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Mesophyll conductance in cotton bracts: anatomically determined internal CO2 diffusion constraints on photosynthesis

苞片 光合作用 植物 叶绿体 海绵组织 栅栏细胞 光合能力 生物 木质部 花序 生物化学 基因
作者
Jimei Han,Zhangying Lei,Jaume Flexas,Yujie Zhang,Marc Carriquí,Wangfeng Zhang,Yali Zhang
出处
期刊:Journal of Experimental Botany [Oxford University Press]
被引量:41
标识
DOI:10.1093/jxb/ery296
摘要

Mesophyll conductance (gm) has been shown to affect photosynthetic capacity and thus the estimates of terrestrial carbon balance. While there have been some attempts to model gm at the leaf and larger scales, the potential contribution of gm to the photosynthesis of non-leaf green organs has not been studied. Here, we investigated the influence of gm on photosynthesis of cotton bracts and how it in turn is influenced by anatomical structures, by comparing leaf palisade and spongy mesophyll with bract tissue. Our results showed that photosynthetic capacity in bracts is much lower than in leaves, and that gm is a limiting factor for bract photosynthesis to a similar extent to stomatal conductance. Bract and the spongy tissue of leaves have lower mesophyll conductance than leaf palisade tissue due to the greater volume fraction of intercellular air spaces, smaller chloroplasts, lower surface area of mesophyll cells and chloroplasts exposed to leaf intercellular air spaces and, perhaps, lower membrane permeability. Comparing bracts with leaf spongy tissue, although bracts have a larger cell wall thickness, they have a similar gm estimated from anatomical characteristics, likely due to the cumulative compensatory effects of subtle differences in each subcellular component, especially chloroplast traits. These results provide the first evidence for anatomical constraints on gm and photosynthesis in non-leaf green organs.
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