Saab I N, Sharp R E, Pritchard J, Voetberg G S
Department of Agronomy, University of Missouri, Columbia, Missouri 65211.
Plant Physiol. 1990 Aug;93(4):1329-36. doi: 10.1104/pp.93.4.1329.
Roots of maize (Zea mays L.) seedlings continue to grow at low water potentials that cause complete inhibition of shoot growth. In this study, we have investigated the role of abscisic acid (ABA) in this differential growth sensitivity by manipulating endogenous ABA levels as an alternative to external applications of the hormone. An inhibitor of carotenoid biosynthesis (fluridone) and a mutant deficient in carotenoid biosynthesis (vp 5) were used to reduce the endogenous ABA content in the growing zones of the primary root and shoot at low water potentials. Experiments were performed on 30 to 60 hour old seedlings that were transplanted into vermiculite which had been preadjusted to water potentials of approximately -1.6 megapascals (roots) or -0.3 megapascals (shoots). Growth occurred in the dark at near-saturation humidity. Results of experiments using the inhibitor and mutant approaches were very similar. Reduced ABA content by either method was associated with inhibition of root elongation and promotion of shoot elongation at low water potentials, compared to untreated and wild-type seedlings at the same water potential. Elongation rates and ABA contents at high water potential were little affected. The inhibition of shoot elongation at low water potential was completely prevented in fluridone-treated seedlings during the first five hours after transplanting. The results indicate that ABA accumulation plays direct roles in both the maintenance of primary root elongation and the inhibition of shoot elongation at low water potentials.
玉米(Zea mays L.)幼苗的根在导致地上部生长完全受抑制的低水势条件下仍能继续生长。在本研究中,我们通过调控内源脱落酸(ABA)水平,而非外源施用该激素,来研究ABA在这种生长差异敏感性中的作用。使用类胡萝卜素生物合成抑制剂(氟啶酮)和类胡萝卜素生物合成缺陷型突变体(vp 5)来降低低水势下初生根和地上部生长区的内源ABA含量。实验选用30至60小时龄的幼苗,将其移栽至预先调节至约-1.6兆帕(根)或-0.3兆帕(地上部)水势的蛭石中。生长在近饱和湿度的黑暗条件下进行。使用抑制剂和突变体方法的实验结果非常相似。与相同水势下未处理的野生型幼苗相比,通过这两种方法降低ABA含量均与低水势下根伸长受抑制和地上部伸长受促进有关。高水势下的伸长速率和ABA含量受影响较小。在移栽后的前五个小时内,氟啶酮处理的幼苗中低水势下地上部伸长的抑制被完全阻止。结果表明,ABA积累在低水势下对初生根伸长的维持和地上部伸长的抑制均起直接作用。