首页> 外文期刊>日本作物學會紀事 >Effect of Soil Moisture Content on Growth and Yield of Azuki-beans, Phaseolus radiatus var. aurea PRAIN : I. Growth and yield as affected by the different soil moisture content : II. Varietal differences of growth and yield at different subirrigated water levels
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Effect of Soil Moisture Content on Growth and Yield of Azuki-beans, Phaseolus radiatus var. aurea PRAIN : I. Growth and yield as affected by the different soil moisture content : II. Varietal differences of growth and yield at different subirrigated water levels

机译:土壤水分含量对氮豆,调直豆籽油生长和产量的影响。 AUREA PRAIN:I.受不同土壤水分含量影响的增长和产量:II。不同辅助水平的生长和产量的变异差异

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1) Optimum soil moisture content for growth and yield of Azuki-beans was investigated on the different soils, several sowing dates and the some varieties. 2) Even under the same condition of soil and water content in pot culture, the different structure and the amounts of soil produced somewhat different results on the growth of this crop. 3) The optimum soil moisture content for the growth :and yield of Azuki-beans were 90∼80 % of water capacity and the moisture range for practical .growing of this crop was about l00∼60 %. The growth and yield of this crop grown under 40 % moisture content showed marked depression. 4) In this treatment, the root-top ratio showed the minimum and maximum value under optimum and the least soil moisture content, respectively and transpiration ratio under optimum conditions was more than 400. 5) During the early stages of growth soil moisture content required for the normal growth was comparatively low and in this period the plant growth was considerably normal even under dry condition as low as 40 %. Until about 40 days after sowing, the growth of this crop had not shown any appreciable differences by the different soil moisture treatments from 60 to 100 percent. Thereafter, growth rate was effected largely by the, different soil moisture content. 6) 4 varieties, early to late, were cultivated in the soil shelves .having the height of 10, 30, 50, 70, 90 cm from the constant level of subirrigated water table. 7)The soil was coarse sandy loam well aggregated to have good aeration. Soil moisture content of each layer of all plots was measured. (Fig. 2). 8) Plant height, number of nodes, condition of branching, dry weight of a plant increased according with lower and wetter conditions except 10 cm -high plot, this trend being more remarkable on the early rather than the late variety. 9) The early variety bloomed few days earlier in high level plots than low level plots, but the late did not show such a, difference. Number of pods, total number and weight of fertile grains increased with the lower and wetter conditions especially in the case of early variety, except 10 cm high. Weight of 100 grains of the early varieties increased but that of the late variety decreased with increasing soil moisture. The reason why the yield of the late varieties did not increased in spite of the increase of the total number of fertile grains as compared with the early varieties was the increase of the refuse grains. 10) In this study, the suitable height from the subirrigated water level for their growth and yield was estimated to be 30 cm in the early varieties and 50∼70 cm in the late varieties.
机译:1)对不同土壤,几个播种日期和一些品种进行了最佳土壤水分含量和Azuki-Beans的产量。 2)即使在盆栽培养物中的土壤和水含量的情况下,不同的结构和土壤的量也有所不同,导致这种作物的生长。 3)增长的最佳土壤水分含量:氮杂豆的产率为90〜80%,水分的实际情况和水分范围为实际。该作物的水分范围约为100〜60%。这种作物的生长和产量在40%的水分含量下种植显示出明显的抑郁症。 4)在该处理中,根部 - 顶部比在最佳和最低土壤水分含量下显示最小值和最大值,在最佳条件下的蒸腾率在最佳条件下大于400.5)在需要的生长土壤水分含量的早期阶段对于正常的生长相对较低,在此期间,即使在干燥条件下,植物生长也明显正常,低至40%。直到播种后约40天,这种作物的生长没有将不同的土壤水分治疗从60%显示出任何明显的差异。此后,生长速率主要受到不同土壤含水量的影响。 6)4个品种,早期在土架上栽培。从恒定水平的恒定水平的恒定水平,高度为10,30,50,70厘米。 7)土壤是粗糙的砂质壤土,聚集良好的曝气。测量所有图层的土壤水分含量。 (图2)。 8)植物高度,节点数量,分支的条件,植物的干重根据10cm-High Plot除了较低和潮湿的条件,这一趋势早期而不是晚期更加显着。 9)早期品种盛开的几天早期高水平的地块比低级别的情节,但晚了没有表现出这样的,差异。植物数量,肥沃粒的总数和重量增加,尤其是早期品种的较低和潮湿的条件,除10厘米高。早期品种100粒的重量增加,但随着土壤水分的增加,晚期变化降低。尽管与早期品种相比,由于肥沃谷物总数的增加,但晚期品种的产量没有增加的原因是垃圾颗粒的增加。 10)在该研究中,从源自沉积水平的水平和​​产率的合适高度估计在早期品种的30厘米,晚期50〜70厘米。

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