Jia Yanxia, Li Weiqi
Germplasm Bank of Wild Species, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, Yunnan, People's Republic of China.
Plant Divers. 2018 Nov 27;40(6):292-298. doi: 10.1016/j.pld.2018.11.002. eCollection 2018 Dec.
Storage oil breakdown plays an important role in the life cycle of many plants by providing the carbon skeletons that support seedling growth immediately following germination. 1-Butanol, a specific inhibitor of phospholipase D (PLD)-dependent production of the signalling molecule phosphatidic acid (PA), inhibited seed germination. N-Acylethanolamines (NAEs), which have been shown to inhibits PLDα1 activity, have no effect on seed germination. However, mobilization profile of triacylglycerols (TAG) that induced by each compound has not been reported. To gain deeper insights into the mode of mobilization of TAG during NAE 12:0 or 1-butanol treatment, we conducted a detailed comparative analysis of the effect of NAE 12:0, DMSO, 1-butanol and -butanol on seed germination and fatty acid composition, -butanol and DMSO served as the corresponding controls treatment respectively. Our data show that 1-butanol, but not the inactive -butanol isomer, inhibited seed germination, which is accompanied by a with retardation of the mobilization of triacylglycerols (TAG). In contrast, NAE 12:0 did not affect mobilization of TAG, nor did it significantly delay seed germination as monitored by radicle and cotyledon emergence. 1-Butanol induced RNA degradation in seeds and seedlings. We speculate that the large-scale degradation of RNA under the induction of 1-butanol may lead to abnormal gene expression in genes necessary for seed germination, including the genes needed for the mobilization of oil bodies, and thus cause a delay of seed germination. To the best of our knowledge, we report for the first time that 1-butanol delays the mobilization of TAG.
贮藏油的分解在许多植物的生命周期中起着重要作用,它提供了碳骨架,支持种子萌发后幼苗的生长。1-丁醇是磷脂酶D(PLD)依赖性信号分子磷脂酸(PA)产生的特异性抑制剂,可抑制种子萌发。已证明N-酰基乙醇胺(NAEs)可抑制PLDα1活性,但对种子萌发没有影响。然而,每种化合物诱导的三酰甘油(TAG)的动员情况尚未见报道。为了更深入地了解NAE 12:0或1-丁醇处理期间TAG的动员模式,我们对NAE 12:0、二甲基亚砜(DMSO)、1-丁醇和异丁醇对种子萌发和脂肪酸组成的影响进行了详细的比较分析,异丁醇和DMSO分别作为相应的对照处理。我们的数据表明,1-丁醇而非无活性的异丁醇异构体抑制了种子萌发,同时伴随着三酰甘油(TAG)动员的延迟。相比之下,NAE 12:0不影响TAG的动员,也没有显著延迟通过胚根和子叶出现监测的种子萌发。1-丁醇诱导种子和幼苗中的RNA降解。我们推测,在1-丁醇诱导下RNA的大规模降解可能导致种子萌发所需基因的异常表达,包括油体动员所需的基因,从而导致种子萌发延迟。据我们所知,我们首次报道1-丁醇延迟了TAG的动员。