URGV Plant Genomics, INRA-CNRS-UEVE, Saclay Plant Sciences, 2 rue Gaston Cremieux, 91000 Evry, France.
Biotechnol Adv. 2014 Jan-Feb;32(1):40-52. doi: 10.1016/j.biotechadv.2013.09.006. Epub 2013 Oct 1.
As sessile organisms, plants have developed specific mechanisms that allow them to rapidly perceive and respond to stresses in the environment. Among the evolutionarily conserved pathways, the ABA (abscisic acid) signaling pathway has been identified as a central regulator of abiotic stress response in plants, triggering major changes in gene expression and adaptive physiological responses. ABA induces protein kinases of the SnRK family to mediate a number of its responses. Recently, MAPK (mitogen activated protein kinase) cascades have also been shown to be implicated in ABA signaling. Therefore, besides discussing the role of ABA in abiotic stress signaling, we will also summarize the evidence for a role of MAPKs in the context of abiotic stress and ABA signaling.
作为固着生物,植物已经发展出特定的机制,使它们能够快速感知和响应环境中的压力。在进化上保守的途径中,ABA(脱落酸)信号途径已被确定为植物中应对非生物胁迫的中央调节剂,引发基因表达和适应性生理反应的重大变化。ABA 诱导 SnRK 家族的蛋白激酶来介导其许多反应。最近,MAPK(丝裂原激活蛋白激酶)级联反应也被证明与 ABA 信号有关。因此,除了讨论 ABA 在非生物胁迫信号中的作用外,我们还将总结 MAPK 在非生物胁迫和 ABA 信号背景下的作用证据。