Department of Crop Science, Faculty of Agriculture, University Putra Malaysia, 43400 Serdang, Selangor, Malaysia.
Molecules. 2011 May 4;16(5):3761-77. doi: 10.3390/molecules16053761.
A split plot 3 by 3 experiment was designed to investigate and distinguish the relationships among production of primary metabolites (soluble sugar and starch), secondary metabolites (total phenolics, TP; total flavonoids, TF) and leaf gas exchange of three varieties of the Malaysian medicinal herb Labisia pumila Blume, namely the varieties alata, pumila and lanceolata, under three levels of CO₂ enrichment (400, 800 and 1,200 µmol mol⁻¹) for 15 weeks. The treatment effects were solely contributed by CO₂ enrichment levels; no varietal differences were observed. As CO₂ levels increased from 400 to 1,200 µmol mol⁻¹, the production of carbohydrates also increased steadily, especially for starch more than soluble sugar (sucrose). TF and TP content, simultaneously, reached their peaks under 1,200 µmol exposure, followed by 800 and 400 µmol mol⁻¹. Net photosynthesis (A) and quantum efficiency of photosystem II (f(v)/f(m)) were also enhanced as CO₂ increased from 400 to 1,200 µmol mol⁻¹. Leaf gas exchange characteristics displayed a significant positive relationship with the production of secondary metabolites and carbohydrate contents. The increase in production of TP and TFs were manifested by high C/N ratio and low protein content in L. pumila seedlings, and accompanied by reduction in cholorophyll content that exhibited very significant negative relationships with total soluble sugar, starch and total non structural carbohydrate.
采用裂区 3 乘 3 实验设计,研究并区分了马来西亚药用植物细子龙(Labisia pumila Blume)的 3 个品种(长梗细子龙、细子龙和披针叶细子龙)在 3 种 CO₂浓度(400、800 和 1200 µmol mol⁻¹)下 15 周的初级代谢产物(可溶性糖和淀粉)、次生代谢产物(总酚、TP;总黄酮、TF)的产生与叶片气体交换之间的关系。处理效应仅由 CO₂浓度增加引起;未观察到品种差异。随着 CO₂浓度从 400 增加到 1200 µmol mol⁻¹,碳水化合物的产量也稳步增加,尤其是淀粉多于可溶性糖(蔗糖)。TF 和 TP 含量也在 1200 µmol 暴露下达到峰值,其次是 800 和 400 µmol mol⁻¹。随着 CO₂从 400 增加到 1200 µmol mol⁻¹,净光合速率(A)和光系统 II 的量子效率(f(v)/f(m))也得到了增强。叶片气体交换特性与次生代谢产物和碳水化合物含量的产生呈显著正相关。TP 和 TFs 的产量增加表现为 L. pumila 幼苗的 C/N 比高和蛋白质含量低,伴随着叶绿素含量降低,与总可溶性糖、淀粉和总非结构性碳水化合物呈极显著负相关。