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From promise to practice: pairing non-invasive sampling with genomics in conservation

机译:从承诺到实践:将非侵入性采样与基因组学配对进行保护

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摘要

Conservation genomics has become an increasingly popular term, yet it remains unclear whether the non-invasive sampling that is essential for many conservation-related studies is compatible with the minimum requirements for harnessing next-generation sequencing technologies. Here, we evaluated the feasibility of using genotyping-by-sequencing of non-invasively collected hair samples to simultaneously identify and genotype single nucleotide polymorphisms (SNPs) in a climate-sensitive mammal, the American pika (Ochotona princeps). We identified and genotyped 3,803 high-confidence SNPs across eight sites distributed along two elevational transects using starting DNA amounts as low as 1 ng. Fifty-five outlier loci were detected as candidate gene regions under divergent selection, constituting potential targets for future validation. Genome-wide estimates of gene diversity significantly and positively correlated with elevation across both transects, with all low elevation sites exhibiting significant heterozygote deficit likely due to inbreeding. More broadly, our results highlight a range of issues that must be considered when pairing genomic data collection with non-invasive sampling, particularly related to field sampling protocols for minimizing exogenous DNA, data collection strategies and quality control steps for enhancing target organism yield, and analytical approaches for maximizing cost-effectiveness and information content of recovered genomic data.
机译:保护基因组学已成为一个越来越流行的术语,但尚不清楚对于许多与保护相关的研究必不可少的非侵入性采样是否符合利用下一代测序技术的最低要求。在这里,我们评估了通过对非侵入性收集的毛发样品进行测序进行基因分型的方法,同时鉴定和识别气候敏感型哺乳动物美洲鼠兔(Ochotona princeps)的单核苷酸多态性(SNP)并进行基因分型的可行性。我们使用低至1 ng的起始DNA量,在沿两个海拔样带分布的八个位点上鉴定并基因分型了3,803个高可信度SNP。在差异选择下检测到55个离群基因座作为候选基因区域,构成了将来验证的潜在目标。全基因组范围内的基因多样性估计与两个样带的海拔高度显着正相关,所有低海拔位点都可能由于近交而表现出明显的杂合子缺陷。更广泛地说,我们的结果突出了将基因组数据收集与非侵入性采样配对时必须考虑的一系列问题,特别是与用于最小化外源DNA的现场采样方案,数据收集策略和用于提高目标生物体产量的质量控制步骤有关,以及最大程度地提高回收基因组数据的成本效益和信息含量的分析方法。

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