Ori N, Juarez M T, Jackson D, Yamaguchi J, Banowetz G M, Hake S
Department of Plant and Microbial Biology, University of California, Berkeley, California 94720, USA.
Plant Cell. 1999 Jun;11(6):1073-80.
Leaf senescence is an active process involving remobilization of nutrients from senescing leaves to other parts of the plant. Whereas senescence is accompanied by a decline in leaf cytokinin content, supplemental cytokinin delays senescence. Plants that overexpress isopentenyl transferase (ipt), a cytokinin-producing gene, or knotted1 (kn1), a homeobox gene, have many phenotypes in common. Many of these phenotypes are characteristic of altered cytokinin physiology. The effect of kn1 on leaf senescence was tested by driving its expression using the promoter of the senescence-associated gene SAG12. SAG:kn1 tobacco plants showed a marked delay in leaf senescence but otherwise developed normally. The delay in senescence was revealed by an increase in chlorophyll content in SAG:kn1 leaves relative to leaves of the control plants and by a decrease in the number of dead leaves. Senescence was also delayed in detached leaves of SAG:kn1 plants. Delayed senescence was accompanied by increased leaf cytokinin content in older leaves expressing kn1. These experiments extend the current understanding of kn1 function and suggest that in addition to mediating meristem maintenance, kn1 is capable of regulating the onset of senescence in leaves.
叶片衰老 是一个活跃的过程,涉及营养物质从衰老叶片向植物其他部位的转运。衰老伴随着叶片细胞分裂素含量的下降,而补充细胞分裂素会延迟衰老。过表达异戊烯基转移酶(ipt,一种细胞分裂素产生基因)或knotted1(kn1,一种同源异型盒基因)的植物有许多共同的表型。这些表型中的许多都是细胞分裂素生理改变的特征。通过使用衰老相关基因SAG12的启动子驱动kn1的表达,来测试kn1对叶片衰老的影响。SAG:kn1烟草植株叶片衰老明显延迟,但其他方面发育正常。相对于对照植株的叶片,SAG:kn1叶片中叶绿素含量增加以及枯叶数量减少,揭示了衰老的延迟。SAG:kn1植株的离体叶片衰老也延迟。衰老延迟伴随着在表达kn1的老叶中叶片细胞分裂素含量增加。这些实验扩展了当前对kn1功能的理解,并表明除了介导分生组织维持外,kn1还能够调节叶片衰老的起始。