Cinnamate 4-hydroxylase (C4H), a cytochrome P450-dependent monooxygenase, participates in the synthesis of numerous polyphenoid compounds, such as flavonoids and lignins. However, the C4H gene number and function in tea plants are not clear. We screened all available transcriptome and genome databases of tea plants and three C4H genes were identified and named CsC4Ha, CsC4Hb, and CsC4Hc, respectively. Both CsC4Ha and CsC4Hb have 1518-bp open reading frames that encode 505-amino acid proteins. CsC4Hc has a 1635-bp open reading frame that encodes a 544-amino acid protein. Enzymatic analysis of recombinant proteins expressed in yeast showed that the three enzymes catalyzed the formation of p-coumaric acid (4-hydroxy trans-cinnamic acid) from t...
The ratio of dihydroxylated to trihydroxylated catechins (RDTC) is an important indicator of tea qua...
Green tea (Camellia sinensis, Cs) abundantly produces a diverse array of phenylpropanoid compounds b...
Cinnamate 4-hydroxylase (C4H) is one of the enzymes involved at the starting point of the phenylprop...
Tea (Camellia sinensis L.) contains abundant secondary metabolites, which are regulated by numerous ...
Tea is an important crop known for its beverage and antioxidant polyphenols—catechins and its deriva...
Tea leaves contain abundant flavan-3-ols, which include dihydroxylated and trihydroxylated catechins...
Phenylalanine ammonia-lyase and cinnamate 4- hydroxylase are important enzymes in allocating signif...
Flavonoids are major secondary metabolites in Camellia sinensis. Flavanone-3-hydroxylase (F3H) is a ...
Flavonoids are major secondary metabolites in Camellia sinensis. Flavanone-3-hydroxylase (F3H) is a ...
conversion of cinnamate into 4-hydroxy-cinnamate, a key reaction of the phenylpropanoid pathway whic...
Catechins are bioprospecting molecules present in tea and any effort towards metabolic engineering o...
Tea is an important economic crop with a 3.02 Gb genome. It accumulates various bioactive compounds,...
Tea is an important economic crop with a 3.02 Gb genome. It accumulates various bioactive compounds,...
<div><p>The ratio of dihydroxylated to trihydroxylated catechins (RDTC) is an important indicator of...
Cinnamate 4-hydroxylase (C4H) catalyzes the regioselective para-hydroxylation of trans-cinnamic acid...
The ratio of dihydroxylated to trihydroxylated catechins (RDTC) is an important indicator of tea qua...
Green tea (Camellia sinensis, Cs) abundantly produces a diverse array of phenylpropanoid compounds b...
Cinnamate 4-hydroxylase (C4H) is one of the enzymes involved at the starting point of the phenylprop...
Tea (Camellia sinensis L.) contains abundant secondary metabolites, which are regulated by numerous ...
Tea is an important crop known for its beverage and antioxidant polyphenols—catechins and its deriva...
Tea leaves contain abundant flavan-3-ols, which include dihydroxylated and trihydroxylated catechins...
Phenylalanine ammonia-lyase and cinnamate 4- hydroxylase are important enzymes in allocating signif...
Flavonoids are major secondary metabolites in Camellia sinensis. Flavanone-3-hydroxylase (F3H) is a ...
Flavonoids are major secondary metabolites in Camellia sinensis. Flavanone-3-hydroxylase (F3H) is a ...
conversion of cinnamate into 4-hydroxy-cinnamate, a key reaction of the phenylpropanoid pathway whic...
Catechins are bioprospecting molecules present in tea and any effort towards metabolic engineering o...
Tea is an important economic crop with a 3.02 Gb genome. It accumulates various bioactive compounds,...
Tea is an important economic crop with a 3.02 Gb genome. It accumulates various bioactive compounds,...
<div><p>The ratio of dihydroxylated to trihydroxylated catechins (RDTC) is an important indicator of...
Cinnamate 4-hydroxylase (C4H) catalyzes the regioselective para-hydroxylation of trans-cinnamic acid...
The ratio of dihydroxylated to trihydroxylated catechins (RDTC) is an important indicator of tea qua...
Green tea (Camellia sinensis, Cs) abundantly produces a diverse array of phenylpropanoid compounds b...
Cinnamate 4-hydroxylase (C4H) is one of the enzymes involved at the starting point of the phenylprop...