Department of Energy, Plant Research Laboratory, Michigan State University, East Lansing, MI 48824, USA.
Proc Natl Acad Sci U S A. 2011 May 31;108(22):9298-303. doi: 10.1073/pnas.1103542108. Epub 2011 May 16.
The phytohormone jasmonoyl-L-isoleucine (JA-Ile) signals through the COI1-JAZ coreceptor complex to control key aspects of plant growth, development, and immune function. Despite detailed knowledge of the JA-Ile biosynthetic pathway, little is known about the genetic basis of JA-Ile catabolism and inactivation. Here, we report the identification of a wound- and jasmonate-responsive gene from Arabidopsis that encodes a cytochrome P450 (CYP94B3) involved in JA-Ile turnover. Metabolite analysis of wounded leaves showed that loss of CYP94B3 function in cyp94b3 mutants causes hyperaccumulation of JA-Ile and concomitant reduction in 12-hydroxy-JA-Ile (12OH-JA-Ile) content, whereas overexpression of this enzyme results in severe depletion of JA-Ile and corresponding changes in 12OH-JA-Ile levels. In vitro studies showed that heterologously expressed CYP94B3 converts JA-Ile to 12OH-JA-Ile, and that 12OH-JA-Ile is less effective than JA-Ile in promoting the formation of COI1-JAZ receptor complexes. CYP94B3-overexpressing plants displayed phenotypes indicative of JA-Ile deficiency, including defects in male fertility, resistance to jasmonate-induced growth inhibition, and susceptibility to insect attack. Increased accumulation of JA-Ile in wounded cyp94b3 leaves was associated with enhanced expression of jasmonate-responsive genes. These results demonstrate that CYP94B3 exerts negative feedback control on JA-Ile levels and performs a key role in attenuation of jasmonate responses.
植物激素茉莉酰基异亮氨酸(JA-Ile)通过 COI1-JAZ 核心受体复合物发出信号,控制植物生长、发育和免疫功能的关键方面。尽管对 JA-Ile 生物合成途径有详细的了解,但对 JA-Ile 代谢和失活的遗传基础知之甚少。在这里,我们报道了从拟南芥中鉴定出一个与伤口和茉莉酸响应的基因,该基因编码参与 JA-Ile 周转的细胞色素 P450(CYP94B3)。对受伤叶片的代谢物分析表明,cyp94b3 突变体中 CYP94B3 功能的丧失导致 JA-Ile 的过度积累和伴随的 12-羟基-JA-Ile(12OH-JA-Ile)含量降低,而该酶的过表达导致 JA-Ile 的严重耗尽和 12OH-JA-Ile 水平的相应变化。体外研究表明,异源表达的 CYP94B3 将 JA-Ile 转化为 12OH-JA-Ile,并且 12OH-JA-Ile 比 JA-Ile 更有效地促进 COI1-JAZ 受体复合物的形成。CYP94B3 过表达植物表现出 JA-Ile 缺乏的表型,包括雄性育性缺陷、对茉莉酸诱导的生长抑制的抗性以及对昆虫攻击的敏感性增加。受伤的 cyp94b3 叶片中 JA-Ile 的积累增加与茉莉酸应答基因的表达增强有关。这些结果表明 CYP94B3 对 JA-Ile 水平施加负反馈控制,并在减弱茉莉酸反应中发挥关键作用。