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Application of biochar and inorganic phosphorus fertilizer influenced rhizosphere soil characteristics nodule formation and phytoconstituents of cowpea grown on tropical soil

机译:生物炭和无机磷肥的应用影响了热带土壤中豇豆的根际土壤特性结节形成和植物植物植物

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摘要

The effect of biochar alone or co-applied with triple superphosphate on rhizosphere soil characteristics, nodule formation, phytoconstituents and antioxidant property of cowpea (Vigna uguiculata) is yet to be adequately examined in sub Saharan Africa. A field experiment was conducted where cowpea (Vigna unguiculata) was grown in a tropical sandy loam soil amended with biochar at 1.5 t ha−1 and 2.5 t ha−1 solely or together with inorganic phosphate fertilizer (Triple superphosphate), applied at a rate of 60 kg P ha −1. At 50% flowering, changes in selected rhizosphere soil properties (pH, total nitrogen, available phosphorus, soil organic carbon, cation exchange capacity), nodule count, phytochemicals (phenols, flavonoids, alkaloids, tannins, saponins) and antioxidant property of cowpea roots and leaves were determined by standard laboratory procedures. Differences between means of the measured parameters were established using ANOVA, and relationships among the parameters were explored using Pearson correlation (p < 0.05). Addition of biochar solely or in combination with TSP significantly (p < 0.05) increased soil pH, total nitrogen, available phosphorus, soil organic carbon, cation exchange capacity and root nodule count. Flavonoids, phenols, alkaloids, saponin, tannin contents and antioxidant activity in the roots and leaves were significantly (p < 0.05) higher in the amended soils compared with the unamended soil. Similarly, soil flavonoids, phenols, alkaloids and antioxidant activity were significantly higher in amended soils compared with control. Significant, positive inter and intra correlation with varying strength was found between soil properties, nodule number and phytoconstituents. This is an indication that biochar can be co-applied with triple superphosphate to sustain soil fertility, improve nodulation and enhance concentrations of phytoconstituents in soil, cowpea roots and leaves.
机译:仅在撒哈拉以南非洲撒哈拉省(Vigna Uguiculata)对根际土壤特性,结节形成,植物组织和抗氧化特性,生物炭的影响还是对根际土壤特征,结节形成,植物组织和抗氧化剂特性。进行田间实验,其中豇豆(Vigna Unguiculata)在用Biochar的热带砂土土壤中生长,在1.5 t Ha-1和2.5 t Ha-1,或与无机磷酸盐肥(三重磷酸盐)一起施用,施用60 kg p ha -1。在50%开花,所选择的根际土壤性质(pH,总氮,可用磷,土壤有机碳,阳离子交换能力),结节计数,植物,黄酮类化合物,生物碱,单宁,皂苷)和豇豆根的抗氧化特性叶子由标准实验室程序确定。使用ANOVA建立测量参数的手段之间的差异,使用Pearson相关探索参数之间的关系(P <0.05)。单独或与TSP组合的生物炭显着(P <0.05)增加土壤pH,总氮,可用磷,土壤有机碳,阳离子交换能力和根瘤数量。与未来未加工的土壤相比,在根和叶中的黄酮类化合物,酚类,生物碱,皂苷,根部和叶片中的抗氧合体和抗氧化活性显着(p <0.05)。类似地,与对照相比,修正的土壤中,土壤黄酮类化合物,酚,生物碱和抗氧化活性显着较高。在土壤性质,结节数和植物植物中发现了与不同强度的显着,正交和内部相关性。这表明Biochar可以共同用三倍磷酸盐,以维持土壤肥力,提高染色和增强土壤中植物,豇豆根和叶子的植物培养基浓度。

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