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Ploidy influences wheat mesophyll cell geometry packing and leaf function

机译:倍增性影响小麦培养基细胞几何形状包装和叶功能

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摘要

Leaf function is influenced by leaf structure, which is itself related not only to the spatial arrangement of constituent mesophyll cells, but also their size and shape. In this study, we used confocal microscopy to image leaves of Triticum genotypes varying in ploidy level to extract 3D information on individual mesophyll cell size and geometry. Combined with X‐ray Computed Tomography and gas exchange analysis, the effect of changes in wheat mesophyll cell geometry upon leaf structure and function were investigated. Mesophyll cell size and shape were found to have changed during the course of wheat evolution. An unexpected linear relationship between mesophyll cell surface area and volume was discovered, suggesting anisotropic scaling of mesophyll cell geometry with increasing ploidy. Altered mesophyll cell size and shape were demonstrated to be associated with changes in mesophyll tissue architecture. Under experimental growth conditions, CO2 assimilation did not vary with ploidy, but stomatal conductance was lower in hexaploid plants, conferring a greater instantaneous water‐use efficiency. We propose that as wheat mesophyll cells have become larger with increased ploidy, this has been accompanied by changes in cell geometry and packing which limit water loss while maintaining carbon assimilation.
机译:叶功能受叶结构的影响,其本身不仅与成分培养基细胞的空间排列相关,而且是它们的尺寸和形状。在这项研究中,我们使用共聚焦显微镜对倍性水平不同的特征基因型的图像叶子,以提取对个体培养细胞尺寸和几何形状的3D信息。结合X射线计算断层扫描和煤气交换分析,研究了小麦培养基细胞几何形状对叶片结构和功能的影响。在小麦进化过程中发现叶肉细胞尺寸和形状发生变化。发现了叶绿素细胞表面积和体积之间的意外的线性关系,表明叶片细胞几何与增加倍增性的各向异性缩放。证据表明改变的叶肉细胞尺寸和形状与培养基组织架构的变化相关。在实验生长条件下,CO2同化不随倍率而变化,但六倍瓣植物中的气孔导度较低,赋予更大的瞬时水使用效率。我们提出,随着倍率增加的小麦叶肉细胞变大,这一直伴随着细胞几何形状和包装的变化,限制了水分损失,同时保持碳同化。

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