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Microcolony Formation by Single-Cell Synechococcus Strains as a Fast Response to UV Radiation

机译:单细胞Syechococcus菌株的小菌落形成作为对UV辐射的快速响应。

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UV radiation (UVR) has different effects on prokaryotic cells, such as, for instance, filamentation and aggregation in bacteria. Here we studied the effect of UVR on microcolony formation in two freshwater Synechococcus strains of different ribotypes (group B and group I) and phycobiliprotein compositions (phycoerythrin [PE] and phycocyanin [PC]). Each strain was photoacclimated at two light intensities, low light (LL) (10 μmol m?2 s?1) and moderate light (ML) (100 μmol m?2 s?1). The cultures were exposed for 6 days to treatments with UVR or without UVR. PE-rich Synechococcus acclimated to LL had a low carotenoid/chlorophyll a (car/chl) ratio but responded faster to UVR treatment, producing the highest percentages of microcolonies and of cells in microcolonies. Conversely, the same strain acclimated to ML, with a higher car/chl ratio, did not aggregate significantly. These results suggest that microcolony formation by PE-rich Synechococcus is induced by UVR if carotenoid levels are low. PC-rich Synechococcus formed a very low percentage of microcolonies in both acclimations even with low car/chl ratio. The different responses of the two Synechococcus strains to UVR depend on their pigment compositions. On the other hand, this study does not exclude that UVR-induced microcolony formation could also be related to specific ribotypes.
机译:紫外线辐射(UVR)对原核细胞具有不同的影响,例如细菌中的丝状化和聚集。在这里,我们研究了UVR对两种不同核型(B组和I组)和藻胆蛋白成分(藻红蛋白[PE]和藻蓝蛋白[PC])的淡水Synechococcus菌株中小菌落形成的影响。使每种菌株在两种光强度下进行光适应:低光(LL)(10μmolm?2 s?1)和中光(ML)(100μmolm?2 s?1)。将培养物暴露于有UVR或无UVR的处理中6天。适应LL的富含PE的Synocococcus的类胡萝卜素/叶绿素a(car / chl)比率低,但对UVR处理的反应更快,产生了最高比例的微菌落和微菌落中的细胞。相反,适应于ML的相同菌株,具有较高的car / chl比,没有明显聚集。这些结果表明,如果类胡萝卜素水平低,则富含PE的Synocococcus的小菌落形成会被UVR诱导。即使在较低的car / chl比下,富含PC的Synechococcus在两种适应中均形成了非常低的微菌落百分比。两种Synechococcus菌株对UVR的不同响应取决于它们的色素组成。另一方面,这项研究不排除UVR诱导的小菌落形成也可能与特定的核糖型有关。

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