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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Developmental genetics of chromosome I spermatogenesis-defective mutants in the nematode Caenorhabditis elegans.
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Developmental genetics of chromosome I spermatogenesis-defective mutants in the nematode Caenorhabditis elegans.

机译:线虫秀丽隐杆线虫的染色体I精子发生缺陷型突变体的发育遗传学。

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Mutations affecting Caenorhabditis elegans spermatogenesis can be used to dissect the processes of meiosis and spermatozoan morphological maturation. We have obtained 23 new chromosome I mutations that affect spermatogenesis (spe mutations). These mutations, together with six previously described mutations, identify 11 complementation groups, of which six are defined by multiple alleles. These spe mutations are all recessive and cause normally self-fertile hermaphrodites to produce unfertilized oocytes that can be fertilized by wild-type male sperm. Five chromosome I mutation/deficiency heterozygotes have similar phenotypes to the homozygote showing that the probable null phenotype of these genes is defective sperm. Spermatogenesis is disrupted at different steps by mutations in these genes. The maturation of 1 degree spermatocytes is disrupted by mutations in spe-4 and spe-5. Spermatids from spe-8 and spe-12 mutants develop into normal spermatozoa in males, but not in hermaphrodites. fer-6 spermatids are abnormal, and fer-1 spermatids look normal but subsequently become abnormal spermatozoa. Mutations in five genes (fer-7, spe-9, spe-11, spe-13 and spe-15) allow formation of normal looking motile spermatozoa that appear to be defective in either sperm-spermathecal or sperm-oocyte interactions.
机译:影响秀丽隐杆线虫精子发生的突变可用于剖析减数分裂和精子形态成熟的过程。我们获得了23个影响精子发生的新的I型染色体突变(spe突变)。这些突变与六个先前描述的突变一起,鉴定出11个互补组,其中六个由多个等位基因定义。这些spe突变都是隐性的,会导致正常的自我繁殖的雌雄同体产生未受精的卵母细胞,这些卵母细胞可被野生型雄性精子受精。五个I型染色体突变/缺陷杂合子具有与纯合子相似的表型,表明这些基因的可能无效表型是精子缺陷。这些基因的突变会破坏精子形成的不同步骤。 1度精母细胞的成熟被spe-4和spe-5的突变所破坏。来自spe-8和spe-12突变体的精子在男性中发育成正常的精子,但在雌雄同体中则没有。 fer-6精子异常,fer-1精子看起来正常,但随后变成异常精子。五个基因(fer-7,spe-9,spe-11,spe-13和spe-15)的突变允许形成看起来正常的运动精子,这些精子似乎在精子-精子或精子-卵母细胞相互作用中存在缺陷。

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