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A large gene family in fission yeast encodes spore killers that subvert Mendel’s law

机译:裂变酵母中的一个大型基因家族编码杀灭孟德尔定律的孢子杀手

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摘要

Spore killers in fungi are selfish genetic elements that distort Mendelian segregation in their favor. It remains unclear how many species harbor them and how diverse their mechanisms are. Here, we discover two spore killers from a natural isolate of the fission yeast Schizosaccharomyces pombe. Both killers belong to the previously uncharacterized wtf gene family with 25 members in the reference genome. These two killers act in strain-background-independent and genome-location-independent manners to perturb the maturation of spores not inheriting them. Spores carrying one killer are protected from its killing effect but not that of the other killer. The killing and protecting activities can be uncoupled by mutation. The numbers and sequences of wtf genes vary considerably between S. pombe isolates, indicating rapid divergence. We propose that wtf genes contribute to the extensive intraspecific reproductive isolation in S. pombe, and represent ideal models for understanding how segregation-distorting elements act and evolve.>DOI:
机译:真菌中的杀孢子是自私的遗传元素,它们有利于孟德尔分离。目前尚不清楚有多少种物种藏有它们,其机制有多多样。在这里,我们从裂殖酵母粟酒裂殖酵母的天然分离物中发现了两个杀手孢子。这两个杀手都属于先前未鉴定的wtf基因家族,在参考基因组中有25个成员。这两个杀手以与菌株背景无关和与基因组位置无关的方式起作用,以扰动不遗传它们的孢子的成熟。带有一个杀手的孢子受到保护,免受其杀灭作用的影响,但不受另一杀手的杀灭作用的影响。杀伤和保护活性可以通过突变脱开。 wtf基因的数量和序列在粟酒裂殖酵母分离株之间有很大差异,表明存在快速差异。我们建议wtf基因有助于在粟酒裂殖酵母中进行广泛的种内生殖分离,并代表理想的模型,以了解分离变形元素如何起作用和进化。> DOI:

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