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Molecular Mechanisms for High Hydrostatic Pressure-Induced Wing Mutagenesis in Drosophila melanogaster

机译:果蝇果蝇高静水压力诱导机翼诱变的分子机制

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摘要

Although High hydrostatic pressure (HHP) as an important physical and chemical tool has been increasingly applied to research of organism, the response mechanisms of organism to HHP have not been elucidated clearly thus far. To identify mutagenic mechanisms of HHP on organisms, here, we treated Drosophila melanogaster (D. melanogaster) eggs with HHP. Approximately 75% of the surviving flies showed significant morphological abnormalities from the egg to the adult stages compared with control flies (p < 0.05). Some eggs displayed abnormal chorionic appendages, some larvae were large and red, and some adult flies showed wing abnormalities. Abnormal wing phenotypes of D. melanogaster induced by HHP were used to investigate the mutagenic mechanisms of HHP on organism. Thus 285 differentially expressed genes associated with wing mutations were identified using Affymetrix Drosophila Genome Array 2.0 and verified with RT-PCR. We also compared wing development-related central genes in the mutant flies with control flies using DNA sequencing to show two point mutations in the vestigial (vg) gene. This study revealed the mutagenic mechanisms of HHP-induced mutagenesis in D. melanogaster and provided a new model for the study of evolution on organisms.
机译:尽管高静水压(HHP)作为重要的物理和化学工具已越来越多地应用于生物研究,但到目前为止,尚未清楚地阐明生物体对HHP的反应机制。为了确定HHP对生物的诱变机制,在这里,我们用HHP处理了果蝇(D. melanogaster)的果蝇卵。与对照果蝇相比,从卵到成年阶段,约有75%的存活果蝇表现出明显的形态异常(p <0.05)。一些卵显示绒毛膜附件异常,一些幼虫又大又红,一些成年蝇显示翅膀异常。用HHP诱导的黑腹果蝇的异常翼表型研究了HHP对生物体的致突变机制。因此,使用Affymetrix果蝇基因组阵列2.0鉴定了285个与机翼突变相关的差异表达基因,并通过RT-PCR进行了验证。我们还使用DNA测序比较了突变果蝇中与机翼发育相关的中心基因与对照果蝇,以显示残留(vg)基因中的两个点突变。这项研究揭示了HHP诱导的D. melanogaster诱变的诱变机理,并为研究生物进化提供了新的模型。

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