The R.H. Smith Institute of Plant Sciences and Genetics in Agriculture, The R.H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot, 76100, Israel.
School of Plant Sciences and Food Security, The George S. Wise Faculty of Life Sciences at Tel-Aviv University, Tel Aviv, 6997801, Israel.
Plant J. 2021 Apr;106(2):301-313. doi: 10.1111/tpj.15235. Epub 2021 Apr 17.
The leaf vascular bundle sheath cells (BSCs) that tightly envelop the leaf veins, are a selective and dynamic barrier to xylem sap water and solutes radially entering the mesophyll cells. Under normal conditions, xylem sap pH below 6 is presumably important for driving and regulating the transmembranal solute transport. Having discovered recently a differentially high expression of a BSC proton pump, AHA2, we now test the hypothesis that it regulates the xylem sap pH and leaf radial water fluxes. We monitored the xylem sap pH in the veins of detached leaves of wild-type Arabidopsis, AHA mutants and aha2 mutants complemented with AHA2 gene solely in BSCs. We tested an AHA inhibitor (vanadate) and stimulator (fusicoccin), and different pH buffers. We monitored their impact on the xylem sap pH and the leaf hydraulic conductance (K ), and the effect of pH on the water osmotic permeability (P ) of isolated BSCs protoplasts. We found that AHA2 is necessary for xylem sap acidification, and in turn, for elevating K . Conversely, AHA2 knockdown, which alkalinized the xylem sap, or, buffering its pH to 7.5, reduced K , and elevating external pH to 7.5 decreased the BSCs P . All these showed a causative link between AHA2 activity in BSCs and leaf radial hydraulic water conductance.
叶脉鞘细胞(BSC)紧紧包裹着叶脉,是木质部汁液水分和溶质径向进入叶肉细胞的选择性和动态屏障。在正常情况下,木质部汁液 pH 值低于 6 可能对驱动和调节跨膜溶质运输很重要。最近发现 BSC 质子泵 AHA2 表达水平存在差异,我们现在检验其调节木质部汁液 pH 值和叶片径向水流的假设。我们监测了野生型拟南芥、AHA 突变体和仅在 BSC 中互补 AHA2 基因的 aha2 突变体的离体叶片叶脉木质部汁液的 pH 值。我们测试了 AHA 抑制剂(偏钒酸钠)和激动剂(佛司可林)以及不同的 pH 值缓冲液。我们监测了它们对木质部汁液 pH 值和叶片水力传导度(K)的影响,以及 pH 值对分离的 BSC 质膜原生质体水渗透势(P)的影响。我们发现 AHA2 是木质部汁液酸化所必需的,进而升高了 K。相反,木质部汁液碱化或缓冲其 pH 值至 7.5 会降低 K,而将外部 pH 值升高至 7.5 会降低 BSC 的 P。所有这些都表明 BSC 中 AHA2 活性与叶片径向水力导水率之间存在因果关系。