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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 Improment of Lowland Pice : XCV. Effects of nitrogen deficiency in the middle growth period on the physiological activity of roots of rice plants
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Analysis of Yield-Determining Process and Its Application to Yield-Prediction and Culture Improment of Lowland Pice : XCV. Effects of nitrogen deficiency in the middle growth period on the physiological activity of roots of rice plants

机译:产量测定过程分析及其在低地Pice的产量预测和培养不适应的应用:XCV。中间生长期氮缺乏对水稻植物根生理活性的影响

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The authors examined the effects of nitrogen deficiency in the middle growth period (69∼92in leaf-number index, 43∼20 days before heading) on the physiological activity of roots of rice plants grown under water cultures as well as soil cultures. The results obtained can be summarized as follows. 1. In water cultures the physiological activity of roots increases with an increasing amount of aerated air and a decreasing amount of S04 in the medium. 2. In case of the nitrogen supply being completely interrupted in water cultures, the physiological activity of roots considelably goes down on account of the medium being changed for the worse. However, in case of the nitrogen supply being reduced to one fifth or on tenth of an ordinary level, the physiological activity of roots scarcely goes down. 3. In soil cultures (under field conditions) nitrogen supplply have also been controlled by using nitrate nitrogen and by drying up soil, but the depression of physiological root activity can hardly be recognized. The root activity seems to be influenced by the kinds of soil, facility of drainage and methods of watering. 4. Accordingly, the depression of physiological root-activity by nitrogen deficiency in the middle growth period can hardy be recognized under actual field conditions, because the nitrogen supply is completely interrupted only in very few cases and furthermore the soil in paddy field is commonly aerated by the practise of drying up soil in the middle growth period. 5. Sometimes it can clearly be recognized the phosphats and potash, not to speak of nitrogen, are absorbed the more by the plants in the period after the nitrogen supply is temporarily interrupted, as reported by the other authors.
机译:作者检测了氮缺乏症在中间生长期(69〜92英寸指数,43〜20天,前往43〜20天)对水培养的根源的生理活性以及土壤培养物。获得的结果可以概括如下。在水中,根部的生理活性随着介质中的吞吐量的增加而增加,介质中的SO 4的量增加。 2.在水培养中完全中断氮供应的情况下,根源的生理活性因介质而定期下降,因为较差的介质。然而,如果氮供应减少到普通水平的五分之一或十分之一,则根部的生理活性几乎没有下降。 3.在土壤培养物中(在现场条件下)也通过使用硝酸盐氮和通过干燥土壤来控制氮气,但是几乎无法识别生理根系活性的抑郁。根部活动似乎受到土壤种类,排水设施和浇水方法的影响。因此,在中间生长期间通过氮气缺乏抑制生理根源的抑制在实际场条件下,由于氮供应仅在很少的情况下完全中断,而且稻田中的土壤通常是常规的通过在中间生长期干燥土壤的实践。 5.有时它可以清楚地被认识到磷酸盐和钾,而不是谈论氮气,在氮供应暂时中断的时间内被其他作者报告的植物吸收更多的植物。

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