Ma Mengxin, Xue Hui, Zhu Xiangzhen, Wang Li, Niu Lin, Luo Junyu, Cui Jinjie, Gao Xueke
Research Base of Zhengzhou University, State Key Laboratory of Cotton Bio-Breeding and Integrated Utilization, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang, China.
State Key Laboratory of Cotton Bio-Breeding and Integrated Utilization, School of Agricultural Sciences, Zhengzhou University, Zhengzhou, China.
Front Microbiol. 2024 Dec 4;15:1485708. doi: 10.3389/fmicb.2024.1485708. eCollection 2024.
Insect population control using pesticides faces new challenges as global temperatures change. Symbiotic bacteria of insects play a key role in insect resistance to pesticides, and these symbiotic bacteria themselves are sensitive to the effects of temperature changes. , a sucking pest, survives in a wide range of temperatures (15°C-35°C), and is presently controlled predominantly using the pesticide imidacloprid. Here, we investigated the effects of temperature and imidacloprid on microbial population composition using 16S rRNA sequencing. We found that the application of imidacloprid in high-temperature environments led to an increase in the species diversity of bacteria in the body of High temperatures may disrupt the symbiotic relationship between certain bacteria and , such as . High temperatures led to a decrease in the abundance of . , , and were very sensitive to temperature and were strongly affected by temperature changes. Microorganisms that were greatly affected by the concentration of imidacloprid in the community include and . The aim of this study is to reveal the dynamics and diversity of symbiotic bacteria of treated with imidacloprid at a range of temperatures. These results provide insight into new strategies for pest control in a changing climate.
随着全球气温变化,使用杀虫剂控制昆虫种群面临新挑战。昆虫的共生细菌在昆虫对杀虫剂的抗性中起关键作用,而这些共生细菌本身对温度变化的影响敏感。 ,一种刺吸式害虫,能在较宽温度范围(15°C - 35°C)存活,目前主要使用杀虫剂吡虫啉进行防治。在此,我们使用16S rRNA测序研究了温度和吡虫啉对微生物种群组成的影响。我们发现,在高温环境下施用吡虫啉会导致 体内细菌物种多样性增加。高温可能会破坏某些细菌与 的共生关系,例如 。高温导致 的丰度降低。 、 和 对温度非常敏感,受温度变化影响强烈。群落中受吡虫啉浓度影响较大的微生物包括 和 。本研究的目的是揭示在一系列温度下用吡虫啉处理的 共生细菌的动态变化和多样性。这些结果为气候变化背景下害虫防治的新策略提供了见解。