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首页> 外文期刊>Aquatic Microbial Ecology >Net and gross productivity: weighing in with 14C
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Net and gross productivity: weighing in with 14C

机译:净生产率和总生产率:用14C衡量

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摘要

ABSTRACT: Data from the 14C method, C assimilation time courses and single endpoint comparisons to O2 fluxes, imply 2 different things. Time course (linear) experiments suggest that C assimilation measures gross production while the single endpoint comparisons with O2 fluxes suggest that the 14C method approximates net community production. Considering only phytoplankton metabolism, a way out of the paradox is to assume that all CO2 respired by mitochondria is refixed in photosynthesis, meaning that photosynthesis uses more H2O than CO2 from the ambient environment since the latter has an internal source. The 14C method, therefore, would estimate net primary production relative to O2 fluxes in the absence of heterotrophic interactions. The method can also be applied to the estimation of phytoplankton respiration from the nighttime loss of labeled organic matter. A summary of available data shows that C assimilation corrected for organic C lost is statistically equivalent to gross production measured independently using the 18O method.
机译:摘要:来自 14 C方法的数据,C同化时间过程以及与O 2 通量的单端点比较,暗示了两种不同的情况。时程(线性)实验表明,C同化作用可测量总生产量,而与O 2 通量的单端点比较表明, 14 C方法近似于净社区生产。仅考虑浮游植物的代谢,摆脱悖论的一种方法是假设线粒体呼吸的所有CO 2 都在光合作用中被固定,这意味着光合作用比CO消耗更多的H 2 O 2 来自周围环境,因为后者具有内部来源。因此,在没有异养相互作用的情况下, 14 C方法可以估算相对于O 2 通量的净初级生产力。该方法还可用于根据夜间标记有机物的损失估算浮游植物的呼吸。可用数据的摘要显示,针对有机C损失进行校正的C同化在统计上等同于使用 18 O方法独立测量的总生产量。

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