首页> 外文期刊>Acta Scientiarum. Agronomy >Wheat (Triticum aestivum L.) grain filling and dry matter partitioning responses to source:sink modifications under postanthesis water and nitrogen deficiency
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Wheat (Triticum aestivum L.) grain filling and dry matter partitioning responses to source:sink modifications under postanthesis water and nitrogen deficiency

机译:花后水分和氮素缺乏下小麦(Triticum aestivum L.)籽粒灌浆和干物质分配对源库变化的反应。

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Re-translocation of stem and spike reserves was investigated in source:sink restricted wheat subjected to water and nitrogen deficiency during seed filling. Either sink or source restriction significantly decreased the amount of current photosynthesis and its contribution to grain yield. Furthermore, source limitation increased stem and spike reserves contribution to seed filling process. Higher amount of stem reserve mobilization in source restricted vs. control and sink restricted plants indicates that at rapid grain filling stage (14 days after anthesis to physiological maturity), stem dry matter decreases to provide assimilates for kernel after defoliation. In spike halved plants, drought stress significantly decreased grain yield, indicating that when the sink is restricted, postanthesis drought stress can increase sink limitation through lower grain filling rate and dry matter allocation to grain two weeks after anthesis at the beginning of rapid grain filling stage. On the other hand, in spike halved plants, more nitrogen supply at anthesis increased grain yield because more dry matter allocation to grain is not associated with more current photosynthesis. But when all the leaves were removed except flag leaf, more postanthesis nitrogen could not increase dry matter allocation to grain filling process, showing that postanthesis nitrogen supply increases grain yield by decreasing sink limitation, and not by increasing source strength.
机译:研究了在灌浆过程中遭受水和氮缺乏的来源:受限制的小麦对茎和穗储备的重新转运。吸收源或限制源都显着降低了当前光合作用的数量及其对谷物产量的贡献。此外,源限制增加了茎和穗储备对种子填充过程的贡献。源受限与对照和库受限植物中较高的茎储备动员量表明,在快速的籽粒灌浆阶段(花期到生理成熟后14天),茎干物质减少,为叶片脱叶后的籽粒提供同化作用。在减半的穗型植物中,干旱胁迫显着降低了籽粒产量,这表明在限制贮藏后,在快速籽粒灌浆期开始的两周后,花后干旱胁迫可通过降低籽粒灌浆速率和降低干物质向籽粒的分配来增加籽粒限制。 。另一方面,在穗减半的植物中,花期更多的氮供应增加了谷物产量,因为更多的干物质分配给谷物与更多的当前光合作用无关。但是当除去旗叶以外的所有叶片时,更多的花后氮不能增加干物质在籽粒灌浆过程中的分配,这表明花后氮的供应通过降低水槽限制而不是通过增加源强度来增加谷物产量。

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