Leaf Fructose Content Is Controlled by the Vacuolar Transporter SWEET17 in Arabidopsis

被引:256
作者
Chardon, Fabien [1 ]
Bedu, Magali [1 ]
Calenge, Fanny [1 ]
Klemens, Patrick A. W. [2 ]
Spinner, Lara [1 ,3 ]
Clement, Gilles [1 ]
Chietera, Giorgiana [1 ]
Leran, Sophie [4 ]
Ferrand, Marina [1 ]
Lacombe, Benoit [4 ]
Loudet, Olivier [1 ]
Dinant, Sylvie [1 ]
Bellini, Catherine [1 ,3 ]
Neuhaus, H. Ekkehard [2 ]
Daniel-Vedele, Francoise [1 ]
Krapp, Anne [1 ]
机构
[1] INRA AgroParisTech, Inst Jean Pierre Bourgin, UMR1318, RD10, F-78026 Versailles, France
[2] Tech Univ Kaiserslautern, D-67653 Kaiserslautern, Germany
[3] Umea Univ, Umea Plant Sci Ctr, Dept Plant Physiol, S-90183 Umea, Sweden
[4] Biochim & Physiol Mol Plantes UMR 5004 CNRS INRA, Inst Claude Grignon, F-34060 Montpellier 1, France
基金
瑞典研究理事会;
关键词
MONOSACCHARIDE TRANSPORTER; SUCROSE; SUGAR; IDENTIFICATION; ACCUMULATION; GROWTH;
D O I
10.1016/j.cub.2013.03.021
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In higher plants, soluble sugars are mainly present as sucrose, glucose, and fructose [1]. Sugar allocation is based on both source-to-sink transport and intracellular transport between the different organelles [2,3] and depends on actual plant requirements [4]. Under abiotic stress conditions, such as nitrogen limitation, carbohydrates accumulate in plant cells [5]. Despite an increasing number of genetic studies [6, 7], the genetic architecture determining carbohydrate composition is poorly known. Using a quantitative genetics approach, we determined that the carrier protein SWEET17 is a major factor controlling fructose content in Arabidopsis leaves. We observed that when SWEET17 expression is reduced, either by induced or natural variation, fructose accumulates in leaves, suggesting an enhanced storage capacity. Subcellular localization of SWEET17-GFP to the tonoplast and functional expression in Xenopus oocytes showed that SWEET17 is the first vacuolar fructose transporter to be characterized in plants. Physiological studies in planta provide evidence that SWEET17 acts to export fructose out of the vacuole. Overall, our results suggest that natural variation in leaf fructose levels is controlled by the vacuolar fructose transporter SWEET17. SWEET17 is highly conserved across the plant kingdom; thus, these findings offer future possibilities to modify carbohydrate partitioning in crops.
引用
收藏
页码:697 / 702
页数:6
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