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首页> 外文期刊>Journal of Plant Nutrition >Influence of soil applied boron on yield of berseem (Trifolium alexandrium L.) and soil boron fractions in calcareous soils
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Influence of soil applied boron on yield of berseem (Trifolium alexandrium L.) and soil boron fractions in calcareous soils

机译:土壤施加硼对钙质土壤(Trifolium Alexandrium L.)产量的影响

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摘要

A greenhouse experiment was conducted in North-west India to study the effect of soil applied boron on yield of berseem (Trifolium alexandrium L.) and soil boron fractions in boron deficient calcareous soils. Three soils with varying calcium carbonate content viz. 0.75% (Soil I), 2.6% (Soil II), and 5.7% (Soil III) were collected from different sites of Ludhiana, Bathinda, and Shri Muktsar Sahib districts, Punjab, India. The treatments consisted of six levels of soil applied boron viz. 0.5, 0.75, 1.0, 1.25, 1.5, and 2.0mg B kg(-1) along with control. The green fodder yield and dry matter yield increased significantly at 0.75mg B kg(-1) soil treatment level in the first cutting, while these were significant at 1.0mg B kg(-1) soil treatment level in all soils at second, third, and fourth cuttings. Among all three calcareous soils, Soil I with lower calcium carbonate was the best soil in respect of mean yield in comparison to Soil II and Soil III. Combined effect of boron level and soils had significant effect on yield of berseem. There was a significant increase in mean dry root biomass at 1.0mg B kg(-1) soil level over control and then remained non-significant with further high levels of soil applied boron. The mean dry root biomass decreased significantly for the soils having 0.75%, 2.6%, and 5.7% calcium carbonate levels. Readily soluble fraction is considered to be easily available fraction of B for plant uptake and consisted of 0.47-0.62% in Soil I, 0.31-0.43% in Soil II, and 0.24-0.34% in Soil III of the total boron. Among all B fractions, mean readily soluble, specifically adsorbed, and oxide-bound fractions got increased significantly with increase in B levels. Readily soluble and organically bound B fractions were more in Soil I as compared to Soil II and Soil III. Specifically adsorbed boron, oxide bound fraction, residual and total boron were more in Soil III in comparison to Soil I and Soil II. Among all fractions, residual fraction accounted for the major portion of the total B. It comprised of 92.71-93.90% in Soil I, 94.51-95.40% in Soil II, and 94.91-95.25% in Soil III of the total boron.
机译:温室实验是在印度西北进行的,研究土壤应用硼对硼缺乏钙质土壤(Trifolium Alexandrium L.)和土壤硼级分的产量的影响。三种土壤,具有不同碳酸钙含量的碳酸钙含量。从印度旁遮普邦旁遮普邦旁遮普邦旁遮普邦的不同部位收集了0.75%(土壤I),2.6%(土壤II)和5.7%(土壤III)。治疗组成,由六种水平的土壤应用硼Ziz组成。 0.5,0.75,1.0,1.25,1.5和2.0mg B kg(-1)以及控制。在第一切割中,绿色饲料产量和干物质产量在0.75mg(-1)土壤处理水平下显着增加,而在第二次,第三个和第四条切屑。在所有三种钙质土壤中,与土壤II和土壤III相比,碳酸钙碳酸钙的土壤I是最佳土壤。硼水平和土壤的综合作用对麻骨产量的显着影响。在1.0mg B kg(-1)土壤水平上的平均干根生物量均显着增加,然后对进一步高水平的土壤施加硼保持不显着。平均干根生物量显着降低了0.75%,2.6%和5.7%碳酸钙水平的土壤。易溶性级分被认为是植物摄取的易用级数,并在土壤I中的0.47-0.62%组成,在整硼的土壤III中为0.31-0.43%,0.24-0.34%。在所有B级分中,平均易溶性,特异性吸附,氧化物结合的级分随B水平的增加而显着增加。与土壤II和土壤III相比,土壤I容易溶于和有机结合的B级分。与土壤I和土壤II相比,土壤III特别是吸附的硼,氧化物结合级分,残余和总硼。在所有级分中,残留部分占总B的主要部分。它在土壤I中的土壤I,94.51-95.40%的92.71-93.90%组成,总硼的土壤III中的94.51-95.40%,94.91-95.25%。

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