首页> 外文期刊>European Journal of Soil Biology >Co-inoculation with phosphate-solubilzing and nitrogen-fixing bacteria on solubilization of rock phosphate and their effect on growth promotion and nutrient uptake by walnut.
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Co-inoculation with phosphate-solubilzing and nitrogen-fixing bacteria on solubilization of rock phosphate and their effect on growth promotion and nutrient uptake by walnut.

机译:与磷酸盐增溶和固氮细菌共同接种对磷酸盐岩的增溶作用及其对核桃的生长促进和养分吸收的影响。

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The aim of this work was to evaluate effects of co-inoculation with phosphate-solubilizing bacteria (PSB) and nitrogen-fixing bacteria (NFB) on solubilization of rock phosphate (RP) and their effect on growth promotion and nutrient uptake by walnut seedlings. Two PSB strains, Pseudomonas chlororaphis and Bacillus megaterium, and two NFB strains, Arthrobacter pascens and Burkholderia cepacia, were selected to investigate interaction between PSB and NFB in liquid medium. The maximum concentration of soluble phosphorus (P) was determined in the mixing culture of P. chlororaphis and A. pascens. A strong correlation was found between pH and soluble P concentration, as well as the total organic acid production and P solubilization. Co-inoculation with P. chlororaphis and A. pascens amendment with RP resulted in the highest plant height, shoot and root dry weight, P and nitrogen (N) uptake of walnut seedlings, and the maximum amounts of available P and N in soils under shade house conditions. However, mixed inoculation with B. megaterium and A. pascens failed to increase these parameters. The results demonstrated that co-inoculation with PSB and NFB amendment with RP could be a promising and alternative option for utilizing this potent source as P fertilizer in walnut plants and maintaining greater nutrient availability in soils.
机译:这项工作的目的是评估与磷酸盐增溶菌(PSB)和固氮菌(NFB)一起接种对磷酸盐岩(RP)的增溶作用及其对核桃幼苗生长促进和养分吸收的影响。选择了两个PSB菌株,即绿假单胞菌和巨大芽孢杆菌,以及两个NFB菌株,即节杆菌和洋葱伯克霍尔德菌,以研究PSB和NFB在液体培养基中的相互作用。在P. chlororaphis和A. pascens的混合培养物中确定可溶性磷(P)的最大浓度。发现pH与可溶性P浓度,总有机酸产量和P增溶之间存在很强的相关性。与叶绿假单胞菌和带有RP的芦苇修正共同接种可导致核桃苗的最高株高,枝条和根的干重,氮和磷的吸收量以及土壤中有效磷和氮的最大含量阴凉处的条件。但是,与巨大芽孢杆菌和pascens混合接种不能增加这些参数。结果表明,将PSB和NFB改良剂与RP一起共接种可能是将这种有效来源用作核桃植物中的P肥料并保持土壤中更多养分的有前途和替代性选择。

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