Molecular cloning and expression analysis of a monosaccharide transporter gene OsMST4 from rice (Oryza sativa L.)

Autor: Wang, Y., Xu, H., Wei, X., Chai, C., Xiao, Y., Zhang, Y., Chen, B., Xiao, G., Ouwerkerk, P.B.F., Wang, M., Zhu, Z.
Přispěvatelé: TNO Kwaliteit van Leven
Jazyk: angličtina
Rok vydání: 2007
Předmět:
Plant cell culture
molecular cloning
Biomedical Research
DNA
Complementary

Monosaccharide Transport Proteins
Physiology
Molecular biology
Molecular Sequence Data
complementary DNA
Crops
Oryza sativa
Fructose
Saccharomyces cerevisiae
chemistry
phylogeny
reverse transcription polymerase chain reaction
gene expression profiling
Oryza sativa L
genetics
Seed development
vegetable protein
Amino Acid Sequence
RNA
Messenger

primer DNA
Cloning
Molecular

Biology
In Situ Hybridization
DNA Primers
Plant Proteins
Monosaccharide transporter
Base Sequence
Sequence Homology
Amino Acid

messenger RNA
Reverse Transcriptase Polymerase Chain Reaction
rice
article
food and beverages
nucleotide sequence
sequence homology
glucose transporter
Genes
molecular genetics
cDNA cloning
Gene expression
Transcription
Cloning
Zdroj: Plant Molecular Biology, 4, 65, 439-451
Popis: Monosaccharide transporters mediate the membrane transport of a variable range of monosaccharides, which plays a crucial role in sugar distribution throughout the plant. To investigate the significance of monosaccharide transporters for rice (Oryza sativa L.) seed development, cDNA of a new putative monosaccharide transporter gene OsMST4 was isolated. The deduced OsMST4 protein shows typical features of monosaccharide transporters, and shares high homology with other plant homologues. Heterologous expression in yeast (Saccharomyces cerevisiae) showed that OsMST4 is a functional monosaccharide transporter capable of transporting glucose, fructose, mannose and galactose. Transcriptional analysis revealed that OsMST4 is expressed in all tested organs/tissues. In developing caryopses, its expression is high at the early and middle grain filling stages, and declines gradually to low levels after that. Further analysis revealed that it is expressed in both the maternal tissue and the filial tissue, with its highest expression in embryo. Cellular location in young caryopses through RNA in situ hybridization showed that OsMST4 mRNA mainly accumulates in the vascular parenchyma of the chalazal vein, cross-cells, nucellar tissue and endosperm. The expression pattern of OsMST4 was further confirmed by histochemical analysis of the OsMST4-promoter-β-glucuronidase (GUS) transgenic rice plants. These data indicate that OsMST4 is actively involved in monosaccharides supply for seed development during the course of grain filling. In addition, the cell type-specific expression patterns of OsMST4 in other sink and source tissues were also investigated, and its corresponding physiological roles were discussed. © 2007 Springer Science+Business Media B.V.
Databáze: OpenAIRE