Innovation Center of Pesticide Research, Department of Applied Chemistry, College of Science, China Agricultural University, Beijing 100193, China.
J Agric Food Chem. 2020 Sep 16;68(37):9888-9895. doi: 10.1021/acs.jafc.0c03044. Epub 2020 Aug 27.
Increasing the crop quality through enhancement of plant health is a challenging task. In this study, nanoselenium (nano-Se) was sprayed on pepper leaves, and the pepper components were compared to those of selenite. It was found that nano-Se (20 mg/L) resulted in a greater performance of plant health. It increased the chlorophyll and soluble sugar levels, which could activate phenylpropane and branched-chain fatty acid pathways, as well as related enzymes and gene expressions. These led to an enhancement for the synthesis of capsaicinoids, flavonoids, and total phenols. The nano-Se treatment also significantly promoted the expression of phyto-hormones synthesis genes, and consequently increased jasmonic, abscisic, and salicylic acid levels. Proline pathway-related compounds were increased, which could decrease the malondialdehyde and hydroxyl radical levels in crops. This study shows that nano-Se activated capsaicinoid pathways by enhancing photosynthesis and raising soluble sugar levels. The capsaicinoid contents in peppers were then increased, which consequently promoted the accumulation of secondary metabolites and antioxidants.
通过增强植物健康来提高作物质量是一项具有挑战性的任务。在这项研究中,纳米硒(nano-Se)被喷洒在辣椒叶片上,并将辣椒成分与亚硒酸盐进行了比较。结果发现,纳米硒(20mg/L)可显著提高植物健康性能。它增加了叶绿素和可溶性糖的水平,从而激活了苯丙烷和支链脂肪酸途径以及相关的酶和基因表达。这导致了辣椒素、类黄酮和总酚的合成增强。纳米硒处理还显著促进了植物激素合成基因的表达,从而增加了茉莉酸、脱落酸和水杨酸的水平。脯氨酸途径相关化合物增加,可降低作物中丙二醛和羟基自由基的水平。本研究表明,纳米硒通过增强光合作用和提高可溶性糖水平来激活辣椒素途径。因此,辣椒中的辣椒素含量增加,从而促进了次生代谢物和抗氧化剂的积累。