Tan Qian-Qian, Liu Wen, Zhu Fen, Lei Chao-Liang, Hahn Daniel A, Wang Xiao-Ping
Hubei Insect Resources Utilization and Sustainable Pest Management Key Laboratory, College of Plant Science and Technology, Huazhong Agricultural UniversityWuhan, China.
Department of Entomology and Nematology, University of FloridaGainesville, FL, USA.
Front Physiol. 2017 Apr 26;8:251. doi: 10.3389/fphys.2017.00251. eCollection 2017.
Prior to entering diapause, insects must prepare themselves physiologically to withstand the stresses of arresting their development for a lengthy period. While studies describing the biochemical and cellular milieu of the maintenance phase of diapause are accumulating, few studies have taken an "omics" approach to describing molecular events during the diapause preparatory phase. We used isobaric tags and mass spectrometry (iTRAQ) to quantitatively compare the expression profiles of proteins identified during the onset of diapause preparation phase in the heads of adult female cabbage beetles, . A total of 3,175 proteins were identified, 297 of which were differentially expressed between diapause-destined and non-diapause-destined female adults and could therefore be involved in diapause preparation in this species. Comparison of identified proteins with protein function databases shows that many of these differentially expressed proteins enhanced in diapause destined beetles are involved in energy production and conversion, carbohydrate metabolism and transport, and lipid metabolism. Further hand annotation of differentially abundant peptides nominates several associated with stress hardiness, including HSPs and antioxidants, as well as neural development. In contrast, non-diapause destined beetles show substantial increases in cuticle proteins, suggesting additional post-emergence growth. Using RNA interference to silence a fatty acid-binding protein (FABP) that was highly abundant in the head of diapause-destined females prevented the accumulation of lipids in the fat body, a common product of diapause preparation in this species and others. Surprisingly, RNAi against the FABP also affected the transcript abundance of several heat shock proteins. These results suggest that the identified differentially expressed proteins that play vital roles in lipid metabolism may also contribute somehow to enhanced hardiness to environmental stress that is characteristic of diapause.
在进入滞育之前,昆虫必须在生理上做好准备,以承受长时间停止发育所带来的压力。虽然描述滞育维持阶段生化和细胞环境的研究不断积累,但很少有研究采用“组学”方法来描述滞育准备阶段的分子事件。我们使用等压标签和质谱法(iTRAQ)定量比较了成年雌性甘蓝叶甲头部滞育准备阶段开始时鉴定出的蛋白质表达谱。总共鉴定出3175种蛋白质,其中297种在注定进入滞育和不进入滞育的雌性成虫之间差异表达,因此可能参与该物种的滞育准备。将鉴定出的蛋白质与蛋白质功能数据库进行比较表明,许多在注定进入滞育的甲虫中表达增强的差异表达蛋白质参与能量产生和转换、碳水化合物代谢和运输以及脂质代谢。对差异丰富肽段的进一步手工注释提名了几种与应激耐受性相关的蛋白质,包括热休克蛋白和抗氧化剂,以及神经发育相关蛋白。相比之下,不进入滞育的甲虫角质层蛋白大幅增加,表明羽化后还有额外的生长。利用RNA干扰使注定进入滞育的雌性头部高度丰富的一种脂肪酸结合蛋白(FABP)沉默,阻止了脂肪体中脂质的积累,脂肪体脂质积累是该物种及其他物种滞育准备的常见产物。令人惊讶的是,针对FABP的RNA干扰也影响了几种热休克蛋白的转录丰度。这些结果表明,鉴定出的在脂质代谢中起重要作用的差异表达蛋白质可能也以某种方式有助于增强对滞育特有的环境压力的耐受性。