UPMC Univ Paris 06, UR 5, Laboratoire de Physiologie Cellulaire et Moléculaire des Plantes, F-75252, Paris, France and CNRS, EAC 7180, Laboratoire de Physiologie Cellulaire et Moléculaire des Plantes, F-75252, Paris, France.
UMR INRA 1165-CNRS 8114-UEVE, Unité de Recherche en Génomique Végétale (URGV), 2, rue Gaston Crémieux, CP5708, F-91057 Evry Cedex, France.
New Phytol. 2012 Apr;194(1):181-191. doi: 10.1111/j.1469-8137.2011.04017.x. Epub 2012 Jan 11.
• Long-chain bases (LCBs) are pleiotropic sphingolipidic signals in eukaryotes. We investigated the source and function of phytosphingosine-1-phosphate (PHS-P), a phospho-LCB rapidly and transiently formed in Arabidopsis thaliana on chilling. • PHS-P was analysed by thin-layer chromatography following in vivo metabolic radiolabelling. Pharmacological and genetic approaches were used to identify the sphingosine kinase isoforms involved in cold-responsive PHS-P synthesis. Gene expression, mitogen-activated protein kinase activation and growth phenotypes of three LCB kinase mutants (lcbk1, sphk1 and lcbk2) were studied following cold exposure. • Chilling provoked the rapid and transient formation of PHS-P in Arabidopsis cultured cells and plantlets. Cold-evoked PHS-P synthesis was reduced by LCB kinase inhibitors and abolished in the LCB kinase lcbk2 mutant, but not in lcbk1 and sphk1 mutants. lcbk2 presented a constitutive AtMPK6 activation at 22°C. AtMPK6 activation was also triggered by PHS-P treatment independently of PHS/PHS-P balance. lcbk2 mutants grew comparably with wild-type plants at 22 and 4°C, but exhibited a higher root growth at 12°C, correlated with an altered expression of the cold-responsive DELLA gene RGL3. • Together, our data indicate a function for LCBK2 in planta. Furthermore, they connect PHS-P formation with plant response to cold, expanding the field of LCB signalling in plants.
• 长链碱基 (LCB) 是真核生物中的多效性神经酰胺信号。我们研究了植物神经鞘氨醇-1-磷酸 (PHS-P) 的来源和功能,这是一种在拟南芥中迅速和短暂形成的磷酸化 LCB,对冷胁迫有反应。• 通过体内代谢放射性标记后,用薄层色谱法分析 PHS-P。采用药理学和遗传学方法来鉴定参与冷响应 PHS-P 合成的神经鞘氨醇激酶同工型。研究了三个 LCB 激酶突变体(lcbk1、sphk1 和 lcbk2)在冷暴露后基因表达、丝裂原活化蛋白激酶(MAPK)的激活和生长表型。• 冷胁迫会在培养的拟南芥细胞和幼苗中迅速且短暂地形成 PHS-P。LCB 激酶抑制剂可降低冷诱发的 PHS-P 合成,而在 LCB 激酶 lcbk2 突变体中则消除了这种作用,但在 lcbk1 和 sphk1 突变体中则不然。lcbk2 在 22°C 时表现出持续的 AtMPK6 激活。AtMPK6 的激活也可由 PHS-P 处理触发,而与 PHS/PHS-P 平衡无关。lcbk2 突变体在 22°C 和 4°C 时与野生型植物生长相当,但在 12°C 时根生长更高,这与冷响应 DELLA 基因 RGL3 的表达改变有关。• 综上所述,我们的数据表明 LCBK2 在植物中有功能。此外,它们将 PHS-P 的形成与植物对冷的反应联系起来,扩展了植物中 LCB 信号的领域。