Phytate addition to soil induces changes in the abundance and expression of Bacillus ß-propeller phytase genes in the rhizosphere

J Milko A, S Nicolás, M Fumito, R Alan E… - FEMS microbiology …, 2013 - academic.oup.com
Phytate-mineralizing rhizobacteria (PMR) perform an essential function for the
mineralization of organic phosphorus but little is known about their ecology in soils and …

[引用][C] Phytate addition to soil induces changes in the abundance and expression of Bacillus β-propeller phytase genes in the rhizosphere

MA JORQUERA, N SAAVEDRA… - FEMS microbiology …, 2013 - pascal-francis.inist.fr
Phytate addition to soil induces changes in the abundance and expression of Bacillus β-propeller
phytase genes in the rhizosphere CNRS Inist Pascal-Francis CNRS Pascal and Francis …

[PDF][PDF] Phytate addition to soil induces changes in the abundance and expression of Bacillus ß-propeller phytase genes in the rhizosphere

MA Jorquera, N Saavedra, F Maruyama… - 2012 - academia.edu
Phytate-mineralizing rhizobacteria (PMR) perform an essential function for the
mineralization of organic phosphorus but little is known about their ecology in soils and …

Phytate addition to soil induces changes in the abundance and expression of Bacillus β-propeller phytase genes in the rhizosphere.

MA Jorquera, N Saavedra, F Maruyama… - FEMS Microbiology …, 2012 - europepmc.org
Phytate-mineralizing rhizobacteria (PMR) perform an essential function for the
mineralization of organic phosphorus but little is known about their ecology in soils and …

Phytate addition to soil induces changes in the abundance and expression of Bacillus ß‐propeller phytase genes in the rhizosphere

MA Jorquera, N Saavedra, F Maruyama… - FEMS Microbiology …, 2013 - infona.pl
Phytate‐mineralizing rhizobacteria (PMR) perform an essential function for the
mineralization of organic phosphorus but little is known about their ecology in soils and …

[引用][C] Phytate addition to soil induces changes in the abundance and expression ofBacillusß-propeller phytase genes in the rhizosphere

MA Jorquera, N Saavedra… - FEMS Microbiology …, 2013 - ui.adsabs.harvard.edu
Phytate addition to soil induces changes in the abundance and expression ofBacillusß-propeller
phytase genes in the rhizosphere - NASA/ADS Now on home page ads icon ads Enable full …

[PDF][PDF] Phytate addition to soil induces changes in the abundance and expression of Bacillus ß-propeller phytase genes in the rhizosphere

MA Jorquera, N Saavedra, F Maruyama… - FEMS Microbiol …, 2012 - researchgate.net
Phytate-mineralizing rhizobacteria (PMR) perform an essential function for the
mineralization of organic phosphorus but little is known about their ecology in soils and …

Phytate addition to soil induces changes in the abundance and expression of Bacillus β-propeller phytase genes in the rhizosphere.

MA Jorquera, N Saavedra, F Maruyama… - 2013 - cabidigitallibrary.org
Phytate-mineralizing rhizobacteria (PMR) perform an essential function for the
mineralization of organic phosphorus but little is known about their ecology in soils and …

Phytate addition to soil induces changes in the abundance and expression of Bacillus ß‐propeller phytase genes in the rhizosphere

MA Jorquera, N Saavedra, F Maruyama… - FEMS Microbiology …, 2013 - Wiley Online Library
Phytate‐mineralizing rhizobacteria (PMR) perform an essential function for the
mineralization of organic phosphorus but little is known about their ecology in soils and …

Phytate addition to soil induces changes in the abundance and expression of Bacillus β-propeller phytase genes in the rhizosphere

MA Jorquera, N Saavedra… - FEMS …, 2013 - pubmed.ncbi.nlm.nih.gov
Phytate-mineralizing rhizobacteria (PMR) perform an essential function for the
mineralization of organic phosphorus but little is known about their ecology in soils and …