Mutualistic interactions between vitamin B12‐dependent algae and heterotrophic bacteria exhibit regulation

生物 钴胺素 细菌 莱茵衣藻 营养不良 藻类 蛋氨酸合酶 微生物学 共生 生物化学 人口 B族维生素 植物 蛋氨酸 维生素B12 基因 遗传学 大肠杆菌 氨基酸 突变体 人口学 社会学 内分泌学
作者
Elena Kazamia,Hjördis Czesnick,Thi Thanh Van Nguyen,Martin T. Croft,Emma Sherwood,Severin Sasso,Sarah James Hodson,Martin J. Warren,Alison G. Smith
出处
期刊:Environmental Microbiology [Wiley]
卷期号:14 (6): 1466-1476 被引量:364
标识
DOI:10.1111/j.1462-2920.2012.02733.x
摘要

Many algae are auxotrophs for vitamin B(12) (cobalamin), which they need as a cofactor for B(12) -dependent methionine synthase (METH). Because only prokaryotes can synthesize the cobalamin, they must be the ultimate source of the vitamin. In the laboratory, a direct interaction between algae and heterotrophic bacteria has been shown, with bacteria supplying cobalamin in exchange for fixed carbon. Here we establish a system to study this interaction at the molecular level. In a culture of a B(12) -dependent green alga Chlamydomonas nivalis, we found a contaminating bacterium, identified by 16S rRNA analysis as Mesorhizobium sp. Using the sequenced strain of M. loti (MAFF303099), we found that it was able to support the growth of B(12) -dependent Lobomonas rostrata, another green alga, in return for fixed carbon. The two organisms form a stable equilibrium in terms of population numbers, which is maintained over many generations in semi-continuous culture, indicating a degree of regulation. However, addition of either vitamin B(12) or a carbon source for the bacteria perturbs the equilibrium, demonstrating that the symbiosis is mutualistic and facultative. Chlamydomonas reinhardtii does not require B(12) for growth because it encodes a B(12) -independent methionine synthase, METE, the gene for which is suppressed by addition of exogenous B(12) . Co-culturing C. reinhardtii with M. loti also results in reduction of METE expression, demonstrating that the bacterium can deliver the vitamin to this B(12) -independent alga. We discuss the implications of this for the widespread distribution of cobalamin auxotrophy in the algal kingdom.
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