Welsh Plant Breeding Station, Aberystwyth, Dyfed, SY 23 3EB, United Kingdom.
Plant Physiol. 1975 Sep;56(3):438-41. doi: 10.1104/pp.56.3.438.
Chlorophyll levels in l-cm sections of the youngest fully expanded leaves of normal (Y) Festuca pratensis L. declined almost to zero over a period of 6 days after excision. Chlorophyll in a mutant genotype (NY) remained near the initial level for the whole of this period. Abscisic acid promoted pigment loss in Y but had no significant effect on chlorophyll in NY. Kinetin retarded pigment loss in Y but was ineffective in NY. Other biochemical changes associated with leaf senescence-reduction in protein content and the appearance of novel isoenzymes of alpha-naphthyl acetate esterases-occurred in both genotypes. Abscisic acid accelerated protein breakdown, whereas kinetin inhibited the loss of protein in both genotypes. The mutation thus appears to be expressed as a highly specific lesion in pigment metabolism. We concluded that pigment breakdown, which is widely used as an index of leaf senescence, may not be an inevitable part of the aging process.
正常(Y)羊茅(Festuca pratensis L.)最幼全展叶 l-cm 切片中的叶绿素水平在切去后 6 天内几乎降至零。在整个这段时间内,突变基因型(NY)的叶绿素保持在初始水平附近。脱落酸促进 Y 中的色素丧失,但对 NY 中的叶绿素没有显著影响。激动素延缓 Y 中的色素丧失,但在 NY 中无效。与叶片衰老相关的其他生化变化——蛋白质含量降低和α-萘乙酸酯酶的新同工酶出现——在两种基因型中都发生了。脱落酸加速了蛋白质的分解,而激动素抑制了两种基因型中蛋白质的损失。因此,该突变似乎表现为色素代谢中一个高度特异的损伤。我们得出结论,色素分解,广泛用作叶片衰老的指标,可能不是衰老过程中不可避免的一部分。