De Bigault Du Granrut Antoine, Cacas Jean-Luc
UMR1318 Institut National de la Recherche Agronomique-AgroParisTech, Centre Institut National de la Recherche Agronomique de Versailles-Grignon, Institut Jean-Pierre Bourgin Versailles, France.
UMR1318 Institut National de la Recherche Agronomique-AgroParisTech, Centre Institut National de la Recherche Agronomique de Versailles-Grignon, Institut Jean-Pierre BourginVersailles, France; Département Sciences de la Vie et Santé, AgroParisTech, UFR de Physiologie VégétaleParis, France.
Front Plant Sci. 2016 Oct 18;7:1490. doi: 10.3389/fpls.2016.01490. eCollection 2016.
Although encountered in minor amounts in plant cells, very-long-chain fatty acids exert crucial functions in developmental processes. When their levels are perturbed by means of genetic approaches, marked phenotypic consequences that range from severe growth retardation to embryo lethality was indeed reported. More recently, a growing body of findings has also accumulated that points to a potential role for these lipids as signals in governing both biotic and abiotic stress outcomes. In the present work, we discuss the latter theory and explore the ins and outs of very-long-chain fatty acid-based signaling in response to stress, with an attempt to reconcile two supposedly antagonistic parameters: the insoluble nature of fatty acids and their signaling function. To explain this apparent dilemma, we provide new interpretations of pre-existing data based on the fact that sphingolipids are the main reservoir of very-long-chain fatty acids in leaves. Thus, three non-exclusive, molecular scenarii that involve these lipids as membrane-embedded and free entities are proposed.
尽管在植物细胞中含量较少,但超长链脂肪酸在发育过程中发挥着关键作用。当通过遗传方法扰乱其水平时,确实有报道称会出现从严重生长迟缓到胚胎致死等明显的表型后果。最近,越来越多的研究结果也表明,这些脂质在控制生物和非生物胁迫结果方面可能作为信号发挥作用。在本工作中,我们讨论后一种理论,并探索超长链脂肪酸信号在应激反应中的来龙去脉,试图调和两个看似相互矛盾的参数:脂肪酸的不溶性及其信号功能。为了解释这一明显的困境,我们基于鞘脂是叶片中超长链脂肪酸的主要储存库这一事实,对现有数据提供了新的解释。因此,提出了三种非排他性的分子情景,其中涉及这些脂质作为膜嵌入和游离实体。