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首页> 外文期刊>Probiotics and Antimicrobial Proteins >Quorum Sensing Circuits in the Communicating Mechanisms of Bacteria and Its Implication in the Biosynthesis of Bacteriocins by Lactic Acid Bacteria: a Review
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Quorum Sensing Circuits in the Communicating Mechanisms of Bacteria and Its Implication in the Biosynthesis of Bacteriocins by Lactic Acid Bacteria: a Review

机译:乳酸菌细菌通信机制及其在菌菌生物合成中的含义中的法定传感电路:综述

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摘要

It is well established that bacteria communicate between each other by using different mechanisms; among which, quorum sensing (QS) is the best known one. Indeed, intra- and intercellular communications of microorganisms, as well as the regulation of metabolism and reaction to the surrounding environmental conditions, are carried out by using different signaling molecules. N-Acyl homoserine lactones control the QS in Gram-negative bacteria, while Gram-positive bacteria use communicating peptides. These compounds, by diffusing through the bacterial membrane cell from the extracellular medium, directly or indirectly control the expression of specific genes that induce bacteria to react to their surrounding environment and stressing agents. In the case of lactic acid bacteria and bifidobacteria which are widely used in the dairy industry, QS is of extreme importance for their survival and the extent of their activity in the dairy matrix. Moreover, it is also via QS that these bacteria synthesize various antimicrobial agents such as bacteriocins. The aim of this review is to highlight the quorum sensing circuits involved in the communicating mechanisms of bacteria with emphasis on current applications of QS in lactic acid bacteria. More particularly, the implication of QS in the biosynthesis of bacteriocins by lactic acid bacteria will be detailed.
机译:很好地确定,细菌通过使用不同的机制彼此之间沟通;其中,法定感测(QS)是最着名的。实际上,通过使用不同的信号分子,对微生物的细胞和细胞间通信以及对周围环境条件的调节和对周围环境条件的反应。 N-酰基均静甲丝内酯控制克肾阴性细菌中的QS,而革兰氏阳性细菌使用沟通肽。这些化合物通过从细胞外培养基中漫射,直接或间接地控制诱导细菌的特定基因的表达,以诱导细菌对其周围环境和应力剂反应。在乳酸菌和双歧杆菌在乳制品行业广泛使用的乳酸菌和双歧杆菌的情况下,QS对他们的生存和乳制品矩阵中的活动的程度非常重要。此外,还通过QS,这些细菌合成各种抗微生物剂如菌丝。本综述的目的是突出涉及细菌通信机制的法定感测电路,重点是QS在乳酸菌中的目前的应用。更具体地,将详细阐述乳酸菌生物合成中的QS的含义。

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