2013Advances in Water ScienceRequires access

On the characteristic of sediments microbial community structure of urban polluted river

Lingyu Sun

Open publisher page 1 citations

Abstract

The research adopts phospholipid fatty acid analysis to quantify the microbial community structure of sediments from Yunliang River in different water types during different periods.The results show the following aspects:① the microbial biomass is significantly different in different water-stage while the temperature is the dominant factor;② in the same period,the nutritional content is positively correlated to the microbial biomass;③ G+ indiated by 16:0 iso、17:0 anteiso、15:0 iso is the main microbial community that affects the sediments microbial community structure and water-stage fluctuation significantly influences the sediments microbial community structure;④ Monounsaturated PLFAs/ branched PLFAs could reflect the nutrition status as microorganism would turn the monounsaturated PLFAs to cyclopropyl PLFAs and saturated PLFAs in order to suit the new conditions when C/N increased in sediment;⑤ [c(i15:0)+c(i17:0)]/[c(a15:0)+c(a17:0)] can be used as the indicator of Carbon content in water environment.

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What this paper is about

The research adopts phospholipid fatty acid analysis to quantify the microbial community structure of sediments from Yunliang River in different water types during different periods.The results show the following aspects:① the microbial biomass is significantly different in different water-stage while the temperature is the dominant factor;② in the same period,the nutritional content is positively correlated to the microbial biomass;③ G+ indiated by 16:0 iso、17:0 anteiso、15:0 iso is the main microbial community that affects the sediments microbial community structure and water-stage fluctuation significantly influences the sediments microbial community structure;④ Monounsaturated PLFAs/ branched PLFAs could reflect the nutrition status as microorganism would turn the monounsaturated PLFAs to cyclopropyl PLFAs and saturated PLFAs in order to suit the new conditions when C/N increased in sediment;⑤ [c(i15:0)+c(i17:0)]/[c(a15:0)+c(a17:0)] can be used as the indicator of Carbon content in water environment.

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Available abstract

The research adopts phospholipid fatty acid analysis to quantify the microbial community structure of sediments from Yunliang River in different water types during different periods.The results show the following aspects:① the microbial biomass is significantly different in different water-stage while the temperature is the dominant factor;② in the same period,the nutritional content is positively correlated to the microbial biomass;③ G+ indiated by 16:0 iso、17:0 anteiso、15:0 iso is the main microbial community that affects the sediments microbial community structure and water-stage fluctuation significantly influences the sediments microbial community structure;④ Monounsaturated PLFAs/ branched PLFAs could reflect the nutrition status as microorganism would turn the monounsaturated PLFAs to cyclopropyl PLFAs and saturated PLFAs in order to suit the new conditions when C/N increased in sediment;⑤ [c(i15:0)+c(i17:0)]/[c(a15:0)+c(a17:0)] can be used as the indicator of Carbon content in water environment.

Key concepts: Microbial population biology, Biomass (ecology), Community structure, Sediment, Microorganism, Environmental science, Environmental chemistry, Ecology

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