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首页> 外文期刊>Frontiers in Marine Science >Quorum Sensing Plays a Complex Role in Regulating the Enzyme Hydrolysis Activity of Microbes Associated with Sinking Particles in the Ocean
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Quorum Sensing Plays a Complex Role in Regulating the Enzyme Hydrolysis Activity of Microbes Associated with Sinking Particles in the Ocean

机译:仲裁感在调节海洋中与沉没颗粒有关的微生物的酶水解活性中起着复杂的作用。

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The concentration of atmospheric carbon dioxide is directly linked to the sinking of photosynthetically derived particulate organic carbon (POC) from surface waters to deep waters. This process, known as the marine biological carbon pump, removes carbon from exchange with the atmosphere, thus regulating global climate. Recent evidence suggests that microbial chemical communication systems (e.g. quorum sensing) amongst heterotrophic bacteria associated with sinking POC, significantly influences their hydrolytic enzyme activity and, as such, may affect the efficiency of the biological carbon pump. Here, we present data showing that a class of quorum sensing molecules, acylated homeserine lactones (AHLs) substantially impact hydrolytic phosphatase, aminopeptidase, and lipase activity in samples of sinking particles collected from the Atlantic and Pacific Ocean. Incubations of sinking particles amended with exogenous AHLs showed both stimulated and inhibited rates of activity after 24 hours of incubation, suggesting a critical link between bacterial AHL signaling mechanisms and the rate of POC degradation. Further experiments reveal that hydrolytic pathways could be affected within a few hours of amendment with AHLs, suggesting that microbial communities are able to dynamically modify their metabolic pathways in response to perceived quorum sensing. Finally, the concentration of the AHL amendment also affected hydrolytic activity. Our results indicated that quorum sensing has the potential to influence hydrolytic activity in a range of oceanic environments, but response also vary significantly as a function of the type of AHL, their concentration, and response time. AHL-based quorum sensing may be thought of as a global language among marine bacteria, but it is highly complex.
机译:大气中二氧化碳的浓度与光合作用衍生的有机碳颗粒(POC)从地表水到深水的下沉直接相关。这个过程被称为海洋生物碳泵,从与大气的交换中除去碳,从而调节了全球气候。最近的证据表明,与下沉POC相关的异养细菌之间的微生物化学通讯系统(例如群体感应)会显着影响其水解酶的活性,因此可能会影响生物碳泵的效率。在这里,我们提供的数据显示,一类群体感应分子,酰化的Homeserine内酯(AHL)实质上影响了从大西洋和太平洋收集的下沉颗粒样品中的水解磷酸酶,氨肽酶和脂肪酶活性。孵育24小时后,用外源AHL修饰的沉没颗粒温育显示出既受刺激的活性又受抑制的活性,表明细菌AHL信号传导机制与POC降解速率之间存在关键联系。进一步的实验表明,水解途径可能会在AHL修正后的几个小时内受到影响,这表明微生物群落能够动态地改变其代谢途径,以响应感知的群体感应。最后,AHL修正剂的浓度也影响水解活性。我们的结果表明,群体感应有可能影响一系列海洋环境中的水解活性,但响应也随AHL类型,其浓度和响应时间而显着变化。基于AHL的群体感应可能被认为是海洋细菌中的一种全球语言,但是它非常复杂。

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