OeMST2 encodes a monosaccharide transporter expressed throughout olive fruit maturation

被引:18
作者
Conde, Carlos
Agasse, Alice
Silva, Paulo
Lemoine, Remi
Delrot, Serge
Tavares, Rui
Geros, Hernani
机构
[1] Univ Minho, Dept Biol, P-4710057 Braga, Portugal
[2] UFR Sci, Lab Physiol Biochim & Biol Mol Vegetales, CNRS, UMR Transport Assimilats 6161, F-86022 Poitiers, France
[3] Univ Victor Segalen Bordeaux 2, ISVV, Unite Mixte Rech Ecophysiol & Grape Funct Genom, INRA, F-33883 Villenave Dornon, France
关键词
glucose; monosaccharide transport; Olea europaea; sugar sensing;
D O I
10.1093/pcp/pcm096
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In olive fruits, sugars are the main soluble components providing energy and acting as precursors for olive oil biosynthesis. Large quantities of glucose, fructose and galactose are often found in olive pulp. To analyze sugar transport processes in Olea europaea, a cDNA encoding a monosaccharide transporter, designated OeMST2 (Olea europaea monosaccharide transporter 2) was cloned. An open reading frame of 1,569 bp codes for a protein of 523 amino acids and a calculated molecular weight of 57.6 kDa. The protein is homologous to other sugar transporters identified so far in higher plants. Expression of this cDNA in an hxt-null Saccharomyces cerevisiae strain deficient in glucose transport restored its capacity to grow on and to transport glucose. The encoded protein showed high affinity for D-glucose (K-m, 25 mu M) and was also able to recognize D-galactose and the analogs 3-O-methyl-D-glucose and 2-deoxy-D-glucose, but not D-fructose, D-arabinose, sucrose or D-mannitol. Maximal transport activity was high at acidic pH (5.0), and the initial D-[C-14]glucose uptake rates were strongly inhibited by the protonophore carbonyl cyanide m-chlorophenylhydrazone, confirming that OeMST2 is a H+/monosaccharide transporter. The expression of OeMST2 was studied during the ripening process. Transcript levels increased during fruit maturation, suggesting that OeMST2 takes part in the massive accumulation of monosaccharides in olive fruits. Monosaccharide:H+ transport system activity and OeMST2 expression were negatively regulated by glucose in suspension-cultured cells. Glucose-mediated OeMST2 repression was impaired by mannoheptulose, suggesting the involvement of a hexokinase-dependent signaling pathway.
引用
收藏
页码:1299 / 1308
页数:10
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