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葡萄浆果中线粒体二羧酸/三羧酸转运蛋白的特性。

Characterization of mitochondrial dicarboxylate/tricarboxylate transporters from grape berries.

机构信息

Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Av. da República-EAN, 2780-157, Oeiras, Portugal.

出版信息

Planta. 2013 Mar;237(3):693-703. doi: 10.1007/s00425-012-1786-8. Epub 2012 Oct 25.

Abstract

Grape berries (Vitis vinifera L fruit) exhibit a double-sigmoid pattern of development that results from two successive periods of vacuolar swelling during which the nature of accumulated solutes changes significantly. Throughout the first period, called green or herbaceous stage, berries accumulate high levels of organic acids, mainly malate and tartrate. At the cellular level fruit acidity comprises both metabolism and vacuolar storage. Malic acid compartmentation is critical for optimal functioning of cytosolic enzymes. Therefore, the identification and characterization of the carriers involved in malate transport across sub-cellular compartments is of great importance. The decrease in acid content during grape berry ripening has been mainly associated to mitochondrial malate oxidation. However, no Vitis vinifera mitochondrial carrier involved in malate transport has been reported to date. Here we describe the identification of three V. vinifera mitochondrial dicarboxylate/tricarboxylate carriers (VvDTC1-3) putatively involved in mitochondrial malate, citrate and other di/tricarboxylates transport. The three VvDTCs are very similar, sharing a percentage of identical residues of at least 83 %. Expression analysis of the encoding VvDTC genes in grape berries shows that they are differentially regulated exhibiting a developmental pattern of expression. The simultaneous high expression of both VvDTC2 and VvDTC3 in grape berry mesocarp close to the onset of ripening suggests that these carriers might be involved in the transport of malate into mitochondria.

摘要

葡萄浆果(Vitis vinifera L 果实)表现出双 S 型发育模式,这是由于在两个连续的液泡膨胀期内,溶质的性质发生了显著变化。在第一个时期,即绿色或草本阶段,浆果积累了高水平的有机酸,主要是苹果酸和酒石酸。在细胞水平上,果实酸度包括代谢和液泡储存。苹果酸的区室化对于细胞质酶的最佳功能至关重要。因此,鉴定和表征参与亚细胞区室中苹果酸转运的载体非常重要。葡萄浆果成熟过程中酸含量的降低主要与线粒体苹果酸氧化有关。然而,迄今为止尚未报道与葡萄线粒体苹果酸转运有关的载体。在这里,我们描述了三种葡萄线粒体二羧酸/三羧酸载体(VvDTC1-3)的鉴定,它们可能参与线粒体苹果酸、柠檬酸和其他二羧酸/三羧酸的转运。这三种 VvDTC 非常相似,至少有 83%的相同残基。对葡萄浆果中编码 VvDTC 基因的表达分析表明,它们的表达受到调控,表现出发育模式。在成熟开始时,葡萄浆果中果皮中 VvDTC2 和 VvDTC3 的同时高表达表明这些载体可能参与将苹果酸转运到线粒体中。

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