首页> 外文OA文献 >Induction of ApL3 Expression by Trehalose Complements the Starch-Deficient Arabidopsis Mutant adg2-1 Lacking ApL1, the Large Subunit of ADP-Glucose Pyrophosphorylase1
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Induction of ApL3 Expression by Trehalose Complements the Starch-Deficient Arabidopsis Mutant adg2-1 Lacking ApL1, the Large Subunit of ADP-Glucose Pyrophosphorylase1

机译:海藻糖诱导的ApL3表达补充了缺乏ApL1(ADP葡萄糖焦磷酸化酶1的大亚基)的淀粉缺陷拟南芥突变体adg2-1。

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摘要

The disaccharide trehalose has strong effects on plant metabolism and development. In Arabidopsis seedlings, growth on trehalose-containing medium leads to an inhibition of root elongation, an accumulation of starch in the shoots, an increased activity of ADP-Glc pyrophosphorylase (AGPase), and an induction of the expression of the AGPase gene, ApL3 (A. Wingler, T. Fritzius, A. Wiemken, T. Boller, R.A. Aeschbacher [2000] Plant Physiol 124: 105–114). We used Arabidopsis mutants deficient in starch synthesis to examine whether the primary effect of trehalose was to affect carbohydrate allocation by the induction of AGPase in the photosynthetic tissue. In a mutant lacking the large AGPase subunit, ApL1, (adg2-1 mutant) growth on trehalose restored AGPase activity and led to a strong accumulation of starch in the shoots. In contrast, starch synthesis could not be induced in a mutant lacking the small AGPase subunit, ApS, (adg1-1 mutant) or in a mutant lacking plastidic phosphoglucomutase (pgm1-1 mutant). These results indicate that ApL3 can substitute for ApL1 in the AGPase complex. In addition, root elongation in the mutants, especially in the adg1-1 mutant, was partially resistant to trehalose, suggesting that the induction of ApL3 expression and the resulting accumulation of starch in the shoots were partially responsible for the effects of trehalose on the growth of wild-type plants.
机译:海藻糖二糖对植物的代谢和发育有很强的作用。在拟南芥幼苗中,在含海藻糖的培养基上生长会导致根伸长的抑制,芽中淀粉的积累,ADP-Glc焦磷酸化酶(AGPase)的活性增加以及AGPase基因ApL3的表达诱导(A. Wingler,T。Fritzius,A。Wiemken,T。Boller,RA Aeschbacher [2000]植物生理学124:105-114)。我们使用了缺乏淀粉合成的拟南芥突变体来检查海藻糖的主要作用是否是通过在光合组织中诱导AGPase来影响碳水化合物的分配。在缺少大AGPase亚基的突变体中,海藻糖上的ApL1(adg2-1突变体)生长恢复了AGPase活性,并导致了芽中淀粉的大量积累。相反,在缺少小AGPase亚基ApS的突变体(adg1-1突变体)或在缺乏质体磷酸葡糖突变酶的突变体(pgm1-1突变体)中,不能诱导淀粉合成。这些结果表明,ApL3可以代替AGPase复合物中的ApL1。此外,突变体中的根伸长,特别是adg1-1突变体中,对海藻糖具有部分抗性,表明ApL3表达的诱导和由此导致的淀粉在茎中的积累是海藻糖对生长的影响的部分原因。野生植物。

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