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Variation Sex and Social Cooperation: Molecular Population Genetics of the Social Amoeba Dictyostelium discoideum

机译:变异性别与社会合作:社交变形虫盘基网柄菌的分子种群遗传学

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摘要

Dictyostelium discoideum is a eukaryotic microbial model system for multicellular development, cell–cell signaling, and social behavior. Key models of social evolution require an understanding of genetic relationships between individuals across the genome or possibly at specific genes, but the nature of variation within D. discoideum is largely unknown. We re-sequenced 137 gene fragments in wild North American strains of D. discoideum and examined the levels and patterns of nucleotide variation in this social microbial species. We observe surprisingly low levels of nucleotide variation in D. discoideum across these strains, with a mean nucleotide diversity (π) of 0.08%, and no strong population stratification among North American strains. We also do not find any clear relationship between nucleotide divergence between strains and levels of social dominance and kin discrimination. Kin discrimination experiments, however, show that strains collected from the same location show greater ability to distinguish self from non-self than do strains from different geographic areas. This suggests that a greater ability to recognize self versus non-self may arise among strains that are more likely to encounter each other in nature, which would lead to preferential formation of fruiting bodies with clonemates and may prevent the evolution of cheating behaviors within D. discoideum populations. Finally, despite the fact that sex has rarely been observed in this species, we document a rapid decay of linkage disequilibrium between SNPs, the presence of recombinant genotypes among natural strains, and high estimates of the population recombination parameter ρ. The SNP data indicate that recombination is widespread within D. discoideum and that sex as a form of social interaction is likely to be an important aspect of the life cycle.
机译:Dictyostelium discoideum是用于多细胞发育,细胞间信号传导和社交行为的真核微生物模型系统。社会进化的关键模型要求了解整个基因组或特定基因之间的个体之间的遗传关系,但迪斯科舞衣藻内部变异的性质很大程度上未知。我们重新排序了D. Discoideum野生北美菌株中的137个基因片段,并检查了这种社交微生物物种中核苷酸变异的水平和模式。我们观察到这些菌株中D. discoideum的核苷酸变异水平出乎意料的低,平均核苷酸多样性(π)为0.08%,北美菌株之间没有强烈的群体分层。我们还没有发现菌株之间核苷酸差异与社会支配水平和亲属歧视之间有任何明确的关系。但是,亲属区分实验表明,与来自不同地理区域的菌株相比,从同一位置收集的菌株显示出更大的区分自我和非自我的能力。这表明,在自然界中更可能彼此相遇的菌株中,可能会出现更高的识别自我与非自我的能力,这将导致具有克隆体的子实体优先形成,并可能阻止D内作弊行为的发展。迪斯科舞厅的人口。最后,尽管事实上很少在该物种中观察到性别,但我们记录了SNP之间连锁不平衡的快速衰减,天然菌株之间重组基因型的存在以及种群重组参数ρ的高估。 SNP数据表明,重组在D. discoideum中广泛存在,而作为社会互动形式的性爱很可能是生命周期的重要方面。

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