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A few enlarged chloroplasts are less efficient in photosynthesis than a large population of small chloroplasts in Arabidopsis thaliana

机译:少数扩大的叶绿体在光合作用中效率低于拟南芥中的大量小叶绿体的光合作用

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摘要

Abstract The photosynthetic, biochemical, and anatomical traits of accumulation and replication of chloroplasts (arc) mutants of Arabidopsis thaliana were investigated to study the effects of chloroplast size and number on photosynthesis. Chloroplasts were found to be significantly larger, and the chloroplast surface area exposed to intercellular air spaces (S c) significantly lower in the mutants than in their wild-types. The decreased S c and increase cytoplasm thickness in the mutants resulted in a lower mesophyll conductance (g m) and a consequently lower chloroplast CO2 concentration (C c). There were no significant differences between the mutants and their wild-types in maximal carboxylation rate (V cmax), maximal electron transport (J cmax), and leaf soluble proteins. Leaf nitrogen (N) and Rubisco content were similar in both Wassilewskija (Ws) wild-type (Ws-WT) and the Ws mutant (arc 8), whereas they were slightly higher in Columbia (Col) wild-type (Col-WT) than the Col mutant (arc 12). The photosynthetic rate (A) and photosynthetic N use efficiency (PNUE) were significantly lower in the mutants than their wild-types. The mutants showed similar A/C c responses as their wild-type counterparts, but A at given C c was higher in Col and its mutant than in Ws and its mutant. From these results, we conclude that decreases in g m and C c are crucial to the reduction in A in arc mutants.
机译:摘要光合作用,生化,以及积累和叶绿体(ARC)拟南芥突变体的复制的解剖特征进行了研究,研究叶绿体大小和数量上光合作用的影响。叶绿体被发现是显著更大,并暴露于细胞间的空气间隔(S c)该叶绿体表面积在突变体显著低于在它们的野生型。导致较低的叶肉电导(G米)和因此较低的叶绿体CO2浓度(C c)该突变体降低的小号c和增加细胞质厚度。有突变体和它们的野生型在最大速率羧化(V的C max),最大电子传输(j C max)的,并叶可溶性蛋白之间没有显著差异。叶氮(N)和Rubisco的含量分别在两个Wassilewskija(WS)的野生型(WS-WT)和WS突变体(弧8)类似,而它们在哥伦比亚(COL)的野生型(Col-WT略高)比山口突变体(弧12)。光合速率(A)和光合氮素利用效率(PNUE)在突变体比它们的野生型均显著降低。突变体显示出相似的A / C C响应作为它们的野生型对应物,但是A在给定的C C是山口更高且比Ws和其突变体及其突变体。从这些结果,我们得出结论,以g米其降低和C c是在电弧突变体A中的减少是至关重要的。

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