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Molecular Identification and Physiological Characterization of a Novel Monosaccharide Transporter from Arabidopsis Involved in Vacuolar Sugar Transport

机译:拟南芥中一种新型单糖转运蛋白的分子鉴定及其生理特性

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摘要

The tonoplast monosaccharide transporter (TMT) family comprises three isoforms in Arabidopsis thaliana, and TMT–green fluorescent protein fusion proteins are targeted to the vacuolar membrane. TMT promoter–β-glucuronidase plants revealed that the TONOPLAST MONOSACCHARIDE TRANSPORTER1 (TMT1) and TMT2 genes exhibit a tissue- and cell type–specific expression pattern, whereas TMT3 is only weakly expressed. TMT1 and TMT2 expression is induced by drought, salt, and cold treatments and by sugar. During cold adaptation, tmt knockout lines accumulated less glucose and fructose compared with wild-type plants, whereas no differences were observed for sucrose. Cold adaptation of wild-type plants substantially promoted glucose uptake into isolated leaf mesophyll vacuoles. Glucose uptake into isolated vacuoles was inhibited by NH4+, fructose, and phlorizin, indicating that transport is energy-dependent and that both glucose and fructose were taken up by the same carrier. Glucose import into vacuoles from two cold-induced tmt1 knockout lines or from triple knockout plants was substantially lower than into corresponding wild-type vacuoles. Monosaccharide feeding into leaf discs revealed the strongest response to sugar in tmt1 knockout lines compared with wild-type plants, suggesting that TMT1 is required for cytosolic glucose homeostasis. Our results indicate that TMT1 is involved in vacuolar monosaccharide transport and plays a major role during stress responses.
机译:液泡膜单糖转运蛋白(TMT)家族包括拟南芥中的三种同工型,TMT-绿色荧光蛋白融合蛋白靶向液泡膜。 TMT启动子–β-葡萄糖醛酸苷酶植物显示,TONOPLAST MONACACCHARIDE TRANSPORTER1(TMT1)和TMT2基因表现出组织和细胞类型特异性的表达模式,而TMT3仅弱表达。 TMT1和TMT2的表达受干旱,盐和冷处理以及糖的诱导。在冷适应过程中,与野生型植物相比,tmt基因敲除品系积累的葡萄糖和果糖更少,而蔗糖没有观察到差异。野生型植物的冷适应大大促进了葡萄糖吸收到分离的叶肉泡中。 NH4 + ,果糖和phlorizin抑制了分离液泡中的葡萄糖吸收,表明转运是能量依赖性的,并且葡萄糖和果糖都被同一载体吸收。从两个冷诱导的tmt1基因敲除品系或三倍基因敲除植物中进入液泡的葡萄糖大大低于相应的野生型液泡。与野生型植物相比,单叶叶圆盘饲喂的糖显示出tmt1基因敲除品系对糖的最强响应,表明TMT1是胞质葡萄糖稳态所必需的。我们的结果表明TMT1参与液泡单糖运输,并在应激反应中起主要作用。

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