Gadd GM (1990) Fungi and yeasts for metal accumulation. In: Microbial Mineral Recovery (Ehrlich H & Brierley CL eds). McGraw-Hill, NY, pp 249–275
Gadd GM (1994 F) Interactions of fungi with toxic metals. In: The Genus Aspergillus: From taxonomy and genetics to industrial application (Powell KA, Renwick A & Peberdy JF eds). (FEMS Symposium No. 69), Plenum Press, NY, pp 361–374
Tomsett AB (1994) Genetics and Molecular Biology of Metal Tolerance in Fungi. In: Stress Tolerance of Fungi (Jennines DH ed). Marcel Dekker INC, NY, pp 69–95
Nies DH (1992) Resistance to cadmium, cobalt, zinc and nickel in microbes. Plasmid 27:17–28
Wood HG & Zwolinski GK (1976) Transcarboxylase: Role of biotin, metals, and subunits in the reaction and its quarternary structure. Crit Rev Biochem 4:47
Gadd GM (1992) Metals and microorganisms: A problem of definition. FEMS Microbiol Lett 100:197–204
Saxena P, Bhattacharyya AK & Mathur N (2006) Nickel tolerance and accumulation by filamentous fungi from sludge of metal finishing industry. Geomicrobiology Journal 235: 330–340
Tripathi P & Srivastava S (2007) Development and characterization of nickel accumulating mutants of Aspergillus nidulans. Indian J Microbiol 47:241–250
Gadd GM (1988) Accumulation of metals by microorganisms and algae. In: Biotechnology-A comprehensive Treatise (Rehm HJ ed). Special Microbial Process. Vol 6 (b). VCH Verlagsgesellschaft Weinheim, Germany pp 401–433
Tomsett AB, Hodges KE, Cooley RN & Thurman DA (1989) Metal resistance in Aspergillus nidulans. In: Metal Ion Homeostasis-Molecular Biology and Chemistry (Hamer DH & Winge DR eds). Alan R. Liss, NY, pp 375–384
Venkateswerlu G & Sastry KS (1973) Interrelationships in trace-element metabolism in metal toxicities in a Cobalt-resistant strain of Neurospora crassa. Biochem J 132: 673–680
Cooley RN, Haslock HR & Tomsett AB (1986) Isolation and Characterization of Cadmium-resistant Mutants of Aspergillus nidulans. Curr Microbiol 13:265–268
Venkateswerlu G & Stotzky G (1986) Copper and cobalt alter the cell wall composition of Cunninghamella blakesleeana. Can J Microbiol 32:654–662
Venkateswerlu G & Stotzky G (1989) Binding of metals by cell walls of Cunninghamella blakesleeana grown in the presence of copper and cobalt. Appl Microbiol Biotechnol 31:619–625
Venkateswerlu G, Yoder MJ & Stotzky G (1989) Morphological, ultrastructural and chemical changes induced in Cunninghamella blakesleeana by copper and cobalt. Appl Microbiol Biotechnol 31:204–210
Fomina M, Hillier S, Charnock JM, Melville K, Alexander IJ & Gadd GM (2005) Role of oxalic acid over-excretion in toxic metal mineral transformations by Beauveria caledonica. Applied and Environmental Microbiology 71: 371–381
Gadd GM (2004) Mycotransformation of organic and inorganic substrates. Mycologist 18:60–70
Bobbitt TF, Nordin JH, Roux M, Revol JF & Marchessault RH (1977) Distribution and conformation of crystalline nigeran in hyphal walls of Aspergillus niger and Aspergillus awamori. J Bacteriol 132:691–703
Gupta R & Mukerji KG (1982) Nigeran production in some Aspergillus and Penicillum species. Folia Microbiol 27: 38–42
Strandberg GW, Shumate SE & Parrott JR (1981) Microbiol cell as biosorbents for heavy metals: accumulation of uranium by Saccharomyces cerevisiae and Pseudomonas aeruginosa. Appl Environ Microbial 41(1):237–245
Volesky B, May H & Holan ZR (1993) Cadmium biosorption by Saccharomyces cerevisiae. Biotech Bioeng 41:826–829
Paton WHN & Budd K (1972) Zinc uptake in Neocosmospora vasinfecta. J Gen Microbiol 72:173–184