Abed Raeid M M, Kohls Katharina, de Beer Dirk
Max-Planck Institute for Marine Microbiology, Microsensor group, Bremen, Germany.
Environ Microbiol. 2007 Jun;9(6):1384-92. doi: 10.1111/j.1462-2920.2007.01254.x.
The effects of salinity fluctuation on bacterial diversity, rates of gross photosynthesis (GP) and oxygen consumption in the light (OCL) and in the dark (OCD) were investigated in three submerged cyanobacterial mats from a transect on an intertidal flat. The transect ran 1 km inland from the low water mark along an increasingly extreme habitat with respect to salinity. The response of GP, OCL and OCD in each sample to various salinities (65 per thousand, 100 per thousand, 150 per thousand and 200 per thousand) were compared. The obtained sequences and the number of unique operational taxonomic units showed clear differences in the mats' bacterial composition. While cyanobacteria decreased from the lower to the upper tidal mat, other bacterial groups such as Chloroflexus and Cytophaga/Flavobacteria/Bacteriodetes showed an opposite pattern with the highest dominance in the middle and upper tidal mats respectively. Gross photosynthesis and OCL at the ambient salinities of the mats decreased from the lower to the upper tidal zone. All mats, regardless of their tidal location, exhibited a decrease in areal GP, OCL and OCD rates at salinities > 100 per thousand. The extent of inhibition of these processes at higher salinities suggests an increase in salt adaptation of the mats microorganisms with distance from the low water line. We conclude that the resilience of microbial mats towards different salinity regimes on intertidal flats is accompanied by adjustment of the diversity and function of their microbial communities.
研究了盐度波动对潮间带一个断面的三个水下蓝藻席中细菌多样性、总光合作用速率(GP)以及光照下(OCL)和黑暗中(OCD)的耗氧率的影响。该断面从低潮位向内陆延伸1公里,沿着盐度越来越极端的栖息地分布。比较了每个样本中GP、OCL和OCD对不同盐度(65‰、100‰、150‰和200‰)的响应。所获得的序列和独特操作分类单元的数量表明,这些蓝藻席的细菌组成存在明显差异。虽然蓝藻从低潮位的蓝藻席到高潮位的蓝藻席数量减少,但其他细菌类群,如绿弯菌属和噬纤维菌属/黄杆菌属/拟杆菌属则呈现相反的模式,分别在中潮位和高潮位的蓝藻席中占主导地位。蓝藻席在其环境盐度下的总光合作用和OCL从低潮位到高潮位区域降低。所有蓝藻席,无论其所处的潮汐位置如何,在盐度>100‰时,其单位面积的GP、OCL和OCD速率均下降。在较高盐度下这些过程的抑制程度表明,随着与低潮线距离的增加,蓝藻席微生物的盐适应性增强。我们得出结论,潮间带微生物席对不同盐度状况的恢复力伴随着其微生物群落多样性和功能的调整。