Plant Ecophysiology, Institute of Environmental Biology, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands.
J Exp Bot. 2013 Jan;64(2):613-24. doi: 10.1093/jxb/ers356. Epub 2012 Dec 21.
Upward leaf movement, called hyponastic growth, is employed by plants to cope with adverse environmental conditions. Ethylene is a key regulator of this process and, in Arabidopsis thaliana, hyponasty is induced by this phytohormone via promotion of epidermal cell expansion in a proximal zone of the abaxial side of the petiole. ROTUNDIFOLIA3/CYP90C1 encodes an enzyme which was shown to catalyse C-23 hydroxylation of several brassinosteroids (BRs) - phytohormones involved in, for example, organ growth, cell expansion, cell division, and responses to abiotic and biotic stresses. This study tested the interaction between ethylene and BRs in regulating hyponastic growth. A mutant isolated in a forward genetic screen, with reduced hyponastic response to ethylene treatment, was allelic to rot3. The cause of the reduced hyponastic growth in this mutant was examined by studying ethylene-BR interaction during local cell expansion, pharmacological inhibition of BR synthesis and ethylene effects on transcription of BR-related genes. This work demonstrates that rot3 mutants are impaired in local cell expansion driving hyponasty. Moreover, the inhibition of BR biosynthesis reduces ethylene-induced hyponastic growth and ethylene increases sensitivity to BR in promoting cell elongation in Arabidopsis hypocotyls. Together, the results show that ROT3 modulates ethylene-induced petiole movement and that this function is likely BR related.
向上的叶片运动,称为下弯生长,是植物用来应对不利环境条件的一种策略。乙烯是这个过程的关键调节因子,在拟南芥中,通过促进叶柄背面近轴区域表皮细胞的扩张,这种植物激素诱导下弯生长。ROTUNDIFOLIA3/CYP90C1 编码一种酶,该酶被证明能够催化几种油菜素内酯 (BRs) 的 C-23 羟化,油菜素内酯是参与器官生长、细胞扩张、细胞分裂以及对非生物和生物胁迫反应的植物激素。本研究测试了乙烯和 BRs 在调节下弯生长中的相互作用。通过正向遗传学筛选分离的突变体,对乙烯处理的下弯反应降低,与 rot3 等位。通过研究局部细胞扩张过程中的乙烯-BR 相互作用、BR 合成的药理学抑制以及 BR 相关基因的转录对乙烯的影响,研究了该突变体中下弯生长减少的原因。这项工作表明,rot3 突变体在驱动下弯的局部细胞扩张方面存在缺陷。此外,BR 生物合成的抑制减少了乙烯诱导的下弯生长,并且乙烯增加了 BR 在促进拟南芥下胚轴细胞伸长方面的敏感性。总之,结果表明 ROT3 调节乙烯诱导的叶柄运动,并且该功能可能与 BR 有关。