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影响孟德尔分离比的基因。

Genes that bias Mendelian segregation.

作者信息

Grognet Pierre, Lalucque Hervé, Malagnac Fabienne, Silar Philippe

机构信息

Univ Paris Diderot, Sorbonne Paris Cité, Institut des Energies de Demain, Paris, France; Univ Paris Sud, Institut de Génétique et Microbiologie, Bât. 400, Orsay, France.

出版信息

PLoS Genet. 2014 May 15;10(5):e1004387. doi: 10.1371/journal.pgen.1004387. eCollection 2014.

Abstract

Mendel laws of inheritance can be cheated by Meiotic Drive Elements (MDs), complex nuclear genetic loci found in various eukaryotic genomes and distorting segregation in their favor. Here, we identify and characterize in the model fungus Podospora anserina Spok1 and Spok2, two MDs known as Spore Killers. We show that they are related genes with both spore-killing distorter and spore-protecting responder activities carried out by the same allele. These alleles act as autonomous elements, exert their effects independently of their location in the genome and can act as MDs in other fungi. Additionally, Spok1 acts as a resistance factor to Spok2 killing. Genetical data and cytological analysis of Spok1 and Spok2 localization during the killing process suggest a complex mode of action for Spok proteins. Spok1 and Spok2 belong to a multigene family prevalent in the genomes of many ascomycetes. As they have no obvious cellular role, Spok1 and Spok2 Spore Killer genes represent a novel kind of selfish genetic elements prevalent in fungal genome that proliferate through meiotic distortion.

摘要

孟德尔遗传定律可能会被减数分裂驱动元件(MDs)打破,MDs是在各种真核生物基因组中发现的复杂核遗传位点,它们会扭曲分离以利于自身。在这里,我们在模式真菌嗜热栖热孢霉中鉴定并表征了Spok1和Spok2,这两个MDs被称为孢子杀手。我们表明它们是相关基因,同一等位基因同时具有孢子杀伤畸变和孢子保护应答活性。这些等位基因作为自主元件发挥作用,其作用不依赖于它们在基因组中的位置,并且可以在其他真菌中充当MDs。此外,Spok1作为对Spok2杀伤的抗性因子。关于Spok1和Spok2在杀伤过程中的定位的遗传数据和细胞学分析表明,Spok蛋白的作用模式很复杂。Spok1和Spok2属于一个在许多子囊菌基因组中普遍存在的多基因家族。由于它们没有明显的细胞作用,Spok1和Spok2孢子杀手基因代表了一种新型的自私遗传元件,它们通过减数分裂畸变在真菌基因组中增殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2345/4022471/b2fb7c0ef43f/pgen.1004387.g001.jpg

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