Please use this identifier to cite or link to this item: https://hdl.handle.net/10316/109157
Title: Serpentine bacteria influence metal translocation and bioconcentration of Brassica juncea and Ricinus communis grown in multi-metal polluted soils
Authors: Ma, Ying 
Rajkumar, Mani 
Rocha, Inês 
Oliveira, Rui S. 
Freitas, Helena 
Keywords: phytostabilization; plant growth promoting bacteria; serpentine soils; heavy metals; Brassica juncea; Ricinus communis
Issue Date: 2014
Publisher: Frontiers Media S.A.
Project: YingMaandRuiS.Oliveirawishtoacknowledgethesupportof FundaçãoparaaCiênciaeaTecnologia(FCT)throughtheresearch grantsSFRH/BPD/76028/2011andSFRH/BPD/85008/2012and FundoSocialEuropeu.ManiRajkumaracknowledgesthefinancial supportreceivedintheformofRamalingaswamire-entryfellow- ship fromDepartmentofBiotechnology(DBT),Governmentof India.InêsRochawassupportedbytheFCTgrantBI-EXPL/AGR- TEC/1204/2013. ThisworkwassupportedbyNationalFunds throughFCTundertheprojectEXPL/AGR-TEC/1204/2013, financedbyFundoEuropeudeDesenvolvimentoRegional (FEDER), EixoIdoProgramaOperacionalFatoresdeCom- petitividade(POFC)ofQREN(COMPETE:FCOMP-01-0124- FEDER-041572),andtheprojectPEst-OE/BIA/UI4004/2014. 
Serial title, monograph or event: Frontiers in Plant Science
Volume: 5
Issue: JAN
Abstract: The aim of this study was to assess the effects of inoculation of rhizosphere or endophytic bacteria (Psychrobacter sp. SRS8 and Pseudomonas sp. A3R3, respectively) isolated from a serpentine environment on the plant growth and the translocation and accumulation of Ni, Zn, and Fe by Brassica juncea and Ricinus communis on a multi-metal polluted serpentine soil (SS). Field collected SS was diluted to 0, 25, 50, and 75% with pristine soil in order to obtain a range of heavy metal concentrations and used in microcosm experiments. Regardless of inoculation with bacteria, the biomass of both plant species decreased with increase of the proportion of SS. Inoculation of plants with bacteria significantly increased the plant biomass and the heavy metal accumulation compared with non-inoculated control in the presence of different proportion of SS, which was attributed to the production of plant growth promoting and/or metal mobilizing metabolites by bacteria. However, SRS8 showed a maximum increase in the biomass of the test plants grown even in the treatment of 75% SS. In turn, A3R3 showed maximum effects on the accumulation of heavy metals in both plants. Regardless of inoculation of bacteria and proportion of SS, both plant species exhibited low values of bioconcentration factor (<1) for Ni and Fe. The inoculation of both bacterial strains significantly increased the translocation factor (TF) of Ni while decreasing the TF of Zn in both plant species. Besides this contrasting effect, the TFs of all metals were <1, indicating that all studied bacteria-plant combinations are suitable for phytostabilization. This study demonstrates that the bacterial isolates A3R3 and SRS8 improved the growth of B. juncea and R. communis in SS soils and have a great potential to be used as inoculants in phytostabilization scenarios of multi-metal contaminated soils.
URI: https://hdl.handle.net/10316/109157
ISSN: 1664-462X
DOI: 10.3389/fpls.2014.00757
Rights: openAccess
Appears in Collections:I&D CFE - Artigos em Revistas Internacionais

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