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Molecular adaptations of H erbaspirillum seropedicae during colonization of the maize rhizosphere.

Authors :
Balsanelli, Eduardo
Tadra ‐ Sfeir, Michelle Z
Faoro, Helisson
Pankievicz, Vânia CS
Baura, Valter A
Pedrosa, Fábio O
Souza, Emanuel M
Dixon, Ray
Monteiro, Rose A
Source :
Environmental Microbiology; Aug2016, Vol. 18 Issue 8, p2343-2356, 14p
Publication Year :
2016

Abstract

Molecular mechanisms of plant recognition and colonization by diazotrophic bacteria are barely understood. H erbaspirillum seropedicae is a Betaproteobacterium capable of colonizing epiphytically and endophytically commercial grasses, to promote plant growth. In this study, we utilized RNA-seq to compare the transcriptional profiles of planktonic and maize root-attached H . seropedicae Sm R1 recovered 1 and 3 days after inoculation. The results indicated that nitrogen metabolism was strongly activated in the rhizosphere and polyhydroxybutyrate storage was mobilized in order to assist the survival of H . seropedicae during the early stages of colonization. Epiphytic cells showed altered transcription levels of several genes associated with polysaccharide biosynthesis, peptidoglycan turnover and outer membrane protein biosynthesis, suggesting reorganization of cell wall envelope components. Specific methyl-accepting chemotaxis proteins and two-component systems were differentially expressed between populations over time, suggesting deployment of an extensive bacterial sensory system for adaptation to the plant environment. An insertion mutation inactivating a methyl-accepting chemosensor induced in planktonic bacteria, decreased chemotaxis towards the plant and attachment to roots. In summary, analysis of mutant strains combined with transcript profiling revealed several molecular adaptations that enable H . seropedicae to sense the plant environment, attach to the root surface and survive during the early stages of maize colonization. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14622912
Volume :
18
Issue :
8
Database :
Complementary Index
Journal :
Environmental Microbiology
Publication Type :
Academic Journal
Accession number :
117509779
Full Text :
https://doi.org/10.1111/1462-2920.12887