The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Midreshet Ben-Gurion, Israel.
PLoS One. 2013 Sep 3;8(9):e73061. doi: 10.1371/journal.pone.0073061. eCollection 2013.
The interplay of processes in central and specialized metabolisms during seed development of Nigella sativa L. was studied by using a high-throughput metabolomics technology and network-based analysis. Two major metabolic shifts were identified during seed development: the first was characterized by the accumulation of storage lipids (estimated as total fatty acids) and N-compounds, and the second by the biosynthesis of volatile organic compounds (VOCs) and a 30% average decrease in total fatty acids. Network-based analysis identified coordinated metabolic processes during development and demonstrated the presence of five network communities. Enrichment analysis indicated that different compound classes, such as sugars, amino acids, and fatty acids, are largely separated and over-represented in certain communities. One community displayed several terpenoids and the central metabolites, shikimate derived amino acids, raffinose, xylitol and glycerol-3-phosphate. The latter are related to precursors of the mevalonate-independent pathway for VOC production in the plastid; also plastidial fatty acid 18∶3n-3 abundant in "green" seeds grouped with several major terpenes. The findings highlight the interplay between the components of central metabolism and the VOCs. The developmental regulation of Nigella seed metabolism during seed maturation suggests a substantial re-allocation of carbon from the breakdown of fatty acids and from N-compounds, probably towards the biosynthesis of VOCs.
利用高通量代谢组学技术和基于网络的分析方法研究了黑种草种子发育过程中中心代谢和专门代谢过程的相互作用。在种子发育过程中确定了两个主要的代谢转变:第一个特征是储存脂质(估计为总脂肪酸)和 N 化合物的积累,第二个特征是挥发性有机化合物(VOC)的生物合成和总脂肪酸平均下降 30%。基于网络的分析确定了发育过程中协调的代谢过程,并证明了存在五个网络社区。富集分析表明,不同的化合物类别,如糖、氨基酸和脂肪酸,在某些社区中大量分离且过度表达。一个社区显示了几种萜类化合物和中心代谢物,莽草酸衍生的氨基酸、棉子糖、木糖醇和甘油-3-磷酸。后者与质体中非甲羟戊酸途径生产 VOC 的前体有关;在“绿色”种子中丰富的质体脂肪酸 18∶3n-3 与几种主要萜类化合物一起分组。研究结果强调了中心代谢物和 VOC 之间的相互作用。在种子成熟过程中,黑种草种子代谢的发育调控表明,碳的大量再分配来自脂肪酸和 N 化合物的分解,可能朝向 VOC 的生物合成。