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首页> 外文期刊>日本作物學會紀事 >Analysis of yield-determining process and its application to yield-prediction and culture improvement of lowland rice : LXXXVI. Relation between the nitrogenous nutrition and the constituting factors of the number of spikelets per unit area
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Analysis of yield-determining process and its application to yield-prediction and culture improvement of lowland rice : LXXXVI. Relation between the nitrogenous nutrition and the constituting factors of the number of spikelets per unit area

机译:产量测定过程分析及其在低地稻米产量预测和培养改善的应用:LXXXVI。氮素营养与单位面积小穗数的构成因素之间的关系

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The relation between nitrogenous nutrition and the components of the number of spikelets per unit area was investigated and obtained the following results. 1. The number of panicles and primary rachis branches per unit area was mainly affected by the amount of nitrogen absorbed by the time of neck node differentiation, and little affected by the amount of nitrogen absorbed after the time of neck node differentiation. 2. The number of secondary rachis branches was mainly affected by the amount of nitrogen absorbed by the time of late spikelet differentiation, except the cases where an abnormally large number of spikelets were degenerated by the abnormal climate or an extremely large amount of nitrogen was absorbed in the reduction division stage. And at heading time, in general, the number of secondary rachis branches was correlated with the amount of nitrogen absorbed by heading time. 3. The relation between the number of spikelets per panicle and the amount of nitrogen absorbed by rice plant was similar to the relation between the number of secondary rachis branches per unit area and the amount of nitrogen absorbed by rice plant. 4. In treatments which were nearly equal in the number of spikelets per unit area, the more amount of nitrogen absorbed by the time of neck node differentiation were the more number of panicles and primary rachis branches per unit area, but the less numder of secondary rachis branches per unit area and number of spikelets per panicle. 5. Nitrogen contents in leaf blades in each stage did not directly affect the components of the number of spikelets per unit area, but only in cases where the nitrogen contents were correlated with the amount of nitrogen absorbed the nitrogen contents affected the components of the number of spikelets per unit area.
机译:研究了含氮营养与每单位面积小穗数之间的关系,并获得了以下结果。 1.每单位面积的圆锥花序数和主rachis分支的数量主要受颈部节点分化时吸收的氮气量的影响,并且在颈部节点分化时吸收的氮气量很小。 2.二次rachis分支的数量主要受到晚期穗分化的时间吸收的氮气量的影响,除了通过异常气候退化的异常大量的尖峰或非常大量的氮气被吸收在减少分区阶段。并且在前置时间,通常,二次rachis分支的数量与出头时间吸收的氮气量相关。 3.每穗穗分数与水稻植物吸收的氮气量之间的关系类似于每单位面积的二次rachis分支的数量与水稻植物吸收的氮气之间的关系。 4.在每单位面积的尖峰数几乎相等的处理中,颈部节点分化的时间吸收的氮气量越多是每单位面积的圆锥片和原代Rachis分支,但次数越少每个单位面积的rachis分支和每穗的小穗数量。 5.每个阶段的叶片中的氮含量没有直接影响每单位面积的尖峰数量的组分,而且仅在氮含量与吸收的氮气量相关的情况下,氮含量影响了数量的组分每单位面积小穗。

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