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Mechanisms of Uniparental Mitochondrial DNA Inheritance in Cryptococcus neoformans

机译:新隐球菌单亲线粒体DNA遗传的机制

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In contrast to the nuclear genome, the mitochondrial genome does not follow Mendelian laws of inheritance. The nuclear genome of meiotic progeny comes from the recombination of both parental genomes, whereas the meiotic progeny could inherit mitochondria from one, the other, or both parents. In fact, one fascinating phenomenon is that mitochondrial DNA in the majority of eukaryotes is inherited from only one particular parent. Typically, such unidirectional and uniparental inheritance of mitochondrial DNA can be explained by the size of the gametes involved in mating, with the larger gamete contributing towards mitochondrial DNA inheritance. However, in the human fungal pathogen Cryptococcus neoformans , bisexual mating involves the fusion of two isogamous cells of mating type ( MAT ) a and MAT α, yet the mitochondrial DNA is inherited predominantly from the MAT a parent. Although the exact mechanism underlying such uniparental mitochondrial inheritance in this fungus is still unclear, various hypotheses have been proposed. Elucidating the mechanism of mitochondrial inheritance in this clinically important and genetically amenable eukaryotic microbe will yield insights into general mechanisms that are likely conserved in higher eukaryotes. In this review, we highlight studies on Cryptococcus mitochondrial inheritance and point out some important questions that need to be addressed in the future.
机译:与核基因组相反,线粒体基因组不遵循孟德尔遗传定律。减数分裂后代的核基因组来自两个亲本基因组的重组,而减数分裂后代可以从一个,另一个或两个亲本继承线粒体。实际上,一种引人入胜的现象是大多数真核生物中的线粒体DNA仅从一个特定的亲本遗传。通常,线粒体DNA的这种单向和单亲遗传可以通过参与配子的配子大小来解释,较大的配子有助于线粒体DNA遗传。但是,在人类真菌病原体新隐球菌中,双性恋交配涉及交配型(MAT)a和MATα的两个同卵异形细胞的融合,而线粒体DNA主要是从MAT的亲本遗传而来的。尽管尚不清楚这种真菌中这种单亲线粒体遗传的确切机制,但已提出了各种假设。在这种临床上重要且遗传上可接受的真核微生物中阐明线粒体遗传的机制将使人们深入了解可能在高级真核生物中保守的一般机制。在这篇综述中,我们重点介绍了隐球菌线粒体遗传的研究,并指出了一些将来需要解决的重要问题。

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