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Transcriptome Sequencing Analysis and Functional Identification of Sex Differentiation Genes from the Mosquito Parasitic Nematode Romanomermis wuchangensis

机译:武昌罗曼诺蚊蚊子寄生线虫的性别差异基因转录组测序分析和功能鉴定

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摘要

Mosquito-transmitted diseases like malaria and dengue fever are global problem and an estimated 50–100 million of dengue or dengue hemorrhagic fever cases are reported worldwide every year. The mermithid nematode Romanomermis wuchangensis has been successfully used as an ecosystem-friendly biocontrol agent for mosquito prevention in laboratory studies. However, this nematode can not undergo sex differentiation in vitro culture, which has seriously affected their application of biocontrol in the field. In this study, based on transcriptome sequencing analysis of R. wuchangensis, Rwucmab-3, Rwuclaf-1 and Rwuctra-2 were cloned and used to investigate molecular regulatory function of sex differentiation. qRT-PCR results demonstrated that the expression level of Rwucmab-3 between male and female displayed obvious difference on the 3rd day of parasitic stage, which was earlier than Rwuclaf-1 and Rwuctra-2, highlighting sex differentiation process may start on the 3rd day of parasitic stage. Besides, FITC was used as a marker to test dsRNA uptake efficiency of R. wuchangensis, which fluorescence intensity increased with FITC concentration after 16 h incubation, indicating this nematode can successfully ingest soaking solution via its cuticle. RNAi results revealed the sex ratio of R. wuchangensis from RNAi treated groups soaked in dsRNA of Rwucmab-3 was significantly higher than gfp dsRNA treated groups and control groups, highlighting RNAi of Rwumab-3 may hinder the development of male nematodes. These results suggest that Rwucmab-3 mainly involves in the initiation of sex differentiation and the development of male sexual dimorphism. Rwuclaf-1 and Rwuctra-2 may play vital role in nematode reproductive and developmental system. In conclusion, transcript sequences presented in this study could provide more bioinformatics resources for future studies on gene cloning and other molecular regulatory mechanism in R. wuchangensis. Moreover, identification and functional analysis of sex differentiation genes may clarify the sex differentiation mechanism of R. wuchangensis, which are helpful to solve the uncompleted sex differentiation problem in vitro culture and the potential large-scale field application controlling the larvae of C. quinquefasciatus, A. aegypti and A. albopictus.
机译:疟疾和登革热等蚊媒传播疾病是全球性问题,每年全世界报告的登革热或登革出血热病例估计为50–1亿。巫昌线虫线虫Romanomermis wuchangensis已成功用作实验室研究中的生态系统友好型防蚊生物防治剂。然而,该线虫不能在体外培养中进行性别分化,这严重影响了它们在该领域的生物防治应用。在这项研究中,基于转录组测序分析武昌红螺,克隆了Rwucmab-3,Rwuclaf-1和Rwuctra-2,并研究了性别分化的分子调控功能。 qRT-PCR结果表明,在寄生阶段的第3天,雄性和雌性之间Rwucmab-3的表达水平有明显差异,比Rwuclaf-1和Rwuctra-2早,突出了性别。分化过程可能始于寄生阶段的第三天。此外,以FITC为标记物,对武昌红双鱼的dsRNA吸收效率进行了检测,该荧光强度在孵育16 h后随FITC浓度的增加而增强,表明该线虫可以通过角质层成功地吸收浸泡液。 RNAi结果显示,浸泡在Rwucmab-3的dsRNA中的RNAi处理组的五常河豚草的性别比显着高于gfp dsRNA处理的组和对照组,表明 Rwumab-3 的RNAi可能会阻碍发育男性线虫。这些结果表明 Rwucmab-3 主要参与性别分化的启动和男性性二态性的发展。 Rwuclaf-1 Rwuctra-2 可能在线虫的生殖和发育系统中起着至关重要的作用。综上所述,本研究提出的转录本序列可为今后 R 中的基因克隆及其他分子调控机制的研究提供更多的生物信息学资源。 wuchangensis 。此外,性别分化基因的鉴定和功能分析可以阐明 R 的性别分化机制。 wuchangensis ,有助于解决体外培养中未完成的性别分化问题,以及潜在的大规模现场控制 C 幼虫的潜在应用。 quinquefasciatus A aegypti A albopictus

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