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首页> 外文期刊>Molecular Genetics and Genomics >Adult-specific over-expression of the Drosophila genes magu and hebe increases life span and modulates late-age female fecundity
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Adult-specific over-expression of the Drosophila genes magu and hebe increases life span and modulates late-age female fecundity

机译:果蝇基因magu和hebe的成年人特异性过度表达可延长寿命并调节晚年女性生殖力

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摘要

During Drosophila aging mortality rate increases exponentially and progeny production per animal declines dramatically, correlating with decreased number and division of somatic and germ-line stem cells in the gonads. To search for genes that might promote both longevity and fecundity, a P element transposon (PdL), containing an outwardly directed, doxycycline-inducible promoter was used to generate conditional mutations. Mutant females were screened for increased fecundity at late ages in the presence of doxycycline. Two genes were identified, named hebe (CG1623) and magu (CG2264), that when over-expressed in adult flies could increase life span by ~5–30% in both sexes and increase female fecundity at late ages. Transcripts for magu are enriched in the Drosophila stem cell niche region, and magu encodes a protein related to the human SMOC2 regulator of angiogenesis. While moderate over-expression of magu in adult females increased fecundity at late ages, high-level over-expression of magu was maternal-effect lethal. The data demonstrate that adult-specific over-expression of hebe and magu can increase life span and modulate female fecundity, and provide further evidence against obligatory trade-offs between reproduction and longevity.
机译:果蝇衰老期间,死亡率成倍增加,每只动物的后代产量急剧下降,这与性腺中体细胞和种系干细胞的数量和分裂减少有关。为了搜索可能促进寿命和繁殖力的基因,使用含有向外定向,强力霉素诱导的启动子的P元素转座子(PdL)来产生条件突变。在多西环素存在的情况下,对突变的雌性进行筛选,以提高其晚年的繁殖力。确定了两个基因,分别称为hebe(CG1623)和magu(CG2264),它们在成年果蝇中过度表达时,可延长男女寿命约5-30%,并在晚年增加雌性繁殖力。果蝇的转录物在果蝇干细胞小生境区域富集,并且果蝇编码与人类SMOC2血管生成调节剂有关的蛋白质。虽然成年女性中度过量表达玛古菌会增加晚期的繁殖力,但玛格氏菌的高水平过量表达对母体具有致命性。数据表明,成年人特定的hebe和magu过量表达可以延长寿命并调节雌性生殖力,并提供进一步的证据来证明生殖与长寿之间必须进行取舍。

著录项

  • 来源
    《Molecular Genetics and Genomics》 |2009年第2期|147-162|共16页
  • 作者

    Yishi Li; John Tower;

  • 作者单位

    Molecular and Computational Biology Program Department of Biological Sciences University of Southern California Los Angeles CA 90089-2910 USA;

    Molecular and Computational Biology Program Department of Biological Sciences University of Southern California Los Angeles CA 90089-2910 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aging; P element; Oogenesis; Stem cell; Trade-off;

    机译:衰老;P元素;卵子发生;干细胞;权衡;

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