Norwegian Institute of Bioeconomy Resesarch (NIBIO), Division of Food Production and Society, P.O. Box 115 NO, 1431 Ås, Norway.
Department of Agronomy, Armenian National Agrarian University, Yerevan 0009, Armenia.
Biomolecules. 2021 Aug 27;11(9):1283. doi: 10.3390/biom11091283.
The plant hormone jasmonic acid (JA) fine tunes the growth-defense dilemma by inhibiting plant growth and stimulating the accumulation of secondary compounds. We investigated the interactions between JA and phytochrome B signaling on growth and the accumulation of selected secondary metabolites in L., a medically important plant, by spraying plants with methyl jasmonate (MeJA) and by adding far-red (FR) lighting. MeJA inhibited plant growth, decreased fructose concentration, and enhanced the accumulation of most secondary metabolites. FR enhanced plant growth and starch accumulation and did not decrease the accumulation of most secondary metabolites. MeJA and FR acted mostly independently with no observable interactions on plant growth or secondary metabolite levels. The accumulation of different compounds (e.g., hypericin, flavonols, flavan-3-ols, and phenolic acid) in shoots, roots, and root exudates showed different responses to the two treatments. These findings indicate that the relationship between growth and secondary compound accumulation is specific and depends on the classes of compounds and/or their organ location. The combined application of MeJA and FR enhanced the accumulation of most secondary compounds without compromising plant growth. Thus, the negative correlations between biomass and the content of secondary compounds predicted by the growth-defense dilemma were overcome.
植物激素茉莉酸(JA)通过抑制植物生长和刺激次生化合物的积累来微调生长-防御困境。我们通过喷洒甲基茉莉酸(MeJA)和添加远红(FR)光照来研究 JA 和植物色素 B 信号在生长和选择的次生代谢物积累方面在药用植物 L.中的相互作用。MeJA 抑制植物生长,降低果糖浓度,并增强大多数次生代谢物的积累。FR 促进植物生长和淀粉积累,不会降低大多数次生代谢物的积累。MeJA 和 FR 主要独立作用,对植物生长或次生代谢物水平没有观察到相互作用。不同化合物(如金丝桃素、类黄酮、黄烷-3-醇和酚酸)在芽、根和根分泌物中的积累对两种处理表现出不同的反应。这些发现表明,生长和次生化合物积累之间的关系是特定的,取决于化合物的类别和/或它们的器官位置。MeJA 和 FR 的联合应用增强了大多数次生化合物的积累,而不会损害植物生长。因此,克服了生长-防御困境所预测的生物量与次生化合物含量之间的负相关关系。