Muséum National d'Histoire Naturelle, UMR MNHN-CNRS-IRD-UPMC 7208 BOREA, CP 53, 61 rue Buffon, 75231 Paris Cedex 5, France.
Res Microbiol. 2011 Nov;162(9):858-68. doi: 10.1016/j.resmic.2011.03.010. Epub 2011 Apr 21.
Coastal photosynthetic microbial mats are highly structured microbial communities that populate a variety of shallow environments such as estuaries, sheltered sandy beaches, intertidal flats, salt marshes and hypersaline salterns. In soft sediments, most of these microbial mats are formed of vertically stratified, multicolored cohesive thin layers, of several functional groups of microorganisms, such as cyanobacteria, colorless sulfur bacteria, purple sulfur bacteria and sulfate-reducing bacteria, distributed along vertical microgradients of oxygen, sulfide and light. These microbial communities are highly productive and significant contributors to carbon, nitrogen and sulfur cycles and to sediment stability in shallow-water habitats. Many examples of these communities have been cited in the past, but comparatively few microbial mats have been presented for which mass developments of anoxygenic purple bacteria have been observed. Yet, application of molecular approaches has provided fresh insight into the ecology, diversity and evolution of microbial mats. In situ measurements using electrochemical and optical microprobes led to detailed characterization of their physical and chemical environment, whereas reflectance measurements revealed the spatial and temporal heterogeneity of microbial mat surfaces. We hereby report the main discoveries due to introduction of these powerful techniques and we point out the potential insight to be gained from the study of anoxygenic purple bacterial mats.
滨海光合作用微生物席是高度结构化的微生物群落,栖息在多种浅海环境中,如河口、避风的沙滩、潮间带平原、盐沼和高盐度盐田。在软沉积物中,这些微生物席中的大多数是由垂直分层的、多色的有凝聚力的薄层组成的,其中包含多个功能群的微生物,如蓝细菌、无色硫细菌、紫色硫细菌和硫酸盐还原菌,它们沿着氧气、硫化物和光线的垂直微梯度分布。这些微生物群落具有很高的生产力,对浅海生境中的碳、氮和硫循环以及沉积物稳定性有重要贡献。过去已经引用了许多这些群落的例子,但比较少的微生物席被提出,其中观察到了贫氧紫色细菌的大量发育。然而,分子方法的应用为微生物席的生态学、多样性和进化提供了新的认识。电化学和光学微探针的原位测量导致了其物理和化学环境的详细特征描述,而反射率测量揭示了微生物席表面的时空异质性。我们在此报告由于引入这些强大技术而产生的主要发现,并指出从贫氧紫色细菌席的研究中获得的潜在洞察力。