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Meiotic drive of female-inherited supernumerary chromosomes in a pathogenic fungus

机译:病原真菌中女性遗传的多余染色体的减数分裂驱动

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Meiosis is a key cellular process of sexual reproduction that includes pairing of homologous sequences. In many species however, meiosis can also involve the segregation of supernumerary chromosomes, which can lack a homolog. How these unpaired chromosomes undergo meiosis is largely unknown. In this study we investigated chromosome segregation during meiosis in the haploid fungus Zymoseptoria tritici that possesses a large complement of supernumerary chromosomes. We used isogenic whole chromosome deletion strains to compare meiotic transmission of chromosomes when paired and unpaired. Unpaired chromosomes inherited from the male parent as well as paired supernumerary chromosomes in general showed Mendelian inheritance. In contrast, unpaired chromosomes inherited from the female parent showed non-Mendelian inheritance but were amplified and transmitted to all meiotic products. We concluded that the supernumerary chromosomes of Z. tritici show a meiotic drive and propose an additional feedback mechanism during meiosis, which initiates amplification of unpaired female-inherited chromosomes.
机译:减数分裂是有性生殖的关键细胞过程,其包括同源序列的配对。但是,在许多物种中,减数分裂也可能涉及多余染色体的分离,而染色体缺乏同源性。这些未配对的染色体如何进行减数分裂在很大程度上是未知的。在这项研究中,我们调查了单倍体真菌Zymoseptoria tritici在减数分裂过程中的染色体分离,该真菌具有大量的多余染色体。我们使用等基因全染色体缺失菌株比较配对和未配对时染色体的减数分裂传播。从雄性亲本遗传的不成对染色体以及成对的多余染色体通常表现出孟德尔遗传。相反,从雌性父母那里继承的未配对染色体显示出非孟德尔遗传,但被扩增并传播给所有减数分裂产物。我们得出的结论是,Z。tritici的多余染色体显示出减数分裂驱动,并提出了减数分裂过程中的其他反馈机制,从而启动了未配对的女性遗传染色体的扩增。

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