Yang Jingli, Song Jinnan, Jeong Byoung Ryong
Department of Horticulture, Division of Applied Life Science (BK21 Four), Graduate School of Gyeongsang National University, Jinju 52828, Korea.
Institute of Agriculture and Life Science, Gyeongsang National University, Jinju 52828, Korea.
Int J Mol Sci. 2022 Mar 24;23(7):3543. doi: 10.3390/ijms23073543.
Plant disease and insect pests are major limiting factors that reduce crop production worldwide. The ornamental indoor cultivation cash crop dwarf coffee 'Pacas' is also troubled by these issues. Silicon (Si) is one of the most abundant elements in the lithosphere and positively impacts plant health by effectively mitigating biotic and abiotic stresses. Several studies have shown that Si activates plant defense systems, although the specific nature of the involvement of Si in biochemical processes that lead to resistance is unclear. In our study, Si significantly promoted the growth and development of dwarf coffee seedlings grown in plant growth chambers. More than that, through natural infection, Si suppressed disease and insect pests by improving physiology (e.g., the strong development of the internal structures of roots, stems, and leaves; higher photosynthetic efficiency; more abundant organic matter accumulation; the promotion of root activity; the efficient absorption and transfer of mineral elements; and various activated enzymes) and up-regulating defense genes ( and ). Overall, in agriculture, Si may potentially contribute to global food security and safety by assisting in the creation of enhanced crop types with optimal production as well by mitigating plant disease and insect pests. In this sense, Si is a sustainable alternative in agricultural production.
植物病虫害是降低全球农作物产量的主要限制因素。观赏性室内种植经济作物矮化咖啡“帕卡斯”也受到这些问题的困扰。硅(Si)是岩石圈中含量最丰富的元素之一,通过有效缓解生物和非生物胁迫对植物健康产生积极影响。多项研究表明,硅能激活植物防御系统,尽管硅参与导致抗性的生化过程的具体性质尚不清楚。在我们的研究中,硅显著促进了在植物生长室中生长的矮化咖啡幼苗的生长发育。不仅如此,通过自然感染,硅通过改善生理状况(例如,根、茎和叶内部结构的强劲发育;更高的光合效率;更丰富的有机质积累;根活性的促进;矿质元素的有效吸收和转运;以及各种活化酶)和上调防御基因(和)来抑制病虫害。总体而言,在农业中,硅可能通过协助培育具有最佳产量的改良作物类型以及减轻植物病虫害,对全球粮食安全和保障做出潜在贡献。从这个意义上说,硅是农业生产中的一种可持续替代物。