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高盐度微生物垫中类绿弯菌属细菌的光合色素分布及活性的二维图谱

Two-dimensional mapping of photopigment distribution and activity of Chloroflexus-like bacteria in a hypersaline microbial mat.

作者信息

Bachar Ami, Polerecky Lubos, Fischer Jan P, Vamvakopoulos Kyriakos, de Beer Dirk, Jonkers Henk M

机构信息

Max-Planck-Institute for Marine Microbiology, Bremen, Germany.

出版信息

FEMS Microbiol Ecol. 2008 Sep;65(3):434-48. doi: 10.1111/j.1574-6941.2008.00534.x. Epub 2008 Jul 8.

Abstract

Pigment analysis in an intact hypersaline microbial mat by hyperspectral imaging revealed very patchy and spatially uncorrelated distributions of photopigments Chl a and BChl a/c, which are characteristic photopigments for oxygenic (diatoms and cyanobacteria) and anoxygenic phototrophs (Chloroflexaceae). This finding is in contrast to the expectation that these biomarker pigments should be spatially correlated, as oxygenic phototrophs are thought to supply the Chloroflexaceae members with organic substrates for growth. We suggest that the heterogeneous occurrence is possibly due to sulfide, whose production by sulfate-reducing bacteria may be spatially heterogeneous in the partially oxic photic zone of the mat. We furthermore mapped the near-infra-red-light controlled respiration of Chloroflexaceae under light and dark conditions and found that Chloroflexaceae are responsible for a major part of oxygen consumption at the lower part of the oxic zone in the mat. The presence of Chloroflexaceae was further confirmed by FISH probe and 16S rRNA gene clone library analysis. We assume that species related to the genera Oscillochloris and 'Candidatus Chlorothrix', in contrast to those related to Chloroflexus and Roseiflexus, depend less on excreted photosynthates but more on the presence of free sulfide, which may explain their presence in deeper parts of the mat.

摘要

通过高光谱成像对完整的高盐度微生物垫进行色素分析,结果显示光合色素叶绿素a和细菌叶绿素a/c的分布非常不均匀且在空间上不相关,这两种色素分别是产氧光合生物(硅藻和蓝细菌)和不产氧光合生物(绿弯菌科)的特征性光合色素。这一发现与预期相反,即这些生物标志物色素在空间上应该是相关的,因为人们认为产氧光合生物会为绿弯菌科成员提供生长所需的有机底物。我们认为这种异质分布可能是由于硫化物造成的,在微生物垫部分有氧的光合带中,硫酸盐还原菌产生的硫化物在空间上可能是不均匀的。此外,我们绘制了绿弯菌科在光照和黑暗条件下近红外光控制的呼吸作用图谱,发现绿弯菌科是微生物垫有氧区下部氧气消耗的主要贡献者。通过荧光原位杂交探针和16S rRNA基因克隆文库分析进一步证实了绿弯菌科的存在。我们推测,与颤绿菌属和“候选绿丝菌属”相关的物种,与绿弯菌属和玫瑰弯菌属相关的物种不同,它们较少依赖分泌的光合产物,而更多地依赖游离硫化物的存在,这可能解释了它们在微生物垫较深部位的存在。

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