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果蝇中copia逆转座子的种系转座通过对copia RNA水平的组织特异性控制而仅限于雄性。

Germ line transposition of the copia retrotransposon in Drosophila melanogaster is restricted to males by tissue-specific control of copia RNA levels.

作者信息

Pasyukova E, Nuzhdin S, Li W, Flavell A J

机构信息

Department of Animal Molecular Genetics, Russian Academy of Sciences, Moscow, Russia.

出版信息

Mol Gen Genet. 1997 Jun;255(1):115-24. doi: 10.1007/s004380050479.

Abstract

Germ line transposition rates of the retrotransposon copia were directly measured in males and females of an inbred Drosophila melanogaster line, 2b3, which is highly polymorphic for copia insertion sites. The elevated germ line transposition rate of copia in this line (3-8 x 10(-3) per generation per element) is confined to males, with transposition in females being undetectable under the conditions of the experiment but at most 50-fold lower than the rate for males. To determine the molecular basis of this effect, copia RNA levels were measured in whole bodies and germ lines of male and female flies of both the unstable 2b3 line and a stable line, Oregon RC-iso, which shows normal rates of copia transposition. Both male and female 2b3 flies contain much more copia RNA than flies of the stable line. However, 2b3 male germinal tissues contain much higher levels of copia RNA than the equivalent female tissues. The highest copia expression is detected in maturing primary spermatocytes. Our data show that high rates of germ line copia transposition are restricted to males by tissue-specific control of RNA levels and suggest that transposition of copia only occurs in fly tissues containing more than a relatively high threshold level of copia RNA.

摘要

在近交系黑腹果蝇2b3的雄性和雌性个体中,直接测量了逆转座子copia的种系转座率。该品系中copia的种系转座率升高(每个元件每代3-8×10⁻³)仅限于雄性,在实验条件下雌性中的转座无法检测到,最多比雄性转座率低50倍。为了确定这种效应的分子基础,在不稳定的2b3品系和稳定品系俄勒冈RC-iso(其显示出正常的copia转座率)的雄性和雌性果蝇的全身和种系中测量了copia RNA水平。2b3品系的雄性和雌性果蝇所含的copia RNA都比稳定品系的果蝇多得多。然而,2b3雄性生殖组织中copia RNA的水平比相应的雌性组织高得多。在成熟的初级精母细胞中检测到最高的copia表达。我们的数据表明,copia种系转座的高发生率通过RNA水平的组织特异性控制而仅限于雄性,并表明copia的转座仅发生在含有超过相对较高阈值水平copia RNA的果蝇组织中。

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