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[某种物质]产生的次生代谢产物对[具体对象]及其微生物群的影响

The Effect of Secondary Metabolites Produced by on and Its Microbiota.

作者信息

Heu Katy, Romoli Ottavia, Schönbeck Johan Claes, Ajenoe Rachel, Epelboin Yanouk, Kircher Verena, Houël Emeline, Estevez Yannick, Gendrin Mathilde

机构信息

Microbiota of Insect Vectors Group, Institut Pasteur de la Guyane, Cayenne, France.

CNRS, UMR EcoFoG, AgroParisTech, Cirad, INRAE, Université des Antilles, Université de Guyane, Cayenne, France.

出版信息

Front Microbiol. 2021 Jul 7;12:645701. doi: 10.3389/fmicb.2021.645701. eCollection 2021.

Abstract

is a bacterial species widely found in the environment, which very efficiently colonizes mosquitoes. In this study, we isolated a red-pigmented strain from our mosquito colony (called VA). This red pigmentation is caused by the production of prodigiosin, a molecule with antibacterial properties. To investigate the role of prodigiosin on mosquito- interactions, we produced two white mutants of VA by random mutagenesis. Whole genome sequencing and chemical analyses suggest that one mutant has a nonsense mutation in the gene encoding prodigiosin synthase, while the other one is deficient in the production of several types of secondary metabolites including prodigiosin and serratamolide. We used our mutants to investigate how secondary metabolites affect the mosquito and its microbiota. Our tests indicated that VA inhibits the growth of several mosquito microbiota isolates using a combination of prodigiosin and other secondary metabolites, corroborating published data. This strain requires secondary metabolites other than prodigiosin for its proteolytic and hemolytic activities. In the mosquito, we observed that VA is highly virulent to larvae in a prodigiosin-dependent manner, while its virulence on adults is lower and largely depends on other metabolites.

摘要

是一种在环境中广泛存在的细菌物种,它能非常有效地在蚊子体内定殖。在本研究中,我们从我们的蚊子群落中分离出一株红色色素菌株(称为VA)。这种红色色素是由灵菌红素的产生引起的,灵菌红素是一种具有抗菌特性的分子。为了研究灵菌红素在蚊子相互作用中的作用,我们通过随机诱变产生了VA的两个白色突变体。全基因组测序和化学分析表明,一个突变体在编码灵菌红素合酶的基因中存在无义突变,而另一个突变体在包括灵菌红素和serratamolide在内的几种次生代谢产物的产生上存在缺陷。我们用我们的突变体来研究次生代谢产物如何影响蚊子及其微生物群。我们的测试表明,VA使用灵菌红素和其他次生代谢产物的组合抑制了几种蚊子微生物群分离株的生长,这证实了已发表的数据。该菌株的蛋白水解和溶血活性需要除灵菌红素以外的次生代谢产物。在蚊子中,我们观察到VA以灵菌红素依赖的方式对幼虫具有高毒性,而其对成虫的毒性较低,并且很大程度上取决于其他代谢产物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3e6/8294061/d01a9d572f27/fmicb-12-645701-g001.jpg

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