McCabe M S, Garratt L C, Schepers F, Jordi W J, Stoopen G M, Davelaar E, van Rhijn J H, Power J B, Davey M R
Plant Science Division, School of Biosciences, University of Nottingham, University Park, Nottingham NG7 2RD, United Kingdom.
Plant Physiol. 2001 Oct;127(2):505-16.
An ipt gene under control of the senescence-specific SAG12 promoter from Arabidopsis (P(SAG12)-IPT) significantly delayed developmental and postharvest leaf senescence in mature heads of transgenic lettuce (Lactuca sativa L. cv Evola) homozygous for the transgene. Apart from retardation of leaf senescence, mature, 60-d-old plants exhibited normal morphology with no significant differences in head diameter or fresh weight of leaves and roots. Induction of senescence by nitrogen starvation rapidly reduced total nitrogen, nitrate, and growth of transgenic and azygous (control) plants, but chlorophyll was retained in the lower (outer) leaves of transgenic plants. Harvested P(SAG12)-IPT heads also retained chlorophyll in their lower leaves. During later development (bolting and preflowering) of transgenic plants, the decrease in chlorophyll, total protein, and Rubisco content in leaves was abolished, resulting in a uniform distribution of these components throughout the plants. Homozygous P(SAG12)-IPT lettuce plants showed a slight delay in bolting (4-6 d), a severe delay in flowering (4-8 weeks), and premature senescence of their upper leaves. These changes correlated with significantly elevated concentrations of cytokinin and hexoses in the upper leaves of transgenic plants during later stages of development, implicating a relationship between cytokinin and hexose concentrations in senescence.
受拟南芥衰老特异性SAG12启动子(P(SAG12)-IPT)控制的ipt基因显著延迟了转基因纯合生菜(Lactuca sativa L. cv Evola)成熟头状花序中发育和采后叶片的衰老。除了延缓叶片衰老外,60日龄的成熟植株形态正常,叶球直径以及叶片和根系鲜重均无显著差异。氮饥饿诱导衰老迅速降低了转基因植株和非转基因(对照)植株的总氮、硝酸盐含量及生长量,但转基因植株下部(外部)叶片仍保留叶绿素。收获的P(SAG12)-IPT叶球下部叶片也保留了叶绿素。在转基因植株后期发育(抽薹和初花)过程中,叶片中叶绿素、总蛋白和核酮糖-1,5-二磷酸羧化酶含量的下降被消除,这些成分在整株植物中均匀分布。纯合P(SAG12)-IPT生菜植株抽薹略有延迟(4 - 6天),开花严重延迟(4 - 8周),上部叶片过早衰老。这些变化与发育后期转基因植株上部叶片中细胞分裂素和己糖浓度显著升高相关,这表明细胞分裂素和己糖浓度与衰老之间存在关联。