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The evolution of non-reciprocal nuclear exchange in mushrooms as a consequence of genomic conflict.

机译:基因组冲突导致蘑菇中不可逆的核交换的发展。

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摘要

Heterothallic mushrooms accomplish sex by exchanging nuclei without cytoplasm. Hyphal fusions occur between haploid mycelia resulting from germinated spores and subsequent reciprocal nuclear exchange without cytoplasmic mixing. The resulting dikaryon is therefore a cytoplasmic mosaic with uniformly distributed nuclei (two in each cell). Cytoplasmic inheritance is doubly uniparental: both mated monokaryons can potentially transmit their cytoplasm to the sexual spores, but normally only a single type per spore is found.Intracellular competition between mitochondria is thus limited, but at the dikaryon level, the two types of mitochondria compete over transmission. This creates the conditions for genomic conflict: within the dikaryon, a selfish mitochondrial mutant with increased relative transmission can be favoured, but selection between dikaryons will act against such a mitochondrial mutant. Moreover, because nuclear fitness is directly dependent on dikaryon fitness, a reduction in dikaryon fitness directly conflicts with nuclear interests. We propose that genomic conflict explains the frequent occurrence of non-reciprocal nuclear exchange in mushrooms. With non-reciprocal exchange, one monokaryon donates a nucleus and the other accepts it, but not vice versa as in the typical life cycle. We propose a model where non-reciprocal nuclear exchange is primarily driven by mitochondria inducing male sterility and the evolution of nuclear suppressors.
机译:异质蘑菇通过交换无细胞质的细胞核来完成性生活。菌丝融合发生在由发芽孢子产生的单倍体菌丝体之间,以及随后的相互核交换,而没有细胞质混合。因此,产生的双核细胞是具有均匀分布的细胞核(每个细胞两个)的胞质镶嵌。细胞质遗传是双重单亲的:两个交配的单核体都可能将其细胞质传递给有性孢子,但通常每个孢子只有一种类型,因此线粒体之间的细胞内竞争受到限制,但在双核体水平上,两种类型的线粒体竞争过度传输。这为基因组冲突创造了条件:在双核体中,相对自传性增加的自私线粒体突变体可能会受到青睐,但在双核体之间进行选择会对抗这种线粒体突变体。此外,由于核适应度直接取决于双核适应度,因此双核适应度的降低直接与核利益冲突。我们建议,基因组冲突解释了蘑菇中不可逆核交换的频繁发生。进行非对等交换时,一个核仁捐赠一个核,另一个核接受一个核,但在典型的生命周期中却不会相反。我们提出一种模型,其中不可逆的核交换主要由线粒体诱导男性不育和核抑制剂的进化驱动。

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