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首页> 外文期刊>Scientific reports. >Differences on photosynthetic limitations between leaf margins and leaf centers under potassium deficiency for Brassica napus L.
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Differences on photosynthetic limitations between leaf margins and leaf centers under potassium deficiency for Brassica napus L.

机译:芸薹属缺乏症下叶片边缘和叶中心光合局限性的差异。

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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)缺乏施加的气孔(S1),叶蛋白电导(MCL)和生化限制(BL)的比例,评价它们与叶子的关系将有助于理解抑制K缺乏的机制光合作用(A)。在K缺陷和K缺陷的叶片边缘和中心的肺部缺陷中进行了定量限制分析,芸苔NAPUS L.钾缺乏足够的K供应治疗减少了A,气孔(GS)和培条的MARGINS,SL,MCL BL占总限制的23.9%,33.0%和43.1%。在为叶中心,发生了相对较低的限制。非线性曲线拟合分析表明,每个限制因素在相同的叶子k状态下产生(1.07%)。虽然MCL是当A开始落下时的局限性的主要成分,但BL以低于0.78%的叶片浓度替换它。上调的MCL与暴露于细胞间空心(SC / S)和较大的细胞溶质扩散电阻但不是细胞壁厚度的叶绿体的下表面积有关。我们的结果强调,光合限制同时出现在K缺乏下,随着K缺乏强度的增加而异。

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