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首页> 外文期刊>日本作物学会紀事 >Reduction of grain yield in rice shaded during the early grain fillingperiod is not the result of inhibition of potential grain dry-matterincrease [Japanese]
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Reduction of grain yield in rice shaded during the early grain fillingperiod is not the result of inhibition of potential grain dry-matterincrease [Japanese]

机译:籽粒灌浆初期阴影下的水稻籽粒减产不是抑制潜在谷物干物质增加的结果[日语]

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摘要

A shortage of carbon assimilate supply to rice grain during the first ten days after heading (DAY(0-10)) has been considered to reduce the potential grain dry-matter increase(Delta GP). It was, however, uncertain whether assimilate supply after the shading period was sufficient to support Delta GP when the reduction of grain dry-matter increase (DeltaG) was observed. Our objective was to demonstrate that DeltaG after the shading treatments was reduced not through the decrease in Delta GP but through a lack of assimilate supply, based on our model analysis. In our model, DeltaG is determined by assimilate supply (current dry-matter production (DeltaW) plus reserved assimilate in straw (SP)) and the DeltaG has an upper limitation defined by Delta GP. In this study Delta GP was estimated under a sufficient supply of assimilates which were provided by periodical thinning of the plants. By the shading during DAY(0-10), DeltaG as well as DeltaW were reduced even after the end of the shading treatment. Observed DeltaW and SP at the heading were input to the model to calculate DeltaG and straw dry-matter increase (DeltaS). The calculated dry weight of the grain and straw coincided closely with the actual observed data. We herewith suggest that the grain dry-matter increase by shading during DAY(0-10) was not suppressed by inevitable reduction of Delta GP but rather by a lack of assimilate supply during the active DeltaG period.
机译:抽穗后头十天(DAY(0-10))的水稻籽粒碳同化物供应不足被认为减少了谷物干物质的潜在增加量(Delta GP)。但是,当观察到谷物干物质增加(DeltaG)减少时,遮光期后的同化供应是否足以支撑Delta GP尚不确定。我们的目标是证明,根据我们的模型分析,遮光处理后的DeltaG减少不是通过Delta GP的减少而是通过缺乏同化物供应而减少的。在我们的模型中,DeltaG是由同化物供应量(当前干物质生产(DeltaW)加上秸秆中保留的同化物(SP))确定的,并且DeltaG具有由Delta GP定义的上限。在这项研究中,估计三角洲GP的同化物供应量充足,而这些植物是通过定期稀疏植物提供的。通过在DAY(0-10)期间进行遮蔽,即使在遮蔽处理结束之后,DeltaG和DeltaW也减少了。将航向上观察到的DeltaW和SP输入模型,以计算DeltaG和秸秆干物质增加量(DeltaS)。谷物和稻草的计算干重与实际观察到的数据非常吻合。我们据此提出,在DAY(0-10)期间通过遮荫增加谷物干物质的增加,并不是由于Delta GP的不可避免降低而受到抑制,而是因为在活跃的DeltaG时期缺乏同化物供应。

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