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Symbiont-mediated insecticide resistance

机译:共生介导的杀虫剂抗性

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摘要

Development of insecticide resistance has been a serious concern worldwide, whose mechanisms have been attributed to evolutionary changes in pest insect genomes such as alteration of drug target sites, up-regulation of degrading enzymes, and enhancement of drug excretion. Here, we report a previously unknown mechanism of insecticide resistance: Infection with an insecticide-degrading bacterial symbiont immediately establishes insecticide resistance in pest insects. The bean bug Riptortus pedestris and allied stinkbugs harbor mutualistic gut symbiotic bacteria of the genus Burkholderia, which are acquired by nymphal insects from environmental soil every generation. In agricultural fields, fenitrothion-degrading Burkolderia strains are present at very low densities. We demonstrated that the fenitrothion-degrading Burkholderia strains establish a specific and beneficial symbiosis with the stinkbugs and confer a resistance of the host insects against fenitrothion. Experimental applications of fenitrothion to field soils drastically enriched fenitrothion-degrading bacteria from undetectable levels to >80% of total cultivable bacterial counts in the field soils, and >90% of stinkbugs reared with the enriched soil established symbiosis with fenitrothion-degrading Burkholderia. In a Japanese island where fenitrothion has been constantly applied to sugarcane fields, we identified a stinkbug population wherein the insects live on sugarcane and ≈8% of them host fenitrothion-degrading Burkholderia. Our finding suggests the possibility that the symbiont-mediated insecticide resistance may develop even in the absence of pest insects, quickly establish within a single insect generation, and potentially move around horizontally between different pest insects and other organisms.
机译:杀虫剂抗药性的发展已引起全世界的严重关注,其机理归因于害虫昆虫基因组的进化变化,例如药物靶位的改变,降解酶的上调和药物排泄的增强。在这里,我们报告了以前未知的杀虫剂抗性机制:用降解杀虫剂的细菌共生菌感染可立即在害虫中建立杀虫剂抗性。豆虫Riptortus pedestris和相关的臭虫带有伯克霍尔德氏菌属的肠道共生共生细菌,该菌由若虫从每一代环境土壤中获取。在农业领域中,降解Fenitrothion的Burkolderia菌株的密度非常低。我们证明了降解杀nitro硫的伯克霍尔德菌菌株与臭虫建立了特定且有益的共生关系,并赋予宿主昆虫抵抗杀nitro硫的能力。杀field硫磷在田间土壤中的实验应用从田野土壤中无法检测到的含量大幅增加,使杀nitro硫磷降解细菌的含量达到不可检测水平的> 80%,并且在富集土壤中饲养的>虫中有> 90%与杀nitro硫磷的伯克霍尔德菌共生。在日本一个经常将杀nitro硫磷应用于甘蔗田的岛屿上,我们发现了一个臭虫种群,其中的昆虫生活在甘蔗上,其中约有8%的宿主是降解了杀nitro硫磷的伯克霍尔德氏菌。我们的发现表明,即使在没有害虫的情况下,共生体介导的杀虫剂抗药性也可能发展,在单一昆虫世代中迅速建立,并可能在不同害虫和其他生物之间水平移动。

著录项

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  • 作者单位

    Bioproduction Research Institute, Hokkaido Center, National Institute of Advanced Industrial Science and Technology, Sapporo 062-8517, Japan, Graduate School of Agriculture, Hokkaido University, Sapporo 060-8589, Japan;

    Environmental Biofunction Division, National Institute for Agro-Environmental Sciences, Tsukuba 305-8604, Japan;

    Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology, Tsukuba 305-8566,Japan;

    Okinawa Prefectural Agricultural Research Center, Itoman 901-0336, Japan;

    Environmental Biofunction Division, National Institute for Agro-Environmental Sciences, Tsukuba 305-8604, Japan;

    Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology, Tsukuba 305-8566,Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pesticide; biodegradation; gut symbiosis; mutualism;

    机译:农药;生物降解肠道共生共生主义;

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