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Genetics and Epigenetics of Mating Type Determination in Paramecium and Tetrahymena
Annual Review of Microbiology ( IF 10.5 ) Pub Date : 2017-09-08 00:00:00 , DOI: 10.1146/annurev-micro-090816-093342
Eduardo Orias 1 , Deepankar Pratap Singh 2, 3 , Eric Meyer 2
Affiliation  

While sex is an ancient and highly conserved eukaryotic invention, self-incompatibility systems such as mating types or sexes appear to be derived limitations that show considerable evolutionary plasticity. Within a single class of ciliates, Paramecium and Tetrahymena species have long been known to present a wide variety of mating type numbers and modes of inheritance, but only recently have the genes involved been identified. Although similar transmembrane proteins mediate self/nonself recognition in both ciliates, the mechanisms of mating type determination differ widely, ranging from Mendelian systems to developmental nuclear differentiation, either stochastic or maternally inherited. The non-Mendelian systems rely on programmed editing of the germline genome that occurs during differentiation of the somatic nucleus, and they have co-opted different DNA recombination mechanisms—some previously unknown. Here we review the recent molecular advances and some remaining unsolved questions and discuss the possible implications of these diverse mechanisms for inbreeding/outbreeding balance regulation.

中文翻译:


草履虫和四膜虫的交配类型确定的遗传学和表观遗传学。

尽管性别是古老且高度保守的真核生物发明,但自交配系统(例如交配类型或性别)似乎是衍生出来的限制,显示出相当大的进化可塑性。在纤毛虫,草履虫四膜虫的一类中早就知道这种物种会呈现出各种各样的交配类型数量和遗传模式,但是直到最近才发现了涉及的基因。尽管相似的跨膜蛋白在两个纤毛虫中介导自我/非自我识别,但交配类型确定的机制差异很大,从孟德尔系统到发育性核分化(随机的或母体遗传的)不等。非孟德尔系统依赖于体细胞核分化过程中发生的种系基因组的程序化编辑,并且它们选择了不同的DNA重组机制,这在以前是未知的。在这里,我们回顾了最新的分子研究进展和一些尚待解决的问题,并讨论了近亲/近亲平衡调节这些不同机制的可能含义。

更新日期:2017-09-08
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