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Dynamics of Light and Nitrogen Distribution during Grain Filling within Wheat Canopy

机译:小麦冠层灌浆过程中光氮分布的动态

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摘要

In monocarpic species, during the reproductive stage the growing grains represent a strong sink for nitrogen (N) and trigger N remobilization from the vegetative organs, which decreases canopy photosynthesis and accelerates leaf senescence. The spatiotemporal distribution of N in a reproductive canopy has not been described in detail. Here, we investigated the role of the local light environment on the spatiotemporal distribution of leaf lamina N mass per unit leaf area (SLN) during grain filling of field-grown wheat (Triticum aestivum). In addition, in order to provide some insight into the coordination of N depletion between the different vegetative organs, N dynamics were studied for individual leaf laminae, leaf sheaths, internodes, and chaff of the top fertile culms. At the canopy scale, SLN distribution paralleled the light gradient below the flag leaf collar until almost the end of grain filling. On the contrary, the significant light gradient along the flag leaf lamina was not associated with a SLN gradient. Within the top fertile culms, the time course of total (alive + necrotic tissues) N concentration of the different laminae and sheaths displayed a similar pattern. Another common pattern was observed for internodes and chaff. During the period of no root N uptake, N depletion of individual laminae and sheaths followed a first-order kinetics independent of leaf age, genotype, or N nutrition. The results presented here show that during grain filling, N dynamics are integrated at the culm scale and strongly depend on the local light conditions determined by the canopy structure.
机译:在单果类物种中,在生殖阶段,生长的谷物代表着强大的氮(N)汇,并触发了营养器官中的N迁移,这降低了冠层的光合作用并加速了叶片的衰老。尚未详细描述生殖冠层中N的时空分布。在这里,我们调查了田间种植的小麦(Triticum aestivum)灌浆过程中局部光照环境对每单位叶面积(SLN)叶片叶片N质量的时空分布的作用。另外,为了提供对不同营养器官之间氮耗竭协调作用的一些见识,研究了顶部肥沃茎的单个叶片层,叶片鞘,节间和谷壳的氮动力学。在冠层尺度上,SLN分布与旗叶领下的光梯度平行,直到籽粒几乎充满为止。相反,沿旗叶叶片的明显光梯度与SLN梯度无关。在顶部肥沃的茎秆内,不同叶片和鞘的总(活体+坏死组织)N浓度的时间过程显示出相似的模式。对于节间和谷壳观察到另一种常见模式。在无根氮吸收期间,单个叶片和鞘层的氮耗竭遵循一级动力学,而与叶龄,基因型或氮素营养无关。此处显示的结果表明,在谷物灌装过程中,N动力学在茎杆尺度上被积分,并且强烈依赖于冠层结构确定的局部光照条件。

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