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Dynamics of Abscisic Acid Levels during Grain-Filling in Rice : Comparisons between Superior and Inferior Spikelets

机译:水稻灌浆过程中脱落酸水平的动态:优质和下穗穗的比较

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摘要

In a rice panicle, the superior spikelets display higher growth rates than the inferior spikelets during the initial phase of grain-filling. To better understand the regulatory mechanism of this phenomenon, we examined the dynamics of endogenous abscisic-acid (ABA) levels and the effects of shading on the dynamics during the grain-filling period in superior and inferior spikelets. While ABA content in the superior spikelets increased rapidly after flowering, that in the inferior spikelets increased slowly and reached the maximum later than in the superior spikelets. Shading significantly exaggerated the inherently different ABA dynamics between the superior and inferior spikelets. We concluded that ABA levels are correlated with the dry matter accumulation patterns of spikelets. These results support our hypothesis that ABA is involved in assimilate partitioning among spikelets in a panicle during the initial phase of grain-filling of rice.
机译:在水稻穗中,优越的小穗在颗粒填充的初始阶段期间显示比下穗峰值更高的生长速率。为了更好地了解这种现象的监管机制,我们研究了内源性脱落 - 酸(ABA)水平的动态以及阴影在上下穗和下穗粒填充期间对动力学的影响。虽然在开花后,高级尖峰中的ABA含量迅速增加,但在下尖峰中,在劣质尖峰缓慢增加并达到优于上穗尖峰。阴影显着夸大了上下穗和下小穗之间固有的不同ABA动态。我们得出结论,ABA水平与小穗的干物质积累模式相关。这些结果支持我们的假设,即ABA在水稻籽粒填充的初始阶段期间涉及穗中穗中的穗中的穗子里的分区。

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