Schickler H, Caspi H. Response of antioxidative enzymes to nickel and cadmium stress in hyperaccumulator plants of the genus Alyssum. Physiologia Plantarum, 1999, 105: 39-44.
[6]
Fecht-Christoffers M M, Braun H P, Lemaitre-Guillier C, et al. Effect of manganese toxicity on the proteome of the leaf apoplast in cowpea. Plant Physiology, 2003, 33(4): 1935-1946.
[7]
Posmyk M M, Kontek R, Janas K M. Antioxidant enzymes activity and phenolic compounds content in red cabbage seedlings exposed to copper stress. Ecotoxicology and Environmental Safety, 2009, 72: 596-602.
Candan N, Tarhan L. The correlation between antioxidant enzyme activities and lipid peroxidation levels in Mentha pulegium organs grown in Ca2+, Mg2+, Cu2+, Zn2+ and Mn2+ stress conditions. Plant Science, 2003, 165: 769-776.
Alva A K. Relationships between root length of soybean and calculated activities of Al monomers in nutrient solution. Soil Science Society of America Journal, 1986, 50(4): 959-962.
Guo Y J, Li G D, Hayes R, et al. Tolerance of Trifolium spumosum, Biserrula pelecinus and Ornithopus sativa to soil acidity. New Zealand Journal of Agricultural Research, 2012, 55: 1-14.
[17]
Ryan P R, Ditomaso J M, Kochian L V. Aluminum toxicity in roots: An investigation of special sensitivity and to role of the cap. Journal of Experimental Botany, 1993, 44: 437-446.
[18]
Bhattacharyya S, Pal T K, Basumajumdar A. Modulation of enzyme activities of a lead-adapted strain of Rhizopus rrrhizus during bioaccumulation of lead. Folia Microbiologica, 2009, 54(6): 505-508.
[19]
Scandalios J G. Oxygen stress and superoxide dismutases. Plant Physiology, 1993, 101: 7-12.
Castro-Sowinski S, Carrera I, Catalan A I, et al. Occurrence diversity and effectiveness of midacid tolerant alfalfa nodulating rhizobia in Uniguay. Symbiosis, 2002, 32(2): 105-118.
Silver S, Phungle T. A bacterial view of the periodic table: Genes and proteins for toxic inorganic ions. Journal of Industrial Microbiology and Biotechnology, 2005, 32: 587-605.
[24]
Chen T F, Wong Y S. Selenium-induced changes in activities of antioxidant enzymes and content of photo synthetic pigments in Spirulinapla tensis. Journal of Integrative Plant Biology, 2008, 50(1): 40-48.
[25]
Gibson A H. Genetic variation in the effectiveness of nodulation of lucerne varieties. Australian Journal of Agricultural Research, 1962, 13: 388-399.
Parrotand W A, Bouton J H. Aluminum tolerance in alfalfa as expressed in tissue culture. Crop Science, 1990, 30: 387-389.
[29]
Aguirre J, Rios-Momberg M, Hewitt D, et al. Reactive oxygen species and development in microbial eukaryotes. Trends in Microbiology, 2005, 13(3): 111-118.
Beauchamp C O, Fdovich I. Superoxide dismutase: improved assays and an assay applicable to acrylamide gels. Analytical Biochemistry, 1971, 44: 276-287.
[32]
Beers R F, Sizer I W. A spectrophotometric method for measuring the breakdown of hydrogen peroxide by catalase. The Journal of Biological Chemistry, 1952, 5: 276-287.
[33]
Archer M C, Palner J K. An experiment in enzyme characterization: Bona polyphenol oxidase. Biochemical Education, 1975, 3: 50-52.
[34]
Dalton D A, Russell S A, Hanus F J, et al. Enzymatic reactions of ascorbate and glutathione that prevent peroxide damage in soybean root nodules. Proceedings of the National Academy of Sciences, 1986, 83: 3811-3815.
Carvalho M M, Edwards D G, Andrew C S, et al. Aluminum toxicity, nodulation, and growth on Stylosanthes species. Agronomy Journal, 1981, 73: 261-265.
[38]
Figueira E M A P, Lima A I G, Pereira S I A. Cadmium tolerance plasticity in Rhizobium leguminosarum bv. Viciae: Glutathione as a detoxifying agent. Canadian Journal of Microbiology, 2005, 51: 7-14.
[39]
Riccillo P M, Muglia C, Bvuijn F G, et al. Glutathione is involved in environmental stress responses in Rhizobium tropici, including acid tolerance. Journal of Bacteriology, 2000, 182: 1748-1753.