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首页> 外文期刊>Journal of Experimental Botany >Why small fluxes matter: the case and approaches for improving measurements of photosynthesis and (photo)respiration
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Why small fluxes matter: the case and approaches for improving measurements of photosynthesis and (photo)respiration

机译:小通量为何重要:改善光合作用和(光)呼吸测量的情况和方法

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Accurate measurement of small fluxes is critical for photosynthesis models. This review highlights improved methods of measuring CO2 diffusion into and within leaves, CO2 concentrations inside leaves, and CO2 efflux.Since its inception, the Farquhar et al. (1980) model of photosynthesis has been a mainstay for relating biochemistry to environmental conditions from chloroplast to global levels in terrestrial plants. Many variables could be assigned from basic enzyme kinetics, but the model also required measurements of maximum rates of photosynthetic electron transport (J (max) ), carbon assimilation (V-cmax ), conductance of CO2 into (g (s) ) and through (g (m) ) the leaf, and the rate of respiration during the day (R (d) ). This review focuses on improving the accuracy of these measurements, especially fluxes from photorespiratory CO2, CO2 in the transpiration stream, and through the leaf epidermis and cuticle. These fluxes, though small, affect the accuracy of all methods of estimating mesophyll conductance and several other photosynthetic parameters because they all require knowledge of CO2 concentrations in the intercellular spaces. This review highlights modified methods that may help to reduce some of the uncertainties. The approaches are increasingly important when leaves are stressed or when fluxes are inferred at scales larger than the leaf.
机译:小通量的准确测量对于光合作用模型至关重要。这篇综述着重介绍了测量CO2扩散到叶片内部和内部,叶片内部CO2浓度以及CO2流出的改进方法。 (1980)光合作用模型一直是使生物化学与环境条件相关的主体,从叶绿体到陆地植物的全球水平。可以从基本酶动力学中分配许多变量,但是该模型还需要测量光合电子传输的最大速率(J(max)),碳同化(V-cmax),CO2进入(g(s))并通过的电导率。 (g(m)),以及白天的呼吸速率(R(d))。这篇综述着重于提高这些测量的准确性,尤其是来自光呼吸CO2的通量,蒸腾流中以及穿过叶表皮和表皮的CO2的通量。这些通量虽然很小,但会影响估算叶肉电导和所有其他光合作用参数的所有方法的准确性,因为它们都需要了解细胞间空间中的CO2浓度。这篇评论重点介绍了可能有助于减少某些不确定性的改进方法。当给叶子施加压力或以大于叶子的尺度推断通量时,这些方法变得越来越重要。

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