School of Science, Mae Fah Luang University, 333 moo 1, Thasud, Muang, ChiangRai, 57100, Thailand.
Plant Physiol Biochem. 2018 Jun;127:276-286. doi: 10.1016/j.plaphy.2018.03.035. Epub 2018 Apr 3.
Jatropha seeds can be used to produce high-quality biodiesel due to their high oil content. However, Jatropha produces low numbers of female flowers, which limits seed yield. Paclobutrazol (PCB), a plant growth retardant, can increase number of Jatropha female flowers and seed yield. However, the underlying mechanisms of flower development after PCB treatment are not well understood. To identify the critical genes associated with flower development, the transcriptome of flower buds following PCB treatment was analyzed. Scanning Electron Microscope (SEM) analysis revealed that the flower developmental stage between PCB-treated and control flower buds was similar. Based on the presence of sex organs, flower buds at 0, 4, and 24 h after treatment were chosen for global transcriptome analysis. In total, 100,597 unigenes were obtained, 174 of which were deemed as interesting based on their response to PCB treatment. Our analysis showed that the JcCKX5 and JcTSO1 genes were up-regulated at 4 h, suggesting roles in promoting organogenic capacity and ovule primordia formation in Jatropha. The JcNPGR2, JcMGP2-3, and JcHUA1 genes were down-regulated indicating that they may contribute to increased number of female flowers and amount of seed yield. Expression of cell division and cellulose biosynthesis-related genes, including JcGASA3, JcCycB3;1, JcCycP2;1, JcKNAT7, and JcCSLG3 was decreased, which might have caused the compacted inflorescences. This study represents the first report combining SEM-based morphology, qRT-PCR and transcriptome analysis of PCB-treated Jatropha flower buds at different stages of flower development.
麻疯树种子因其含油量高,可用于生产高质量的生物柴油。然而,麻疯树产生的雌花数量较少,限制了种子产量。多效唑(PCB)是一种植物生长延缓剂,能增加麻疯树雌花数量和种子产量。然而,PCB 处理后花发育的潜在机制尚不清楚。为了鉴定与花发育相关的关键基因,对 PCB 处理后花芽的转录组进行了分析。扫描电子显微镜(SEM)分析表明,PCB 处理和对照花芽的花发育阶段相似。基于性器官的存在,选择处理后 0、4 和 24 小时的花芽进行全转录组分析。共获得 100597 个 unigenes,其中 174 个被认为是有趣的,因为它们对 PCB 处理有反应。我们的分析表明,JcCKX5 和 JcTSO1 基因在 4 小时上调,表明在促进麻疯树器官发生能力和胚珠原基形成方面发挥作用。JcNPGR2、JcMGP2-3 和 JcHUA1 基因下调表明,它们可能有助于增加雌花数量和种子产量。细胞分裂和纤维素生物合成相关基因,包括 JcGASA3、JcCycB3;1、JcCycP2;1、JcKNAT7 和 JcCSLG3 的表达降低,这可能导致了密集的花序。本研究首次报道了结合 SEM 形态学、qRT-PCR 和不同花发育阶段 PCB 处理麻疯树花芽的转录组分析。