Department of Plant Science, University of Manitoba, 66 Dafoe Road, Winnipeg, MB R3T 2N2, Canada.
Plant Sci. 2013 Jun;207:79-87. doi: 10.1016/j.plantsci.2013.03.004. Epub 2013 Mar 15.
Hormone signaling crosstalk plays a major role in plant defense against a wide range of both biotic and abiotic stresses. While many reviews on plant-microbe interactions have well described the general trends of signaling pathways in shaping host responses to pathogens, few discussions have considered a synthesis of positive versus negative interactions among such pathways, or variations in the signaling molecules themselves. This review deals with the interaction trends between salicylic, jasmonic, and abscisic acids in the signaling pathways, as well as exceptions to such trends. Here we focused on antagonistic versus cooperative interactions between salicylic and jasmonic acids, two major disease resistance signaling molecules, and some interactions with abscisic acid, a known abiotic stress hormone, and another player in plant defense mechanisms. We provide a set of examples materializing either antagonism or cooperation for each interaction between two pathways, thereby showing the trends and pinpointing the exceptions. Such analyses are practical for researchers working on the subject and essential for a better exploitation of the data already available in plant disease resistance signaling, both in Arabidopsis and crop species, toward the development of better disease management strategies for economically important crops.
激素信号转导在植物抵御广泛的生物和非生物胁迫中起着重要作用。虽然许多关于植物-微生物相互作用的综述很好地描述了信号通路在塑造宿主对病原体的反应方面的一般趋势,但很少有讨论考虑到这些通路之间的正相互作用与负相互作用的综合,或信号分子本身的变化。本文综述了信号通路中水杨酸、茉莉酸和脱落酸之间的相互作用趋势,以及这些趋势的例外情况。在这里,我们重点关注两种主要的抗病信号分子水杨酸和茉莉酸之间的拮抗和协同相互作用,以及与已知的非生物胁迫激素脱落酸和植物防御机制中的另一个参与者的一些相互作用。我们为两条通路之间的每一种相互作用提供了一组体现拮抗或协同作用的实例,从而展示了趋势和指出了例外。这些分析对于从事该领域研究的研究人员来说是实用的,对于更好地利用已有的植物抗病信号转导数据也是必要的,无论是在拟南芥还是作物物种中,都有助于为经济上重要的作物开发更好的病害管理策略。