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两种类型的基因相互作用表明,果蝇的旋转基因在鞭毛轴丝的微管组织中发挥作用。

Two types of genetic interaction implicate the whirligig gene of Drosophila melanogaster in microtubule organization in the flagellar axoneme.

作者信息

Green L L, Wolf N, McDonald K L, Fuller M T

机构信息

Department of Molecular, University of Colorado, Boulder 80309-0347.

出版信息

Genetics. 1990 Dec;126(4):961-73. doi: 10.1093/genetics/126.4.961.

Abstract

The mutant nc4 allele of whirligig (3-54.4) of Drosophila melanogaster fails to complement mutations in an alpha-tubulin locus, alpha 1t, mutations in a beta-tubulin locus, B2t, or a mutation in the haywire locus. However, wrl fails to map to any of the known alpha- or beta-tubulin genes. The extragenic failure to complement could indicate that the wrl product participates in structural interactions with microtubule proteins. The whirligig locus appears to be haploinsufficient for male fertility. Both a deficiency of wrl and possible loss of function alleles obtained by reverting the failure to complement between wrlnc4 and B2tn are dominant male sterile in a genetic background wild type for tubulin. The dominant male sterility of the revertant alleles is suppressed if the flies are also heterozygous for B2tn, for a deficiency of alpha 1t, or for the haync2 allele. These results suggest that it is not the absolute level of wrl gene product but its level relative to tubulin or microtubule function that is important for normal spermatogenesis. The phenotype of homozygous wrl mutants suggests that the whirligig product plays a role in postmeiotic spermatid differentiation, possibly in organizing the microtubules of the sperm flagellar axoneme. Flies homozygous for either wrlnc4 or revertant alleles are viable and female fertile but male sterile. Premeiotic and meiotic stages of spermatogenesis appear normal. However, in post-meiotic stages, flagellar axonemes show loss of the accessory microtubule on the B-subfiber of outer doublet microtubules, outer triplet instead of outer doublet microtubules, and missing central pair microtubules.

摘要

黑腹果蝇“旋转木马”(3-54.4)的突变型nc4等位基因不能与α-微管蛋白基因座alpha 1t、β-微管蛋白基因座B2t或“失控”基因座中的突变互补。然而,wrl未能定位到任何已知的α-或β-微管蛋白基因。基因外互补失败可能表明wrl产物参与了与微管蛋白的结构相互作用。“旋转木马”基因座似乎对雄性生育力单倍体不足。在微管蛋白野生型的遗传背景下,wrl的缺失以及通过恢复wrl nc4和B2t n之间互补失败而获得的可能的功能丧失等位基因都是显性雄性不育的。如果果蝇同时对B2t n、alpha 1t缺失或haync2等位基因杂合,则回复等位基因的显性雄性不育会被抑制。这些结果表明,对于正常精子发生来说,重要的不是wrl基因产物的绝对水平,而是其相对于微管蛋白或微管功能的水平。纯合wrl突变体的表型表明,“旋转木马”产物在减数分裂后精子细胞分化中起作用,可能在组织精子鞭毛轴丝的微管方面发挥作用。纯合wrl nc4或回复等位基因的果蝇是存活的,雌性可育但雄性不育。精子发生的减数分裂前和减数分裂阶段似乎正常。然而,在减数分裂后阶段,鞭毛轴丝显示外双联体微管B亚纤维上的辅助微管缺失、外三联体而非外双联体微管以及中央对微管缺失。

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