Beneficial Plant-microbial Interactions: Ecology and by M. Belén Rodelas González, Jesús Gonzalez-López PDF

By M. Belén Rodelas González, Jesús Gonzalez-López

Precious Plant-microbial Interactions: Ecology and functions presents perception into the mechanisms underlying the interactions of vegetation and microbes, the ecological relevance and roles of those symbioses, the adaptive mechanisms of plant-associated microorganisms to abiotic rigidity and their contribution to plant tension tolerance, and the potential for those interactions as instruments in agrobiotechnology. A staff of authors with large adventure within the zone give a contribution updated studies in nineteen chapters dedicated to varied ecological and utilized facets of the rhizobia-legume symbiosis, ecto- and endomycorrhizas, and plant institutions with diazotrophic or adiazotrophic plant-growth selling rhizobacteria. The publication is meant for college students, researchers and educational school contributors within the box of agrobiotechnology.

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Extra resources for Beneficial Plant-microbial Interactions: Ecology and Applications

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E. J. Feil. 2004. Multilocus sequence typing—what is resolved? Trends Microbiol. 12: 373–377. , S. Jitacksorn, E. J. Sadowsky. 2008. Insights learned from pBTAi1, a 229-kb accessory plasmid from Bradyrhizobium sp. strain BTAi1 and prevalence of accessory plasmids in other Bradyrhizobium sp. strains. ISME J. 2: 158–170. D’Haeze, W. and M. Holsters. 2002. Nod factor structures, responses, and perception during initiation of nodule development. Glycobiology. 12: 79R–105R. A. P. Young. 2001. Genome sequencing.

Infection and invasion of roots by symbiotic, nitrogen-fixing rhizobia during nodulation of temperate legumes. Microbiol. Mol. Biol. Rev. 68: 280–300. , L. Hannibal, L. Fardoux, A. Vermeglio and B. Dreyfus. 2000. Effect of Bradyrhizobium photosynthesis on stem nodulation of Aeschynomene sensitiva. Proc. Nat. Acad. Sci. A. 97: 14795–14800. , L. Moulin, D. Vallenet, V. Barbe, E. C. Avarre, M. Jaubert, D. Simon, F. Cartieaux, Y. Prin et al. 2007. Legumes symbioses: Absence of Nod genes in photosynthetic bradyrhizobia.

2003. Low sequence similarity and gene content of symbiotic clusters of Bradyrhizobium sp. WM9 (Lupinus) indicate early divergence of “lupin” lineage in the genus Bradyrhizobium. Ant. van Leeuwenhoek. 84: 115–124. E. J. Law, L. Markiewicz, D. Gurda, A. Chlebicka and L. Moulin. 2007. Diversification of lupine Bradyrhizobium strains: Evidence from nodulation gene trees. Appl. Environ. Microbiol. 73: 3254–3264. , M. Zak, L. Moulin, J. Kroliczak, B. Golinska, D. I. Safronova and C. J. Madrzak. 2011.

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