Hall A E, Chen Q G, Findell J L, Schaller G E, Bleecker A B
Department of Botany, University of Wisconsin, Madison, Wisconsin 53706, USA.
Plant Physiol. 1999 Sep;121(1):291-300. doi: 10.1104/pp.121.1.291.
Ethylene responses in Arabidopsis are mediated by a small family of receptors, including the ETR1 gene product. Specific mutations in the N-terminal ethylene-binding domain of any family member lead to dominant ethylene insensitivity. To investigate the mechanism of ethylene insensitivity, we examined the effects of mutations on the ethylene-binding activity of the ETR1 protein expressed in yeast. The etr1-1 and etr1-4 mutations completely eliminated ethylene binding, while the etr1-3 mutation severely reduced binding. Additional site-directed mutations that disrupted ethylene binding in yeast also conferred dominant ethylene insensitivity when the mutated genes were transferred into wild-type Arabidopsis plants. By contrast, the etr1-2 mutation did not disrupt ethylene binding in yeast. These results indicate that dominant ethylene insensitivity may be conferred by mutations that disrupt ethylene binding or that uncouple ethylene binding from signal output by the receptor. Increased dosage of wild-type alleles in triploid lines led to the partial recovery of ethylene sensitivity, indicating that dominant ethylene insensitivity may involve either interactions between wild-type and mutant receptors or competition between mutant and wild-type receptors for downstream effectors.
拟南芥中的乙烯反应由一小类受体介导,包括ETR1基因产物。任何家族成员的N端乙烯结合结构域中的特定突变都会导致显性乙烯不敏感。为了研究乙烯不敏感的机制,我们检测了这些突变对在酵母中表达的ETR1蛋白的乙烯结合活性的影响。etr1-1和etr1-4突变完全消除了乙烯结合,而etr1-3突变严重降低了结合。当将突变基因转入野生型拟南芥植株时,在酵母中破坏乙烯结合的其他定点突变也导致显性乙烯不敏感。相比之下,etr1-2突变在酵母中并未破坏乙烯结合。这些结果表明,显性乙烯不敏感可能是由破坏乙烯结合的突变或使乙烯结合与受体的信号输出解偶联的突变所致。三倍体系中野生型等位基因剂量的增加导致乙烯敏感性部分恢复,表明显性乙烯不敏感可能涉及野生型和突变型受体之间的相互作用,或突变型和野生型受体对下游效应物的竞争。