首页> 美国卫生研究院文献>Plant Physiology >Studies on the Biochemistry and Fine Structure of Silica Shell Formation in Diatoms. Photosynthesis and Respiration in Silicon-Starvation Synchrony of Navicula pelliculosa
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Studies on the Biochemistry and Fine Structure of Silica Shell Formation in Diatoms. Photosynthesis and Respiration in Silicon-Starvation Synchrony of Navicula pelliculosa

机译:硅藻中硅壳形成的生物化学和精细结构研究。 Navicula pelliculosa的硅饥饿同步中的光合作用和呼吸作用

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摘要

Rates of photosynthesis, measured by oxygen electrode or by 14CO2 fixation, dark respiration and 32P-phosphate incorporation are reported for the silicon-starvation synchrony of the fresh water diatom Navicula pelliculosa. During late exponential growth the rates were consistent with increase in carbon mass. During silicon starvation, rates of carbon dioxide fixation, oxygen evolution and 32P incorporation fell, and the saturating light intensity decreased from 27,000 lux to 5000 lux. Reintroduction of silicon led to immediate transients in all parameters studied, followed by a prolonged increase in rate of dark respiration and a gradual increase in apparent photosynthesis. During release of daughter cells, the rates of dark respiration decreased as photosynthesis and 32P incorporation increased. These results are discussed in relation to effects of silicon on the energy metabolism of the diatom.
机译:报告了通过氧气电极或通过 14 CO2固定,暗呼吸和 32 P-磷酸盐掺入来测量的光合作用速率,用于淡水硅藻Navicula的硅饥饿同步。紫檀。在后期指数增长期间,速率与碳质量的增加一致。在硅饥饿期间,二氧化碳的固定率,氧的释放和 32 P的掺入率降低,饱和光强度从27,000 lux降低到5000 lux。硅的重新引入导致所研究的所有参数均立即瞬变,随后暗呼吸速率延长和表观光合作用逐渐增加。在子代细胞释放过程中,随着光合作用和 32 P掺入量增加,暗呼吸速率降低。讨论了有关硅对硅藻能量代谢的影响的这些结果。

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