Lehman A, Black R, Ecker J R
Department of Biology, University of Pennsylvania, Philadelphia, USA.
Cell. 1996 Apr 19;85(2):183-94. doi: 10.1016/s0092-8674(00)81095-8.
Bending in plant tissues results from differential cell elongation. We have characterized Arabidopsis "hookless" mutants that are defective in differential growth in the hypocotyl. HOOKLESS1 was cloned and its predicted protein shows similarity to a diverse group of N-acetyltransferases. HOOKLESS1 mRNA is increased by treatment with ethylene and decreased in the ethylene-insensitive mutant ein2. High level expression of HOOKLESS1 mRNA results in constitutive hook curvature. The morphology of the hookless hypocotyl is phenocopied by inhibitors of auxin transport or by high levels of endogenous or exogenous auxin. Spatial patterns of expression of two immediate early auxin-responsive genes are altered in hookless1 mutants, suggesting that the ethylene response gene HOOKLESS1 controls differential cell growth by regulating auxin activity.
植物组织的弯曲是由细胞伸长差异引起的。我们对拟南芥“无钩”突变体进行了表征,这些突变体在下胚轴的差异生长方面存在缺陷。HOOKLESS1基因已被克隆,其预测的蛋白质与多种N-乙酰转移酶相似。用乙烯处理会使HOOKLESS1 mRNA增加,而在乙烯不敏感突变体ein2中则会减少。HOOKLESS1 mRNA的高水平表达导致组成型钩状弯曲。生长素运输抑制剂或高水平的内源性或外源性生长素可模拟无钩下胚轴的形态。在hookless1突变体中,两个早期生长素响应基因的表达空间模式发生了改变,这表明乙烯响应基因HOOKLESS1通过调节生长素活性来控制细胞的差异生长。