What mandrills leave behind: using fecal samples to characterize the major histocompatibility complex in a threatened primate

IF 2 3区 环境科学与生态学 Q2 BIODIVERSITY CONSERVATION
Anna Weber, Jackie Lighten, Cock van Oosterhout, Amour Guibinga Mickala, Stephan Ntie, Patrick Mickala, David Lehmann, Katharine Abernethy, Nicola Anthony
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Abstract

The major histocompatibility complex (MHC) can be useful in guiding conservation planning because of its influence on immunity, fitness, and reproductive ecology in vertebrates. The mandrill (Mandrillus sphinx) is a threatened primate endemic to central Africa. Considerable research in this species has shown that the MHC is important for disease resistance, mate choice, and reproductive success. However, all previous MHC research in mandrills has focused on an inbred semi-captive population, so their genetic diversity may have been underestimated. Here we expand our current knowledge of mandrill MHC variation by performing next-generation sequencing of non-invasively collected fecal samples from a large wild horde in central Gabon. We observe MHC lineages and alleles shared with other primates, and we uncover 45 putative new class II MHC DRB alleles, including representatives of the DRB9 pseudogene, which has not previously been identified in mandrills. We also document methodological challenges associated with fecal samples in NGS-based MHC research. Even with high read depth, the replicability of alleles from fecal samples was lower than that of tissue samples, and allele assignments are inconsistent between sample types. Further, the common assumption that variants with very high read depth should represent true alleles does not appear to be reliable for fecal samples. Nevertheless, the use of degraded DNA in the present study still enabled significant progress in quantifying immunogenetic diversity and its evolution in wild primates.

Abstract Image

山魈留下了什么:使用粪便样本来表征濒危灵长类动物的主要组织相容性复合体
主要组织相容性复合体(MHC)对脊椎动物的免疫、适应性和生殖生态具有重要影响,可用于指导保护规划。山魈(Mandrillus sphinx)是中非特有的濒危灵长类动物。对这一物种的大量研究表明,MHC对抗病、择偶和繁殖成功都很重要。然而,之前所有对山魈的MHC研究都集中在近交的半圈养种群上,因此它们的遗传多样性可能被低估了。在这里,我们通过对加蓬中部一个大型野生种群非侵入性收集的粪便样本进行下一代测序,扩展了我们目前对山魈MHC变异的了解。我们观察了与其他灵长类动物共有的MHC谱系和等位基因,并发现了45个推定的新的II类MHC DRB等位基因,包括DRB9假基因的代表,这是以前未在山魈中发现的。我们还记录了在基于ngs的MHC研究中与粪便样本相关的方法学挑战。即使具有较高的读取深度,来自粪便样本的等位基因的可复制性也低于组织样本,并且等位基因分配在样本类型之间不一致。此外,通常认为具有非常高读取深度的变异应该代表真正的等位基因的假设对于粪便样本似乎并不可靠。尽管如此,在本研究中使用降解DNA仍然使野生灵长类动物免疫遗传多样性及其进化的量化取得了重大进展。
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来源期刊
Conservation Genetics
Conservation Genetics 环境科学-生物多样性保护
CiteScore
3.80
自引率
4.50%
发文量
58
审稿时长
1 months
期刊介绍: Conservation Genetics promotes the conservation of biodiversity by providing a forum for data and ideas, aiding the further development of this area of study. Contributions include work from the disciplines of population genetics, molecular ecology, molecular biology, evolutionary biology, systematics, forensics, and others. The focus is on genetic and evolutionary applications to problems of conservation, reflecting the diversity of concerns relevant to conservation biology. Studies are based on up-to-date technologies, including genomic methodologies. The journal publishes original research papers, short communications, review papers and perspectives.
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