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 : CVII. Effects of different air temperature, soil temperature and soil moisture during the nursery period on the growth and the characteristics of rice seedlings
【24h】

Analysis of Yield-Determining Process and Its Application to Yield-Prediction and Culture Improvement of Lowland Rice : CVII. Effects of different air temperature, soil temperature and soil moisture during the nursery period on the growth and the characteristics of rice seedlings

机译:产量测定过程分析及其在低地稻中产量预测和培养改善的应用:CVII。苗圃期间不同空气温度,土壤温度和土壤水分对水稻幼苗生长的影响及其特征

获取原文
       

摘要

To investigate the proper environmental condition for the healthy growth of rice seedlings, 24 treatment plots were set up in this experiment, combining 6 different temperature conditions (2 different air temp. ×3 different soil temp.) with 4 different soil moisture levels. The effects of temperature and soil moisture on the growth and characteristics of rice seedlings were examined at the age of 6.5 in leaf-number. The seedlings harvested at the age mentioned above were transplanted and grown under a low temperature condition, and the rooting ability was examined 10 days after the transplanting. The following are the results obtained in this experiment: (1) The leaf-emergence rate was mainly influenced by the temperature, and was hardly affected by the soil moisture as far as a relatively low temperature (16∼21°C) was concerned. However, the effect of soil moisture was gradually appeared as the temperature was raised up. (2) The plant height, the dry weight, the nitrogen content and the carbohydrate content in rice seedling were more strongly influenced by the temperature than the soil moisture. (3) On the other hand, the number of roots and water content in the seedling were more influenced by the soil moisture than the temperature, and were increased with the raise of soil moisture. (4) The number of tillers was apparently influenced by both soil temperature and soil moisture. The optimum soil moisture which produced the maximum number of tillers at each temperature condition was different, i.e. the soil moisture of 100% was the optimum at 21°C/air×16°C/soil and at 21°C/air×21°C/soil, and 80% was the optimum at 21°C/air×26°C/soil, 31°C/air×26°C/soil, 31°C/air×31°C/soil and 31°C/air×36°C/soil. (5) The following conditions combined soil temperature with soil moisture, i.e. 16°C/soil×60%/soil and 21∼36°C/soil×40%/soil were respectively suitable for the vigorous rooting under the low temperature condition. (6) In the nursery period, the combinations of 26°C or 31°C in soil temperature and 80% in soil moisture caused the poor rooting under the low temperature condition. It was pointed out from the results mentioned above that the proper soil moisture management as well as temperature management is quite necessary for raising of healthy seedlings. Therefore, the importance of the soil moisture management, especially in the high temperature condition, should be emphasized.
机译:为了探讨水稻幼苗健康生长的适当环境条件,在该实验中建立了24个处理地块,结合了6种不同的温度条件(2种不同的空气温度。×3种不同的土壤温度。)具有4种不同的土壤水分水平。温度和土壤水分对水稻幼苗生长和特征的影响,在6.5岁时检查了6.5岁。在上述时代收获的幼苗在低温条件下移植并生长,并在移植后10天检查生根能力。以下是在该实验中获得的结果:(1)叶苗出苗率主要受温度的影响,并且对于相对低的温度(16〜21℃)而言,土壤湿度几乎不会影响。然而,随着温度升高而逐渐出现土壤水分的影响。 (2)植物高度,干重,氮含量和水稻幼苗中的碳水化合物含量比土壤水分更强烈地影响温度。 (3)另一方面,幼苗中的根部和水含量的数量比土壤水分的影响更大,而且随着土壤水分的升高而增加。 (4)土壤温度和土壤水分的分蘖数显然受到影响。产生每个温度条件下的最大分蘖数的最佳土壤水分是不同的,即100%的土壤水分是在21℃/空气×16℃/土壤中最佳的最佳状态,在21°C / Air×21°处C /土壤,80%是21°C /空气×26°C /土,31°C / Air×26°C /土,31°C / Air×31°C /土壤和31°C /空气×36°C /土壤。 (5)下列条件将土壤温度与土壤水分合并,即16℃/土壤×60%/土壤,21〜36℃/土壤×40%/土壤分别适用于低温条件下的剧烈生根。 (6)在苗圃期间,土壤温度26℃或31°C的组合和80%的土壤水分导致低温条件下的差。从上面提到的结果指出,适当的土壤水分管理以及温度管理是饲养健康幼苗的必要性。因此,应强调土壤水分管理的重要性,特别是在高温条件下。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号