The tea plant [Camellia sinensis (L.) O. Kuntze] is a species with a high concentration of fluorine in its leaves, especially in the mature leaves. The physiological mechanisms for fluorine absorption and accumulation have been well studied, but the related molecular mechanisms are poorly understood in the tea plant. In this study, transcriptome analysis by RNA-Seq following exposure to 16 mg/L of fluorine for 0, 3, 6, and 24 h was performed to identify the candidate genes involved in the transmembrane transportation of fluorine. More than 1.23 billion high-quality reads were generated, and 259.84 million unigenes were assembled de novo, with 518 216 of them being annotated in the seven databases used. Meanwhile, a large number of transport...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
Tea (Camellia sinensis L.) is a perennial woody plant that is widely cultivated to produce a popular...
Tea (Camellia sinensis L.) contains abundant secondary metabolites, which are regulated by numerous ...
The tea plant [Camellia sinensis (L.) O. Kuntze] is a species with a high concentration of fluorine ...
Tea (Camellia sinensis (L.) O. Kuntze), one of the main crops in China, is high in various bioactive...
<div><p>Tea plant (<i>Camellia sinensis</i>) has strong enrichment ability for selenium (Se). Seleni...
Tea plant (Camellia sinensis) has strong enrichment ability for selenium (Se). Selenite is the main ...
Small RNAs play important roles in plant development, metabolism, signal transduction and responses...
Background: Tea is the most popular non-alcoholic health beverage in the world. The tea plant (Camel...
Flavonoids, including flavonol derivatives, are the main astringent compounds of tea and are benefic...
Tea plant (Camellia sinensis) is an economically important beverage crop. Drought stress (DS) seriou...
<div><p>Tea plant (<i>Camellia sinensis</i> (L) O. Kuntze) respond to herbivore attack through large...
Tea plant (Camellia sinensis (L) O. Kuntze) respond to herbivore attack through large changes in def...
Background: Major secondary metabolites, including flavonoids, caffeine, and theanine, are important...
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 (Camellia sinensis L.) is a perennial woody plant that is widely cultivated to produce a popular...
Tea (Camellia sinensis L.) contains abundant secondary metabolites, which are regulated by numerous ...
The tea plant [Camellia sinensis (L.) O. Kuntze] is a species with a high concentration of fluorine ...
Tea (Camellia sinensis (L.) O. Kuntze), one of the main crops in China, is high in various bioactive...
<div><p>Tea plant (<i>Camellia sinensis</i>) has strong enrichment ability for selenium (Se). Seleni...
Tea plant (Camellia sinensis) has strong enrichment ability for selenium (Se). Selenite is the main ...
Small RNAs play important roles in plant development, metabolism, signal transduction and responses...
Background: Tea is the most popular non-alcoholic health beverage in the world. The tea plant (Camel...
Flavonoids, including flavonol derivatives, are the main astringent compounds of tea and are benefic...
Tea plant (Camellia sinensis) is an economically important beverage crop. Drought stress (DS) seriou...
<div><p>Tea plant (<i>Camellia sinensis</i> (L) O. Kuntze) respond to herbivore attack through large...
Tea plant (Camellia sinensis (L) O. Kuntze) respond to herbivore attack through large changes in def...
Background: Major secondary metabolites, including flavonoids, caffeine, and theanine, are important...
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 (Camellia sinensis L.) is a perennial woody plant that is widely cultivated to produce a popular...
Tea (Camellia sinensis L.) contains abundant secondary metabolites, which are regulated by numerous ...