Interspecific variation of the bacterial community structure in the Phyllosphere of the three major plant components of mangrove forests.

dc.contributorARMANDO CAVALCANTE FRANCO DIAS, CENA-USP; RODRIGO GOUVEA TAKETANI; FERNANDO DINI ANDREOTE, ESALQ-USP; DANICE MAZZER LUVIZOTTO, ESALQ-USP; JOAO LUIZ DA SILVA, CNPMA; ROSELY DOS SANTOS NASCIMENTO, CNPMA; ITAMAR SOARES DE MELO, CNPMA.
dc.creatorDIAS, A. C. F.
dc.creatorTAKETANI, R. G.
dc.creatorANDREOTE, F. D.
dc.creatorLUVIZOTTO, D. M.
dc.creatorSILVA, J. L. da
dc.creatorNASCIMENTO, R. dos S.
dc.creatorMELO, I. S. de
dc.date2012-12-14T11:11:11Z
dc.date2012-12-14T11:11:11Z
dc.date2012-12-14
dc.date2012
dc.date2012-12-14T11:11:11Z
dc.date.accessioned2026-07-07T04:55:47Z
dc.descriptionABSTRACT: Mangrove forests encompass a group of trees species that inhabit the intertidal zones, where soil is characterized by the high salinity and low availability of oxygen. The phyllosphere of these trees represent the habitat provided on the aboveground parts of plants, supporting in a global scale, a large and complex microbial community. The structure of phyllosphere communities reflects immigration, survival and growth of microbial colonizers, which is influenced by numerous environmental factors in addition to leaf physical and chemical properties. Here, a combination of culture-base methods with PCR-DGGE was applied to test whether local or plant specific factors shape the bacterial community of the phyllosphere from three plant species (Avicenia shaueriana, Laguncularia racemosa and Rhizophora mangle), found in two mangroves. The number of bacteria in the phyllosphere of these plants varied between 3.62 x 104 in A. schaeriana and 6.26 x 103 in R. mangle. The results obtained by PCR-DGGE and isolation approaches were congruent and demonstrated that each plant species harbor specific bacterial communities in their leaves surfaces. Moreover, the ordination of environmental factors (mangrove and plant species), by redundancy analysis (RDA), also indicated that the selection exerted by plant species is higher than mangrove location on bacterial communities at phyllosphere.
dc.identifierBrazilian Journal of Microbiology, São Paulo, v. 43, n. 2, p. 653-660, 2012.
dc.identifierhttp://www.alice.cnptia.embrapa.br/alice/handle/doc/942708
dc.identifier.urihttp://hdl.handle.net/123456789/474832
dc.languageeng
dc.rightsopenAccess
dc.subjectCulture-independent profiling
dc.subjectPlant genotype
dc.subjectSurface leaves
dc.subjectMangue
dc.subjectBactéria
dc.subjectPlanta
dc.subjectPhyllosphere
dc.subjectMangrove forests
dc.titleInterspecific variation of the bacterial community structure in the Phyllosphere of the three major plant components of mangrove forests.
dc.typeArtigo de periódico

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