Lu Yan, Steichen Jon M, Weise Sean E, Sharkey Thomas D
Department of Botany, University of Wisconsin, 430 Lincoln Drive, Madison, WI 53706, USA.
Planta. 2006 Sep;224(4):935-43. doi: 10.1007/s00425-006-0263-7. Epub 2006 Apr 5.
Maltose is the predominant form of carbon exported from the chloroplast at night. Plants that lack either the chloroplast maltose transporter or disproportionating enzyme 2 (DPE2, EC 2.4.1.25) have excess maltose in leaves. We confirmed that DPE2 is not associated with the chloroplast in Arabidopsis thaliana. Using non-aqueous fractionation methods, we found that essentially all the maltose in mex1-1 leaves is located inside chloroplasts but only 40% of maltose in dpe2-1 leaves is located inside chloroplasts. We found that maltose exists in a significant amount in the exudates collected from maltose-accumulating dpe2-1 Arabidopsis petioles. However, the amount of maltose in the exudates from mex1-1 petioles was not significantly different from that in wild-type phloem exudates. We found twice as much maltose in the roots of dpe2-1 plants relative to wild type but the maltose level in the roots of mex1-1 plants was not higher than wild type. We conclude that maltose accumulated in the cytosol of leaves can be carried from the shoots to the roots and that maltose accumulated in the chloroplast of mex1-1 leaves is not mobilized. By measuring the transcript levels and enzymatic activities, we show that maltose-metabolizing enzymes are active in wild-type roots. The amount of maltose moved from the shoots to the roots increased in dpe2-1 plants. The roots of dpe2-1 plants must have the capacity to metabolize the excess maltose.
麦芽糖是夜间从叶绿体输出的主要碳形式。缺乏叶绿体麦芽糖转运蛋白或双磷酸化酶2(DPE2,EC 2.4.1.25)的植物叶片中会积累过量麦芽糖。我们证实拟南芥中的DPE2与叶绿体不相关。使用非水相分级分离方法,我们发现mex1-1叶片中基本上所有的麦芽糖都位于叶绿体内,但dpe2-1叶片中只有40%的麦芽糖位于叶绿体内。我们发现从积累麦芽糖的dpe2-1拟南芥叶柄收集的渗出物中存在大量麦芽糖。然而,mex1-1叶柄渗出物中的麦芽糖量与野生型韧皮部渗出物中的麦芽糖量没有显著差异。我们发现dpe2-1植株根部的麦芽糖含量是野生型的两倍,但mex1-1植株根部的麦芽糖水平不高于野生型。我们得出结论,叶片细胞质中积累的麦芽糖可以从地上部分运输到根部,而mex1-1叶片叶绿体中积累的麦芽糖不会被调动。通过测量转录水平和酶活性,我们表明麦芽糖代谢酶在野生型根中具有活性。从地上部分运输到根部的麦芽糖量在dpe2-1植株中增加。dpe2-1植株的根必须具有代谢过量麦芽糖的能力。