Results 241 to 250 of about 437,525 (288)
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Ecological Engineering, 2008
Abstract The optimization for rock phosphate (RP) solubilization by phosphate-solubilizing fungi ( Candida krissii , Penicillium expansum and Mucor ramosissimus ) isolated from phosphate mines (Hubei, PR China) was investigated. The content of soluble phosphorus (P) released by these isolates was tested on the National Botanical Research Institute'
Dian-Zuo Wang, Guan-Zhou Qiu
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Abstract The optimization for rock phosphate (RP) solubilization by phosphate-solubilizing fungi ( Candida krissii , Penicillium expansum and Mucor ramosissimus ) isolated from phosphate mines (Hubei, PR China) was investigated. The content of soluble phosphorus (P) released by these isolates was tested on the National Botanical Research Institute'
Dian-Zuo Wang, Guan-Zhou Qiu
exaly +2 more sources
Phosphate solubilization potential and stress tolerance of Eupenicillium parvum from tea soil
Eupenicillium parvum was recorded for first time during isolation of phosphate-solubilizing microorganisms from the tea rhizosphere. The fungus developed a phosphate solubilization zone on modified Pikovskaya agar, supplemented with tricalcium phosphate.
Pratibha Vyas +2 more
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Journal of Soil Science and Plant Nutrition, 2020
Phosphorus is the second most critical macronutrient after nitrogen required for metabolism, growth, and development of plants. Despite the abundance of phosphorus in both organic and inorganic forms in the soil, it is mostly unavailable for plant uptake due to its complexation with metal ions in the soil. The use of agrochemicals to satisfy the demand
Pratibha Rawat +3 more
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Phosphorus is the second most critical macronutrient after nitrogen required for metabolism, growth, and development of plants. Despite the abundance of phosphorus in both organic and inorganic forms in the soil, it is mostly unavailable for plant uptake due to its complexation with metal ions in the soil. The use of agrochemicals to satisfy the demand
Pratibha Rawat +3 more
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Phosphate-Solubilizing Microbes: Diversity and Phosphates Solubilization Mechanism
2018Phosphorus (P) is an essential plant nutrient second after nitrogen. Soil phosphorus, especially in soils of high P-fixing capacity, remains unavailable to plants. Soil microorganisms belonging to diverse genera having ability to transform insoluble P into soluble and plant accessible forms are collectively referred as phosphate-solubilizing ...
Manoj Shrivastava +2 more
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Solubilization of inorganic calcium phosphates—Solubilization mechanisms
Soil Biology and Biochemistry, 1995Abstract Two species [Penicillium aurantiogriseum and Pseudomonas sp. ( PI18 89 )] having high abilities in solubilizing inorganic phosphates (hydroxylapatite and brushite) were used to examine solubilization mechanisms. No direct contact between microorganisms and calcium phosphates (Ca-Ps) were necessary for effective solubilization.
P. Illmer, F. Schinner
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2014
Phosphorus (P) is the second important key plant nutrient after nitrogen. An adequate supply of P is therefore required for proper functioning and various metabolisms of plants. Majority of P in soils is fixed, and hence, plant available P is scarcely available despite the abundance of both inorganic and organic P forms in soils.
Md. Saghir Khan, Almas Zaidi, Ees Ahmad
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Phosphorus (P) is the second important key plant nutrient after nitrogen. An adequate supply of P is therefore required for proper functioning and various metabolisms of plants. Majority of P in soils is fixed, and hence, plant available P is scarcely available despite the abundance of both inorganic and organic P forms in soils.
Md. Saghir Khan, Almas Zaidi, Ees Ahmad
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International Journal of Bio-resource and Stress Management, 2023
The investigations were conducted at Sardar Vallabhai Patel University of Agriculture and Technology, Meerut, Uttar Pradesh, India during March 2019 to January 2020 for isolation and characterization and identification of phosphate solubilizing microbes (PSM) in soils of northern region of India.
Akansha Singh +5 more
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The investigations were conducted at Sardar Vallabhai Patel University of Agriculture and Technology, Meerut, Uttar Pradesh, India during March 2019 to January 2020 for isolation and characterization and identification of phosphate solubilizing microbes (PSM) in soils of northern region of India.
Akansha Singh +5 more
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Chemosphere, 2019
Lead can be immobilized in contaminated soils by phosphate rock (PR) amendment, but its efficiency is generally limited by low solubility of PR. Our study aimed to elucidate whether phosphate solubilizing bacteria (PSB) can promote Pb immobilization through PR solubilization. Results showed that P. ananatis HCR2 and B.
Jia-cheng Xu +4 more
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Lead can be immobilized in contaminated soils by phosphate rock (PR) amendment, but its efficiency is generally limited by low solubility of PR. Our study aimed to elucidate whether phosphate solubilizing bacteria (PSB) can promote Pb immobilization through PR solubilization. Results showed that P. ananatis HCR2 and B.
Jia-cheng Xu +4 more
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Phosphate-Solubilizing Microorganisms
2011Phosphorus plays a significant role in several physiological and biochemical activities such as photosynthesis, transformation of sugar to starch, and other biological processes in plants. Phosphorus in soils is immobilized due to formation of insoluble complexes such as iron and aluminium hydrous oxides, crystalline and amorphous aluminium silicate ...
Ramesh Chander Kuhad +3 more
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Applied Soil Ecology, 2006
Abstract The ability of a few soil microorganisms to convert insoluble forms of phosphorus to an accessible form is an important trait in plant growth-promoting bacteria for increasing plant yields. The use of phosphate solubilizing bacteria as inoculants increases the P uptake by plants. In this study, isolation, screening and characterization of 36
Y.P. Chen +5 more
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Abstract The ability of a few soil microorganisms to convert insoluble forms of phosphorus to an accessible form is an important trait in plant growth-promoting bacteria for increasing plant yields. The use of phosphate solubilizing bacteria as inoculants increases the P uptake by plants. In this study, isolation, screening and characterization of 36
Y.P. Chen +5 more
openaire +1 more source

