Sime Darby Technology Centre, Lebuh Silikon, Universiti Putra Malaysia, Serdang, Selangor, Malaysia.
PLoS One. 2013 Apr 11;8(4):e61344. doi: 10.1371/journal.pone.0061344. Print 2013.
To better understand lipid biosynthesis in oil palm mesocarp, in particular the differences in gene regulation leading to and including de novo fatty acid biosynthesis, a multi-platform metabolomics technology was used to profile mesocarp metabolites during six critical stages of fruit development in comparatively high- and low-yielding oil palm populations. Significantly higher amino acid levels preceding lipid biosynthesis and nucleosides during lipid biosynthesis were observed in a higher yielding commercial palm population. Levels of metabolites involved in glycolysis revealed interesting divergence of flux towards glycerol-3-phosphate, while carbon utilization differences in the TCA cycle were proven by an increase in malic acid/citric acid ratio. Apart from insights into the regulation of enhanced lipid production in oil palm, these results provide potentially useful metabolite yield markers and genes of interest for use in breeding programmes.
为了更好地了解油棕中胚乳的脂质生物合成,特别是导致从头脂肪酸生物合成的基因调控差异,在比较高产和低产油棕种群中,使用多平台代谢组学技术对果实发育的六个关键阶段的中胚乳代谢物进行了分析。在一个更高产的商业棕榈种群中,在脂质生物合成之前和脂质生物合成过程中,氨基酸水平和核苷水平显著升高。糖酵解过程中代谢物水平的差异表明,甘油-3-磷酸的流量有有趣的差异,而三羧酸循环中的碳利用差异则通过增加苹果酸/柠檬酸的比值得到证实。除了深入了解油棕中增强脂质生产的调控机制外,这些结果还为选育计划提供了潜在有用的代谢物产量标记和感兴趣的基因。