液泡
水稻
维管束
拟南芥
生物
转基因水稻
生物化学
血管组织
亚细胞定位
突变体
细胞生物学
转基因
基因
转基因作物
植物
细胞质
作者
Jung‐Il Cho,Bo Burla,Daewoo Lee,Nayeon Ryoo,Soon‐Kwan Hong,Hyun‐Bi Kim,Joon‐Seob Eom,Sang‐Bong Choi,Man‐Ho Cho,Seong Hee Bhoo,Tae‐Ryong Hahn,H. Ekkehard Neuhaus,Enrico Martinoia,Jong‐Seong Jeon
标识
DOI:10.1111/j.1469-8137.2010.03194.x
摘要
In Arabidopsis, the compartmentation of sugars into vacuoles is known to be facilitated by sugar transporters. However, vacuolar sugar transporters have not been studied in detail in other plant species. To characterize the rice (Oryza sativa) tonoplast monosaccharide transporters, OsTMT1 and OsTMT2, we analysed their subcellular localization using green fluorescent protein (GFP) and expression patterns using reverse-transcription polymerase chain reaction (RT-PCR), performed histochemical beta-glucuronidase (GUS) assay and in situ hybridization analysis, and assessed sugar transport ability using isolated vacuoles. Expression of OsTMT-GFP fusion protein in rice and Arabidopsis revealed that the OsTMTs localize at the tonoplast. Analyses of OsTMT promoter-GUS transgenic rice indicated that OsTMT1 and OsTMT2 are highly expressed in bundle sheath cells, and in vascular parenchyma and companion cells in leaves, respectively. Both genes were found to be preferentially expressed in the vascular tissues of roots, the palea/lemma of spikelets, and in the main vascular tissues and nucellar projections on the dorsal side of the seed coats. Glucose uptake studies using vacuoles isolated from transgenic mutant Arabidopsis (tmt1-2-3) expressing OsTMT1 demonstrated that OsTMTs are capable of transporting glucose into vacuoles. Based on expression analysis and functional characterization, our present findings suggest that the OsTMTs play a role in vacuolar glucose storage in rice.
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