鳞翅目夜蛾科 Spodoptera littoralis 对抗 Cry1c 毒性的肠道微生物变化的生化和分子分析

Abeer Abd El Aziz, Saad Moussa, Mohamed T. Yassin, Iman M El Husseiny, Samar El Kholy
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引用次数: 0

摘要

苏云金芽孢杆菌(Bt)是迄今为止最经济的生物农药之一。它产生的毒素对包括鞘翅目害虫在内的许多农业害虫具有杀虫活性。然而,Bt 耐受性导致生物防治效率低下。要解决这个问题,发现昆虫对 Bt 产生耐药性的隐性原因非常重要。我们假设,频繁施用 Bt 导致的肠道微生物群变化是其中一个隐藏原因。为了研究这一假设,我们研究了 Bt Cry1c 的应用对 Bt 易感种群和 Bt 耐受种群中鞘翅目幼虫肠道微生物群的影响。结果显示,易感种群和耐受种群肠道细菌组成的多样性和丰度发生了变化。在耐受种群中检测到大量肠球菌。有趣的是,Cry1c耐受性消除了幼虫中肠中的克雷伯氏菌属和沙雷氏菌属。这些变化可能证实了鞘翅目幼虫为抵御 Bt Cry1c 毒性而开发的机制。了解苏云金芽孢杆菌与肠道微生物群的相互作用可能有助于改进针对农业害虫的生物控制策略,以克服耐受性的进化。
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Biochemical and Molecular Analysis of Gut Microbial Changes in Spodoptera littoralis (Lepidoptera: Noctuidae) to Counteract Cry1c Toxicity
Bacillus thuringiensis (Bt) represents one of the most economical biopesticides to date. It produces toxins with insecticidal activity against many agricultural pests, including members of the genus Spodoptera. However, Bt tolerance leads to inefficiency in biological control. To overcome this problem, discovering the hidden cause(s) for the evolution of insect tolerance against Bt is of great importance. We hypothesized that changes in the gut microbiota due to the frequent application of Bt is one of those hidden causes. To investigate this hypothesis, we studied the effect of Bt Cry1c application on the Spodoptera littoralis larval gut microbiota in both Bt-susceptible and Bt-tolerant populations. The results revealed changes in the diversity and abundance of gut bacterial composition between the susceptible and tolerant populations. A high abundance of Enterococcaceae was detected in the tolerant population. Interestingly, Cry1c tolerance eliminates the bacterial genera Klebsiella and Serratia from the larval midgut. These changes may confirm the mechanism developed by Spodoptera larvae to counteract Bt Cry1c toxicity. Understanding the B. thuringiensis–gut microbiota interaction may help in improving biocontrol strategies against agricultural pests to overcome the evolution of tolerance.
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