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- W2017458514 abstract "The aim of the present study was to evaluate the effect of cultivation of some agronomic plant species on inorganic soil-P fractions in different sampling zones. The experiment was conducted as a completely randomized design as factorial in three replicates. The factors were plant species (10 different species and control) and soil-sampling zone (soil adhering to root mat, rhizosphere soil, and nonrhizospheric soil). The thin-slicing technique was modified and used to sample rhizosphere soil. The percentages of P fractions in the planted and control soils were near 64% apatite (apatite-P), 24% octa-Ca-phosphates (OCP-P), 7% Fe-phosphates (Fe-P), 4% di-Ca-phosphates (DCP-P), 1% Al-phosphates (Al-P), and 0% occluded-P (O-P). All of the studied plant species decreased significantly all of the inorganic P fractions in soil adhering to root mat and in rhizosphere soil compared to those in nonrhizosphere soil. However, these decreases were not equal for each fraction and the percentage of apatite-P increased in rhizosphere soil of the plant species. The means of total P, soluble P, DCP-P, OCP-P, Al-P, and Fe-P were lower in soil adhering to root mat compared to those in rhizosphere soil. However, this difference was only significant for OCP-P. In contrast, the mean of apatite-P in soil adhering to root mat was significantly higher than that in rhizosphere soil. The changes of apatite-P may be more governed by microbial activities (especially mycorrhizal symbiosis) which may be higher in rhizosphere soil compared to soil adhering to root mat." @default.
- W2017458514 created "2016-06-24" @default.
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- W2017458514 date "2011-07-01" @default.
- W2017458514 modified "2023-10-14" @default.
- W2017458514 title "Changes in phosphorus fractions in the rhizosphere of some crop species under glasshouse conditions" @default.
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- W2017458514 doi "https://doi.org/10.1002/jpln.201000288" @default.
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