Böttcher Christine, Pollmann Stephan
CSIRO Plant Industry, Adelaide, Australia.
FEBS J. 2009 Sep;276(17):4693-704. doi: 10.1111/j.1742-4658.2009.07195.x. Epub 2009 Aug 3.
One of the most challenging questions in modern plant science is how plants regulate their morphological and developmental adaptation in response to changes in their biotic and abiotic environment. A comprehensive elucidation of the underlying mechanisms will help shed light on the extremely efficient strategies of plants in terms of survival and propagation. In recent years, a number of environmental stress conditions have been described as being mediated by signaling molecules of the oxylipin family. In this context, jasmonic acid, its biosynthetic precursor, 12-oxo-phytodienoic acid (OPDA), and also reactive electrophilic species such as phytoprostanes play pivotal roles. Although our understanding of jasmonic acid-dependent processes and jasmonic acid signal-transduction cascades has made considerable progress in recent years, knowledge of the regulation and mode of action of OPDA-dependent plant responses is just emerging. This minireview focuses on recent work concerned with the elucidation of OPDA-specific processes in plants. In this context, aspects such as the differential recruitment of OPDA, either by de novo biosynthesis or by release from cyclo-oxylipin-galactolipids, and the conjugation of free OPDA are discussed.
现代植物科学中最具挑战性的问题之一是植物如何响应其生物和非生物环境的变化来调节自身的形态和发育适应。全面阐明其潜在机制将有助于揭示植物在生存和繁殖方面极其高效的策略。近年来,许多环境胁迫条件被描述为由氧脂素家族的信号分子介导。在这种情况下,茉莉酸、其生物合成前体12-氧代植物二烯酸(OPDA)以及诸如植物前列腺素等活性亲电物质发挥着关键作用。尽管近年来我们对茉莉酸依赖性过程和茉莉酸信号转导级联的理解取得了相当大的进展,但关于OPDA依赖性植物反应的调控和作用模式的知识才刚刚出现。这篇小型综述聚焦于近年来有关阐明植物中OPDA特异性过程的研究工作。在此背景下,讨论了诸如通过从头生物合成或从环氧化脂-半乳糖脂中释放来差异募集OPDA以及游离OPDA的共轭等方面。