The role of bacterial signaling networks in antibiotics response and resistance regulation.

IF 5.8 2区 生物学 Q1 MARINE & FRESHWATER BIOLOGY
Marine Life Science & Technology Pub Date : 2022-03-28 eCollection Date: 2022-05-01 DOI:10.1007/s42995-022-00126-1
Yuying Li, Tao Feng, Yan Wang
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引用次数: 0

Abstract

Excessive use of antibiotics poses a threat to public health and the environment. In ecosystems, such as the marine environment, antibiotic contamination has led to an increase in bacterial resistance. Therefore, the study of bacterial response to antibiotics and the regulation of resistance formation have become an important research field. Traditionally, the processes related to antibiotic responses and resistance regulation have mainly included the activation of efflux pumps, mutation of antibiotic targets, production of biofilms, and production of inactivated or passivation enzymes. In recent years, studies have shown that bacterial signaling networks can affect antibiotic responses and resistance regulation. Signaling systems mostly alter resistance by regulating biofilms, efflux pumps, and mobile genetic elements. Here we provide an overview of how bacterial intraspecific and interspecific signaling networks affect the response to environmental antibiotics. In doing so, this review provides theoretical support for inhibiting bacterial antibiotic resistance and alleviating health and ecological problems caused by antibiotic contamination.

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细菌信号网络在抗生素反应和抗药性调节中的作用。
过度使用抗生素对公众健康和环境构成威胁。在海洋环境等生态系统中,抗生素污染导致细菌耐药性增加。因此,研究细菌对抗生素的反应和抗药性形成的调控已成为一个重要的研究领域。传统上,与抗生素反应和耐药性调控相关的过程主要包括外排泵的激活、抗生素靶标的突变、生物膜的产生以及灭活或钝化酶的产生。近年来的研究表明,细菌信号网络可影响抗生素反应和抗药性调节。信号系统大多通过调节生物膜、外排泵和移动遗传元件来改变抗药性。在此,我们将概述细菌种内和种间信号网络如何影响对环境抗生素的反应。在此过程中,本综述为抑制细菌的抗药性、缓解抗生素污染造成的健康和生态问题提供了理论支持。
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来源期刊
Marine Life Science & Technology
Marine Life Science & Technology MARINE & FRESHWATER BIOLOGY-
CiteScore
9.60
自引率
10.50%
发文量
58
期刊介绍: Marine Life Science & Technology (MLST), established in 2019, is dedicated to publishing original research papers that unveil new discoveries and theories spanning a wide spectrum of life sciences and technologies. This includes fundamental biology, fisheries science and technology, medicinal bioresources, food science, biotechnology, ecology, and environmental biology, with a particular focus on marine habitats. The journal is committed to nurturing synergistic interactions among these diverse disciplines, striving to advance multidisciplinary approaches within the scientific field. It caters to a readership comprising biological scientists, aquaculture researchers, marine technologists, biological oceanographers, and ecologists.
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