By Anne Willems (auth.), E. Velázquez, C. Rodríguez-Barrueco (eds.)
Last decade has visible a considerably elevated wisdom approximately phosphate solubilizing microorganisms. Sixty experts from 13 nations met in Salamanca to debate the issues of the excessive P-unavailability as a soil nutrient for vegetation, and the risks of an expanding phosphate enter to aquatic habitats from commercial and mining actions, sewage disposal, detergents, and different resources. up-to-date options to reinforce P-uptake by way of vegetation, bioremediation power within the rehabilitation of ecosystems, taxonomic characterization interactions with mycorrizae, the physiological and molecular foundation of PSM, and probabilities of genetic differences of rhizospheric microorganisms have been one of the contributions awarded. demanding situations in commercializing a phosphate solubilizing microorganism have been additionally defined through a appropriate biotech corporation. The publication will fill a spot in agricultural libraries and it's a want of the editors to draw the eye of agronomists, environmentalist, technocrats and directors preserving obligations within the box of soil conservation and sustainable agricultural production.
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Final decade has noticeable a considerably elevated wisdom approximately phosphate solubilizing microorganisms. Sixty experts from 13 international locations met in Salamanca to debate the issues of the excessive P-unavailability as a soil nutrient for vegetation, and the dangers of an expanding phosphate enter to aquatic habitats from commercial and mining actions, sewage disposal, detergents, and different assets.
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Additional info for First International Meeting on Microbial Phosphate Solubilization
Olsen S R and Sommers L E 1982 Phosphorus. , Ed. Page AL. Am Soc. Agron. and Soil Sci. Soc. A. Madison, Wisconsin, USA. Peix A, Rivas-Boyero A A, Mateos P F, Rodriguez-Barrueco C, Martinez-Molina E and Velazquez E 2001 Growth promotion of chickpea and barley by a phosphate solubilizing strain of Mesorhizobium mediterraneum under growth chamber conditions. Soil Biol. Biochem. 33, 103–110. Richardson A E 2001 Prospects for using soil microorganisms to improve the acquisition of phosphorus by plants.
The 879-RAPD patterns obtained for group III also differed from the pattern shown by M. tianshanense USDA 3592T. Finally, the patterns between group IV and M. ciceri USDA 3383T were also diﬀerent. These results suggest that groups I and II may be subspecies of M. mediterraneum, group III a subspecies of M. tianshanense and group IV a subspecies of M. ciceri. Nevertheless, more studies are needed to establish the taxonomic status of strains isolated in this study. Introduction The solubilization of phosphates has been found in several species of rhizobia that nodulate diﬀerent legumes.
Rodriguez H and Fraga R 1999 Phosphate solubilizing bacteria and their role in plant growth promotion. Biotech. Adv. 17, 319–339. SAS, Institute Inc 1990 SAS procedure guide version 6 edn. SAS Institute Inc Cary, NC, 705 p. Schloter M, Wiehe W, Assmus B, Steindl H, Beke H, Ho¨ﬂich G and Hartmann A 1997 Root colonization of diﬀerent plants by plant-growth-promoting Rhizobium leguminosarum bv. trifolii R39 studied with monosporic polyclonal antisera. Appl. Environ. Microbiol. 63, 2038–2046. Silva Filho G N and Vidor C 2000 Phosphate solubilization by microorganisms in the presence of diﬀerent carbon sources.