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Seasonal Variability of Diazotroph Assemblages Associated with the Rhizosphere of the Salt Marsh Cordgrass, Spartina alterniflora

机译:盐沼脐带草(Spartina alterniflora)的根际与重氮营养组合的季节性变化

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Nitrogen fixation is the primary N source in the highly productive but N-limited North Inlet, SC, USA salt marsh system. The diverse assemblages of nitrogen-fixing (diazotrophic) bacteria associated with the rhizospheres of the short and tall growth forms of Spartina alterniflora were analyzed at two sites, Crab Haul Creek and Goat Island, which are in different tidal creek drainage systems in this marsh. The sites differed in proximity to the main channel for tidal intrusion and in several edaphic parameters. We hypothesized that either the differing abiotic environmental regimes of the two sites or the variation due to seasonal effects result in differences in the diazotroph assemblage. Rhizosphere samples were collected seasonally during 1999 and 2000. DNA was purified and nifH amplified for denaturing gradient gel electrophoresis (DGGE) analysis of diazotroph assemblage composition. Principal components analysis was used to analyze the binary DGGE band position data. Season strongly influenced assemblage composition and biplots were used to identify bands that significantly affected the seasonal and site-specific clustering. The types of organisms that were most responsive to seasonal or site variability were identified on the basis of DGGE band sequences. Seasonally responsive members of the anaerobic diazotrophs were detected during the winter and postsenescence conditions and may have been responsible for elevated pore water sulfide concentrations. Sequences from a diverse assemblage of Gammaproteobacteria were predominant during growth periods of S. alterniflora. Abiotic environmental parameters strongly influenced both the S. alterniflora and the diazotrophic bacterial assemblages associated with this keystone salt marsh plant species.
机译:固氮是美国南卡罗来纳州盐沼系统中高产但氮有限的主要氮源。在两个地点Crab Haul Creek和Goat Island上研究了互花米草短而高生长形式的根际相关的固氮细菌(营养型)细菌的不同组合,它们位于该沼泽的不同潮汐小溪排水系统中。这些地点在潮汐入侵的主要通道附近和几个深度参数方面有所不同。我们假设这两个地点的非生物环境状况不同或由于季节影响而导致的变化导致重氮营养组合的差异。在1999年至2000年期间按季节采集根际样品。纯化DNA并扩增nifH,以对重氮营养组合物进行变性梯度凝胶电泳(DGGE)分析。主成分分析被用来分析二进制DGGE频带位置数据。受季节强烈影响的组合物组成和双峰被用来识别显着影响季节和特定地点聚类的条带。根据DGGE谱带序列确定了对季节或场所变异最敏感的生物类型。在冬季和衰老后的条件下检测到了厌氧重氮菌的季节性响应成员,这可能是导致孔隙水硫化物浓度升高的原因。互生链霉菌生长期间,来自多种变形杆菌的序列占主导地位。非生物环境参数极大地影响了互花米链菌和与此梯形盐沼植物相关的重氮营养细菌组合。

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