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Differences on photosynthetic limitations between leaf margins and leaf centers under potassium deficiency for Brassica napus L.

机译:甘蓝型油菜缺钾下叶片边缘和叶片中心光合极限的差异。

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摘要

Analyzing the proportions of stomatal (SL), mesophyll conductance (MCL) and biochemical limitations (BL) imposed by potassium (K) deficit, and evaluating their relationships to leaf K status will be helpful to understand the mechanism underlying the inhibition of K deficiency on photosynthesis (A). A quantitative limitation analysis of K deficiency on photosynthesis was performed on leaf margins and centers under K deficiency and sufficient K supply treatments of Brassica napus L. Potassium deficiency decreased A, stomatal (gs) and mesophyll conductance (gm) of margins, SL, MCL and BL accounted for 23.9%, 33.0% and 43.1% of the total limitations. While for leaf centers, relatively low limitations occurred. Nonlinear curve fitting analysis indicated that each limiting factor generated at same leaf K status (1.07%). Although MCL was the main component of limitations when A began to fall, BL replaced it at a leaf K concentration below 0.78%. Up-regulated MCL was related to lower surface area of chloroplasts exposed to intercellular airspaces (Sc/S) and larger cytosol diffusion resistance but not the cell wall thickness. Our results highlighted that photosynthetic limitations appear simultaneously under K deficiency and vary with increasing K deficiency intensity.
机译:分析钾(K)缺乏对气孔(SL),叶肉电导(MCL)和生化限制(BL)的比例,并评估它们与叶片K状况的关系,将有助于了解抑制钾缺乏的潜在机制。光合作用(A)。在缺钾和甘蓝型油菜足够的钾供应处理下,对叶片边缘和叶片中心的钾缺乏进行光合作用的定量限度分析。钾缺乏会降低边缘,SL,MCL的A,气孔(gs)和叶肉电导(gm) BL分别占总限制的23.9%,33.0%和43.1%。而对于叶片中心,发生的限制相对较低。非线性曲线拟合分析表明,每个限制因子均以相同的叶片K状态(1.07%)生成。尽管当A开始下降时,MCL是限制的主要成分,但BL在叶片K浓度低于0.78%时取代了它。 MCL的上调与暴露于细胞间空域(Sc / S)的叶绿体的较低表面积和较大的细胞溶胶扩散阻力有关,而与细胞壁厚度无关。我们的结果强调,光合限制在钾缺乏下同时出现,并且随着钾缺乏强度的增加而变化。

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