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Ploidy Variation in Fungi – Polyploidy Aneuploidy and Genome Evolution

机译:真菌中的倍性变异–多倍性非整倍性和基因组进化

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摘要

The ability of an organism to replicate and segregate its genome with high fidelity is vital to its survival and for the production of future generations. Errors in either of these steps (replication or segregation) can lead to a change in ploidy or chromosome number. While these drastic genome changes can be detrimental to the organism, resulting in decreased fitness, they can also provide increased fitness during periods of stress. A change in ploidy or chromosome number can fundamentally change how a cell senses and responds to its environment. Here, we discuss current ideas within fungal biology that illuminate how eukaryotic genome size variation can impact the organism at a cellular and evolutionary level. One of the most fascinating observations from the last two decades of research is that some fungi have evolved the ability to tolerate large genome size changes and generate vast genomic heterogeneity without undergoing canonical meiosis.
机译:有机体以高保真度复制和分离基因组的能力对于其生存和子孙后代的生产至关重要。这些步骤(复制或分离)中的任何一个错误都可能导致倍性或染色体数目的改变。尽管这些剧烈的基因组变化可能对生物体有害,从而导致适应性下降,但它们在压力时期也可以提高适应性。倍数或染色体数目的改变可以从根本上改变细胞对环境的感知和响应方式。在这里,我们讨论了真菌生物学中的最新观点,这些观点阐明了真核基因组大小变化如何在细胞和进化水平上影响生物。最近二十年来最令人着迷的观察之一是,某些真菌已经进化出了耐受大的基因组大小变化并产生巨大的基因组异质性而无需经历典型减数分裂的能力。

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