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在马铃薯植株中异源表达己酮糖激酶会导致光合作用速率受到抑制、严重生长迟缓以及叶片发育异常。

Heterologous expression of a ketohexokinase in potato plants leads to inhibited rates of photosynthesis, severe growth retardation and abnormal leaf development.

作者信息

Geigenberger Peter, Regierer Babette, Lytovchenko Anna, Leisse Andrea, Schauer Nicolas, Springer Fransiska, Kossmann Jens, Fernie Alisdair R

机构信息

Max-Planck-Institut für Molekulare Pflanzenphysiologie, Am Mühlenberg 1, 14476 Golm, Germany.

出版信息

Planta. 2004 Feb;218(4):569-78. doi: 10.1007/s00425-003-1152-y. Epub 2003 Nov 26.

Abstract

In the present paper we investigated the effect of heterologous expression of a rat liver ketohexokinase in potato (Solanum tuberosum L.) plants with the aim of investigating the role of fructose 1-phosphate in plant metabolism. Plants were generated that contained appreciable activity of ketohexokinase but did not accumulate fructose 1-phosphate. They were, however, characterised by a severe growth retardation and abnormal leaf development. Studies of (14)CO(2) assimilation and metabolism, and of the levels of photosynthetic pigments, revealed that these lines exhibited restricted photosynthesis. Despite this fact, the levels of starch and soluble sugars remained relatively constant. Analysis of intermediates of starch and sucrose biosynthesis revealed large increases in the triose phosphate and fructose 1,6-bisphosphate pools but relatively unaltered levels of inorganic phosphate and 3-phosphoglycerate, and these lines were also characterised by an accumulation of glyceraldehyde. The transformants neither displayed consistent changes in the activities of Calvin cycle enzymes nor in enzymes of sucrose synthesis but displayed a metabolic profile partially reminiscent of that brought about by end-product limitation, but most likely caused by an inhibition of photosynthesis brought about by the accumulation of glyceraldehyde. Analysis of the metabolite contents in lamina and vein fractions of the leaf, and of the enzymes of carbohydrate oxidation indicate that the phloem-enriched veins of ketohexokinase-expressing leaves tend toward hypoxia and indicate a problem of phloem transport.

摘要

在本论文中,我们研究了大鼠肝脏己酮糖激酶在马铃薯(Solanum tuberosum L.)植株中的异源表达效应,目的是探究1-磷酸果糖在植物代谢中的作用。所培育的植株含有可观的己酮糖激酶活性,但并未积累1-磷酸果糖。然而,它们的特征是生长严重迟缓且叶片发育异常。对(14)CO(2)同化与代谢以及光合色素水平的研究表明,这些株系的光合作用受到限制。尽管如此,淀粉和可溶性糖的水平仍保持相对稳定。对淀粉和蔗糖生物合成中间产物的分析显示,磷酸丙糖和1,6-二磷酸果糖池大幅增加,但无机磷酸和3-磷酸甘油酸的水平相对未变,并且这些株系的特征还包括甘油醛的积累。转基因植株在卡尔文循环酶或蔗糖合成酶的活性方面均未表现出一致的变化,但呈现出一种代谢特征,部分类似于由终产物限制所导致的情况,但很可能是由甘油醛积累引起的光合作用抑制所致。对叶片叶片和叶脉部分代谢物含量以及碳水化合物氧化酶的分析表明,表达己酮糖激酶的叶片中富含韧皮部的叶脉趋向于缺氧,这表明存在韧皮部运输问题。

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