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Transcriptomic Analysis of Musca domestica to Reveal Key Genes of the Prophenoloxidase-Activating System

机译:家蝇的转录组学分析,揭示了酚氧化酶激活系统的关键基因

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The proPO system regulates melanization in arthropods. However, the genes that are involved in the proPO system in housefly Musca domestica remain unclear. Thus, this study analyzed the combined transcriptome obtained from M. domestica larvae, pupae, and adults that were either normal or bacteria-challenged by an Escherichia coli and Staphylococcus aureus mixture. A total of 54,821,138 clean reads (4.93 Gb) were yielded by Illumina sequencing, which were de novo assembled into 89,842 unigenes. Of the 89,842 unigenes, based on a similarity search with known genes in other insects, 24 putative genes related to the proPO system were identified. Eight of the identified genes encoded for peptidoglycan recognition receptors, two encoded for prophenoloxidases, three encoded for prophenoloxidase-activating enzymes, and 11 encoded for serine proteinase inhibitors. The expression levels of these identified genes were investigated by qRT-PCR assay, which were consistent with expected activation process of the proPO system, and their activation functions were confirmed by the measurement of phenoloxidase activity in bacteria-infected larvae after proPO antibody blockage, suggesting these candidate genes might have potentially different roles in the activation of proPO system. Collectively, this study has provided the comprehensive transcriptomic data of an insect and some fundamental basis toward achieving understanding of the activation mechanisms and immune functions of the proPO system in M. domestica .
机译:proPO系统调节节肢动物的黑色素。然而,家蝇Musca domestica中参与proPO系统的基因仍不清楚。因此,本研究分析了从正常支原体或受大肠杆菌和金黄色葡萄球菌混合物攻击的成年支原体幼虫,up和成虫获得的组合转录组。通过Illumina测序获得了总共54,821,138个干净的读数(4.93 Gb),这些读数从头组装成89,842个单基因。在89,842个单基因中,基于与其他昆虫中已知基因的相似性搜索,确定了24个与proPO系统相关的推定基因。已鉴定的基因中有八个编码为肽聚糖识别受体,两个编码为酚氧化酶原,三个编码为酚氧化酶激活酶,还有11个为丝氨酸蛋白酶抑制剂。通过qRT-PCR检测这些鉴定基因的表达水平,这与proPO系统的预期激活过程一致,并且通过检测proPO抗体阻断后细菌感染的幼虫中酚氧化酶活性的测定证实了它们的激活功能。这些候选基因在proPO系统激活中可能具有潜在的不同作用。总体而言,这项研究提供了昆虫的完整转录组数据,并为了解家蝇(M. domestica)proPO系统的激活机制和免疫功能提供了一些基础。

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