Almeida Luis Gustavo de, Moraes Luiz Alberto Beraldo de, Trigo José Roberto, Omoto Celso, Cônsoli Fernando Luis
Universidade de São Paulo, Escola Superior de Agricultura "Luiz de Queiroz", Departamento de Entomologia e Acarologia, Piracicaba, São Paulo, Brasil.
Universidade de São Paulo, Faculdade de Filosofia, Ciências e Letras, Departamento de Química, Ribeirão Preto, São Paulo, Brasil.
PLoS One. 2017 Mar 30;12(3):e0174754. doi: 10.1371/journal.pone.0174754. eCollection 2017.
The exploration of new niches for microorganisms capable of degrading recalcitrant molecules is still required. We hypothesized the gut microbiota associated with insect-resistant lines carry pesticide degrading bacteria, and predicted they carry bacteria selected to degrade pesticides they were resistant to. We isolated and accessed the pesticide-degrading capacity of gut bacteria from the gut of fifth instars of Spodoptera frugiperda strains resistant to lambda-cyhalothrin, deltamethrin, chlorpyrifos ethyl, spinosad and lufenuron, using insecticide-selective media. Sixteen isolates belonging to 10 phylotypes were obtained, from which four were also associated with the susceptible strain. However, growth of gut bacteria associated with larvae from the susceptible strain was not obtained in any of the insecticide-based selective media tested. Growth of isolates was affected by the concentration of insecticides in the media, and all grew well up to 40 μg/ml. The insecticide-degrading capacity of selected isolates was assessed by GC or LC-MS/MS analyses. In conclusion, resistant strains of S. frugiperda are an excellent reservoir of insecticide-degrading bacteria with bioremediation potential. Moreover, gut-associated bacteria are subjected to the selection pressure imposed by insecticides on their hosts and may influence the metabolization of pesticides in insects.
仍需要探索能够降解难降解分子的微生物的新生态位。我们推测与抗虫品系相关的肠道微生物群携带农药降解细菌,并预测它们携带的细菌是为了降解它们所抗的农药而被选择出来的。我们使用杀虫剂选择性培养基,从对氯氟氰菊酯、溴氰菊酯、毒死蜱、多杀菌素和虱螨脲具有抗性的草地贪夜蛾品系的五龄幼虫肠道中分离并评估了肠道细菌的农药降解能力。获得了属于10个系统发育型的16个分离株,其中4个也与敏感品系相关。然而,在任何测试的基于杀虫剂的选择性培养基中,都没有获得与敏感品系幼虫相关的肠道细菌的生长。分离株的生长受培养基中杀虫剂浓度的影响,所有分离株在高达40μg/ml的浓度下都生长良好。通过气相色谱或液相色谱-串联质谱分析评估了所选分离株的杀虫剂降解能力。总之,草地贪夜蛾的抗性品系是具有生物修复潜力的杀虫剂降解细菌的优良储存库。此外,肠道相关细菌受到杀虫剂对其宿主施加的选择压力,可能会影响昆虫体内农药的代谢。