Li Xing-Ye, Wang Jie-Qiong, Zheng Kang-Wu, Li Yu-Ting
College of Plant Protection, Shenyang Agricultural University, Shenyang, 110866, Liaoning, China.
Key Laboratory of Economical and Applied Entomology of Liaoning Province, Shenyang, 110866, Liaoning, China.
Sci Rep. 2025 Jul 1;15(1):20461. doi: 10.1038/s41598-025-05567-z.
Glutamine synthetase (GS) is a pivotal enzyme crucial for the synthesis of glutamine (Gln), an important precursor in amino acid biosynthesis, essential for the growth, development, and reproduction of insects through its involvement in nitrogen metabolism. Despite its recognized significance in insect biology, the specific functions of GS in aphids have not been fully elucidated. Here, we cloned and characterized two GS genes, RpGS1 and RpGS2, from Rhopalosiphum padi and analyzed their expression profiles and explored the contribution of RpGS to aphid fecundity. The two isoforms, which are predicted to localize in the mitochondria and cytoplasm respectively, were successfully cloned and heterologously expressed in Escherichia coli. Despite exhibiting 92% amino acid similarity, the isoforms displayed distinct enzymatic kinetic properties and demonstrated variations in mRNA expression levels across developmental stages and tissues. Notably, RpGS1 was highly expressed in the head, whereas RpGS2 was highly expressed in the intestine. Both RpGS genes were significantly expressed in alate adult aphids. Treatment with the specific inhibitor L-methionine S-sulfoximine (MSX) not only suppressed enzyme activity but also downregulated gene expression. Furthermore, inhibition of RpGS led to a marked decrease in the abundance of the obligate symbiont Buchnera and reduced the fecundity of R. padi. The transcript levels of RpVg and RpGT were also downregulated. These findings underscore the significant role of RpGS in regulating fecundity, suggesting its potential as a target for insecticide development in pest management strategies.
谷氨酰胺合成酶(GS)是一种关键酶,对谷氨酰胺(Gln)的合成至关重要,谷氨酰胺是氨基酸生物合成中的重要前体,通过参与氮代谢对昆虫的生长、发育和繁殖至关重要。尽管其在昆虫生物学中的重要性已得到认可,但GS在蚜虫中的具体功能尚未完全阐明。在这里,我们从禾谷缢管蚜中克隆并鉴定了两个GS基因,RpGS1和RpGS2,分析了它们的表达谱,并探讨了RpGS对蚜虫繁殖力的贡献。这两种同工型分别预测定位于线粒体和细胞质中,已成功克隆并在大肠杆菌中进行了异源表达。尽管这两种同工型的氨基酸相似性为92%,但它们表现出不同的酶动力学特性,并且在不同发育阶段和组织中的mRNA表达水平存在差异。值得注意的是,RpGS1在头部高度表达,而RpGS2在肠道中高度表达。两个RpGS基因在有翅成年蚜虫中均有显著表达。用特异性抑制剂L-甲硫氨酸S-亚砜亚胺(MSX)处理不仅抑制了酶活性,还下调了基因表达。此外,抑制RpGS导致专性共生菌布赫纳氏菌的丰度显著降低,并降低了禾谷缢管蚜的繁殖力。RpVg和RpGT的转录水平也下调了。这些发现强调了RpGS在调节繁殖力方面的重要作用,表明其在害虫管理策略中作为杀虫剂开发靶点的潜力。