Kamako Shin-ichiro, Imamura Nobutaka
Department of Bioscience and Biotechnology, Faculty of Science and Engineering, Ritsumeikan University, Noji-higashi, Kusatsu, Shiga 525-8577, Japan.
J Eukaryot Microbiol. 2006 Mar-Apr;53(2):136-41. doi: 10.1111/j.1550-7408.2005.00084.x.
To investigate the relationship between the Japanese Paramecium bursaria host and its symbiont, we studied the effect of a host cell-free extract on carbon fixation and photosynthate release of the symbiont. The host extract enhanced symbiotic algal carbon fixation about 3-fold at an increased concentration; however, release of photosynthate hardly changed. Since the enhancing effect was not affected by elimination of carbon dioxide from the host extract, the existence of a host factor that stimulates algal carbon fixation was made clear. The host factor is a heat-stable, low molecular weight substance. In relation to the pH dependence, the extract improved carbon fixation at acidic and neutral pH and showed almost no effect at pH 9.0. Therefore, the stimulation of carbon fixation by the host factor is unlikely to be caused by intracellular pH change. The extract also improved carbon fixation of several Chlorella species, symbiotic and free-living, and apparently exhibited no species specificity. Therefore, the host seems to regulate the photosynthesis of the symbiont via a specific compound.
为了研究日本草履虫宿主与其共生体之间的关系,我们研究了宿主无细胞提取物对共生体碳固定和光合产物释放的影响。宿主提取物在浓度增加时可使共生藻类的碳固定增强约3倍;然而,光合产物的释放几乎没有变化。由于增强作用不受宿主提取物中二氧化碳去除的影响,因此明确了存在一种刺激藻类碳固定的宿主因子。该宿主因子是一种热稳定的低分子量物质。关于pH依赖性,提取物在酸性和中性pH下可改善碳固定,而在pH 9.0时几乎没有作用。因此,宿主因子对碳固定的刺激不太可能是由细胞内pH变化引起的。该提取物还改善了几种共生和自由生活的小球藻物种的碳固定,并且显然没有表现出物种特异性。因此,宿主似乎通过一种特定的化合物来调节共生体的光合作用。