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首页> 外文期刊>Journal of Experimental Botany >Extremely thick cell walls and low mesophyll conductance: welcome to the world of ancient living!
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Extremely thick cell walls and low mesophyll conductance: welcome to the world of ancient living!

机译:极厚的细胞壁和低叶片电导:欢迎来到古代生活中的世界!

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摘要

Mesophyll conductance is thought to be an important photosynthetic limitation in gymnosperms, but they currently constitute the most understudied plant group in regard to the extent to which photosynthesis and intrinsic water use efficiency are limited by mesophyll conductance. A comprehensive analysis of leaf gas exchange, photosynthetic limitations, mesophyll conductance (calculated by three methods previously used for across-species comparisons), and the underlying ultra-anatomical, morphological and chemical traits in 11 gymnosperm species varying in evolutionary history was performed to gain insight into the evolution of structural and physiological controls on photosynthesis at the lower return end of the leaf economics spectrum. Two primitive herbaceous species were included in order to provide greater evolutionary context. Low mesophyll conductance was the main limiting factor of photosynthesis in the majority of species. The strongest sources of limitation were extremely thick mesophyll cell walls, high chloroplast thickness and variation in chloroplast shape and size, and the low exposed surface area of chloroplasts per unit leaf area. In gymnosperms, the negative relationship between net assimilation per mass and leaf mass per area reflected an increased mesophyll cell wall thickness, whereas the easy-to-measure integrative trait of leaf mass per area failed to predict the underlying ultrastructural traits limiting mesophyll conductance.
机译:Mesophyll电导被认为是裸子植物中的重要光合限制,但目前在光合作用和固有用水效率受到培养的程度限制的程度上,它们目前构成了最受分析的植物组。综合分析叶片气体交换,光合局限,叶绿素电导(通过先前用于跨物种比较的三种方法计算),以及11个裸子植物物种在进化历史中不同的底层超解剖学,形态学和化学性状,以获得洞察叶经济谱下返回末端光合作用结构和生理控制的演变。包括两个原始草本种类以提供更大的进化环境。低培养的电导是大多数物种中光合作用的主要限制因素。最强的限制来源是极厚的叶片细胞壁,叶绿体厚度高,叶绿体形状和尺寸的变化,以及每单位叶面积的叶绿体的低暴露表面积。在裸子植物中,每种区域净同化的净同化之间的负面关系反映了叶片细胞壁厚度增加,而叶片质量的易于测量的综合性状未能预测限制培养基的潜在的超微结构性状。

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