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优化自然种群数量性状基因组分析的抽样设计和测序策略。

Optimizing sampling design and sequencing strategy for the genomic analysis of quantitative traits in natural populations.

作者信息

Paril Jefferson F, Balding David J, Fournier-Level Alexandre

机构信息

School of Biosciences, The University of Melbourne, Parkville, Victoria, Australia.

Melbourne Integrative Genomics, The University of Melbourne, Parkville, Victoria, Australia.

出版信息

Mol Ecol Resour. 2022 Jan;22(1):137-152. doi: 10.1111/1755-0998.13458. Epub 2021 Jul 16.

Abstract

Mapping the genes underlying ecologically relevant traits in natural populations is fundamental to develop a molecular understanding of species adaptation. Current sequencing technologies enable the characterization of a species' genetic diversity across the landscape or even over its whole range. The relevant capture of the genetic diversity across the landscape is critical for a successful genetic mapping of traits and there are no clear guidelines on how to achieve an optimal sampling and which sequencing strategy to implement. Here we determine, through simulation, the sampling scheme that maximizes the power to map the genetic basis of a complex trait in an outbreeding species across an idealized landscape and draw genomic predictions for the trait, comparing individual and pool sequencing strategies. Our results show that quantitative trait locus detection power and prediction accuracy are higher when more populations over the landscape are sampled and this is more cost-effectively done with pool sequencing than with individual sequencing. Additionally, we recommend sampling populations from areas of high genetic diversity. As progress in sequencing enables the integration of trait-based functional ecology into landscape genomics studies, these findings will guide study designs allowing direct measures of genetic effects in natural populations across the environment.

摘要

绘制自然种群中与生态相关性状的潜在基因图谱,对于从分子层面理解物种适应性至关重要。当前的测序技术能够描绘一个物种在整个地理区域甚至其整个分布范围内的遗传多样性特征。在整个地理区域有效捕获遗传多样性,对于成功进行性状的基因定位至关重要,然而对于如何实现最优采样以及采用何种测序策略,尚无明确的指导方针。在此,我们通过模拟确定了一种采样方案,该方案能在理想化地理区域中,最大化绘制一个远交物种复杂性状遗传基础的能力,并针对该性状进行基因组预测,同时比较个体测序和混合测序策略。我们的结果表明,当对更多地理区域的种群进行采样时,数量性状基因座检测能力和预测准确性更高,而且采用混合测序比个体测序更具成本效益。此外,我们建议从高遗传多样性区域采样种群。随着测序技术的进步,能够将基于性状的功能生态学整合到景观基因组学研究中,这些发现将指导研究设计,从而直接测量整个环境中自然种群的遗传效应。

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