State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Institute of Applied Ecology, Fujian Agriculture and Forestry University, Fuzhou, China.
Joint International Research Laboratory of Ecological Pest Control, Ministry of Education, Fuzhou, China.
Insect Sci. 2021 Aug;28(4):987-1004. doi: 10.1111/1744-7917.12817. Epub 2020 Jul 20.
Odorant binding proteins (OBPs) are a group of soluble proteins functioning as odorant carriers in insect antennae, mouth parts and other chemosensory organs. However, multiple insect OBPs have been detected in other tissues and various functions have been proposed. Therefore, a detailed expression profile including stages, tissues and sexes where OBPs are expressed will assist in building the links to their potential functions, enhancing the functional studies of insect OBPs. Here, we identified 39 putative OBP genes from its genome and transcriptome sequences of diamondback moth (DBM), Plutella xylostella. The expression patterns of identified PxylOBPs were further investigated from eggs, larvae, pupae, virgin adults, mated adults, larval midgut, larval heads, adult antennae, adult heads and adult tarsi. Moreover, P. xylostella larvae and adults with and without host plants for 5 h were utilized to study the interactions between OBP expression and host plants. The results showed that most PxylOBPs were highly expressed in male and female adult antennae. The expression levels of certain PxyOBPs could be regulated by mating activities and feeding host plants. This study advances our knowledge of P. xylostella OBPs, which may help develop new strategies for more environmentally sustainable management of P. xylostella.
气味结合蛋白(OBPs)是一组可溶性蛋白,作为昆虫触角、口器和其他化学感受器官中的气味载体发挥作用。然而,已经在其他组织中检测到多种昆虫 OBPs,并提出了多种功能。因此,详细的表达谱,包括 OBPs 表达的阶段、组织和性别,将有助于建立与它们潜在功能的联系,增强昆虫 OBPs 的功能研究。在这里,我们从小菜蛾(DBM)的基因组和转录组序列中鉴定了 39 个假定的 OBP 基因。鉴定的 PxylOBPs 的表达模式进一步从卵、幼虫、蛹、处女成虫、交配成虫、幼虫中肠、幼虫头部、成虫触角、成虫头部和成虫跗节进行了研究。此外,小菜蛾幼虫和成虫在有和没有宿主植物的情况下处理 5 小时,以研究 OBP 表达与宿主植物之间的相互作用。结果表明,大多数 PxylOBPs 在雌雄成虫触角中高度表达。某些 PxyOBPs 的表达水平可以通过交配活动和取食宿主植物来调节。这项研究提高了我们对小菜蛾 OBPs 的认识,这可能有助于开发更环保的小菜蛾管理新策略。