Institute of Sciences of Food Production C.N.R. Unit of Lecce, via Monteroni, 73100 Lecce, Italy.
Plant Cell Rep. 2013 Jul;32(7):1085-98. doi: 10.1007/s00299-013-1441-2. Epub 2013 Apr 13.
Plants frequently live in environments characterized by the presence of simultaneous and different stresses. The intricate and finely tuned molecular mechanisms activated by plants in response to abiotic and biotic environmental factors are not well understood, and less is known about the integrative signals and convergence points activated by plants in response to multiple (a)biotic stresses. Phytohormones play a key role in plant development and response to (a)biotic stresses. Among these, one of the most important signaling molecules is an oxylipin, the plant hormone jasmonic acid. Oxylipins are derived from oxygenation of polyunsaturated fatty acids. Jasmonic acid and its volatile derivative methyl jasmonate have been considered for a long time to be the bioactive forms due to their physiological effects and abundance in the plant. However, more recent studies showed unambiguously that they are only precursors of the active forms represented by some amino acid conjugates. Upon developmental or environmental stimuli, jasmonates are synthesized and accumulate transiently. Upon perception, jasmonate signal transduction process is finely tuned by a complex mechanism comprising specific repressor proteins which in turn control a number of transcription factors regulating the expression of jasmonate responsive genes. We discuss the latest discoveries about the role of jasmonates in plants resistance mechanism against biotic and abiotic stresses. Finally, the deep interplay of different phytohormones in stresses signaling will be also discussed.
植物经常生活在同时存在不同压力的环境中。植物对生物和非生物环境因素的反应所激活的复杂而精细的分子机制还不太清楚,而对于植物对多种(生物和非生物)胁迫的反应所激活的综合信号和汇聚点知之甚少。植物激素在植物发育和对(生物和非生物)胁迫的反应中起着关键作用。在这些激素中,最重要的信号分子之一是脂氧素,植物激素茉莉酸。脂氧素是从多不饱和脂肪酸的氧化衍生而来的。由于其生理作用和在植物中的丰度,茉莉酸及其挥发性衍生物甲基茉莉酸长期以来一直被认为是生物活性形式。然而,最近的研究明确表明,它们只是一些氨基酸缀合物所代表的活性形式的前体。在发育或环境刺激下,茉莉酸会被合成并短暂积累。在感知后,茉莉酸信号转导过程通过一个复杂的机制进行精细调节,该机制包括特定的抑制蛋白,它们反过来控制许多转录因子,调节茉莉酸应答基因的表达。我们将讨论关于茉莉酸在植物对生物和非生物胁迫的抗性机制中的作用的最新发现。最后,还将讨论不同植物激素在应激信号中的深层相互作用。