Division of Bioregulation Research, College of Agronomy and Biotechnology, China Agricultural University, Beijing, China.
J Exp Bot. 2011 Mar;62(6):1731-41. doi: 10.1093/jxb/erq390. Epub 2010 Dec 3.
The intensity of the root-sourced abscisic acid (ABA) signal has long been thought to decrease along its long-distance transport pathway, and hence the shoot responses to the ABA signal would be expected to become less sensitive with the increase in plant height. It is reported here that there is a significant modification of the ABA signal intensity in its pathway to leaves in grapevine (Vitis riparia×Vitis labrusca), but in contrast to the expectation that the ABA signal intensity may decrease along its long-distance transport pathway, it was found that the root-sourced ABA signal is gradually intensified along a vine for as long as 3 m under both water-stressed and non-stressed conditions. Consistent with the alterations in ABA signal intensity, stomatal sensitivity to a root-sourced ABA signal was also gradually increased from the base to the apex. Leaf stomatal conductance near the apex was more severely inhibited than in the leaves at the base of the vine. It was observed that xylem pH was significantly increased from the base to the apex, and that artificially changing the xylem sap pH to be more alkaline by feeding with buffers increased the xylem ABA concentration. Our results suggest that the pH gradient along the stem may play a role in the modification and enhancement of ABA signal intensity such that the stomata at the top of canopy can be more sensitively regulated in response to soil drying.
长期以来,人们一直认为根源脱落酸(ABA)信号的强度会沿着其长距离运输途径逐渐减弱,因此,随着植物高度的增加,植物对 ABA 信号的反应应该会变得不那么敏感。本文报道了在葡萄(Vitis riparia×Vitis labrusca)的叶片中,ABA 信号强度在其途径中有明显的修饰,但与 ABA 信号强度可能沿着长距离运输途径逐渐减弱的预期相反,发现在水胁迫和非胁迫条件下,长达 3 米的葡萄藤中,根源 ABA 信号会逐渐增强。与 ABA 信号强度的变化一致,气孔对根源 ABA 信号的敏感性也从基部到顶部逐渐增加。靠近顶部的叶片气孔导度比葡萄藤基部的叶片受到更严重的抑制。观察到从基部到顶部,木质部 pH 值显著升高,并且通过用缓冲液喂养人为地将木质部汁液 pH 值改变为更碱性,会增加木质部 ABA 浓度。我们的结果表明,茎中沿 pH 梯度可能在 ABA 信号强度的修饰和增强中发挥作用,使得冠层顶部的气孔能够更敏感地响应土壤干燥。