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Non-photosynthetic enhancement of growth by high CO2 level in the nitrophilic seaweed Ulva rigida C. Agardh (Chlorophyta)

机译:高光CO2 的非光合作用促进硝化海藻Ulva hardica C. Agardh(Chlorophyta)的生长

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The effects of increased CO2 levels (10,000 μl l−1) in cultures of the green nitrophilic macroalga Ulva rigida C. Agardh were tested under conditions of N saturation and N limitation, using nitrate as the only N source. Enrichment with CO2 enhanced growth, while net photosynthesis, gross photosynthesis, dark respiration rates and soluble protein content decreased. The internal C pool remained constant at high CO2, while the assimilated C that was released to the external medium was less than half the values obtained under ambient CO2 levels. This higher retention of C provided the source for extra biomass production under N saturation. In N-sufficient thalli, nitrate-uptake rate and the activity of nitrate reductase (EC 1.6.6.1) increased under high CO2 levels. This did not affect the N content or the internal C:N balance, implying that the extra N-assimilation capacity led to the production of new biomass in proportion to C. Growth enhancement by increased level of CO2 was entirely dependent on the enhancement effect of CO2 on N-assimilation rates. The increase in nitrate reductase activity at high CO2 was not related to soluble carbohydrates or internal C. This indicates that the regulation of N assimilation by CO2 in U. rigida might involve a different pathway from that proposed for higher plants. The role of organic C release as an effective regulatory mechanism maintaining the internal C:N balance in response to different CO2 levels is discussed.
机译:在氮饱和度和氮限制条件下,以硝酸盐为唯一氮,测试了绿色嗜氮大藻Ulva hardica C. Agardh培养物中CO2水平升高(10,000μll-1 )的影响。资源。富集CO 2可以促进生长,而净光合作用,总光合作用,黑暗呼吸速率和可溶性蛋白质含量降低。在高CO2浓度下,内部C池保持恒定,而释放到外部介质中的同化C小于环境CO2浓度下获得的C的一半。 C的较高保留为氮饱和下额外的生物量生产提供了来源。在高氮水平下,氮充足的拟南芥中硝酸盐吸收率和硝酸还原酶活性(EC 1.6.6.1)增加。这并没有影响氮含量或内部C:N平衡,这意味着额外的N同化能力导致了与C成比例的新生物量的产生。CO2含量的增加对生长的促进完全取决于二氧化碳对氮同化率的增强作用高CO2 下硝酸还原酶活性的增加与可溶性碳水化合物或内部C无关。这表明CO2 对僵硬U虫对N同化的调控可能与拟议的途径不同。高等植物。讨论了有机碳释放作为一种有效的调节机制,可响应不同的CO2水平维持内部C:N平衡的作用。

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