Villanueva Laura, Navarrete Antoni, Urmeneta Jordi, White David C, Guerrero Ricardo
Department of Microbiology, University of Barcelona, Barcelona, Spain.
Arch Microbiol. 2007 Aug;188(2):137-46. doi: 10.1007/s00203-007-0229-6. Epub 2007 Mar 15.
Microbial mats are prokaryotic communities that provide model systems to analyze microbial diversity and ecophysiological interactions. Community diversity of microbial mat samples was assessed at 8:00 a.m. and 3:00 p.m. in a combined analysis consisting of 16S rRNA-denaturing gradient gel electrophoresis (DGGE) and phospholipid fatty acid (PLFA) profiles. The divergence index determined from PLFA and DGGE data showed that depth-related differences have a greater influence on diversity than temporal variations. Shannon and Simpson indices yielded similar values in all samples, which suggested the stable maintenance of a structurally diverse microbial community. The increased diversity observed at 3:00 p.m. between 2.5 and 4 mm can be explained mainly by diversification of anaerobic microorganisms, especially sulfate-reducing bacteria. In the afternoon sampling, the diversity index reflected a higher diversity between 4 and 5.5 mm depth, which suggested an increase in the diversity of strict anaerobes and fermenters. The results are consistent with the conclusion that hypersaline microbial mats are characterized by high degree of diversity that shifts in response to the photobiological adaptations and metabolic status of the microbial community.
微生物席是原核生物群落,为分析微生物多样性和生态生理相互作用提供了模型系统。在上午8点和下午3点,通过16S rRNA变性梯度凝胶电泳(DGGE)和磷脂脂肪酸(PLFA)谱的联合分析,评估了微生物席样本的群落多样性。由PLFA和DGGE数据确定的离散指数表明,与深度相关的差异对多样性的影响大于时间变化。香农指数和辛普森指数在所有样本中产生了相似的值,这表明结构多样的微生物群落得到了稳定维持。下午3点在2.5至4毫米之间观察到的多样性增加,主要可以通过厌氧微生物的多样化来解释,特别是硫酸盐还原菌。在下午的采样中,多样性指数反映出在4至5.5毫米深度之间具有更高的多样性,这表明严格厌氧菌和发酵菌的多样性增加。这些结果与以下结论一致,即高盐度微生物席的特征是具有高度多样性,这种多样性会随着微生物群落的光生物学适应和代谢状态而变化。