Liu Peng-Cheng, Tian Shuo, Hao De-Jun
Co-Innovation Center for the Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing, China.
The College of Forestry, Nanjing Forestry University, Nanjing, China.
Front Genet. 2019 Mar 5;10:172. doi: 10.3389/fgene.2019.00172. eCollection 2019.
Sex differences in gene expression have been extensively documented, but little is known about these differences in parasitoid species that are widely applied to control pests. is a solitary parasitoid species and has been evaluated as a potential candidate for release to control . In this study, gender differences in were investigated using Illumina-based transcriptomic analysis. The resulting 37,453 unigene annotations provided a large amount of useful data for molecular studies of . A total of 1416 differentially expressed genes were identified between females and males, and the majority of the sex-biased genes were female biased. Gene Ontology (GO) and Pathway enrichment analyses showed that (1) the functional categories DNA replication, fatty acid biosynthesis, and metabolism were enhanced in females and that (2) the only pathway enriched in males was phototransduction, while the GO subcategories enriched in males were those involved in membrane and ion transport. In addition, thirteen genes involving transient receptor potential (TRP) channels were annotated in . We further explored and discussed the functions of TRPs in sensory signaling of light and temperature. In general, this study provides new molecular insights into the biological and sexually dimorphic traits of parasitoids, which may improve the application of these insects to the biological control of pests.
基因表达中的性别差异已有大量文献记载,但对于广泛应用于害虫防治的寄生蜂物种中的这些差异却知之甚少。 是一种 solitary 寄生蜂物种,已被评估为释放用于控制 的潜在候选者。在本研究中,使用基于Illumina的转录组分析研究了 中的性别差异。由此产生的37453个单基因注释为 的分子研究提供了大量有用数据。在雌性和雄性之间共鉴定出1416个差异表达基因,并且大多数性别偏向基因是雌性偏向的。基因本体论(GO)和通路富集分析表明:(1)DNA复制、脂肪酸生物合成和代谢等功能类别在雌性中增强;(2)雄性中唯一富集的通路是光转导,而雄性中富集的GO子类别是那些参与膜和离子运输的类别。此外,在 中注释了13个涉及瞬时受体电位(TRP)通道的基因。我们进一步探索并讨论了TRP在光和温度的感觉信号传导中的功能。总体而言,本研究为寄生蜂的生物学和两性异形特征提供了新的分子见解,这可能会改善这些昆虫在害虫生物防治中的应用。