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[酵母-果蝇系统中甾醇代谢对黑腹果蝇卵母细胞辐射诱导非整倍体频率的影响]

[Effect of sterol metabolism in the yeast-Drosophila system on the frequency of radiation-induced aneuploidy in Drosophila melanogaster oocytes].

作者信息

Savitskiĭ V V, Luchnikova E M, Inge-Vechtomov S G

出版信息

Genetika. 1985 Jul;21(7):1135-42.

PMID:3930348
Abstract

The influence of sterol metabolism upon mutagenesis in Drosophila melanogaster was investigated using ecological-genetic yeast - drosophila system. Sterol deficiency in the organism of Drosophila was caused by using the strain of Saccharomyces cerevisiae 9-2P712 with a mutation in the nysr1 locus which blocks synthesis of ergosterol as a nutrition substrate for flies. It was concluded that maintenance of females on the mutant yeast strain causes an increase of radiation-induced X-chromosome loss in mature oocytes. Resistance of oocytes to X-ray irradiation is restored, reaching the control level, when 0,1% cholesterol solution in 10% ethanol is added to the yeast biomass. The possible membrane and hormonal mechanisms of elevation of induced aneuploidy and the role of sterol metabolism in ensuring resistance of insects to damaging factors are discussed.

摘要

利用生态遗传酵母-果蝇系统研究了果蝇中甾醇代谢对诱变的影响。通过使用酿酒酵母9-2P712菌株,该菌株的nysr1位点发生突变,阻断了麦角固醇作为果蝇营养底物的合成,从而导致果蝇体内甾醇缺乏。得出的结论是,用突变酵母菌株饲养雌性果蝇会导致成熟卵母细胞中辐射诱导的X染色体丢失增加。当在酵母生物质中添加10%乙醇中的0.1%胆固醇溶液时,卵母细胞对X射线照射的抗性得以恢复,达到对照水平。讨论了诱导非整倍体增加的可能的膜和激素机制以及甾醇代谢在确保昆虫对损伤因子抗性中的作用。

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