首页> 外文期刊>Soil Science and Plant Nutrition >Effect of basal side-dressing of various types of coated urea fertilizer on shoot growth, yield components and seed composition of soybean (Glycine max (L.) Merr.).
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Effect of basal side-dressing of various types of coated urea fertilizer on shoot growth, yield components and seed composition of soybean (Glycine max (L.) Merr.).

机译:各种包膜尿素肥料的基础追肥对大豆的苗期生长,产量构成和种子组成的影响(Glycine max(L.)Merr。)。

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摘要

Application of nitrogen (N) fertilizer at different times affected the shoot characters, yield components and seed composition of the soybean cultivar "Enrei" and its non-nodulating line "En1282". Soybean plants were cultivated using various types of coated urea fertilizers for controlled released of N. The control treatment consisted of basal side-dressing of readily available mixed fertilizer, which contained 1.6 g N m-2, 6.0 g P2O5 m-2 and 8.0 g K2O m-2. Various types of coated urea fertilizers were applied with basal side-dressing of 6 g N m-2 in addition to the mixed fertilizer. The types of coated urea fertilizers were as follows: linear release types CU70, CU100 and CU140, and sigmoid release types CUS80, CUS100 and CUS120. A major part of the N from CU70 and CU100 was released before the middle-stage of growth (beginning of pod stage), whereas CUS80 and CUS100 released N at approximately the middle-stage and CUS120 released N after the mid-stage. CU140 fertilizer is a uniform release type throughout the growth period. At the middle stage of growth, the chlorophyll content (leaf color) of En1282 was high with CU100 treatment, while the CUS100 treatment led to high chlorophyll content during the filling period. Leaf chlorophyll content of Enrei tended to increase with the CUS120 treatment during the filling period. The N2 fixation activity of nodulating Enrei, which was estimated using the relative ureide method, significantly decreased in the CU70, CU100 and CU140 treatments compared with the control at the flowering stage. At the beginning of the pod stage, treatment with CUS120 tended to lead to a higher N2 fixation activity than the control, whereas the CUS80 and CUS100 treatments depressed the N2 fixation activity during the seed filling period. The amount of N that accumulated in the shoots in all the coated urea treatments increased significantly compared with the control treatment in En1282 at the beginning of the maturity stage, whereas in Enrei it increased significantly only in CUS120 compared with the control. The yield was significantly higher in all the coated urea treatments compared with the control (49 g m-2), particularly in the CUS80 treatment (184 g m-2) in which N supply from the flowering period to the beginning of the pod stage resulted in the highest yield in En1282. In addition, in Enrei the seed yield increased significantly in each coated urea treatment and the largest increase was induced by CUS120 (498 g m-2) compared with the control (363 g m-2). In non-nodulating En1282, the amount of N released from flowering to the beginning of the pod stages showed a significant correlation with the total number of nodes, seed yield and seed weight. In nodulating Enrei, there was a significant relationship between N release from the beginning of the pod to the beginning of the maturity stages and the length of the main stem, seed yield and seed protein content. There was no significant difference in the free amino acid and total free sugar contents of seeds among the various fertilization treatments. Although the rate of the beta -subunit of the beta -conglycinin of storage protein increased significantly with the release of N from coated urea during the second half of the growth period in the seeds of En1282, there was no relationship with fertilization in the seeds of Enrei..
机译:氮(N)肥在不同时间的施用会影响大豆品种“ Enrei”及其非结瘤系“ En1282”的苗期性状,产量构成和种子组成。使用各种类型的包膜尿素肥料对大豆进行栽培,以控制氮的释放。防治措施包括易于施用的混合肥料的基础施用,该肥料分别含有1.6 g N m-2、6.0 g P2O5 m-2和8.0 g K 2 O m-2。除混合肥料外,还对各种类型的包膜尿素肥料进行了基础施肥,施用量为6 g N m-2。包膜尿素肥料的类型如下:线性释放类型CU70,CU100和CU140,以及S型释放类型CUS80,CUS100和CUS120。 CU70和CU100的大部分氮素在生长的中间阶段(荚果期开始)之前释放,而CUS80和CUS100大约在中间阶段释放N,而CUS120在中间阶段之后释放N。 CU140肥料在整个生长期都是均匀释放型。在生长的中期,使用CU100处理时,En1282的叶绿素含量(叶色)较高,而在填充期间,CUS100处理导致较高的叶绿素含量。在灌浆期,通过CUS120处理,恩里氏菌的叶绿素含量趋于增加。用相对脲离子法估算的结瘤性恩雷氏菌的固氮活性在开花期与对照相比在CU70,CU100和CU140处理中明显降低。在豆荚阶段开始时,用CUS120处理的N2固定活性往往比对照高,而CUS80和CUS100处理则在种子灌浆期降低了N2固定活性。在成熟期开始时,与En1282的对照处理相比,所有包膜尿素处理中的芽中累积的N量均显着增加,而在Enrei中,与对照相比,仅在CUS120中显着增加。与对照(49 g m-2)相比,所有包膜尿素处理的产量均显着更高,特别是在CUS80处理(184 g m-2)中,从开花期到豆荚期开始供应氮导致En1282的最高产量。此外,在Enrei中,每次包衣尿素处理的种子产量均显着增加,与对照(363 g m-2)相比,CUS120(498 g m-2)诱导的产量增幅最大。在非结瘤的En1282中,从开花到豆荚期开始释放的N量与结节总数,种子产量和种子重量显着相关。在结瘤恩雷氏菌中,从豆荚开始到成熟阶段开始的氮释放与主茎长度,种子产量和种子蛋白质含量之间存在显着关系。在各种施肥处理中,种子的游离氨基酸和总游离糖含量均无显着差异。尽管在En1282种子生长的后半段,贮藏蛋白的β-伴大豆球蛋白的β-亚基的比率随着包膜尿素中N的释放而显着增加,但与施肥没有关系。恩瑞

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