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Location of P element insertions in the proximal promoter region of Hsp70A is consequential for gene expression and correlated with fecundity in Drosophila melanogaster

机译:Hsp70A近端启动子区域中P元素插入的位置对于基因表达而言是必然的,并且与果蝇的繁殖力相关

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摘要

We compared a series of Drosophila strains with P element insertions from ?28 to ?144 nucleotides 5′ to the transcription start site of the Hsp70A genes—corresponding to the range of naturally occurring P element insertion sites—to elucidate the consequences of insertion site for Hsp70A gene expression. Although all insertions reduced Hsp70A expression below that of a control strain, the magnitude of the reduction was inversely related to the number of nucleotides between the transcription start site and the insertion site. A pre-existing hypothesis is that naturally occuring transposable element insertions in Hsp promoters may be beneficial in some circumstances, which may account for their retention in natural populations. In the present study, in a control line heat shock reduced fecundity, whereas in lines with P element insertions heat shock typically increased fecundity. Finally, according to cluster-specific quantitative RT-PCR, expression of the Hsp70A cluster genes was typically greater than that of the Hsp70B gene cluster genes, although the latter are more numerous and, in this case, free of P element insertions.
机译:我们比较了一系列果蝇菌株,这些菌株在Hsp70A基因转录起始位点的第28至144个核苷酸5'处有P元素插入-对应于天然存在的P元素插入位点的范围-以阐明插入位点对果蝇的影响。 Hsp70A基因表达。尽管所有插入使Hsp70A表达降低至低于对照菌株的表达,但降低的幅度与转录起始位点和插入位点之间的核苷酸数目成反比。先前存在的假设是,在某些情况下,Hsp启动子中自然发生的转座因子插入可能是有益的,这可能解释了它们在自然种群中的保留。在本研究中,在控制管线中,热激降低了繁殖力,而在具有P元素插入的管线中,热激通常提高了繁殖力。最后,根据簇特异性定​​量RT-PCR,Hsp70A簇基因的表达通常大于Hsp70B基因簇基因的表达,尽管后者更多,并且在这种情况下没有P元素插入。

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    《Cell Stress and Chaperones》 |2008年第1期|11-17|共7页
  • 作者单位

    Department of Organismal Biology and Anatomy The University of Chicago 1027 E. 57th Street Chicago IL 60637 USA;

    Engelhardt Institute of Molecular Biology Russian Academy of Sciences Vavilov str. 32 117984 Moscow Russia;

    Engelhardt Institute of Molecular Biology Russian Academy of Sciences Vavilov str. 32 117984 Moscow Russia;

    Engelhardt Institute of Molecular Biology Russian Academy of Sciences Vavilov str. 32 117984 Moscow Russia;

    Department of Organismal Biology and Anatomy The University of Chicago 1027 E. 57th Street Chicago IL 60637 USA;

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