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雄性附腺来源的羧肽酶B调节梨小食心虫精荚中精子的激活。

Male accessory gland-derived carboxypeptidase B regulates sperm activation in the spermatophores of Grapholita molesta.

作者信息

Cheng Jie, Wei Wei, Zhang Yiyang, Zhu Fang, Shen Zhongjian, Li Xianwei, Liang Yu, Xiang Huiming, Ma Ruiyan

机构信息

College of Plant Protection, Shanxi Agricultural University, Taigu 030801 Shanxi, China; Shanxi Key Laboratory of Bioagent Utilization and Eco-Pesticide Innovation, Taigu 030801 Shanxi, China.

College of Plant Protection, Shanxi Agricultural University, Taigu 030801 Shanxi, China.

出版信息

J Insect Physiol. 2025 Sep;165:104858. doi: 10.1016/j.jinsphys.2025.104858. Epub 2025 Jul 17.

Abstract

Grapholita molestais a globally significant fruit-boring pest. Females maximize reproductive efficiency through optimal sperm utilization following a single mating event. Post-mating sperm activation is critical for reproductive success. Although sperm activation in G. molesta relies on the spermatophore microenvironment, the molecular regulators and associated metabolic pathways remain poorly understood. Here, we report that a male accessory gland-derived carboxypeptidase B (GmCPB) is essential for this process. GmCPB exhibited peak expression in the accessory gland during the pre-maturation stage; RNAi-mediated knockdown of GmCPB in males substantially reduced fertility, while mating success and longevity were unaffected. Mating with GmCPB-knockdown males had no effect on spermatophore formation or sperm transfer, whereas sperm activation was markedly impaired. Untargeted metabolomic analysis further revealed that multiple metabolic pathways exhibited significant dysregulation in the spermatophores of females after mating with GmCPB- knockdown males. Our findings propose a functional framework for CPB characterization and establish a molecular foundation for population suppression strategies targeting male accessory gland proteins in G. molesta.

摘要

桃小食心虫是一种在全球范围内具有重要影响的蛀果害虫。雌虫通过单次交配后对精子的最佳利用来实现生殖效率最大化。交配后精子的激活对生殖成功至关重要。虽然桃小食心虫精子的激活依赖于精荚微环境,但分子调节因子和相关代谢途径仍知之甚少。在此,我们报告一种雄性附腺来源的羧肽酶B(GmCPB)对这一过程至关重要。GmCPB在成熟前期的附腺中表达达到峰值;RNA干扰介导的雄性GmCPB基因敲低显著降低了生育力,而交配成功率和寿命不受影响。与GmCPB基因敲低的雄虫交配,对精荚形成或精子转移没有影响,而精子激活则明显受损。非靶向代谢组学分析进一步表明,与GmCPB基因敲低的雄虫交配后,雌虫精荚中的多种代谢途径表现出显著的失调。我们的研究结果为CPB的特性描述提出了一个功能框架,并为针对桃小食心虫雄性附腺蛋白的种群抑制策略奠定了分子基础。

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