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马铃薯块茎中碳水化合物代谢对低温的响应。

The response of carbohydrate metabolism in potato tubers to low temperature.

作者信息

Malone Jacob G, Mittova Valentina, Ratcliffe R George, Kruger Nicholas J

机构信息

Department of Plant Sciences, University of Oxford, South Parks Road, Oxford OX1 3RB, UK.

出版信息

Plant Cell Physiol. 2006 Sep;47(9):1309-22. doi: 10.1093/pcp/pcj101. Epub 2006 Aug 27.

Abstract

This work investigates the possible causes of cold-induced sweetening in potato by examining the impact of low temperature on carbohydrate metabolism in mature tubers. Metabolism in tuber discs was monitored by determining the redistribution of radiolabel following incubation in [U-(14)C]glucose. Estimates of flux based on the specific activity of hexose phosphates established that while incubation at 4 degrees C resulted in an immediate restriction in pathways of carbohydrate oxidation relative to activity at 25 degrees C, there was no corresponding increase in flux to soluble sugars. In contrast, prior storage at low temperature stimulated flux to sugars at both 4 and 25 degrees C. Comparison of (14)CO(2) release from specifically labeled glucose and gluconate fed to tuber discs at 4 and 25 degrees C indicated that flux through glycolysis was preferentially restricted relative to the oxidative pentose phosphate pathway at low temperature, irrespective of prior storage temperature. However, the degree of randomization of label between positions C1 and C6 in the fructosyl moiety of sucrose following metabolism of [1-(13)C]glucose established that there was no preferential inhibition of the recycling of triose phosphates to hexose phosphates at low temperature. These results indicate that sugar accumulation in tubers during storage in the cold is not a direct consequence of a constraint in carbohydrate oxidation, despite preferential restriction of glycolysis at low temperature. It is concluded that the cold lability of enzymes catalyzing the conversion of fructose 6-phosphate to fructose 1,6-bisphosphate is not a major factor in cold-induced sweetening in plants and that this widely held hypothesis should be abandoned.

摘要

本研究通过考察低温对成熟块茎碳水化合物代谢的影响,探究了马铃薯冷诱导甜味产生的可能原因。通过测定在[U-(14)C]葡萄糖中孵育后放射性标记的重新分布,监测块茎切片中的代谢情况。基于己糖磷酸的比活性对通量的估计表明,虽然在4℃孵育相对于25℃的活性导致碳水化合物氧化途径立即受到限制,但通向可溶性糖的通量并没有相应增加。相反,预先在低温下贮藏会刺激在4℃和25℃时通向糖的通量。比较在4℃和25℃下喂给块茎切片的特异性标记葡萄糖和葡萄糖酸盐释放的(14)CO(2)表明,无论预先贮藏温度如何,在低温下相对于氧化戊糖磷酸途径,糖酵解通量优先受到限制。然而,[1-(13)C]葡萄糖代谢后蔗糖果糖基部分C1和C6位置之间标记的随机化程度表明,在低温下磷酸丙糖向己糖磷酸的循环没有受到优先抑制。这些结果表明,尽管在低温下糖酵解受到优先限制,但在低温贮藏期间块茎中糖的积累并不是碳水化合物氧化受限的直接后果。得出的结论是,催化6-磷酸果糖转化为1,6-二磷酸果糖的酶的冷不稳定性不是植物冷诱导甜味的主要因素,这个被广泛接受的假设应该被摒弃。

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