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Effect of salinity on nitrogenase activity and composition of the active diazotrophic community in intertidal microbial mats

机译:盐度对潮间垫微生物固氮活性和重氮营养群落组成的影响

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摘要

Microbial mats are often found in intertidal areas experiencing a large range of salinities. This study investigated the effect of changing salinities on nitrogenase activity and on the composition of the active diazotrophic community (nifH transcript libraries) of three types of microbial mats situated along a littoral gradient. All three mat types exhibited highest nitrogenase activity at salinities close to ambient seawater or lower. The response to lower or higher salinity was strongest in mats higher up in the littoral zone. Changes in nitrogenase activity as the result of exposure to different salinities were accompanied by changes in the active diazotrophic community. The two stations higher up in the littoral zone showed nifH expression by Cyanobacteria (Oscillatoriales and Chroococcales) and Proteobacteria (Gammaproteobacteria and Deltaproteobacteria). At these stations, a decrease in the relative contribution of Cyanobacteria to the nifH transcript libraries was observed at increasing salinity coinciding with a decrease in nitrogenase activity. The station at the low water mark showed low cyanobacterial contribution to nifH transcript libraries at all salinities but an increase in deltaproteobacterial nifH transcripts under hypersaline conditions. In conclusion, increased salinities caused decreased nitrogenase activity and were accompanied by a lower proportion of cyanobacterial nifH transcripts.Electronic supplementary materialThe online version of this article (doi:10.1007/s00203-011-0787-5) contains supplementary material, which is available to authorized users.
机译:经常在潮汐区盐度范围大的地区发现微生物垫。这项研究调查了盐度变化对沿滨海梯度分布的三种类型微生物垫上固氮酶活性和活性重氮营养群落组成(nifH转录文库)的影响。在接近环境海水或更低的盐度下,所有三种垫子都表现出最高的固氮酶活性。在沿海地带较高的地垫上,对较低或较高盐度的响应最强。暴露于不同盐度导致的固氮酶活性变化伴随着活性重氮营养群落的变化。沿岸区域较高的两个站显示蓝藻(颤藻(Oscillatoriales和色球菌)和变形杆菌(γproteobacteria和Deltaproteobacteria))表达了nifH。在这些站处,在盐度增加的同时观察到蓝细菌对nifH转录文库的相对贡献的降低,同时氮酶的活性降低。在所有盐度下,低水位站均显示出较低的蓝细菌对nifH转录文库的贡献,但在高盐度条件下三角洲细菌nifH转录本的增加。总而言之,盐度增加导致固氮酶活性降低,并伴随着比例降低的蓝细菌nifH转录。电子补充材料本文的在线版本(doi:10.1007 / s00203-011-0787-5)包含补充材料,可用于授权用户。

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