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首页> 外文期刊>Communications in Soil Science and Plant Analysis >Novel Fertilizer as an Alternative for Supplying Manganese and Boron to Soybeans
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Novel Fertilizer as an Alternative for Supplying Manganese and Boron to Soybeans

机译:新型肥料作为向大豆提供锰和硼的替代方案

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Soybean (Glycine max) commonly experience Mn deficiencies in the coarse-textured soils of Coastal Plain Virginia, especially under high pH conditions. The objective of this study was to investigate the ability of a novel coated fertilizer to provide Mn and B to soybeans in soils where Mn deficiency is common and B deficiency, although far less common than with Mn, is possible. A 60-d greenhouse experiment was conducted with three treatments: control, uncoated KCl, and Mn +B coated KCl applied to Bojac and Dragston sandy loams. Soil and whole plant tissue samples were collected throughout the experiment. Bojac and Dragston soils treated with the coated KCl contained 12.0 mg kg(-1) and 15.8 mg kg(-1) more Mehlich 1 - Mn, 21.7 mg kg(-1) and 23.0 mg kg(-1) more Mehlich 3 Mn, and 4.5 mg kg(-1) and 4.6 mg kg(-1) CaCl2 - Mn than the control and uncoated KCl, respectively. Coated KCl increased above ground tissue Mn by 42.9 mg kg(-1) compared to the control and the uncoated KCl treatments in the Bojac soil, while the Dragston soil showed no significant differences in Mn tissue concentration between treatments. Above ground tissue, Mn was much lower in the Dragston soil than the Bojac, probably due to greater organic matter which chelates Mn keeping it less plant available. Boron concentrations did not differ in plant tissue or soil, regardless of the extraction method. Results indicate that the coated KCl product could consistently provide increased Mn concentration in acidic sandy soils despite varying levels of organic matter, but is not effective for B.
机译:大豆(甘氨酸Max)通常会在沿海平原弗吉尼亚州的粗糙纹理土壤中经历Mn缺陷,特别是在高pH条件下。本研究的目的是探讨一种新型涂层肥料在缺乏常见和B缺乏症的土壤中为土壤提供Mn和B至大豆的能力,尽管比与Mn的常见远不那么常见。采用三种治疗方法进行60-D温室实验:对照,未涂覆的KCl和Mn + B涂层KCL应用于Bojac和Dragston Sandy Loams。在整个实验中收集土壤和整个植物组织样品。用涂层KCl处理的Bojac和Dragston土壤含有12.0mg kg(-1)和15.8mg kg(-1)更多Mehlich 1 - Mn,21.7mg kg(-1)和23.0mg kg(-1)更多Mehlich 3 Mn 4.5mg kg(-1)和4.6mg kg(-1)CaCl2-Mn分别比对照和未涂覆的KCl。与对照和Bojac土壤中的对照和未涂层的KCL治疗相比,涂覆的KCl以42.9mg kg(-1)增加了42.9mg kg(-1),而Dragston土壤在治疗之间的Mn组织浓度没有显着差异。在地面组织以上,龙杆菌土壤中的Mn比Bojac要低得多,可能是由于螯合Mn的更大的有机物质,使其保持较少的植物。植物组织或土壤中的硼浓度没有不同,无论提取方法如何。结果表明,尽管有机物质水平不同,但涂覆的KCl产物可以一致地提供酸性含有含有含有含有含有含有的Mn浓度,但对于B的水平而言是无效的。

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