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海藻糖-6-磷酸合酶1催化海藻糖合成的第一步,对拟南芥胚胎成熟至关重要。

Trehalose-6-phosphate synthase 1, which catalyses the first step in trehalose synthesis, is essential for Arabidopsis embryo maturation.

作者信息

Eastmond Peter J, van Dijken Anja J H, Spielman Melissa, Kerr Aimie, Tissier Alain F, Dickinson Hugh G, Jones Jonathan D G, Smeekens Sjef C, Graham Ian A

机构信息

Centre for Novel Agricultural Products, Department of Biology, University of York, Heslington, York, YO10 5DD, UK.

出版信息

Plant J. 2002 Jan;29(2):225-35. doi: 10.1046/j.1365-313x.2002.01220.x.

Abstract

Despite the recent discovery that trehalose synthesis is widespread in higher plants very little is known about its physiological significance. Here we report on an Arabidopsis mutant (tps1), disrupted in a gene encoding the first enzyme of trehalose biosynthesis (trehalose-6-phosphate synthase). The tps1 mutant is a recessive embryo lethal. Embryo morphogenesis is normal but development is retarded and stalls early in the phase of cell expansion and storage reserve accumulation. TPS1 is transiently up-regulated at this same developmental stage and is required for the full expression of seed maturation marker genes (2S2 and OLEOSN2). Sucrose levels also increase rapidly in seeds during the onset of cell expansion. In Saccharomyces cerevisiae trehalose-6-phosphate (T-6-P) is required to regulate sugar influx into glycolysis via the inhibition of hexokinase and a deficiency in TPS1 prevents growth on sugars (Thevelein and Hohmann, 1995). The growth of Arabidopsis tps1-1 embryos can be partially rescued in vitro by reducing the sucrose level. However, T-6-P is not an inhibitor of AtHXK1 or AtHXK2. Nor does reducing hexokinase activity rescue tps1-1 embryo growth. Our data establish for the first time that an enzyme of trehalose metabolism is essential in plants and is implicated in the regulation of sugar metabolism/embryo development via a different mechanism to that reported in S. cerevisiae.

摘要

尽管最近发现海藻糖合成在高等植物中广泛存在,但对其生理意义却知之甚少。在此,我们报道了一个拟南芥突变体(tps1),该突变体中编码海藻糖生物合成的第一种酶(海藻糖-6-磷酸合酶)的基因被破坏。tps1突变体是隐性胚胎致死的。胚胎形态发生正常,但发育迟缓,并在细胞扩张和储存储备积累阶段早期停滞。TPS1在同一发育阶段短暂上调,是种子成熟标记基因(2S2和OLEOSN2)完全表达所必需的。在细胞扩张开始时,种子中的蔗糖水平也迅速增加。在酿酒酵母中,海藻糖-6-磷酸(T-6-P)通过抑制己糖激酶来调节糖进入糖酵解的流入,而TPS1的缺乏会阻止在糖上生长(Thevelein和Hohmann,1995)。通过降低蔗糖水平,可以在体外部分挽救拟南芥tps1-1胚胎的生长。然而,T-6-P不是AtHXK1或AtHXK2的抑制剂。降低己糖激酶活性也不能挽救tps1-1胚胎的生长。我们的数据首次证实,海藻糖代谢的一种酶在植物中是必不可少的,并且通过与酿酒酵母中报道的不同机制参与糖代谢/胚胎发育的调节。

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