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铜绿假单胞菌PAO1的胞外多糖对于混合物种生物膜群落的发展和应激耐受性很重要。

Pseudomonas aeruginosa PAO1 exopolysaccharides are important for mixed species biofilm community development and stress tolerance.

作者信息

Periasamy Saravanan, Nair Harikrishnan A S, Lee Kai W K, Ong Jolene, Goh Jie Q J, Kjelleberg Staffan, Rice Scott A

机构信息

Singapore Centre on Environmental Life Sciences Engineering, Nanyang Technological University, Singapore Singapore.

Singapore Centre on Environmental Life Sciences Engineering, Nanyang Technological University, Singapore Singapore ; Interdisciplinary Graduate School, Nanyang Technological University, Singapore Singapore.

出版信息

Front Microbiol. 2015 Aug 20;6:851. doi: 10.3389/fmicb.2015.00851. eCollection 2015.

Abstract

Pseudomonas aeruginosa PAO1 produces three polysaccharides, alginate, Psl, and Pel that play distinct roles in attachment and biofilm formation for monospecies biofilms. Considerably less is known about their role in the development of mixed species biofilm communities. This study has investigated the roles of alginate, Psl, and Pel during biofilm formation of P. aeruginosa in a defined and experimentally informative mixed species biofilm community, consisting of P. aeruginosa, Pseudomonas protegens, and Klebsiella pneumoniae. Loss of the Psl polysaccharide had the biggest impact on the integration of P. aeruginosa in the mixed species biofilms, where the percent composition of the psl mutant was significantly lower (0.06%) than its wild-type (WT) parent (2.44%). In contrast, loss of the Pel polysaccharide had no impact on mixed species biofilm development. Loss of alginate or its overproduction resulted in P. aeruginosa representing 8.4 and 18.11%, respectively, of the mixed species biofilm. Dual species biofilms of P. aeruginosa and K. pneumoniae were not affected by loss of alginate, Pel, or Psl, while the mucoid P. aeruginosa strain achieved a greater biomass than its parent strain. When P. aeruginosa was grown with P. protegens, loss of the Pel or alginate polysaccharides resulted in biofilms that were not significantly different from biofilms formed by the WT PAO1. In contrast, overproduction of alginate resulted in biofilms that were comprised of 35-40% of P. aeruginosa, which was significantly higher than the WT (5-20%). Loss of the Psl polysaccharide significantly reduced the percentage composition of P. aeruginosa in dual species biofilms with P. protegens (<1%). Loss of the Psl polysaccharide significantly disrupted the communal stress resistance of the three species biofilms. Thus, the polysaccharide composition of an individual species significantly impacts mixed species biofilm development and the emergent properties of such communities.

摘要

铜绿假单胞菌PAO1产生三种多糖,即藻酸盐、Psl和Pel,它们在单物种生物膜的附着和生物膜形成中发挥着不同作用。关于它们在混合物种生物膜群落发育中的作用,人们了解得要少得多。本研究调查了藻酸盐、Psl和Pel在由铜绿假单胞菌、产碱假单胞菌和肺炎克雷伯菌组成的特定且具有实验信息的混合物种生物膜群落中,在铜绿假单胞菌生物膜形成过程中的作用。Psl多糖的缺失对铜绿假单胞菌在混合物种生物膜中的整合影响最大,其中psl突变体的百分比组成(0.06%)显著低于其野生型(WT)亲本(2.44%)。相比之下,Pel多糖的缺失对混合物种生物膜的发育没有影响。藻酸盐的缺失或过量产生分别导致铜绿假单胞菌在混合物种生物膜中的占比为8.4%和18.11%。铜绿假单胞菌和肺炎克雷伯菌的双物种生物膜不受藻酸盐、Pel或Psl缺失的影响,而黏液型铜绿假单胞菌菌株比其亲本菌株积累了更多的生物量。当铜绿假单胞菌与产碱假单胞菌共同生长时,Pel或藻酸盐多糖的缺失导致形成的生物膜与WT PAO1形成的生物膜没有显著差异。相比之下,藻酸盐的过量产生导致生物膜中铜绿假单胞菌的占比为35 - 40%,显著高于野生型(5 - 20%)。Psl多糖的缺失显著降低了铜绿假单胞菌在与产碱假单胞菌形成的双物种生物膜中的百分比组成(<1%)。Psl多糖的缺失显著破坏了三物种生物膜的共同应激抗性。因此,单个物种的多糖组成显著影响混合物种生物膜的发育以及此类群落的涌现特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60db/4542536/c83d41f7d301/fmicb-06-00851-g001.jpg

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