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 : LXXXVIII. Combined effects of air-temperature and water-temperature seedling periods on the characteristics of seedlings of rice plants (In case of seedlings treated for different number of days during which the seedlings attained an identical leaf-age)
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Analysis of Yield-Determining Process and Its Application to Yield-Prediction and Culture Improvement of Lowland Rice : LXXXVIII. Combined effects of air-temperature and water-temperature seedling periods on the characteristics of seedlings of rice plants (In case of seedlings treated for different number of days during which the seedlings attained an identical leaf-age)

机译:产量测定方法分析及其在低地稻米产量预测和培养改善的应用:LXXXVIII。空气温水幼苗周期对水稻植物幼苗特征的综合影响(在幼苗达到幼苗达到相同叶时期的幼苗的情况下)

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The first necessity to obtain high yields is to raise healthy and strong seedlings. The authors, therefore, have hitherto reported seversl papers concerning on this point (LXXV, LXXVIII, LXXXI and LXXXIV). In the present paper, growing the seedlings under each condition of all possible combinations of air-temperatures (16°C, 21°C, 34°C and 36°C) and water-temperatures (16°C, 21°C, 31°C and 36°C) for different number of days during which the seedlings attained identical leaf-ages (4.5, 6.0, and 7.5), the authors examined the effects of air-temperatures and water-temperatures on the characteristics of seedlings of rice plants. The results can be summerized as follows. 1. The progress of leaf-emergence is much more influenced by water-temperature than by air-temperature, and the higher water-temperature rises, the faster the rate of leaf emergence advances. 2. The value of integrating water-temperature for attaining an identical leaf-age has been proved much smaller under favourable water-temperature (31°C) than under low water-temperatures (16°C or 21°C) in spite of the value having hitherto been considered almost identical under any temperature above 10-16°C. 3. In case of all identical leaf-aged seedlings being compared with each other, the top dry-weight, the leaf-area, the rate of net assimilation, the number of tillers and the ratio of top dry-weight to the height of seedlings (T/H) are all largest under the condition of 31°C or 21°C in air-temperature and 16°C or 21°C in water-temperature, and smallest under the condition of a low air-temperature (16°C) and high water-tempere (36°C). 4. The nitrogen content of an identical leaf-aged seedlings is largest under the condition of 16°C in air-temperature and 36°C in water-temperature while the carbohydrate contente is largest under 16°C in water-temperature in any air-temperature. 5. The amounts of nitrogen as well as carbohydrates of an identical leaf-aged seedlings per plant are largest under the condition of 31°C in air-temperature and 16°C in water-temperature on account of the amounts being much more influenced by the dry-weight than by the contents of seedlings. 6. From the present experiment a low water-temperature such as 16°C, which affects directly the growth points of seedlings has been re-confirmed to be quite important for raising healthy and strong seedlings.
机译:获得高收益率的第一种必要性是养育健康和强烈的幼苗。因此,作者迄今为止报告了关于这一点的Seversl论文(LXXV,LXXVIII,LXXXI和LXXXIV)。在本文中,在所有可能的空气温度组合(16℃,21℃,36℃和36℃)和水温(16°C,21°C,31℃)的各种条件下生长幼苗°C和36°C)对于不同的天数,幼苗达到相同的叶子(4.5,6.0和7.5),该作者检测了空气温度和水温对水稻幼苗特征的影响植物。结果可以如下蔓延。 1.叶片出苗的进展比通过空气温度更大程度地影响水温,水温较高,叶片出现速度越快。 2.在良好的水温(31°C)下,已经在良好的水温(31°C)下,在良好的水温下(16°C或21°C)下,已经证明了用于获得相同的叶子时期的水温的值。尽管如此迄今为止的价值在10-16℃的任何温度下被认为几乎相同。在彼此相互比较所有相同的叶子幼苗的情况下,顶部干重,叶面积,净同化率,分蘖数量和顶部干重的比例为高度幼苗(T / H)在空气温度和16℃或21℃的温度下的31℃或21℃的条件下最大,水温下的21℃,并且在低空气温度的条件下最小(16 °C)和高水温(36°C)。 4.相同的叶片幼苗的氮含量在空气温度和36℃的水温下的16℃的条件下最大,而碳水化合物含量在任何空气中的水温下最大在16℃下最大-温度。 5.氮的量以及每株植物相同的叶片幼苗的碳水化合物在31℃的空气温度和6℃的水温条件下最大,因为估计的量更大干重比幼苗的含量相比。 6.从目前的实验,低水温如16℃,直接影响幼苗的生长点,对养育健康和强幼苗非常重要。

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