Shi Jiateng, Song Yang, Shentu Xuping, Yu Xiaoping
Zhejiang Provincial Key Laboratory of Biometrology and Inspection & Quarantine, College of Life Science, China Jiliang University, Hangzhou, China.
Front Physiol. 2021 Mar 15;12:644897. doi: 10.3389/fphys.2021.644897. eCollection 2021.
Symbionts in the abdomen fat body of brown planthopper (BPH) play an important role in the growth and reproduction of their host, Stål (Hemiptera: Delphacidae). Thus, controlling BPH infection on rice by inhibiting symbionts with antimicrobials is feasible. However, the effect of antimicrobials on the microbiome in the fat body and the relationship between microbial community and mortality have not been fully elucidated. A decrease in the total number of yeast-like symbiotes in the fat body and elevated mortality were observed after exposure to toyocamycin, tebuconazole, and zhongshengmycin. Additionally, we found that the antimicrobials reduced bacterial diversity and increased fungal diversity in the fat body and altered the bacterial and fungal community structure. Although the total absolute abundance of bacteria and fungi decreased after antimicrobial exposure, the absolute abundance of increased, indicating that , which was the most dominant in the fat body, is an important symbiont involved in resistance to antimicrobials. After antimicrobial exposure, seven genera, which probably participated in the nutrition and development function of the host, were totally eliminated from the fat body. Overall, our study enriches the knowledge of microbiomes in the fat body of BPH under antimicrobial treatment and the disturbance of symbionts would be further used to help other pesticides to control pests.
褐飞虱(半翅目:飞虱科)腹部脂肪体中的共生菌在其宿主的生长和繁殖中起着重要作用。因此,通过使用抗菌剂抑制共生菌来控制水稻上的褐飞虱感染是可行的。然而,抗菌剂对脂肪体中微生物群落的影响以及微生物群落与死亡率之间的关系尚未完全阐明。在接触春雷霉素、戊唑醇和中生菌素后,观察到脂肪体中类酵母共生菌总数减少,死亡率升高。此外,我们发现抗菌剂降低了脂肪体中的细菌多样性,增加了真菌多样性,并改变了细菌和真菌群落结构。虽然抗菌剂处理后细菌和真菌的总绝对丰度下降,但的绝对丰度增加,这表明在脂肪体中占主导地位的是一种参与抗菌抗性的重要共生菌。抗菌剂处理后,脂肪体中七个可能参与宿主营养和发育功能的属被完全消除。总体而言,我们的研究丰富了抗菌处理下褐飞虱脂肪体中微生物群落的知识,共生菌的干扰将进一步用于帮助其他农药控制害虫。