Frugis G, Giannino D, Mele G, Nicolodi C, Chiappetta A, Bitonti M B, Innocenti A M, Dewitte W, Van Onckelen H, Mariotti D
Istituto di Biochimica ed Ecofisiologia Vegetali del Consiglio Nazionale delle Richerche, via Salaria km 29,300-00016 Monterotondo Scalo, Rome, Italy.
Plant Physiol. 2001 Aug;126(4):1370-80. doi: 10.1104/pp.126.4.1370.
Leaves are specialized organs characterized by defined developmental destiny and determinate growth. The overexpression of Knotted1-like homeobox genes in different species has been shown to alter leaf shape and development, but a definite role for this class of genes remains to be established. Transgenics that overexpress Knotted1-like genes present some traits that are characteristic of altered cytokinin physiology. Here we show that lettuce (Lactuca sativa) leaves that overexpress KNAT1, an Arabidopsis kn1-like gene, acquire characteristics of indeterminate growth typical of the shoot and that this cell fate change is associated with the accumulation of specific types of cytokinins. The possibility that the phenotypic effects of KNAT1 overexpression may arise primarily from the modulation of local ratios of different cytokinins is discussed.
叶片是具有明确发育命运和有限生长特征的特化器官。已表明在不同物种中过表达类Knotted1同源异型盒基因会改变叶片形状和发育,但这类基因的确切作用仍有待确定。过表达类Knotted1基因的转基因植株呈现出一些改变细胞分裂素生理学特征的性状。在此我们表明,过表达拟南芥kn1类基因KNAT1的生菜(莴苣)叶片获得了茎尖典型的无限生长特征,并且这种细胞命运的改变与特定类型细胞分裂素的积累有关。我们还讨论了KNAT1过表达的表型效应可能主要源于不同细胞分裂素局部比例调节的可能性。