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A Maltose Transporter from Apple is Expressed in Source and Sink Tissues and Complements the Arabidopsis Maltose Export-Defective Mutant

机译:来自苹果的麦芽糖转运蛋白在来源和汇源组织中表达,并与拟南芥麦芽糖出口缺陷型突变体互补。

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Prior to the cytosolic synthesis of transport sugars during transitory starch utilization, intermediate products of starch breakdown, such as maltose, must be exported from chloroplasts. Recent work in Arabidopsis indicates that a novel transporter mediates maltose transfer across the chloroplast inner envelope membrane. We cloned a gene from an apple cDNA library that is highly homologous with the Arabidopsis maltose transporter, MEX1. Expression levels of MdMEX determined by real-time PCR were low in the tips of growing shoots, higher in expanding leaves and maximal in mature leaves. Expression was also detected in fruits and roots, indicating a role for MdMEX in starch mobilization in sink tissues. The cDNA from apple was subcloned into an expression cassette between the cauliflower mosaic virus 35S promoter and the sGFP (green fluorescent protein) coding sequence. Plants of the Arabidopsis maltose excess1-1 mutant, which is homozygous for a defective MEX1 allele, were transformed with the 35S:MdMEX:GFP construct. Fluorescence of GFP was localized to chloroplasts, indicating that Arabidopsis recognized the predicted 55 amino acid chloroplast transit peptide in the apple protein. The phenotypes of several independently transformed lines were analyzed. The complemented plants were relieved of the severe stunting and chlorosis characteristic of mex1-1 plants. Furthermore, starch levels and concentrations of soluble sugars, leaf chlorophyll content and maximum quantum efficiency of PSII were restored to wild-type levels. MdMEX (Malus domestica maltose transporter) is the second member of the unique maltose transporter gene family.
机译:在短暂利用淀粉期间,在运输糖的胞质合成之前,必须将淀粉分解的中间产物(如麦芽糖)从叶绿体中输出。拟南芥中的最新研究表明,新型转运蛋白介导了麦芽糖跨叶绿体内膜的转移。我们从苹果cDNA文库中克隆了一个与拟南芥麦芽糖转运蛋白MEX1高度同源的基因。通过实时PCR测定的MdMEX表达水平在生长芽的尖端低,在膨胀叶片中较高,在成熟叶片中最高。在水果和根中也检测到表达,表明MdMEX在水槽组织中的淀粉动员中的作用。苹果的cDNA被亚克隆到花椰菜花叶病毒35S启动子和sGFP(绿色荧光蛋白)编码序列之间的表达盒中。用有缺陷的MEX1等位基因纯合的拟南芥麦芽糖过量1-1突变体的植物用35S:MdMEX:GFP构建体转化。 GFP的荧光定位于叶绿体,表明拟南芥识别了苹果蛋白中预测的55个氨基酸的叶绿体转运肽。分析了几种独立转化的品系的表型。补充的植物摆脱了mex1-1植物的严重发育迟缓和萎黄病特征。此外,淀粉水平和可溶性糖浓度,叶绿素含量和PSII的最大量子效率均恢复到野生型水平。 MdMEX(家蝇麦芽糖麦芽糖转运蛋白)是独特的麦芽糖转运蛋白基因家族的第二个成员。

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