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亚热带深水水库中固氮细菌群落的变异性与氮的季节性变化相关。

Diazotrophic bacterial community variability in a subtropical deep reservoir is correlated with seasonal changes in nitrogen.

作者信息

Wang Lina, Yu Zheng, Yang Jun, Zhou Jing

机构信息

Aquatic EcoHealth Group, Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen, 361021, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Environ Sci Pollut Res Int. 2015 Dec;22(24):19695-705. doi: 10.1007/s11356-015-5144-9. Epub 2015 Aug 18.

Abstract

Nitrogen-fixing microorganisms (diazotrophs) play important roles in aquatic biogeochemistry and ecosystem functioning. However, little is known about the spatiotemporal variation of diazotrophic microbial communities in deep subtropical reservoirs. In this study, denaturing gradient gel electrophoresis (DGGE), clone libraries, quantitative PCR, and quantitative reverse transcription (RT)-PCR were used together to examine the vertical and seasonal patterns of diazotrophic microbial communities based on nitrogenase (nifH) gene sequences in the Dongzhen Reservoir, China, across time (every 3 months for 1 year) and space (five different water depths). In general, the numbers of DGGE bands increased with water depth during the stratification seasons (spring, summer, and autumn), with the clone-library-based operational taxonomic unit (OTU) number and nifH gene diversity being highest in autumn (6 OTUs at depth 0 m; 15 OTUs at 33 m) and winter (12 OTUs at 0 m, 13 OTUs at 33 m) but decreasing drastically in spring (2 OTUs at 0 m, 3 OTUs at 33 m) and summer (3 OTUs at 0 m, 2 OTUs at 33 m). The nifH gene abundance was lowest in the water mixing season (winter average, 5.17 × 10(7) copies/L) but increased in the three other seasons (9.03 × 10(9) copies/L). Cyanobacteria (dominated by filamentous thermophilic cyanobacteria and Cylindrospermopsis raciborskii) were the most dominant diazotrophic group at all depths and seasons, while both alphaproteobacteria and gammaproteobacteria were co-dominant in the bottom waters in autumn and winter. The distinct seasonal and spatial patterns in diazotrophic communities were significantly related to total nitrogen (TN) and ammonium nitrogen (NH4-N) in the reservoir (P < 0.01). Further, TN showed a significant positive correlation with nifH RNA copy number (P < 0.05) and DGGE band number (P < 0.01), whereas the NH4-N was negatively correlated with nifH DNA copy number (P < 0.01) and positively with both RNA/DNA ratio (P < 0.01) and DGGE band number (P < 0.01). Our data indicated that water stratification, mixing, and nitrogen might drive the diazotrophic community structure and activity in complex ways, thereby influencing the aquatic nitrogen cycle. Therefore, adaptive reservoir management strategies should carefully consider the effects of water stratification for protecting drinking water quality and for controlling the potential for diazotrophic cyanobacteria blooms.

摘要

固氮微生物在水生生物地球化学和生态系统功能中发挥着重要作用。然而,对于亚热带深水水库中固氮微生物群落的时空变化却知之甚少。在本研究中,变性梯度凝胶电泳(DGGE)、克隆文库、定量PCR和定量逆转录(RT)-PCR被联合用于研究中国东圳水库中基于固氮酶(nifH)基因序列的固氮微生物群落的垂直和季节模式,研究跨越时间(1年中每3个月一次)和空间(5个不同水深)。总体而言,在分层季节(春季、夏季和秋季),DGGE条带数量随水深增加,基于克隆文库的操作分类单元(OTU)数量和nifH基因多样性在秋季(0米深度处6个OTU;33米深度处15个OTU)和冬季(0米深度处12个OTU,33米深度处13个OTU)最高,但在春季(0米深度处2个OTU,33米深度处3个OTU)和夏季(0米深度处3个OTU,33米深度处2个OTU)急剧下降。nifH基因丰度在水体混合季节最低(冬季平均为5.17×10⁷拷贝/升),但在其他三个季节增加(9.03×10⁹拷贝/升)。蓝细菌(以丝状嗜热蓝细菌和柱状鱼腥藻为主)是所有深度和季节中最主要的固氮菌群,而α-变形菌和γ-变形菌在秋季和冬季的底层水体中共同占主导地位。固氮群落明显的季节和空间模式与水库中的总氮(TN)和铵态氮(NH₄-N)显著相关(P<0.01)。此外,TN与nifH RNA拷贝数(P<0.05)和DGGE条带数(P<0.01)呈显著正相关,而NH₄-N与nifH DNA拷贝数呈负相关(P<0.01),与RNA/DNA比值(P<0.01)和DGGE条带数(P<0.01)呈正相关。我们的数据表明,水体分层、混合和氮可能以复杂的方式驱动固氮群落结构和活性,从而影响水生氮循环。因此,适应性水库管理策略应仔细考虑水体分层的影响,以保护饮用水质量并控制固氮蓝藻水华的可能性。

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