Joshi Hiren, Dave Rachna, Venugopalan Vayalam P
Biofouling and Biofilm Processes Section, Water and Steam Chemistry Division, Bhabha Atomic Research Centre, Kalpakkam, India.
PLoS One. 2014 Aug 12;9(8):e103730. doi: 10.1371/journal.pone.0103730. eCollection 2014.
Research pertaining to microbe-microbe and microbe-plant interactions has been largely limited to small molecules like quorum sensing chemicals. However, a few recent reports have indicated the role of complex molecules like proteins and polysaccharides in microbial communication. Here we demonstrate that exogenous proteins present in culture media can considerably accelerate the growth of Pseudomonas putida KT2440, even when such proteins are not internalized by the cells. The growth enhancement is observed when the exogenous protein is not used as a source of carbon or nitrogen. The data show non-specific nature of the protein inducing growth; growth enhancement was observed irrespective of the protein type. It is shown that growth enhancement is mediated via increased siderophore secretion in response to the exogenous protein, leading to better iron uptake. We highlight the ecological significance of the observation and hypothesize that exogenous proteins serve as chemical cues in the case of P.putida and are perceived as indicator of the presence of competitors in the environment. It is argued that enhanced siderophore secretion in response to exogenous protein helps P.putida establish numerical superiority over competitors by way of enhanced iron assimilation and quicker utilization of aromatic substrates.
关于微生物-微生物以及微生物-植物相互作用的研究在很大程度上局限于诸如群体感应化学物质之类的小分子。然而,最近的一些报告表明蛋白质和多糖等复杂分子在微生物交流中发挥的作用。在此,我们证明培养基中存在的外源蛋白质能够显著加速恶臭假单胞菌KT2440的生长,即便这些蛋白质未被细胞内化。当外源蛋白质不作为碳源或氮源使用时,也能观察到生长促进现象。数据表明诱导生长的蛋白质具有非特异性;无论蛋白质类型如何,均观察到了生长促进现象。研究表明,生长促进是通过响应外源蛋白质而增加铁载体分泌来介导的,从而导致更好的铁吸收。我们强调了这一观察结果的生态意义,并推测在外源蛋白质的情况下,外源蛋白质作为化学信号,被恶臭假单胞菌视为环境中存在竞争者的指标。有人认为,响应外源蛋白质而增强的铁载体分泌有助于恶臭假单胞菌通过增强铁同化作用以及更快利用芳香族底物,从而在与竞争者的竞争中建立数量优势。