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共生藻类释放的营养物质、信号与光合产物(牛磺酸对来自海葵美丽艾氏海葵的共生甲藻Symbiodinium的影响)

Nutrients, Signals, and Photosynthate Release by Symbiotic Algae (The Impact of Taurine on the Dinoflagellate Alga Symbiodinium from the Sea Anemone Aiptasia pulchella).

作者信息

Wang J. T., Douglas A. E.

机构信息

Department of Biology, University of York, P.O. Box 373, York YO1 5YW, United Kingdom.

出版信息

Plant Physiol. 1997 Jun;114(2):631-636. doi: 10.1104/pp.114.2.631.

Abstract

Exogenous concentrations of 10 [mu]M to 1 mM of the nonprotein amino acid taurine stimulated photosynthate release from the dinoflagellate alga Symbiodinium, which had been freshly isolated from the sea anemone Aiptasia pulchella. Photosynthate release, as induced by taurine and animal extract, was metabolically equivalent at both concentrations in that they (a) stimulated photosynthate release to the same extent and (b) induced the selective release of photosynthetically derived organic acids. A complex mixture of amino acids at 75 mM also promoted photosynthate release, but the release rate was reduced by 34% after the omission of taurine (3 mM) from the mixture, suggesting that much of the effect of amino acids was largely attributable to taurine. Exogenous 14C-labeled taurine was taken up by the cells, and more than 95% of the internalized 14C was recovered as taurine, indicating that taurine-induced photosynthate release was not dependent on taurine metabolism. Both taurine uptake and taurine-induced photosynthate release by Symbiodinium exhibited saturation kinetics, but with significantly different Km values of 68 and 21 [mu]M, respectively. The difference in Km values is compatible with the hypothesis that Symbiodinium has a taurine signal transducer that is responsible for photosynthate release and is distinct from the taurine transporter.

摘要

从海葵美丽艾氏海葵(Aiptasia pulchella)新鲜分离得到的甲藻海藻共生藻(Symbiodinium),在10 μM至1 mM的非蛋白质氨基酸牛磺酸的外源浓度刺激下,会释放光合产物。由牛磺酸和动物提取物诱导的光合产物释放,在这两种浓度下代谢等效,即它们(a)在相同程度上刺激光合产物释放,(b)诱导光合衍生有机酸的选择性释放。75 mM的氨基酸复杂混合物也促进光合产物释放,但从混合物中省略牛磺酸(3 mM)后,释放速率降低了34%,这表明氨基酸的大部分作用很大程度上归因于牛磺酸。外源14C标记的牛磺酸被细胞吸收,内化的14C中超过95%以牛磺酸形式回收,表明牛磺酸诱导的光合产物释放不依赖于牛磺酸代谢。共生藻对牛磺酸的摄取和牛磺酸诱导的光合产物释放均表现出饱和动力学,但Km值分别为68和21 μM,差异显著。Km值的差异与共生藻具有负责光合产物释放且与牛磺酸转运体不同的牛磺酸信号转导器这一假设相符。

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