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神经滑刃减数分裂驱动元件的分子剖析。

Molecular dissection of Neurospora Spore killer meiotic drive elements.

机构信息

Division of Biological Sciences, University of Missouri, Columbia, MO 65211, USA.

出版信息

Proc Natl Acad Sci U S A. 2012 Jul 24;109(30):12093-8. doi: 10.1073/pnas.1203267109. Epub 2012 Jul 2.

Abstract

Meiotic drive is a non-Mendelian inheritance phenomenon in which certain selfish genetic elements skew sexual transmission in their own favor. In some cases, progeny or gametes carrying a meiotic drive element can survive preferentially because it causes the death or malfunctioning of those that do not carry it. In Neurospora, meiotic drive can be observed in fungal spore killing. In a cross of Spore killer (Sk) × WT (Sk-sensitive), the ascospores containing the Spore killer allele survive, whereas the ones with the sensitive allele degenerate. Sk-2 and Sk-3 are the most studied meiotic drive elements in Neurospora, and they each theoretically contain two essential components: a killer element and a resistance gene. Here we report the identification and characterization of the Sk resistance gene, rsk (resistant to Spore killer). rsk seems to be a fungal-specific gene, and its deletion in a killer strain leads to self-killing. Sk-2, Sk-3, and naturally resistant isolates all use rsk for resistance. In each killer system, rsk sequences from an Sk strain and a resistant isolate are highly similar, suggesting that they share the same origin. Sk-2, Sk-3, and sensitive rsk alleles differ from each other by their unique indel patterns. Contrary to long-held belief, the killer targets not only late but also early ascospore development. The WT RSK protein is dispensable for ascospore production and is not a target of the spore-killing mechanism. Rather, a resistant version of RSK likely neutralizes the killer element and prevents it from interfering with ascospore development.

摘要

减数分裂驱动是一种非孟德尔遗传现象,其中某些自私的遗传元素有利于自身的性传播。在某些情况下,携带减数分裂驱动元素的后代或配子可以优先存活,因为它会导致不携带该元素的个体死亡或功能失调。在Neurospora 中,可以观察到真菌孢子致死中的减数分裂驱动。在 Spore killer(Sk)×WT(Sk 敏感)的杂交中,含有 Spore killer 等位基因的孢子存活,而含有敏感等位基因的孢子则退化。Sk-2 和 Sk-3 是 Neurospora 中研究最多的减数分裂驱动元素,它们各自理论上包含两个必需成分:一个杀手元素和一个抗性基因。在这里,我们报告了 Sk 抗性基因 rsk(对 Spore killer 的抗性)的鉴定和特征。rsk 似乎是一种真菌特异性基因,在杀伤菌株中缺失会导致自我杀伤。Sk-2、Sk-3 和天然抗性分离株都使用 rsk 进行抗性。在每个杀伤系统中,来自 Sk 菌株和抗性分离株的 rsk 序列高度相似,表明它们具有相同的起源。Sk-2、Sk-3 和敏感 rsk 等位基因彼此不同,其独特的插入/缺失模式也不同。与长期以来的信念相反,杀手不仅针对晚期,而且针对早期孢子发育。WT RSK 蛋白对于孢子产生是可有可无的,并且不是孢子杀伤机制的靶标。相反,抗性版本的 RSK 可能中和了杀手元素,并防止其干扰孢子发育。

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