2019•PubMedRequires access

[Screening, identification, and phosphate solubilizing characteristics of a new efficient phosphate solubilizing fungus].

Dou Dou Li, Shuang Hua Shang, Wei Han, Na Na Fang, Yan Li Yi

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Abstract

). Results from Pearson correlation analysis showed that there were significant negative correlations between the changes of phosphate solubili-zing capacity and pH in tricalcium phosphate, phosphate rock power and iron phosphate mediums, but no significant correlation in aluminum phosphate medium. Strain PSF1 had strong phosphate solu-bilizing capacity and wide growing conditions, thus would have strong phosphate solubilizing capacity in soil.

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). Results from Pearson correlation analysis showed that there were significant negative correlations between the changes of phosphate solubili-zing capacity and pH in tricalcium phosphate, phosphate rock power and iron phosphate mediums, but no significant correlation in aluminum phosphate medium. Strain PSF1 had strong phosphate solu-bilizing capacity and wide growing conditions, thus would have strong phosphate solubilizing capacity in soil.

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Available abstract

). Results from Pearson correlation analysis showed that there were significant negative correlations between the changes of phosphate solubili-zing capacity and pH in tricalcium phosphate, phosphate rock power and iron phosphate mediums, but no significant correlation in aluminum phosphate medium. Strain PSF1 had strong phosphate solu-bilizing capacity and wide growing conditions, thus would have strong phosphate solubilizing capacity in soil.

Key concepts: Phosphate, Chemistry, Potassium phosphate, Food science, Phosphorus, Phosphorite, Ammonium, Rhizosphere

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[Screening, identification, and phosphate solubilizing characteristics of a new efficient phosphate solubilizing fungus]. — Research Paper | ScholarLens