Cottrell Matthew T, Kirchman David L
University of Delaware, Lewes, DE 19958, USA.
Appl Environ Microbiol. 2009 Aug;75(15):4958-66. doi: 10.1128/AEM.00117-09. Epub 2009 Jun 5.
Photoheterotrophic microbes, which are capable of utilizing dissolved organic materials and harvesting light energy, include coccoid cyanobacteria (Synechococcus and Prochlorococcus), aerobic anoxygenic phototrophic (AAP) bacteria, and proteorhodopsin (PR)-containing bacteria. Our knowledge of photoheterotrophic microbes is largely incomplete, especially for high-latitude waters such as the Arctic Ocean, where photoheterotrophs may have special ecological relationships and distinct biogeochemical impacts due to extremes in day length and seasonal ice cover. These microbes were examined by epifluorescence microscopy, flow cytometry, and quantitative PCR (QPCR) assays for PR and a gene diagnostic of AAP bacteria (pufM). The abundance of AAP bacteria and PR-containing bacteria decreased from summer to winter, in parallel with a threefold decrease in the total prokaryotic community. In contrast, the abundance of Synechococcus organisms did not decrease in winter, suggesting that their growth was supported by organic substrates. Results from QPCR assays revealed no substantial shifts in the community structure of AAP bacteria and PR-containing bacteria. However, Arctic PR genes were different from those found at lower latitudes, and surprisingly, they were not similar to those in Antarctic coastal waters. Photoheterotrophic microbes appear to compete successfully with strict heterotrophs during winter darkness below the ice, but AAP bacteria and PR-containing bacteria do not behave as superior competitors during the summer.
光能异养微生物能够利用溶解的有机物质并获取光能,包括球状蓝细菌(聚球藻属和原绿球藻属)、好氧不产氧光合细菌以及含视紫红质(PR)的细菌。我们对光能异养微生物的了解在很大程度上并不完整,特别是对于像北冰洋这样的高纬度水域,由于日照时长的极端情况和季节性冰盖,光能异养生物可能具有特殊的生态关系和独特的生物地球化学影响。通过落射荧光显微镜、流式细胞术以及针对PR和一种AAP细菌诊断基因(pufM)的定量PCR(QPCR)分析对这些微生物进行了检测。从夏季到冬季,AAP细菌和含PR细菌的丰度下降,同时原核生物群落总数下降了三倍。相比之下,聚球藻属生物的丰度在冬季并未下降,这表明它们的生长得到了有机底物的支持。QPCR分析结果显示,AAP细菌和含PR细菌的群落结构没有实质性变化。然而,北极的PR基因与低纬度地区发现的不同,令人惊讶的是,它们也与南极沿海水域的不同。在冬季冰下黑暗期间,光能异养微生物似乎成功地与严格的异养生物竞争,但在夏季,AAP细菌和含PR细菌并非优势竞争者。