新西兰鸟,Hihi(Notiomystis counta)

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To predict if a threatened species can adapt to changing selective pressures, it is crucial to understand the genetic basis of adaptive traits, especially in species historically affected by severe bottlenecks. We estimated the heritability of three hihi (Notiomystis cincta) morphological traits known to be under selection (nestling tarsus length, body mass and head-bill length) using 523 individuals and 39 699 single nucleotide polymorphisms (SNPs) from a 50 K Affymetrix SNP chip. We then examined the genetic architecture of the traits via chromosome partitioning analyses and genome-wide association scans (GWAS). Heritabilities estimated using pedigree relatedness or genomic relatedness were low. For tarsus length, the proportion of genetic variance explained by each chromosome was positively correlated with its size, and more than one chromosome explained significant variation for body mass and head-bill length. Finally, GWAS analyses suggested many loci of small effect contributing to trait variation for all three traits, although one locus (an SNP within an intron of the transcription factorHEY2) was tentatively associated with tarsus length. Our findings suggest a polygenic nature for the morphological traits, with many small effect size loci contributing to the majority of the variation, similar to results from many other wild populations. However, the small effective population size, polygenic architecture and already low heritabilities suggest that both the total response and rate of response to selection are likely to be limited in hihi.
机译:为了预测受威胁物种是否能够适应不断变化的选择压力,了解适应性特征的遗传基础至关重要,尤其是在历史上受到严重瓶颈影响的物种中。我们使用523个个体和来自50K Affymetrix SNP芯片的39699个单核苷酸多态性(SNP)估计了已知处于选择下的三个hihi(Notiomystis cincta)形态性状(雏鸟跗长、体重和头喙长)的遗传力。然后,我们通过染色体分割分析和全基因组关联扫描(GWAS)研究了这些性状的遗传结构。使用系谱相关度或基因组相关度估计的遗传率较低。就跗骨长度而言,每条染色体解释的遗传变异比例与其大小呈正相关,并且不止一条染色体解释了体重和头喙长度的显著变异。最后,GWAS分析表明,尽管有一个位点(转录因子Rhey2内含子内的SNP)暂时与跗骨长度相关,但对所有三个性状的性状变异都有许多小影响的位点。我们的研究结果表明,形态性状具有多基因性质,许多小效应大小的基因座导致了大部分变异,类似于许多其他野生种群的结果。然而,有效群体规模小、多基因结构和已经很低的遗传率表明,hihi的总反应和对选择的反应率都可能受到限制。

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