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热带潮间带泻湖底栖固氮作用和蓝藻多样性的变异性

Variability in benthic diazotrophy and cyanobacterial diversity in a tropical intertidal lagoon.

作者信息

Bauer Karolina, Díez Beatriz, Lugomela Charles, Seppälä Susanna, Borg Agneta Julia, Bergman Birgitta

机构信息

Department of Botany, Stockholm University, Stockholm, Sweden.

出版信息

FEMS Microbiol Ecol. 2008 Feb;63(2):205-21. doi: 10.1111/j.1574-6941.2007.00423.x.

DOI:10.1111/j.1574-6941.2007.00423.x
PMID:18199084
Abstract

Benthic nitrogen fixation has been estimated to contribute 15 Tg N year(-1) to the marine nitrogen budget. With benthic marine nitrogen fixation being largely overlooked in more recent surveys, a refocus on benthic diazotrophy was considered important. Variations in nitrogenase activity (acetylene reduction-gas chromatography) in a tropical lagoon in the western Indian Ocean (Zanzibar, Tanzania) were monitored over a 3-year period (2003-2005) and related to cyanobacterial and diazotrophic microbial diversity using a polyphasic approach. Different nitrogenase activity patterns were discerned, with the predominant pattern being high daytime activities combined with low nighttime activities. Analyses of the morphological and 16S rRNA gene diversity among cyanobacteria revealed filamentous nonheterocystous (Oscillatoriales) and unicellular (Chroococcales) representatives to be predominant. Analyses of the nifH gene diversity showed that the major phylotypes belonged to noncyanobacterial prokaryotes. However, as shown by cyanobacterial selective nifH-denaturing gradient gel electrophoresis analysis, cyanobacterial nifH gene sequences were present at all sites. Several nifH and 16S rRNA gene phylotypes were related to uncultured cyanobacteria or bacteria of geographically distant habitats, stressing the widespread occurrence of still poorly characterized microorganisms in tropical benthic marine communities.

摘要

据估计,海底固氮作用每年为海洋氮收支贡献15太克氮。由于在最近的调查中,海底海洋固氮作用在很大程度上被忽视,因此重新关注海底固氮作用被认为很重要。在三年期间(2003 - 2005年),对西印度洋(坦桑尼亚桑给巴尔)一个热带泻湖中的固氮酶活性(乙炔还原 - 气相色谱法)变化进行了监测,并使用多相方法将其与蓝细菌和固氮微生物多样性相关联。识别出了不同的固氮酶活性模式,主要模式是白天活性高而夜间活性低。对蓝细菌之间的形态和16S rRNA基因多样性分析表明,丝状非异形胞(颤藻目)和单细胞(色球藻目)代表占主导地位。对nifH基因多样性的分析表明,主要的系统型属于非蓝细菌原核生物。然而,正如蓝细菌选择性nifH - 变性梯度凝胶电泳分析所示,所有位点均存在蓝细菌nifH基因序列。几种nifH和16S rRNA基因系统型与地理上遥远栖息地的未培养蓝细菌或细菌相关,这强调了热带海底海洋群落中仍未得到充分表征的微生物广泛存在。

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