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细菌群落对蓝藻和大型植物主导区域沉积物中铁(III)还原及磷有效性的不同影响

Different Influences of Bacterial Communities on Fe (III) Reduction and Phosphorus Availability in Sediments of the Cyanobacteria- and Macrophyte-Dominated Zones.

作者信息

Fan Xianfang, Ding Shiming, Gong Mengdan, Chen Musong, Gao ShuaiShuai, Jin Zengfeng, Tsang Daniel C W

机构信息

State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing, China.

Graduate School of the Chinese Academy of Sciences, Beijing, China.

出版信息

Front Microbiol. 2018 Nov 14;9:2636. doi: 10.3389/fmicb.2018.02636. eCollection 2018.

Abstract

Little is known about the effects of bacterial community on iron (Fe) and phosphorus (P) cycles in sediments under different primary producer habitats in different seasons. Lake Taihu has both the cyanobacteria- and macrophyte-dominated lake zones. In this work, the abundance and structure of bacterial community was investigated using qPCR and 16S rRNA gene high throughput sequencing, respectively. Compared with the sediments in the cyanobacteria-dominated lake zone, sediments in the macrophyte-dominated lake zone had higher TP, TOC and TN contents but lower DO and Eh values. Dissolved reactive P, dissolved Fe, and their molar ratios (Fe/P) were lower in the sediments of the cyanobacteria-dominated lake zone than those in the macrophyte-dominated lake zone. Consistent with this was the significantly lower abundance of total and typical Fe redox transforming bacteria in the sediment of the cyanobacteria-dominated lake zone than those in the macrophyte-dominated lake zone. Correlation analyses also revealed positive influence of abundances of total bacteria and typical Fe reducing bacteria on dissolved Fe and Fe/P ratio. The results showed that, in the cyanobacteria-dominated open water zone, was capable of Fe metabolism, contributing to higher P flux in summer. In the cyanobacteria-dominated bay, Sva0081 sediment group and could transform sulfate to sulfide, which resulted in the reduction of Fe (III), while in the macrophyte-dominated zones, sensu stricto 1 could couple oxidation of organic carbon with the reduction of Fe (III). The present study adds new knowledge linking the bacterial communities with the physicochemical cycles of Fe and P in sediments under different primary producer habitats.

摘要

关于不同季节不同初级生产者栖息地条件下,细菌群落对沉积物中铁(Fe)和磷(P)循环的影响,目前所知甚少。太湖既有以蓝藻为主的湖区,也有以大型植物为主的湖区。在本研究中,分别采用定量聚合酶链反应(qPCR)和16S rRNA基因高通量测序技术,对细菌群落的丰度和结构进行了调查。与以蓝藻为主的湖区沉积物相比,以大型植物为主的湖区沉积物总磷(TP)、总有机碳(TOC)和总氮(TN)含量更高,但溶解氧(DO)和氧化还原电位(Eh)值更低。以蓝藻为主的湖区沉积物中溶解态活性磷、溶解态铁及其摩尔比(Fe/P)均低于以大型植物为主的湖区。与此一致的是,以蓝藻为主的湖区沉积物中,总铁氧化还原转化细菌和典型铁氧化还原转化细菌的丰度显著低于以大型植物为主的湖区。相关性分析还表明,总细菌和典型铁还原细菌的丰度对溶解态铁和Fe/P比有积极影响。结果表明,在以蓝藻为主的开阔水域,[具体细菌名称未给出]能够进行铁代谢,导致夏季磷通量较高。在以蓝藻为主的湖湾,Sva0081沉积物组和[具体细菌名称未给出]能够将硫酸盐转化为硫化物,从而导致Fe(III)还原,而在以大型植物为主的区域,[具体细菌名称未给出]严格意义上的1型细菌能够将有机碳的氧化与Fe(III)的还原偶联起来。本研究为不同初级生产者栖息地条件下,沉积物中细菌群落与铁、磷的物理化学循环之间的联系增添了新的知识。

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