2014
DOI: 10.7745/kjssf.2014.47.4.290
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Mobilization of Heavy Metals in Contaminated Soils induced by Bioaugmentation of Shewanella xiamenensis HM14

Abstract: A bacterial strain with the potential ability to solubilize heavy metals was isolated from heavy metal contaminated soils collected from abandoned mines of Boryeong area in South Korea. The bacterial strain with the highest degree of metal resistance was shown to have close proximity with Shewanella xiamenensis FJ589031, according to 16S rRNA sequence analysis, and selected for investigating the mobilization of metals in soil or plant by the strain. The strain was found to be capable of solubilizing metals bot… Show more

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“…Moreira et al (2016b) reported reduced Zn availability in the rhizosphere of maize inoculated with PGPB. Conversely, bioaugmentation-induced increases of TE availability in rhizosphere soils have also been reported (Sheng et al, 2012;Prapagdee et al, 2013;Arunakumara et al, 2014;Walpola et al, 2014;Babu et al, 2015;Gupta et al, 2018), which can be related to the secretion of siderophores by PGPB that bind TE enhancing their bioavailability and plant uptake (Rajkumar et al, 2010).…”
Section: Pgpbmentioning
confidence: 99%
“…Moreira et al (2016b) reported reduced Zn availability in the rhizosphere of maize inoculated with PGPB. Conversely, bioaugmentation-induced increases of TE availability in rhizosphere soils have also been reported (Sheng et al, 2012;Prapagdee et al, 2013;Arunakumara et al, 2014;Walpola et al, 2014;Babu et al, 2015;Gupta et al, 2018), which can be related to the secretion of siderophores by PGPB that bind TE enhancing their bioavailability and plant uptake (Rajkumar et al, 2010).…”
Section: Pgpbmentioning
confidence: 99%