Li Haomiao, Luo Xi, Li Na, Liu Tao, Zhang Junzheng
MARA Key Laboratory of Surveillance and Management for Plant Quarantine Pests, College of Plant Protection, China Agricultural University, Beijing, China.
Chinese Academy of Inspection and Quarantine, Beijing, China.
Front Cell Dev Biol. 2023 Jan 18;11:1103923. doi: 10.3389/fcell.2023.1103923. eCollection 2023.
Insulin-like peptides (Ilps) play crucial roles in nearly all life stages of insects. Ilp8 is involved in developmental stability, stress resistance and female fecundity in several insect species, but the underlying mechanisms are not fully understood. Here we report the functional characterization of Ilp8s in three fly species, including , and . Phylogenetic analyses were performed to identify and characterize insect Ilp8s. The amino acid sequences of fly Ilp8s were aligned and the three-dimensional structures of fly Ilp8s were constructed and compared. The tissue specific expression pattern of fly Ilp8s were examined by qRT-PCR. In and , dsRNAs were injected into virgin females to inhibit the expression of Ilp8 and the impacts on female fecundity were examined. In , the female fecundity of Ilp8 loss-of-function mutant was compared with wild type control flies. The mutant fruit fly strain was also used for sexual behavioral analysis and transcriptomic analysis. Orthologs of Ilp8s are found in major groups of insects except for the lepidopterans and coleopterans, and Ilp8s are found to be well separated from other Ilps in three fly species. The key motif and the predicted three-dimensional structure of fly Ilp8s are well conserved. Ilp8 are specifically expressed in the ovary and are essential for female fecundity in three fly species. Behavior analysis demonstrates that Ilp8 mutation impairs female sexual attractiveness in fruit fly, which results in decreased mating success and is likely the cause of fecundity reduction. Further transcriptomic analysis indicates that Ilp8 might influence metabolism, immune activity, oocyte development as well as hormone homeostasis to collectively regulate female fecundity in the fruit fly. Our findings support a universal role of insect Ilp8 in female fecundity, and also provide novel clues for understanding the modes of action of Ilp8.
胰岛素样肽(Ilps)在昆虫几乎所有的生命阶段都发挥着关键作用。Ilp8在几种昆虫物种的发育稳定性、抗逆性和雌性繁殖力方面发挥作用,但其潜在机制尚未完全了解。在此,我们报告了三种果蝇中Ilp8的功能特性,包括黑腹果蝇、拟暗果蝇和海德氏果蝇。进行了系统发育分析以鉴定和表征昆虫Ilp8。对果蝇Ilp8的氨基酸序列进行了比对,并构建和比较了果蝇Ilp8的三维结构。通过qRT-PCR检测了果蝇Ilp8的组织特异性表达模式。在黑腹果蝇和拟暗果蝇中,向未交配的雌性果蝇注射双链RNA以抑制Ilp8的表达,并检测对雌性繁殖力的影响。在海德氏果蝇中,将Ilp8功能丧失突变体的雌性繁殖力与野生型对照果蝇进行了比较。该突变果蝇品系还用于性行为分析和转录组分析。除鳞翅目和鞘翅目外,在主要昆虫类群中都发现了Ilp8的直系同源物,并且发现Ilp8在三种果蝇中与其他Ilps有明显区分。果蝇Ilp8的关键基序和预测的三维结构高度保守。Ilp8在卵巢中特异性表达,并且对三种果蝇的雌性繁殖力至关重要。行为分析表明,Ilp8突变会损害果蝇雌性的性吸引力,导致交配成功率降低,这可能是繁殖力下降的原因。进一步的转录组分析表明,Ilp8可能影响代谢、免疫活性、卵母细胞发育以及激素稳态,从而共同调节果蝇的雌性繁殖力。我们的研究结果支持昆虫Ilp8在雌性繁殖力中的普遍作用,也为理解Ilp8的作用方式提供了新线索。