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蛋白水解型荧光假单胞菌与非蛋白水解型荧光假单胞菌之间的相互作用影响模型群落中的蛋白质降解。

Interactions between proteolytic and non-proteolytic Pseudomonas fluorescens affect protein degradation in a model community.

作者信息

Worm J, Jensen LE, Hansen TS, Søndergaard M, Nybroe O

机构信息

Department of Ecology, Royal Veterinary and Agricultural University, Thorvaldsensvej 40, DK-1871, Frederiksberg, Denmark

出版信息

FEMS Microbiol Ecol. 2000 Apr 1;32(2):103-109. doi: 10.1111/j.1574-6941.2000.tb00704.x.

Abstract

The metabolic interactions between proteinase-producing bacteria and other members of bacterial communities are poorly investigated, although they are important for the understanding of structure-function relationships in complex ecosystems. We constructed simple model communities consisting of proteolytic and non-proteolytic Pseudomonas fluorescens strains to identify relevant interactions and to assess their specific significance during the mobilization of protein for growth. The proteolytic or non-proteolytic model communities were established by co-inoculating proteolytic or proteinase-deficient Tn5-mutants of P. fluorescens strain ON2 with the non-proteolytic reporter strain DF57-N3 that expresses bioluminescence in response to nitrogen limitation. The growth medium was composed such that growth would be nitrogen limited in the absence of proteolytic activity. In the proteolytic communities data on growth and nitrogen availability showed that the protein hydrolysates were available to both the proteolytic and the non-proteolytic strain. Competition between these strains profoundly affected both growth and proteinase production. Hence, the mobilization of protein was closely coupled to the competitive success of the proteolytic strain. These findings provide new insight into the metabolic interactions that occur when protein is degraded in mixed bacterial communities.

摘要

尽管蛋白酶产生菌与细菌群落中其他成员之间的代谢相互作用对于理解复杂生态系统中的结构 - 功能关系很重要,但目前对此研究较少。我们构建了由蛋白水解型和非蛋白水解型荧光假单胞菌菌株组成的简单模型群落,以识别相关相互作用,并评估它们在蛋白质动员以供生长过程中的特定重要性。通过将荧光假单胞菌菌株ON2的蛋白水解型或蛋白酶缺陷型Tn5突变体与非蛋白水解型报告菌株DF57 - N3共同接种来建立蛋白水解或非蛋白水解模型群落,DF57 - N3在氮限制时会表达生物发光。生长培养基的组成使得在没有蛋白水解活性的情况下生长将受到氮限制。在蛋白水解群落中,关于生长和氮可用性的数据表明,蛋白水解产物对蛋白水解型菌株和非蛋白水解型菌株都可用。这些菌株之间的竞争深刻影响了生长和蛋白酶的产生。因此,蛋白质的动员与蛋白水解型菌株的竞争成功密切相关。这些发现为混合细菌群落中蛋白质降解时发生的代谢相互作用提供了新的见解。

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