De Leo P, Sacher J A
Plant Physiol. 1970 Dec;46(6):806-11. doi: 10.1104/pp.46.6.806.
We report the effects of abscisic acid and auxin (alpha-naphthalene acetic acid) on regulation of enzyme synthesis during senescence of leaf sections of Rhoeo discolor Hance. Abscisic acid always accelerates the onset of and enhances the magnitude of the increase in activity of acid phosphatase; this is followed by an acceleration of the onset of a rapid increase in free space.RNase activity increases 2- to 5-fold after cutting of leaf sections. Abscisic acid increases RNase activity and inhibits the rate of incorporation of uridine and leucine in leaf sections removed from plants grown under stress but not favorable conditions. Auxin inhibits the increase in RNase and acid phosphatase and suppresses the effects of abscisic acid. The increase in activity of RNase and acid phosphatase is inhibited by inhibitors of RNA and protein synthesis. This and other evidence suggests that the increases in hydrolase activity could result from new enzyme synthesis. The possible significance of the results in respect of hormonal regulation of enzyme activity and senescence is discussed.
我们报道了脱落酸和生长素(α-萘乙酸)对紫露草叶片切段衰老过程中酶合成调控的影响。脱落酸总是加速酸性磷酸酶活性增加的起始并增强其增加幅度;随后是自由空间快速增加的起始加速。叶片切段切割后,核糖核酸酶活性增加2至5倍。脱落酸增加核糖核酸酶活性,并抑制在胁迫而非适宜条件下生长的植株上切下的叶片切段中尿苷和亮氨酸的掺入率。生长素抑制核糖核酸酶和酸性磷酸酶的增加,并抑制脱落酸的作用。核糖核酸酶和酸性磷酸酶活性的增加受到RNA和蛋白质合成抑制剂的抑制。这一证据及其他证据表明,水解酶活性的增加可能源于新酶的合成。文中讨论了这些结果在激素对酶活性和衰老调控方面的可能意义。