Thimann Laboratories, University of California, Santa Cruz, California 95064.
Plant Physiol. 1985 Dec;79(4):1107-10. doi: 10.1104/pp.79.4.1107.
The senescence of detached Tropaeolum majus leaves was compared with that described earlier for Avena. Tropaeolum was chosen as being not only a dicot but also as having a nearly circular leaf, thus needing only the smallest minimum of wounding, since wounding delays the loss of chlorophyll and protein in darkness. Tropaeolum resembles Avena in that closing the stomata osmotically or with ABA causes rapid senescence in light. As in Avena also, n-hexanol and alpha,alpha'-dipyridyl delay senescence in darkness but cause ;bleaching' of chlorophyll in light. Unlike Avena, however, kinetin and gibberellic acid, which delay senescence in the dark in both species, do so in Tropaeolum without causing any significant stomatal opening. The senescence of Tropaeolum leaves is actually promoted by fusicoccin, which powerfully delays senescence in Avena, although fusicoccin does cause stomatal opening in darkness in both species. Thus, many of the phenomena of senescence are alike in the monocot and dicot, but there are several significantly different responses to the senescence-modifying reagents. It is concluded that while stomatal closure accelerates senescence in both species, stomatal opening is not directly linked to the prevention of leaf senescence.
脱离的金莲花叶片的衰老与前文所描述的燕麦衰老进行了比较。选择金莲花不仅因为它是双子叶植物,而且因为它的叶片近乎圆形,因此只需要最小的最小的伤口,因为伤口会延迟黑暗中叶绿素和蛋白质的损失。金莲花与燕麦相似,质膜渗透性或用 ABA 关闭气孔会导致在光下快速衰老。与燕麦一样,正己醇和α,α'-二吡啶也会延迟黑暗中的衰老,但会在光下导致叶绿素“漂白”。然而,与燕麦不同的是,延缓两种植物黑暗中衰老的激动素和赤霉素在金莲花中不会引起任何明显的气孔开放,从而促进衰老。虽然 fusicoccin 强烈地延缓了燕麦的衰老,但 fusicoccin 实际上促进了金莲花叶片的衰老,尽管 fusicoccin 在两种物种的黑暗中都会导致气孔开放。因此,单子叶植物和双子叶植物中有许多衰老现象是相似的,但对衰老修饰试剂的反应有几个明显不同。结论是,虽然气孔关闭会加速两种植物的衰老,但气孔开放与防止叶片衰老并无直接关系。