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Transient alginate gene expression by Pseudomonas putida biofilm residents under water-limiting conditions reflects adaptation to the local environment.

机译:假水假单胞菌生物膜居民在限水条件下的瞬时藻酸盐基因表达反映了对当地环境的适应性。

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Under water-limiting conditions Pseudomonas putida produces the exopolysaccharide alginate, which influences biofilm development and facilitates maintaining a hydrated microenvironment. Since alginate is a minor biofilm matrix component it is important to determine whether alginate production occurs by all or a subset of residents, and when and to what extent cells contribute to alginate production. To address these questions we employed stable and unstable fluorescent reporters to measure alginate biosynthesis (algD) operon expression and metabolic activity in vivo quantitatively by flow cytometry and visually by microscopy. Here we report that during growth under water-limiting conditions and when biofilms become dehydrated most residents transiently express the alginate biosynthesis genes leading to distinct spatial patterns as the biofilm ages. Transient alginate gene expression was not a consequence of decreased metabolic activity, since metabolic reporters were still expressed, nor was it likely due to transient cytosolic availability of the alternative sigma factor AlgT, based on qRT-PCR. Our findings also indicate that one or more biofilm attribute, other than alginate, provides protection from desiccation stress. Collectively, our findings suggest that differentiated cells dedicated to alginate production are not part of the P. putida biofilm lifestyle under water-limiting conditions. Alternatively, P. putida biofilm cells may be responding to their own local environment, producing alginate because of the fitness advantage it confers under those particular conditions.
机译:在水限制条件下,恶臭假单胞菌产生胞外多糖藻酸盐,其影响生物膜的发育并有助于维持水合的微环境。由于藻酸盐是次要的生物膜基质成分,因此重要的是确定藻酸盐的产生是否由全部或部分居民发生,以及何时以及在何种程度上细胞有助于藻酸盐的产生。为了解决这些问题,我们使用稳定和不稳定的荧光报告基因通过流式细胞术和显微镜下的目测定量测量藻酸盐生物合成(algD)操纵子的表达和体内代谢活性。在这里,我们报告说,在限水条件下生长期间以及生物膜脱水时,大多数居民会瞬时表达藻酸盐生物合成基因,从而导致随着生物膜年龄的增长而出现明显的空间格局。瞬时藻酸盐基因表达不是代谢活性降低的结果,因为仍然表达代谢报告基因,也不可能是基于qRT-PCR的替代Sigma因子AlgT的瞬时胞浆可用性。我们的发现还表明,除藻酸盐外,一种或多种生物膜特性还可以防止干燥胁迫。总的来说,我们的研究结果表明,在限水条件下,专门用于藻酸盐生产的分化细胞不是恶臭假单胞菌生物膜生活方式的一部分。或者,恶臭假单胞菌生物膜细胞可能对自己的局部环境有反应,产生藻酸盐,因为它在那些特定条件下具有健身优势。

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