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首页> 外文期刊>Photosynthesis Research: An International Journal >Using photorespiratory oxygen response to analyse leaf mesophyll resistance
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Using photorespiratory oxygen response to analyse leaf mesophyll resistance

机译:使用光致炮氧应对分析叶片叶片抗性

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Classical approaches to estimate mesophyll conductance ignore differences in resistance components for CO2 from intercellular air spaces (IAS) and CO2 from photorespiration (F) and respiration (R-d). Consequently, mesophyll conductance apparently becomes sensitive to (photo)respiration relative to net photosynthesis, (F + R-d)/A. This sensitivity depends on several hard-to-measure anatomical properties of mesophyll cells. We developed a method to estimate the parameter m (0 <= m <= 1) that lumps these anatomical properties, using gas exchange and chlorophyll fluorescence measurements where (F + R-d)/A ratios vary. This method was applied to tomato and rice leaves measured at five O-2 levels. The estimated m was 0.3 for tomato but 0.0 for rice, suggesting that classical approaches implying m = 0 work well for rice. The mesophyll conductance taking the m factor into account still responded to irradiance, CO2, and O-2 levels, similar to response patterns of stomatal conductance to these variables. Largely due to different m values, the fraction of (photo)respired CO2 being refixed within mesophyll cells was lower in tomato than in rice. But that was compensated for by the higher fraction via IAS, making the total re-fixation similar for both species. These results, agreeing with CO2 compensation point estimates, support our method of effectively analysing mesophyll resistance.
机译:经典方法来估计叶片线的思路忽略来自细胞间空间(IAS)和来自光素(F)和呼吸(R-D)的CO 2的抗性分量的差异。因此,相对于净光合作用(F + R-D)/ a,培养基电导显然对(Photo)呼吸变得敏感。这种敏感性取决于培养基细胞的几种难以测量的解剖学性质。我们开发了一种估计这些解剖学性质的参数m(0 <= m <= 1)的方法,使用气体交换和叶绿素荧光测量,其中(f + r-d)/比率变化。将该方法应用于番茄和水稻叶片,在5 o-2水平测量。番茄的估计M为0.3,但米饭0.0.暗示暗示M = 0的古典方法对米饭很好。将M因素考虑到辐照,二氧化碳和O-2水平的蛋白质鱼片电导,类似于对这些变量的气孔导度的响应模式类似。在很大程度上由于不同的m值,在培蛋白细胞内被修复的(照片)呼吸的CO2的分数小于番茄中的较低。但是,通过IAS的较高级分来补偿,使得两种物种相似的总重新固定。这些结果,同意CO2补偿点估计,支持我们有效分析叶肉抗性的方法。

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