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Seasonal variation in bacterial community composition and β-glucosidase expression in a tropical monsoon-influenced estuary

机译:热带季风影响河口细菌群落组成和β-葡萄糖苷酶表达的季节性变化

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Tidal estuaries receive carbohydrate-rich organic matter from various sources, which are mainly broken down by enzymatic processes. β-glucosidase (β-Glu) is one of the ectoenzymes produced by heterotrophic bacteria. An investigation was carried out along the tropical monsoon-influenced Zuari estuary to examine seasonal variability in major bacterial taxa, β-Glu gene abundance, and number of cells expressing β-Glu. The results revealed a higher number of β-Glu expressing cells, and higher β-Glu gene and bacterial abundance at the estuarine mouth compared to the upstream area, and this was coupled with high phytoplankton biomass and low transparent exopolysaccharides. A clear distinction in bacterial assemblages along with β-Glu expression levels was evident during different seasons. Likewise, a spatial pattern in major bacterial taxa was observed along the salinity gradient, with high proportions of Alpha- and Gammaproteobacteria at the saline mouth and Betaproteobacteria at the upstream, freshwater region. During the southwest monsoon, which brings high freshwater influx, Actinobacteria and Firmicutes were abundant in the mid-estuarine region. Bacterial production at this time was mainly fueled by allochthonous riverine sources, with a significant decrease in the number of cells expressing the β-Glu to gene ratio. β-Glu gene abundance was related to diverse groups (Alpha- and Gammaproteobacteria, Actinobacteria, and Firmicutes). The number of cells expressing β-Glu covaried with Gammaproteobacteria abundance and was influenced by suspended load, salinity, chlorophyll a and organic pool. Future studies should assess response of marine, brackish, and freshwater bacteria to different environmental conditions to ascertain their specific role in organic matter processing.
机译:潮汐河口从各种来源接收富含碳水化合物的有机物,这些物质主要通过酶促过程分解。 β-葡萄糖苷酶(β-Glu)是异养细菌产生的一种外切酶。沿着热带季风影响的Zuari河口进行了调查,以检查主要细菌类群的季节性变化,β-Glu基因丰度以及表达β-Glu的细胞数量。结果表明,与上游区域相比,河口的β-Glu表达细胞数量更高,β-Glu基因和细菌丰度更高,这与浮游植物的生物量高和透明的外多糖低有关。在不同季节,细菌组合以及β-Glu表达水平明显不同。同样,沿盐度梯度观察到主要细菌类群的空间格局,盐口的阿尔法和γ变形杆菌比例很高,上游淡水区域的贝塔变形杆菌比例很高。在西南季风期间,淡水大量涌入,河口中部地区放线菌和硬藻菌丰富。此时的细菌生产主要由异源河源提供燃料,表达β-Glu与基因之比的细胞数量显着减少。 β-Glu基因的丰度与不同的群体有关(阿尔法和伽玛变形杆菌,放线菌和Firmicutes)。表达β-Glu的细胞数量与γ-变形杆菌的丰度共变量,并受悬浮负荷,盐度,叶绿素a和有机池的影响。未来的研究应评估海洋,咸淡水和淡水细菌对不同环境条件的反应,以确定其在有机物加工中的特定作用。

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