[Spatial and Temporal Succession Characteristics of Aerobic Anoxygenic Photosynthesis Bacteria in a Stratified Reservoir].

Hai-Han Zhang, Yan Wang, Ting-Lin Huang, Chen-Xu Wang, Lin-Chao Lu, Fan Si, Nan Li, Kai-Wen Liu, Miao-Miao Yan, Yu-Tian Miao
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引用次数: 2

Abstract

Aerobic anoxygenic photosynthesis bacteria (AAPB) play a significant role in the material circulation of the hydrosphere, with diverse community structure and unique metabolic functions. To investigate the spatial and temporal succession characteristics of AAPB abundance and community structure in Jinpen Reservoir, a quantitative real-time polymerase chain reaction and Illumina MiSeq high-throughput sequencing technique targeting the pufM gene were applied. Furthermore, redundancy analysis was used to determine the influence of environmental factors on their community structure. The results showed that the AAPB abundance ranged from (6.70±0.43)×103 to (2.69±0.15)×104 copies·mL-1, with the maximum value appearing in October, and decreased with an increase in water depth. Samples were mainly classified into 19 genera (except for the unclassified genus); the most abundant AAPB genera were Bradyrhizobium sp. and Methylobacterium sp., which were affiliated to the α-Proteobacteria, and the proportion of the Bradyrhizobium sp. was highest in November, accounting for more than 60% (except 10 m). Furthermore, Rubrivivax sp., belonging to β-Proteobacteria, was found to have a low proportion. There was a strong interaction relationship between AAPB genera. For example, Rhodobacter sp. was positively correlated with Rhodovulum sp., while Hydrogenophaga sp. was negatively correlated with Bradyrhizobium sp.. The community structure composition and distribution of AAPB were significantly different, mainly affected by temperature (T), total nitrogen (TN), NO3--N, and light intensity and comprehensively regulated by environmental factors. For instance, T, TN, and total phosphorus had a significant impact on the AAPB community structure of water samples at 0, 5, and 15 m in October, whereas light intensity, pH, DO, and chlorophyll-a were major structuring factors in the AAPB assemblages of water samples at 5 m in December. The results have guiding significance for parsing the spatial and temporal variability of AAPB abundance and diversity in stratified reservoirs, and simultaneously provide a theoretical basis for exploring the driving factors of AAPB population structure.

[层状水库中好氧无氧光合细菌的时空演替特征]。
好氧无氧光合细菌(AAPB)在水圈物质循环中发挥着重要作用,其群落结构多样,代谢功能独特。为了研究金盆水库AAPB丰度和群落结构的时空演变特征,采用实时定量聚合酶链反应和Illumina MiSeq高通量测序技术对pufM基因进行了定位。在此基础上,利用冗余分析确定了环境因子对其群落结构的影响。结果表明:AAPB丰度变化范围为(6.70±0.43)×103 ~(2.69±0.15)×104 copies·mL-1,最大值出现在10月份,随着水深的增加而减小;样本主要分为19个属(未分类属除外);AAPB属中数量最多的是隶属于α-变形菌门的缓生根瘤菌(Bradyrhizobium sp.)和甲基细菌(Methylobacterium sp.),其中缓生根瘤菌(Bradyrhizobium sp.)在11月份所占比例最高,超过60% (10 m除外),而隶属于β-变形菌门的Rubrivivax sp.所占比例较低。AAPB属间存在较强的互作关系。Rhodobacter sp.与Rhodovulum sp.呈正相关,Hydrogenophaga sp.与Bradyrhizobium sp.呈负相关。AAPB群落结构组成和分布差异显著,主要受温度(T)、总氮(TN)、硝态氮(NO3——N)和光照强度的影响,并受环境因子的综合调控。例如,T、TN和总磷对10月0、5和15 m水样AAPB群落结构有显著影响,而12月5 m水样AAPB群落结构的主要影响因子为光强、pH、DO和叶绿素a。研究结果对解析层状储层中AAPB丰度和多样性的时空变异具有指导意义,同时为探索AAPB种群结构驱动因素提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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