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The long-term effects of UV exclusion on the microbial composition and photosynthetic competence of bacteria in hot-spring microbial mats

机译:紫外线对温泉微生物垫中细菌的组成和细菌光合能力的长期影响

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The primary objective of this study was to determine whether the long-term exclusion of ultraviolet (UV) radiation (UVR) from hot-spring microbial mats resulted in an alteration of microbial composition. such as a shift to more UV-sensitive species, Over a 1-3-month period, microbial mats in two alkaline geothermal streams in Yellowstone National Park were covered with filters that excluded or transmitted UVR. Over some, 2511,, transmission neutral density screens were also used. In the 40-47degreesC range, there were no apparent changes in community composition during the summer with or without high or low UVR, as assessed by denaturing gradient gel electrophoresis (DGGE) profiles after polymerase chain reaction amplification of 16S-rRNA genes with general Bacteria and Cyanobacteria primers. Major bands were purified from the DGGE gels and sequenced. Only one of the cyanobacterial sequences matched known strains in the database: the others appear to be unique, Although the bacterial composition of these communities was apparently stable, surface layers of cyanobacteria protected from UVR were not as competent photosynthetically as those that had been maintained under UVR. This decrease in competence was expressed as a loss of the ability to perform at a maximum rate under full UVR plus visible irradiance. However, even +UV-maintained cyanobacteria performed better when UVR was excluded during the photosynthesis tests. It is probable that the large differences in photosynthetic competence observed reflect changes at the level of gene expression in the dominant species rather than changes in species composition. (C) 2002 Federation of European Microbiological Societies. Published by Elsevier Science B.V. All rights reserved. [References: 45]
机译:这项研究的主要目的是确定长期排除温泉微生物垫中的紫外线(UVR)是否导致微生物成分的改变。例如,转向对紫外线更敏感的物种,在1-3个月的时间里,黄石国家公园的两条碱性地热流中的微生物垫被排除或传播UVR的过滤器覆盖。在一些2511上,也使用了透射中性密度屏。在40-47°C范围内,无论是否有高或低UVR,夏季的群落组成都没有明显变化,这是通过将16S-rRNA基因与普通细菌进行聚合酶链反应扩增后,通过变性梯度凝胶电泳(DGGE)进行评估的和蓝细菌引物。从DGGE凝胶纯化主要条带并测序。蓝藻序列中只有一个与数据库中的已知菌株相匹配:其他序列似乎是唯一的,尽管这些群落的细菌组成显然是稳定的,但受到UVR保护的蓝细菌的表面层在光合作用上不如在紫外线下保持的能力强。 UVR。这种能力的降低表示为在完全UVR加可见光照射下以最大速率进行运动的能力的丧失。但是,在光合作用测试中排除UVR时,即使+ UV维持的蓝细菌也表现更好。观察到的光合作用能力的巨大差异可能反映了优势物种中基因表达水平的变化,而不是物种组成的变化。 (C)2002年欧洲微生物学会联合会。由Elsevier Science B.V.保留所有权利。 [参考:45]

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