首页> 外文OA文献 >Antimicrobial and Insecticidal: Cyclic Lipopeptides and Hydrogen Cyanide Produced by Plant-Beneficial Pseudomonas Strains CHA0, CMR12a, and PCL1391 Contribute to Insect Killing.
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Antimicrobial and Insecticidal: Cyclic Lipopeptides and Hydrogen Cyanide Produced by Plant-Beneficial Pseudomonas Strains CHA0, CMR12a, and PCL1391 Contribute to Insect Killing.

机译:抗菌和杀虫:植物有益的假单胞菌菌株CHA0,CMR12a和PCL1391产生的环脂肽和氰化氢有助于杀虫。

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摘要

Particular groups of plant-beneficial fluorescent pseudomonads are not only root colonizers that provide plant disease suppression, but in addition are able to infect and kill insect larvae. The mechanisms by which the bacteria manage to infest this alternative host, to overcome its immune system, and to ultimately kill the insect are still largely unknown. However, the investigation of the few virulence factors discovered so far, points to a highly multifactorial nature of insecticidal activity. Antimicrobial compounds produced by fluorescent pseudomonads are effective weapons against a vast diversity of organisms such as fungi, oomycetes, nematodes, and protozoa. Here, we investigated whether these compounds also contribute to insecticidal activity. We tested mutants of the highly insecticidal strains Pseudomonas protegens CHA0, Pseudomonas chlororaphis PCL1391, and Pseudomonas sp. CMR12a, defective for individual or multiple antimicrobial compounds, for injectable and oral activity against lepidopteran insect larvae. Moreover, we studied expression of biosynthesis genes for these antimicrobial compounds for the first time in insects. Our survey revealed that hydrogen cyanide and different types of cyclic lipopeptides contribute to insecticidal activity. Hydrogen cyanide was essential to full virulence of CHA0 and PCL1391 directly injected into the hemolymph. The cyclic lipopeptide orfamide produced by CHA0 and CMR12a was mainly important in oral infections. Mutants of CMR12a and PCL1391 impaired in the production of the cyclic lipopeptides sessilin and clp1391, respectively, showed reduced virulence in injection and feeding experiments. Although virulence of mutants lacking one or several of the other antimicrobial compounds, i.e., 2,4-diacetylphloroglucinol, phenazines, pyrrolnitrin, or pyoluteorin, was not reduced, these metabolites might still play a role in an insect background since all investigated biosynthetic genes for antimicrobial compounds of strain CHA0 were expressed at some point during insect infection. In summary, our study identified new factors contributing to insecticidal activity and extends the diverse functions of antimicrobial compounds produced by fluorescent pseudomonads from the plant environment to the insect host.
机译:特定种类的有益植物的荧光假单胞菌不仅是提供植物病害抑制作用的根定居者,而且还能够感染和杀死昆虫幼虫。细菌设法侵染该替代宿主,克服其免疫系统并最终杀死该昆虫的机制仍然是未知的。然而,对迄今为止发现的几种毒力因子的调查表明,杀虫活性具有高度多因素的性质。荧光假单胞菌产生的抗菌化合物是对抗多种生物(例如真菌,卵菌,线虫和原生动物)的有效武器。在这里,我们调查了这些化合物是否也有助于杀虫活性。我们测试了高度杀虫菌株蛋白假单胞菌CHA0,绿假单胞菌PCL1391和假单胞菌sp。的突变体。 CMR12a,对单个或多种抗菌化合物有缺陷,对鳞翅目昆虫幼虫具有注射和口服活性。此外,我们首次研究了这些抗菌化合物的生物合成基因的表达。我们的调查显示,氰化氢和不同类型的环状脂肽有助于杀虫活性。氰化氢对于直接注入血淋巴的CHA0和PCL1391的完全毒性至关重要。 CHA0和CMR12a产生的环状脂肽Orfamide在口腔感染中非常重要。 CMR12a和PCL1391突变体分别在环状脂肽sessilin和clp1391的生产中受损,在注射和喂养实验中显示出降低的毒力。尽管缺少一种或几种其他抗微生物化合物(即2,4-二乙酰基间苯三酚,吩嗪,吡咯硝酸或焦油黄质)的突变体的毒力并未降低,但这些代谢物仍可能在昆虫背景中发挥作用,因为所有已研究的生物合成基因CHA0菌株的抗菌化合物在昆虫感染过程中的某个时候表达。总之,我们的研究确定了有助于杀虫活性的新因素,并将荧光假单胞菌产生的抗菌化合物的多种功能从植物环境扩展到了昆虫宿主。

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