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1.
Int J Phytoremediation ; 19(10): 925-936, 2017 Oct 03.
Article in English | MEDLINE | ID: mdl-28323446

ABSTRACT

Efficient N2-fixing Leguminosae nodulating bacteria resistant to As may facilitate plant growth on As-contaminated sites. In order to identify bacteria holding these features, 24 strains were isolated from nodules of the trap species Crotalaria spectabilis (12) and Stizolobium aterrimum (12) growing on an As-contaminated gold mine site. 16S rRNA gene sequencing revealed that most of the strains belonged to the group of α-Proteobacteria, being representatives of the genera Bradyrhizobium, Rhizobium, Inquilinus, Labrys, Bosea, Starkeya, and Methylobacterium. Strains of the first four genera showed symbiotic efficiency with their original host, and demonstrated in vitro specific plant-growth-promoting (PGP) traits (production of organic acids, indole-3-acetic-acid and siderophores, 1-aminocyclopropane-1-carboxylate deaminase activity, and Ca3(PO4)2 solubilization), and increased resistance to As, Zn, and Cd. In addition, these strains and some type and reference rhizobia strains exhibited a wide resistance spectrum to ß-lactam antibiotics. Both intrinsic PGP abilities and multi-element resistance of rhizobia are promising for exploiting the symbiosis with different legume plants on trace-element-contaminated soils.


Subject(s)
Arsenic/metabolism , Bacteria/metabolism , Fabaceae/microbiology , Soil Pollutants/metabolism , Biodegradation, Environmental , Gold , Minerals , Mining , Plant Development , Plants , RNA, Ribosomal, 16S , Soil , Trace Elements
2.
Int J Phytoremediation ; 19(2): 142-156, 2017 Feb.
Article in English | MEDLINE | ID: mdl-27409290

ABSTRACT

Plants on contaminated mining soils often show a reduced growth due to nutrient depletion as well as trace elements (TEs) toxicity. Since those conditions threat plant's survival, plant growth-promoting rhizobacteria (PGPRs), such as rhizobia, might be of crucial importance for plant colonization on TE-contaminated soils. Native rhizobia from mining soils are promising candidates for bioaugmented phytoremediation of those soils as they are adapted to the specific conditions. In this work, rhizobia from Zn- and Cd-contaminated mining soils were in vitro screened for their PGP features [organic acids, indole-3-acetic acid (IAA), and siderophore (SID) production; 1-aminocyclopropane-1-carboxylate (ACC) deaminase activity; and Ca3(PO4)2 solubilization] and Zn and Cd tolerance. In addition, some type and reference rhizobia strains were included in the study as well. The in vitro screening indicated that rhizobia and other native genera have great potential for phytoremediation purposes, by exerting, besides biological N2 fixation, other plant growth-promoting traits. Leucaena leucocephala-Mesorhizobium sp. (UFLA 01-765) showed multielement tolerance and an efficient symbiosis on contaminated soil, decreasing the activities of antioxidative enzymes in shoots. This symbiosis is a promising combination for phytostabilization.


Subject(s)
Fabaceae/metabolism , Fabaceae/microbiology , Nitrogen-Fixing Bacteria/metabolism , Soil Microbiology , Soil Pollutants/metabolism , Symbiosis , Zinc/metabolism , Biodegradation, Environmental , DNA, Bacterial/genetics , Mesorhizobium/classification , Mesorhizobium/genetics , Mesorhizobium/metabolism , Nitrogen-Fixing Bacteria/classification , Nitrogen-Fixing Bacteria/genetics , RNA, Ribosomal, 16S/genetics
3.
Braz J Microbiol ; 46(2): 367-75, 2015 Jun.
Article in English | MEDLINE | ID: mdl-26273251

ABSTRACT

The pH of the culture medium directly influences the growth of microorganisms and the chemical processes that they perform. The aim of this study was to assess the influence of the initial pH of the culture medium on the production of 11 low-molecular-weight organic acids and on the solubilization of calcium phosphate by bacteria in growth medium (NBRIP). The following strains isolated from cowpea nodules were studied: UFLA03-08 (Rhizobium tropici), UFLA03-09 (Acinetobacter sp.), UFLA03-10 (Paenibacillus kribbensis), UFLA03-106 (Paenibacillus kribbensis) and UFLA03-116 (Paenibacillus sp.). The strains UFLA03-08, UFLA03-09, UFLA03-10 and UFLA03-106 solubilized Ca3(PO4)2 in liquid medium regardless of the initial pH, although without a significant difference between the treatments. The production of organic acids by these strains was assessed for all of the initial pH values investigated, and differences between the treatments were observed. Strains UFLA03-09 and UFLA03-10 produced the same acids at different initial pH values in the culture medium. There was no correlation between phosphorus solubilized from Ca3(PO4)2 in NBRIP liquid medium and the concentration of total organic acids at the different initial pH values. Therefore, the initial pH of the culture medium influences the production of organic acids by the strains UFLA03-08, UFLA03-09, UFLA03-10 and UFLA03-106 but it does not affect calcium phosphate solubilization.


Subject(s)
Acinetobacter/metabolism , Carboxylic Acids/metabolism , Culture Media/chemistry , Paenibacillus/metabolism , Phosphates/metabolism , Rhizobium tropici/metabolism , Acinetobacter/growth & development , Acinetobacter/isolation & purification , Fabaceae/microbiology , Hydrogen-Ion Concentration , Paenibacillus/growth & development , Paenibacillus/isolation & purification , Rhizobium tropici/growth & development , Rhizobium tropici/isolation & purification , Root Nodules, Plant/microbiology
4.
Braz. j. microbiol ; Braz. j. microbiol;46(2): 367-375, Apr-Jun/2015. tab, graf
Article in English | LILACS | ID: lil-749711

ABSTRACT

The pH of the culture medium directly influences the growth of microorganisms and the chemical processes that they perform. The aim of this study was to assess the influence of the initial pH of the culture medium on the production of 11 low-molecular-weight organic acids and on the solubilization of calcium phosphate by bacteria in growth medium (NBRIP). The following strains isolated from cowpea nodules were studied: UFLA03-08 (Rhizobium tropici), UFLA03-09 (Acinetobacter sp.), UFLA03-10 (Paenibacillus kribbensis), UFLA03-106 (Paenibacillus kribbensis) and UFLA03-116 (Paenibacillus sp.). The strains UFLA03-08, UFLA03-09, UFLA03-10 and UFLA03-106 solubilized Ca3(PO4)2 in liquid medium regardless of the initial pH, although without a significant difference between the treatments. The production of organic acids by these strains was assessed for all of the initial pH values investigated, and differences between the treatments were observed. Strains UFLA03-09 and UFLA03-10 produced the same acids at different initial pH values in the culture medium. There was no correlation between phosphorus solubilized from Ca3(PO4)2 in NBRIP liquid medium and the concentration of total organic acids at the different initial pH values. Therefore, the initial pH of the culture medium influences the production of organic acids by the strains UFLA03-08, UFLA03-09, UFLA03-10 and UFLA03-106 but it does not affect calcium phosphate solubilization.


Subject(s)
Acinetobacter/metabolism , Carboxylic Acids/metabolism , Culture Media/chemistry , Paenibacillus/metabolism , Phosphates/metabolism , Rhizobium tropici/metabolism , Acinetobacter/growth & development , Acinetobacter/isolation & purification , Fabaceae/microbiology , Hydrogen-Ion Concentration , Paenibacillus/growth & development , Paenibacillus/isolation & purification , Rhizobium tropici/growth & development , Rhizobium tropici/isolation & purification , Root Nodules, Plant/microbiology
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