Wilson Matthew J, Fradera-Soler Marc, Summers Richard, Sturrock Craig J, Fleming Andrew J
Department of Animal and Plant Sciences University of Sheffield Sheffield UK.
Department of Plant and Environmental Sciences University of Copenhagen Copenhagen Denmark.
Plant Direct. 2021 Apr 7;5(4):e00314. doi: 10.1002/pld3.314. eCollection 2021 Apr.
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 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, CO 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.
叶片功能受叶片结构影响,而叶片结构本身不仅与组成叶肉细胞的空间排列有关,还与其大小和形状有关。在本研究中,我们使用共聚焦显微镜对不同倍性水平的基因型叶片进行成像,以提取关于单个叶肉细胞大小和几何形状的三维信息。结合X射线计算机断层扫描和气体交换分析,研究了小麦叶肉细胞几何形状变化对叶片结构和功能的影响。研究发现,在小麦进化过程中叶肉细胞大小和形状发生了变化。发现叶肉细胞表面积与体积之间存在意想不到的线性关系,这表明随着倍性增加,叶肉细胞几何形状呈各向异性缩放。叶肉细胞大小和形状的改变与叶肉组织结构的变化有关。在实验生长条件下,二氧化碳同化作用不随倍性变化,但六倍体植物的气孔导度较低,这赋予了更高的瞬时水分利用效率。我们认为,随着小麦叶肉细胞随着倍性增加而变大,这伴随着细胞几何形状和排列的变化,在维持碳同化的同时限制了水分流失。