The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regulate its growth is not well understood. The current study focused on the effects of NH4+ on tea plants. Transcriptomic analysis was performed to investigate the early- and late-stage NH4+ deprivation and resupply in tea plants shoots. Through short- and long-term NH4+ deficiency, the dynamic response to NH4+ stress was investigated. The most significant effects of NH4+ deficiency were found to be on photosynthesis and gene ontology (GO) enrichment varied with the length of NH4+ deprivation. Enriched KEGG pathways were also different when NH4+ was resupplied at different concentrations which may indicate reasons for tolerance of high NH4+ conce...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Ammonium (NH4+), as a major inorganic source of nitrogen (N) for tea plant growth, is transported an...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
Tea plant (Camellia sinensis) is an economically important beverage crop. Drought stress (DS) seriou...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
The flowers of tea plants (Camellia sinensis), as well as tea leaves, contain abundant secondary met...
Abstract Background Nitrogen (N) fertilizer is commonly considered as one of the most important limi...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Tea-specialized metabolites contribute to rich flavors and healthy function of tea. Their accumulati...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Tea-specialized metabolites contribute to rich flavors and healthy function of tea. Their accumulati...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Ammonium (NH4+), as a major inorganic source of nitrogen (N) for tea plant growth, is transported an...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
Tea plant (Camellia sinensis) is an economically important beverage crop. Drought stress (DS) seriou...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
The flowers of tea plants (Camellia sinensis), as well as tea leaves, contain abundant secondary met...
Abstract Background Nitrogen (N) fertilizer is commonly considered as one of the most important limi...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Tea-specialized metabolites contribute to rich flavors and healthy function of tea. Their accumulati...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Tea-specialized metabolites contribute to rich flavors and healthy function of tea. Their accumulati...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Tea (Camellia sinensis) is one of the significant cash crops in China. As a leaf crop, nitrogen supp...
Ammonium (NH4+), as a major inorganic source of nitrogen (N) for tea plant growth, is transported an...