Wen Xin, Xu Peiran, Tang Yafang, Zhong Hang, Chen Pan, Zhu Zhenhao, Zhang Xinya, Zhang Xiaohui, Du Aoran
Zhejiang Ecological Civilization Academy, Anji, Zhejiang, China.
College of Environmental and Resource Sciences, Zhejiang University, Hangzhou, Zhejiang, China.
Front Plant Sci. 2024 Sep 25;15:1427720. doi: 10.3389/fpls.2024.1427720. eCollection 2024.
Improving vegetable yield and optimizing its quality through nutrient management have long been central to plant nutrition and horticultural science. Copper (Cu) is recognized as an essential trace element that promotes plant growth and development. However, the mechanisms by which Cu influences nitrogen (N) metabolism remain largely unknown, with limited studies exploring the interaction between Cu and varying nitrate-to-ammonium (nitrate/ammonium) ratios. In this study, Chinese cabbage was exposed to two Cu concentrations (0 and 0.02 mg L) in combination with three nitrate/ammonium ratios (10/90, 50/50, and 90/10) under hydroponic conditions. The results showed that Cu application increased plant biomass, nitrate reductase (NR) and glutamine synthetase (GS) enzyme activities, the expression of NR () and GS2 () genes, and N content in both shoots and roots. Additionally, Cu treatment decreased nitrate and free amino acid contents, as well as the expression of nitrate transporters and in roots while increasing these four parameters in shoots. Additionally, these effects were significantly modulated by the nitrate/ammonium ratios. In conclusion, Cu may facilitate nitrate transportation, enhance nitrate reduction, promote ammonium assimilation, and influence the transformation of organic N compounds, highlighting its potential role in improving N metabolism in Chinese cabbage.
通过养分管理提高蔬菜产量并优化其品质长期以来一直是植物营养和园艺科学的核心。铜(Cu)是一种促进植物生长发育的必需微量元素。然而,铜影响氮(N)代谢的机制在很大程度上仍不清楚,探索铜与不同硝态氮与铵态氮(硝酸盐/铵)比例之间相互作用的研究有限。在本研究中,在水培条件下,将大白菜暴露于两种铜浓度(0和0.02 mg/L)与三种硝酸盐/铵比例(10/90、50/50和90/10)组合的环境中。结果表明,施用铜增加了植物生物量、硝酸还原酶(NR)和谷氨酰胺合成酶(GS)的酶活性、NR()和GS2()基因的表达以及地上部和根部的氮含量。此外,铜处理降低了硝酸盐和游离氨基酸含量,以及根部硝酸盐转运蛋白和的表达,同时增加了地上部这四个参数。此外,这些效应受到硝酸盐/铵比例的显著调节。总之,铜可能促进硝酸盐运输、增强硝酸盐还原、促进铵同化并影响有机氮化合物的转化,突出了其在改善大白菜氮代谢中的潜在作用。