Purple acid phosphatase (PAP) encoding genes are a multigene family. PAPs require iron (Fe) to exert their functions that are involved in diverse biological roles including Fe homeostasis. However, the possible roles of PAPs in response to excess Fe remain unknown. In this study, we attempted to understand the regulation of PAPs by excess Fe in tea plant (Camellia sinensis). A genome-wide investigation of PAP encoding genes identified 19 CsPAP members based on the conserved motifs. The phylogenetic analysis showed that PAPs could be clustered into four groups, of which group II contained two specific cysteine-containing motifs “GGECGV„ and “YERTC„. To explore the expression patterns of CsPAP genes in response to exce...
Iron is essential for plants. However, excess iron is toxic, leading to oxidative stress and decreas...
Iron is essential for plants. However, excess iron is toxic, leading to oxidative stress and decreas...
Iron is essential for plants. However, excess iron is toxic, leading to oxidative stress and decreas...
The qualities of tea (Camellia sinensis) are not clearly understood in terms of integrated leading m...
Polyphenol oxidases (PPOs) have been reported to play an important role in protecting plants from at...
Polyphenol oxidases (PPOs) have been reported to play an important role in protecting plants from at...
Cysteine-rich polycomb-like (CPP) is a small gene family in plants, which plays key role in plant de...
The tea plant is an important economic crop and is widely cultivated. Isopentenyl transferase (IPT) ...
Abstract Background Acquisition of external phosphorus (P) and optimisation of internal P are essent...
Heat shock proteins (HSPs) function as molecular chaperones. These proteins are encoded by a multige...
Heat shock proteins (HSPs) function as molecular chaperones. These proteins are encoded by a multige...
Tea plants [Camellia sinensis (L.) O. Kuntze] are an important leaf-type crop that are widely used f...
Purple acid phosphatases (PAPs) catalyse the hydrolysis of a wide range of phosphomonoester and amid...
The objective of this research is to identify Arabidopsis thaliana genes encoding acid phosphatases ...
Abstract Background Cytochrome P450 (Cytochrome P450s) genes are involved in the catalysis of variou...
Iron is essential for plants. However, excess iron is toxic, leading to oxidative stress and decreas...
Iron is essential for plants. However, excess iron is toxic, leading to oxidative stress and decreas...
Iron is essential for plants. However, excess iron is toxic, leading to oxidative stress and decreas...
The qualities of tea (Camellia sinensis) are not clearly understood in terms of integrated leading m...
Polyphenol oxidases (PPOs) have been reported to play an important role in protecting plants from at...
Polyphenol oxidases (PPOs) have been reported to play an important role in protecting plants from at...
Cysteine-rich polycomb-like (CPP) is a small gene family in plants, which plays key role in plant de...
The tea plant is an important economic crop and is widely cultivated. Isopentenyl transferase (IPT) ...
Abstract Background Acquisition of external phosphorus (P) and optimisation of internal P are essent...
Heat shock proteins (HSPs) function as molecular chaperones. These proteins are encoded by a multige...
Heat shock proteins (HSPs) function as molecular chaperones. These proteins are encoded by a multige...
Tea plants [Camellia sinensis (L.) O. Kuntze] are an important leaf-type crop that are widely used f...
Purple acid phosphatases (PAPs) catalyse the hydrolysis of a wide range of phosphomonoester and amid...
The objective of this research is to identify Arabidopsis thaliana genes encoding acid phosphatases ...
Abstract Background Cytochrome P450 (Cytochrome P450s) genes are involved in the catalysis of variou...
Iron is essential for plants. However, excess iron is toxic, leading to oxidative stress and decreas...
Iron is essential for plants. However, excess iron is toxic, leading to oxidative stress and decreas...
Iron is essential for plants. However, excess iron is toxic, leading to oxidative stress and decreas...