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作 者:湛方栋[1] 何永美[1] 李元[1] 祖艳群[1]
机构地区:[1]云南农业大学资源与环境学院,昆明650201
出 处:《应用与环境生物学报》2010年第4期572-576,共5页Chinese Journal of Applied and Environmental Biology
基 金:国家自然科学基金项目(No.30560034);云南省学术带头人后备人才项目(No.2006PY01-34);云南省教育厅青年科研基金项目(No.6Y032B0)资助~~
摘 要:采用常规、含Cd^(2+)和含Pb^(2+)的马丁氏培养基,对云南省会泽县废弃铅锌矿区和非矿区小花南芥(Arabisalpine)根际真菌进行分离,将分离的菌株接种到含不同浓度(0、0.05、0.5、5mmolL^(-1))Cd^(2+)的马铃薯葡萄糖培养液中,比较废弃铅锌矿区和非矿区小花南芥根际真菌的镉耐性.结果表明:Cd^(2+)显著抑制铅锌矿区和非矿区小花南芥根际真菌的生长;常规、含Cd^(2+)和含Pb^(2+)的马丁氏培养基分离的铅锌矿区小花南芥根际真菌Cd^(2+)的生长半数抑制浓度(EC50值)平均值和最大值均明显大于非矿区,表明铅锌矿区小花南芥根际真菌对Cd^(2+)的耐性强于非矿区;3种培养基分离的真菌中,含Cd^(2+)培养基分离的铅锌矿区小花南芥根际真菌对Cd^(2+)的耐性最强.Culturable rhizosphere fungi of Arabis alpina in abandoned lead-zinc mining and non-mining area in Huize, Yunnan, China were isolated with normal, Cd^(2+) and Pb^(2+) containing Martin’s media. Cd^(2+) tolerance of those isolated fungi were investigated with potato dextrose fluid media containing 0, 0.05, 0.5 and 5 mmol L^(-1) Cd^(2+). The results showed that the growth of rhizosphere fungi of Arenaria orbiculata in the abandoned lead-zinc mining and non-mining area was signif icantly suppressed by Cd^(2+). The mean and maximum lethal concentrations of 50% (EC50 value) of Cd^(2+) to the rhizosphere fungi in the abandoned lead-zinc mining area isolated by normal, Cd^(2+) and Pb^(2+) containing media were obviously greater than those in the non-mining area, which indicated that Cd^(2+) tolerance of the rhizosphere fungi in the abandoned lead-zinc mining area was greater than that in the non-mining area. Among these fungi isolated by these 3 media, the rhizosphere fungi of A. alpina in the abandoned lead-zinc mining area isolated by Cd^(2+) containing medium were the most tolerant to Cd^(2+). Tab3, Ref26
分 类 号:X172[环境科学与工程—环境科学]
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