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苹果源叶韧皮部中表达的山梨醇转运蛋白的鉴定。

Identification of sorbitol transporters expressed in the phloem of apple source leaves.

作者信息

Watari Junya, Kobae Yoshihiro, Yamaki Shohei, Yamada Kunio, Toyofuku Kyoko, Tabuchi Toshihito, Shiratake Katsuhiro

机构信息

Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya, 464-8601 Japan.

出版信息

Plant Cell Physiol. 2004 Aug;45(8):1032-41. doi: 10.1093/pcp/pch121.

Abstract

Sorbitol is a major photosynthetic product and a major phloem-translocated component in Rosaceae (e.g. apple, pear, peach, and cherry). We isolated the three cDNAs, MdSOT3, MdSOT4, and MdSOT5 from apple (Malus domestica) source leaves, which are homologous to plant polyol transporters. Yeasts transformed with the MdSOTs took up sorbitol significantly. MdSOT3- and MdSOT5-dependent sorbitol uptake was strongly inhibited by xylitol and myo-inositol, but not or only weakly by mannitol and dulcitol. Apparent K(m) values of MdSOT3 and MdSOT5 for sorbitol were estimated to be 0.71 mM and 3.2 mM, respectively. The protonophore, carbonyl cyanide m-chlorophenylhydrazone (CCCP), strongly inhibited the sorbitol transport. MdSOT3 was expressed specifically in source leaves, whereas MdSOT4 and MdSOT5 were expressed in source leaves and also in some sink organs. MdSOT4 and MdSOT5 expressions were highest in flowers. Fruits showed no or only weak MdSOT expression. Although MdSOT4 and MdSOT5 were also expressed in immature leaves, MdSOT expressions increased with leaf maturation. In addition, in situ hybridization revealed that all MdSOTs were expressed to high levels in phloem of minor veins in source leaves. These results suggest that these MdSOTs are involved in sorbitol loading in Rosaceae.

摘要

山梨醇是蔷薇科植物(如苹果、梨、桃和樱桃)主要的光合产物和韧皮部运输成分。我们从苹果(Malus domestica)源叶中分离出三个与植物多元醇转运蛋白同源的cDNA,即MdSOT3、MdSOT4和MdSOT5。用MdSOTs转化的酵母对山梨醇的吸收显著增加。木糖醇和肌醇强烈抑制依赖MdSOT3和MdSOT5的山梨醇吸收,而甘露醇和卫矛醇则无抑制作用或仅有微弱抑制作用。MdSOT3和MdSOT5对山梨醇的表观K(m)值分别估计为0.71 mM和3.2 mM。质子载体羰基氰化物间氯苯腙(CCCP)强烈抑制山梨醇运输。MdSOT3仅在源叶中特异性表达,而MdSOT4和MdSOT5在源叶以及一些库器官中均有表达。MdSOT4和MdSOT5在花中的表达最高。果实中MdSOT表达无或仅有微弱表达。尽管MdSOT4和MdSOT5在未成熟叶片中也有表达,但MdSOT的表达随叶片成熟而增加。此外,原位杂交显示,所有MdSOTs在源叶小叶脉的韧皮部中均高水平表达。这些结果表明,这些MdSOTs参与蔷薇科植物中山梨醇的装载过程。

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