Fricke Wieland
Division of Biological Sciences, University of Paisley, PA1 2BE, UK.
Planta. 2004 Jul;219(3):507-14. doi: 10.1007/s00425-004-1262-1. Epub 2004 Apr 15.
Solutes distribute differentially between leaf tissues and cells. The present study tested the hypothesis that certain solutes are supplied preferentially to the epidermis in the transpiration stream, by-passing mesophyll cells along bundle sheath extensions. Using energy dispersive X-ray analysis of extracted cell sap, the distribution of solutes was studied in the emerged zone (transpiring) and the elongation zone (non-transpiring) of the developing leaf three of barley (Hordeum vulgare L.). The basic distribution of Cl, K, P and Ca between epidermis and bulk tissue, and between cells within the epidermis, was similar in the two leaf regions. However, in the emerged zone differences in solute concentrations between tissues and cells were greater. A local reduction in transpiration rate along the emerged portion of the blade specifically prevented Ca from accumulating to high levels in epidermal cells close to stomata. It is concluded that differences in solute concentrations between epidermal cells and other leaf tissues can be established in the absence of transpiration, but that they require transpiration for their full expression. Peristomatal transpiration appears to be responsible for high Ca in interstomatal cells.
溶质在叶片组织和细胞之间的分布存在差异。本研究验证了一个假设,即某些溶质在蒸腾流中优先供应给表皮,沿维管束鞘延伸绕过叶肉细胞。利用对提取的细胞液进行能量色散X射线分析,研究了大麦(Hordeum vulgare L.)第三片发育叶片的出现区(蒸腾)和伸长区(非蒸腾)中溶质的分布。在两个叶片区域中,表皮和整体组织之间以及表皮内细胞之间的Cl、K、P和Ca的基本分布相似。然而,在出现区,组织和细胞之间的溶质浓度差异更大。沿叶片出现部分蒸腾速率的局部降低特别阻止了Ca在靠近气孔的表皮细胞中积累到高水平。得出的结论是,表皮细胞和其他叶片组织之间的溶质浓度差异可以在没有蒸腾作用的情况下形成,但它们需要蒸腾作用来充分表达。气孔周围的蒸腾作用似乎是导致气孔间细胞中Ca含量高的原因。