首页> 外文期刊>日本作物學會紀事 >Competition among Individual Plants in Crop Population : V. Top-root relative growth habit of the plant in case the nutrition level was changed in the mid course of the stage
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Competition among Individual Plants in Crop Population : V. Top-root relative growth habit of the plant in case the nutrition level was changed in the mid course of the stage

机译:作物人口中个体植物中的竞争:V.在舞台中期营养水平发生营养水平的情况下,植物的顶根相对生长习惯

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We tried to ascertain that how thc growth habits of plants would be altered where the nutrition levels of cultural solution were changed in the mid course of vegetative growth stage from the viewpoint of top-root relationships. Materials used were Lolium multiflorum LAM., Mammos italian B sp. and Mammos A sp. as erect type and weeping type respectively. The experiments were carried out in a green house, and water culture with Hewitt's solution was adopted (Treatment N-L: nutrition level was changed 10 ppm→ 10 ppm→ 10 ppm→ 50 ppm, Treatment N-N: nutrition level was changed 50 ppm→ 10 ppm→ 50 ppm→ l0 ppm). The results obtained were as follows; 1. There was no remarkable change in the pattern of increase in the total plant dry weight under circumstances where the nutrition levels were changcd in the mid course of the growth stage of the plant. In the later stage of growth the total plant dry weight, however, was larger under high nutrition level than under the low nutrition level. 2. The value of relative growth coefficient h (h=tan θ) was altered parallel with increase or decrease in nutrition level. 3. The value of T/R 3-D ratio's, however, was changed elastically parallel with the change in nutrition level. 4. Change in mean stem nos/root nos. ratio (S/R nos. ratio) over each period among successive samplings with advance of growth stage was the same as the pattern of the change in T/R 3-D ratio. 5. The value of the estimated root surface area by using the area meter (Hayashi denko AAM-5) in low nutrition level were larger than those in high nutrition level. The value in low planting density were always larger than those in high planting density, i.e. D(9) D(6) D(3), throughout the experimental period. 6. The top-root relationships, however, showed the elastic reaction in accordance with the change in nutrition levels. From the viewpoint of community structure, it was considered that the change of two dimensional plane S/R nos. ratio and three dimensional T/R 3-D ratio in accordance with the nutrition level seemed to have the influence, in the result, on the change in the value of relative growth coefficient (h = tan θ).
机译:我们试图确定植物的生长习惯如何改变植物的营养水平从顶根关系的观点来改变营养生长期的中期过程中的营养水平。使用的材料是Lolium Multiflorum Lam。,Mammos意大利语B SP。和乳房一个sp。分别为竖立型和脉冲类型。实验在一个温室中进行,采用休伊特溶液的水培养(治疗NL:营养水平改变10ppm→10ppm→10 ppm→50ppm,治疗Nn:营养水平改变50 ppm→10 ppm →50 ppm→l0 ppm)。获得的结果如下; 1.在植物生长期中期营养水平在植物中期过程中,营养水平在营养水平在植物中期过程中的情况下,没有显着变化。然而,在较晚的生长阶段,在高营养水平下,在高营养水平下,总植物干重比低营养水平更大。 2.相对生长系数H(H =TANθ)的值与增加或降低营养水平并行改变。然而,T / R 3-D比的值随着营养水平的变化而弹性平行。 4.平均阀杆/根号码的变化。在增长阶段的前进的连续采样中的每个时段中的比例(S / R NOS。比率)与T / R 3-D比的变化模式相同。 5.在低营养水平中使用区域仪表(Hayashi Denko AAM-5)的估计根表面积的值大于高营养水平的区域。低种植密度的值总是大于整个实验期间的高种植密度,即D(9)> D(6)> D(3)。然而,顶根关系根据营养水平的变化显示弹性反应。从社区结构的角度来看,据认为是二维平面S / R NOS的变化。与营养水平的比率和三维T / R 3-D比似乎具有影响,结果在相对生长系数(H =TANθ)的变化上。

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