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Modification of Heat-Shock Gene Expression in Drosophila melanogaster Populations via Transposable Elements

机译:通过转座元件修饰黑腹果蝇种群中的热休克基因表达

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摘要

We report multiple cases in which disruption of hsp70 regulatory regions by transposable element (TE) insertions underlies natural variation in expression of the stress-inducible molecular chaperone Hsp70 in Drosophila melanogaster. Three D. melanogaster populations from different continents are polymorphic for jockey or P element insertions in the promoter of the hsp70Ba gene. All three TE insertions are within the same 87-bp region of hsp70Ba promoter, and we suggest that the distinctive promoter architecture of hsp genes may make them vulnerable to TE insertions. Each of the TE insertions reduces Hsp70 levels, and RNase protection assays demonstrate that such insertions can reduce transcription of the hsp70Ba gene. In addition, the TEs alter two measures of organismal fitness, inducible thermo-tolerance and female reproductive success. Thus, transposition can create quantitative genetic variation in gene expression within populations, on which natural selection can act.
机译:我们报告了多个案例,其中转座元件 (TE) 插入对 hsp70 调节区域的破坏是果蝇黑腹果蝇中应激诱导分子伴侣 Hsp70 表达的自然变异的基础。来自不同大陆的三个黑腹果蝇种群是多态性的,可以在 hsp70Ba 基因的启动子中插入 jokey 或 P 元件。所有三个 TE 插入都在 hsp70Ba 启动子的同一 87 bp 区域内,我们认为 hsp 基因独特的启动子结构可能使它们容易受到 TE 插入的影响。每个 TE 插入都会降低 Hsp70 水平,RNase 保护试验表明,这种插入可以减少 hsp70Ba 基因的转录。此外,TEs改变了生物体适应性的两项指标,即诱导性耐热性和雌性生殖成功率。因此,转座可以在种群内的基因表达中产生数量遗传变异,自然选择可以对其起作用。

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