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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic and Molecular Analysis of spe-27, a Gene Required for Spermiogenesis in Caenorhabditis elegans Hermaphrodites
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Genetic and Molecular Analysis of spe-27, a Gene Required for Spermiogenesis in Caenorhabditis elegans Hermaphrodites

机译:秀丽隐杆线虫雌雄同体植物精子发生所需基因spe-27的遗传和分子分析

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Hermaphrodites with mutations in the spe-27gene are self-sterile, laying only unfertilized eggs; mutant males are fertile. Hermaphrodites make spermatids that fail to activate to crawling spermatozoa so passing oocytes sweep them out of the spermatheca. These spermatids do activate and produce self-progeny if young mutant hermaphrodites are mated by fertile (or sterile) males. Spermatids isolated from either mutant males or hermaphrodites initiate activation in vitro when treated with proteases, but then arrest with spiky membrane projections that resemble those of a normal intermediate in pseudopod formation. These phenotypes are identical to spe-8 and spe-12 mutants. They can be explained if males and hermaphrodites have distinct pathways for spermatid activation, and these three genes are necessary only for the hermaphrodite pathway. Consistent with this model, when spe-27 mutant male spermatids without seminal fluid are artificially inseminated into hermaphrodites, they fail to activate. The spe-27 gene has been isolated, sequenced and its regulatory regions identified. The sequence predicts a 131 amino acid polypeptide that has no striking structural motifs and no resemblance to known proteins. Two of the mutations in spe-27alter mRNA splicing; a third mutation is a temperature-sensitive missense mutation.
机译:spe-27基因突变的雌雄同体是自育的,只生未受精的卵。突变的雄性可育。雌雄同体的精子无法激活,从而无法爬行到精子中,因此经过的卵母细胞会将精子从精子中清除。如果年轻的突变雌雄同体可育(或不育)雄性交配,这些精子会激活并产生后代。从突变的雄性或雌雄同体中分离出的精子在用蛋白酶处理时会在体外启动活化作用,但随后会被类似于伪足形成中的正常中间体的尖刺状膜突起所阻滞。这些表型与spe-8和spe-12突变体相同。如果雄性和雌雄同体具有不同的精子活化途径,则可以解释它们,并且这三个基因仅对于雌雄同体途径是必需的。与该模型一致,当将没有精液的spe-27突变男性精子人工授精到雌雄同体时,它们将无法激活。 spe-27基因已被分离,测序并确定了其调控区域。该序列预测了一个131个氨基酸的多肽,该多肽没有惊人的结构基序,并且与已知的蛋白质没有相似之处。 spe-27alter mRNA剪接中的两个突变;第三个突变是对温度敏感的错义突变。

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