Lloyd James R, Blennow Andreas, Burhenne Kim, Kossmann Jens
Max Planck Institute of Molecular Plant Physiology, Am Mühlenberg 1, 14476 Golm, Germany.
Plant Physiol. 2004 Apr;134(4):1347-54. doi: 10.1104/pp.103.038026. Epub 2004 Mar 19.
A potato (Solanum tuberosum) cDNA encoding an isoform of disproportionating enzyme (stDPE2) was identified in a functional screen in Escherichia coli. The stDPE2 protein was demonstrated to be present in chloroplasts and to accumulate at times of active starch degradation in potato leaves and tubers. Transgenic potato plants were made in which its presence was almost completely eliminated. It could be demonstrated that starch degradation was repressed in leaves of the transgenic plants but that cold-induced sweetening was not affected in tubers stored at 4 degrees C. No evidence could be found for an effect of repression of stDPE2 on starch synthesis. The malto-oligosaccharide content of leaves from the transgenic plants was assessed. It was found that the amounts of malto-oligosaccharides increased in all plants during the dark period and that the transgenic lines accumulated up to 10-fold more than the control. Separation of these malto-oligosaccharides by high-performance anion-exchange chromatography with pulsed-amperometric detection showed that the only one that accumulated in the transgenic plants in comparison with the control was maltose. stDPE2 was purified to apparent homogeneity from potato tuber extracts and could be demonstrated to transfer glucose from maltose to oyster glycogen.
在大肠杆菌的功能筛选中鉴定出一个编码歧化酶同工型(stDPE2)的马铃薯(Solanum tuberosum)cDNA。已证明stDPE2蛋白存在于叶绿体中,并在马铃薯叶片和块茎中活跃淀粉降解时积累。构建了转基因马铃薯植株,其中stDPE2的存在几乎被完全消除。可以证明,转基因植株叶片中的淀粉降解受到抑制,但在4℃下储存的块茎中,冷诱导甜化不受影响。未发现抑制stDPE2对淀粉合成有影响的证据。对转基因植株叶片的麦芽寡糖含量进行了评估。发现所有植株在黑暗期麦芽寡糖含量均增加,且转基因株系的积累量比对照多高达10倍。通过高效阴离子交换色谱-脉冲安培检测法分离这些麦芽寡糖,结果表明,与对照相比,转基因植株中积累的唯一麦芽寡糖是麦芽糖。从马铃薯块茎提取物中纯化出了纯度明显的stDPE2,并证明其能将葡萄糖从麦芽糖转移至牡蛎糖原。