Eco-environmental Protection Institute, Shanghai Academy of Agricultural Sciences, Shanghai Key Laboratory of Protected Horticultural Technology, Shanghai Engineering Research Centre of Low-Carbon Agriculture, Shanghai 201403, China.
Shanghai Key Laboratory of Chemical Biology, School of Pharmacy, East China University of Science and Technology, Shanghai 200237, China.
Parasite. 2022;29:53. doi: 10.1051/parasite/2022053. Epub 2022 Nov 9.
Microplitis pallidipes Szépligeti (Hymenoptera: Braconidae) is an important parasitic wasp of second and third-instar noctuid larvae such as the insect pests Spodoptera exigua, Spodoptera litura, and Spodoptera frugiperda. As in other insects, M. pallidipes has a chemosensory recognition system that is critical to foraging, mating, oviposition, and other behaviors. Odorant-binding proteins (OBPs) are important to the system, but those of M. pallidipes have not been determined. This study used PacBio long-read sequencing to identify 170,980 M. pallidipes unigenes and predicted 129,381 proteins. Following retrieval of possible OBP sequences, we removed those that were redundant or non-full-length and eventually cloned five OBP sequences: MpOBP2, MpOBP3, MpOBP8, MpOBP10, and MpPBP 429, 429, 459, 420, and 429 bp in size, respectively. Each M. pallidipes OBP had six conserved cysteine residues. Phylogenetic analysis revealed that the five OBPs were located at different branches of the phylogenetic tree. Additionally, tissue expression profiles indicated that MpOBP2 and MpPBP were mainly expressed in the antennae of male wasps, while MpOBP3, MpOBP8, and MpOBP10 were mainly expressed in the antennae of female wasps. MpOBP3 was also highly expressed in the legs of female wasps. Temporal profiles revealed that the expression of each M. pallidipes OBP peaked at different days after emergence to adulthood. In conclusion, we identified five novel odorant-binding proteins of M. pallidipes and demonstrated biologically relevant differences in expression patterns.
小菜蛾茧蜂(膜翅目:Braconidae)是鳞翅目夜蛾科第二和第三龄幼虫的重要寄生蜂,如害虫甜菜夜蛾、斜纹夜蛾和草地贪夜蛾。与其他昆虫一样,小菜蛾茧蜂有一个化学感觉识别系统,这对觅食、交配、产卵和其他行为至关重要。气味结合蛋白(OBP)对该系统很重要,但小菜蛾茧蜂的 OBPs 尚未确定。本研究使用 PacBio 长读测序技术鉴定了 170980 个小菜蛾茧蜂 unigenes,并预测了 129381 种蛋白质。在检索可能的 OBP 序列后,我们去除了冗余或非全长的序列,最终克隆了 5 个 OBP 序列:MpOBP2、MpOBP3、MpOBP8、MpOBP10 和 MpPBP,大小分别为 429、429、459、420 和 429bp。每个小菜蛾茧蜂 OBP 都有 6 个保守的半胱氨酸残基。系统发育分析表明,这 5 个 OBPs 位于系统发育树的不同分支上。此外,组织表达谱表明,MpOBP2 和 MpPBP 主要在雄蜂的触角中表达,而 MpOBP3、MpOBP8 和 MpOBP10 主要在雌蜂的触角中表达。MpOBP3 在雌蜂的腿中也有高表达。时间表达谱表明,每个小菜蛾茧蜂 OBP 的表达在从蛹到成虫的不同天数达到峰值。总之,我们鉴定了小菜蛾茧蜂的 5 种新型气味结合蛋白,并证明了表达模式的生物学差异。