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Reduction in sucrose contents by downregulation of fructose-1,6-bisphosphatase 2 causes tiller outgrowth cessation in rice mutants lacking glutamine synthetase1;2

机译:通过果糖-1,6-双磷酸酶2的下调降低蔗糖含量,导致缺乏谷氨酰胺合成酶1的水稻突变体中的分蘖生长戒烟; 2

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Background Our previous transcriptomic analysis revealed that downregulation of nitrogen and carbon metabolism in the basal portions of the shoots inhibited cytosolic glutamine synthetase1;2 (GS1;2), which severely reduced rice tiller number. In the present study, we used rice mutants lacking GS1;2 ( gs1;2 mutants) to determine the contribution of carbon metabolism to tiller growth. Results Metabolomic analysis indicated the effects of carbon metabolism disorder such as reductions in the levels of sugar metabolites (e.g., sucrose and glucose 6-phosphate) in the shoot basal portions of the gs1;2 mutant seedlings. Decrease in sucrose caused by the lack of GS1;2 was successfully restored to the wild-type levels by introducing OsGS1;2 cDNA into the mutants. In the basal portions of the shoots, the lack of GS1;2 caused low expression of cytosolic fructose 1,6-bisphosphatase2 ( OscFBP2 ), which is a key cytosolic sucrose synthesis enzyme; it is especially important in the phloem companion cells of the nodal vascular anastomoses. NHsub4/subsup+/sup supply upregulated OscFBP2 expression in the shoot basal portions of the wild type but not in those of the gs1;2 mutants. Rice mutants lacking cFBPase2 presented with ~?30% reduction in total cFBPase activity in the basal portions of their shoots. These mutants displayed reductions in sucrose levels of the basal portions of their shoots but not in their leaf blades. They also had relatively lower tiller numbers at the early growth stage. Conclusions Metabolomic analysis revealed that the lack of GS1;2 reduced sucrose metabolism in the basal portions of the shoots. Our results indicated that sucrose reduction was caused by the downregulation of OscFBP2 expression in the basal portions of the gs1;2 mutant shoots. The reduction in sucrose content caused by the lack of cFBPase2 resulted in lower tiller number at the early growth stage. Therefore, adequate sucrose supply via cFBPase2 may be necessary for tiller growth in the basal portions of rice shoots.
机译:背景技术我们以前的转录组分析显示,在芽的基部部分中氮和碳代谢的下调抑制了胞岩谷氨酰胺合成酶1; 2(GS1; 2),这严重减少了米饭分蘖数。在本研究中,我们使用缺乏GS1; 2(GS1; 2个突变体)的水稻突变体来确定碳代谢对分蘖生长的贡献。结果代谢分析表明碳代谢障碍如糖代谢物(例如,蔗糖和葡萄糖6-磷酸盐)水平降低的影响; 2个突变幼苗的芽基础部分。通过缺乏GS1引起的蔗糖减少;通过将OSGS1引入突变体,通过引入突变体成功恢复到野生型水平。在芽的基部部分中,缺乏GS1; 2引起的细胞溶质果糖1,6-双磷酸酶2(OSCFBP2)的低表达,这是一种关键的细胞溶质蔗糖合成酶;它在节点血管吻合术的Phloem伴侣细胞中尤为重要。 NH 4 + 供应上调的野生类型的拍摄基底部分中的上调OSCFBP2表达,但不在GS1; 2个突变体中。缺乏CFBPase2的水稻突变体在其芽的基底部分中的CFBPase活性总量减少30%。这些突变体展示了它们芽的基部部分的蔗糖水平,但不在其叶片中减少。它们在早期增长阶段也有相对较低的分蘖数。结论代谢物分析表明,缺乏GS1; 2在芽的基部部分中减少了蔗糖代谢。我们的结果表明,蔗糖减少是由GS1的基部部分中的OSCFBP2表达的下调引起的; 2个突变芽。缺乏CFBPase2引起的蔗糖含量的降低导致早期生长阶段的较低分蘖数。因此,通过CFBPase2的适当蔗糖供应可能是稻米芽基部分蘖生长所必需的。

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