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ABI4介导外源海藻糖对拟南芥生长和淀粉分解的影响。

ABI4 mediates the effects of exogenous trehalose on Arabidopsis growth and starch breakdown.

作者信息

Ramon Matthew, Rolland Filip, Thevelein Johan M, Van Dijck Patrick, Leyman Barbara

机构信息

Katholieke Universiteit Leuven and Department of Molecular Microbiology, VIB, Laboratory of Molecular Cell Biology, Institute of Botany and Microbiology, Kasteelpark Arenberg 31, B-3001, Leuven-Heverlee, Flanders, Belgium.

出版信息

Plant Mol Biol. 2007 Jan;63(2):195-206. doi: 10.1007/s11103-006-9082-2. Epub 2006 Sep 23.

Abstract

The disaccharide trehalose has dramatic effects on plant metabolism, growth and development. Arabidopsis seedlings grown on trehalose-containing medium without sucrose display increased expression of the starch synthesis gene ApL3, hyper-accumulation of starch in the cotyledons and inhibition of root growth. Here we show that the ABI4 transcription factor mediates the effects of trehalose on starch metabolism and growth, independently of abscisic acid (ABA) synthesis and hexokinase (HXK1) signaling. Surprisingly, although the abi4 mutation partially rescued trehalose inhibition of root elongation, ApL3 expression levels were still enhanced. Gene expression analysis suggests that trehalose affects both starch synthesis and starch breakdown. The expression of genes involved in starch breakdown, such as SEX1 and the beta-amylase gene BMY8/BAM3, was strongly down-regulated in WT plants grown on trehalose but not in abi4 mutants. Addition of trehalose to liquid-grown WT seedlings also significantly reduced SEX1 expression after 6 h. Bypassing the need for starch breakdown by growth in continuous light or addition of sucrose rescued root growth on trehalose medium similar to the abi4 mutation. These results suggest that inhibition of starch mobilization rather than increased synthesis is involved in growth inhibition by exogenous trehalose. Trehalose also significantly enhanced ABI4 expression but reduced its sucrose induction, providing a possible molecular mechanism for the trehalose effect on plant gene expression and growth.

摘要

二糖海藻糖对植物的新陈代谢、生长和发育具有显著影响。在不含蔗糖但含有海藻糖的培养基上生长的拟南芥幼苗,淀粉合成基因ApL3的表达增加,子叶中淀粉过度积累,且根生长受到抑制。在此我们表明,ABI4转录因子介导了海藻糖对淀粉代谢和生长的影响,这一过程独立于脱落酸(ABA)合成和己糖激酶(HXK1)信号传导。令人惊讶的是,尽管abi4突变部分挽救了海藻糖对根伸长的抑制作用,但ApL3的表达水平仍然升高。基因表达分析表明,海藻糖影响淀粉合成和淀粉分解。在含有海藻糖的培养基上生长的野生型植株中,参与淀粉分解的基因(如SEX1和β-淀粉酶基因BMY8/BAM3)的表达被强烈下调,但在abi4突变体中没有。向液体培养的野生型幼苗中添加海藻糖6小时后,也显著降低了SEX1的表达。通过在连续光照下生长或添加蔗糖来绕过对淀粉分解的需求,能像abi4突变一样挽救海藻糖培养基上的根生长。这些结果表明,外源海藻糖对生长的抑制作用涉及对淀粉动员的抑制而非合成增加。海藻糖还显著增强了ABI4的表达,但降低了其对蔗糖的诱导作用,这为海藻糖对植物基因表达和生长的影响提供了一种可能的分子机制。

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