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Screening and activity studies of PDA-H with high cadmium resistance
Abstract
At present, the heavy metal pollution of the soil is increasing. In China, soil cadmium ( Cd ) pollution is particularly remarkable, causing many hazards. Microbial remediation of heavy metal contaminated soil is a green repair technology with low cost, convenient operation and wide application prospect, many researchers all around the world pay more attention to it. This paper use a Cd resistant strain ( named PDA-H ) which was selected from soil in SuZhou typical contaminated and high organic matter site as the study object, carry out the second screening, Cd resistance determination, identification, the activity and adsorption of this strain in the single medium under the basic conditions. From these experiements, we can know PDA-H has strong resistance to Cd. This strain enjoy growing in Potato( PDA ) medium but is not suitable to live in glucose peptone mesium. The highest Cd concentration PDA-H can tolerate in solid PDA medium is 1.4 g/L, in liquid PDA medium the concentration is 0.8 g/L. From the 26S rDNA gene sequence identification, combine with physiological and biochemical identification, we can determine PDA-H is Candida rugopel -liculosa strain NRRL Y-17079. Investigating the biomass, protein content, DNA content, amylase activity, lipase activity and Cd adsorption ability of PDA-H in bacteria solution with Cd stress, it is found that amylase and lipase from PDA-H are all sensitive to Cd pollution, amylase was more sensitive than lipase. The two enzymes are expected to be used as biological indicators for the monitoring of Cd pollution. The adsorption capacity of Cd of this strain showed that the adsorption rate was increasing with the passage of time in general, and the maximum adsorption rate was close to 60%. The adsorption rate of Cd and lipase activity present positive correlation roughly, but it was just the opposite with lipase activity. Strain PDA-H is expected to be applied in microbial remediation of Cd contaminated sites.

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