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Tight coupling of root-associated nitrogen fixation and plant photosynthesis in the salt marsh grass Spartina alterniflora and carbon dioxide enhancement of nitrogenase activity.

机译:盐沼草互花米草中根系固氮和植物光合作用的紧密耦合以及二氧化碳对固氮酶活性的增强。

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The coupling of root-associated nitrogen fixation and plant photosynthesis was examined in the salt marsh grass Spartina alterniflora. In both field experiments and hydroponic assay chambers, nitrogen fixation associated with the roots was rapidly enhanced by stimulating plant photosynthesis. A kinetic analysis of acetylene reduction activity (ARA) showed that a five-to sixfold stimulation occurred within 10 to 60 min after the plant leaves were exposed to light or increased CO2 concentrations (with the light held constant). In field experiments, CO2 enrichment increased plant-associated ARA by 27%. Further evidence of the dependence of ARA on plant photosynthate was obtained when activity in excised roots was shown to decrease after young greenhouse plants were placed in the dark. Seasonal variation in the ARA of excised plant roots from field cores appears to be related to the annual cycle of net photosynthesis in S. alterniflora.
机译:在盐沼草互花米草中研究了根系固氮与植物光合作用的耦合。在田间试验和水培试验箱中,通过刺激植物的光合作用,与根部相关的固氮作用迅速增强。乙炔还原活性(ARA)的动力学分析表明,在植物叶片暴露于光照或增加CO2浓度(光照保持不变)后的10至60分钟内,发生了5至6倍的刺激。在田间试验中,CO2富集使植物相关的ARA增加了27%。当将年轻的温室植物放置在黑暗中后,被切除的根系中的活性降低时,获得了ARA对植物光合产物依赖性的进一步证据。来自田间核心的被切除植物根的ARA的季节性变化似乎与互花米草净光合作用的年度周期有关。

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