RIKEN Plant Science Center, Yokohama, Kanagawa 230-0045, Japan.
Plant Cell. 2011 Jun;23(6):2169-83. doi: 10.1105/tpc.111.087395. Epub 2011 Jun 30.
Cytokinins (CKs) regulate plant growth and development via a complex network of CK signaling. Here, we perform functional analyses with CK-deficient plants to provide direct evidence that CKs negatively regulate salt and drought stress signaling. All CK-deficient plants with reduced levels of various CKs exhibited a strong stress-tolerant phenotype that was associated with increased cell membrane integrity and abscisic acid (ABA) hypersensitivity rather than stomatal density and ABA-mediated stomatal closure. Expression of the Arabidopsis thaliana ISOPENTENYL-TRANSFERASE genes involved in the biosynthesis of bioactive CKs and the majority of the Arabidopsis CYTOKININ OXIDASES/DEHYDROGENASES genes was repressed by stress and ABA treatments, leading to a decrease in biologically active CK contents. These results demonstrate a novel mechanism for survival under abiotic stress conditions via the homeostatic regulation of steady state CK levels. Additionally, under normal conditions, although CK deficiency increased the sensitivity of plants to exogenous ABA, it caused a downregulation of key ABA biosynthetic genes, leading to a significant reduction in endogenous ABA levels in CK-deficient plants relative to the wild type. Taken together, this study provides direct evidence that mutual regulation mechanisms exist between the CK and ABA metabolism and signals underlying different processes regulating plant adaptation to stressors as well as plant growth and development.
细胞分裂素(CKs)通过 CK 信号的复杂网络调节植物的生长和发育。在这里,我们通过 CK 缺陷型植物进行功能分析,为 CK 负调控盐和干旱胁迫信号提供了直接证据。各种 CK 水平降低的 CK 缺陷型植物均表现出强烈的耐逆表型,这与细胞膜完整性增加和脱落酸(ABA)超敏性有关,而与气孔密度和 ABA 介导的气孔关闭无关。参与生物活性 CK 生物合成的拟南芥 ISOPENTENYL-TRANSFERASE 基因和大多数拟南芥 CYTOKININ OXIDASES/DEHYDROGENASES 基因的表达受胁迫和 ABA 处理的抑制,导致生物活性 CK 含量降低。这些结果表明,通过稳态 CK 水平的同源调节,存在一种在非生物胁迫条件下生存的新机制。此外,在正常条件下,尽管 CK 缺乏增加了植物对外源 ABA 的敏感性,但它导致关键的 ABA 生物合成基因下调,导致 CK 缺陷型植物相对于野生型植物内源 ABA 水平显著降低。综上所述,本研究为 CK 和 ABA 代谢以及调节植物适应胁迫以及生长和发育的不同过程的信号之间存在相互调节机制提供了直接证据。