National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, China.
Microelement Research Center, College of Resources & Environment, Huazhong Agricultural University, Wuhan, China.
J Exp Bot. 2021 Apr 2;72(8):3108-3121. doi: 10.1093/jxb/erab041.
Boron (B) is an essential micronutrient for plant growth and development. Jasmonic acid (JA) plays pivotal roles in plant growth, but the underlying molecular mechanism of JA involvement in B-deficiency-induced root growth inhibition is yet to be explored. In this study, we investigated the response of JA to B deficiency and the mechanism of JAR1-dependent JA signaling in root growth inhibition under B deficiency in Arabidopsis. B deficiency enhanced JA signaling in roots, and root growth inhibition was partially restored by JA biosynthesis inhibition. The jar1-1 (jasmonate-resistant 1, JAR1) mutant, and mutants of coronatine-insensitive 1 (coi1-2) and myc2 defective in JA signaling showed insensitivity to B deficiency. The ethylene-overproduction mutant eto1 and ethylene-insensitive mutant etr1 showed sensitivity and insensitivity to B deficiency, respectively, suggesting that ethylene is involved in the inhibition of primary root growth under B deficiency. Furthermore, after a decline in levels of EIN3, which may contribute to root growth, ethylene signaling was weakened in the jar1-1 mutant root under B deficiency. Under B deficiency, B concentrations were increased in the roots and shoots of the jar1-1 mutant, owing to the large root system and its activity. Therefore, our findings revealed that JA, which is involved in the inhibition of root growth under B deficiency, is regulated by JAR1-activated JA and ethylene signaling pathways.
硼(B)是植物生长和发育所必需的微量元素。茉莉酸(JA)在植物生长中起着关键作用,但 JA 参与 B 缺乏诱导的根生长抑制的潜在分子机制尚未得到探索。在这项研究中,我们研究了 JA 对 B 缺乏的反应,以及 JAR1 依赖的 JA 信号在拟南芥 B 缺乏诱导的根生长抑制中的作用机制。B 缺乏增强了根中的 JA 信号,JA 生物合成抑制部分恢复了根生长抑制。jar1-1(茉莉酸抗性 1,JAR1)突变体,以及 coronatine-insensitive 1(coi1-2)和 myc2 突变体,这些突变体在 JA 信号中缺失功能,对 B 缺乏表现出不敏感。乙烯过生产突变体 eto1 和乙烯不敏感突变体 etr1 对 B 缺乏分别表现出敏感性和不敏感性,这表明乙烯参与了 B 缺乏下主根生长的抑制。此外,在 EIN3 水平下降后,EIN3 可能有助于根生长,在 B 缺乏下,jar1-1 突变体根中的乙烯信号减弱。在 B 缺乏下,jar1-1 突变体的根和地上部分的 B 浓度增加,这归因于其庞大的根系及其活性。因此,我们的研究结果表明,JA 参与了 B 缺乏诱导的根生长抑制,JA 信号通路被 JAR1 激活的 JA 和乙烯信号通路调节。