Diversity and metal tolerance of nematode-trapping fungi in Pb-polluted soils

被引:0
作者
Ming-He Mo
Wei-Min Chen
Hao-Ran Yang
Ke-Qin Zhang
机构
[1] Yunnan University,Laboratory for Conservation and Utilization of Bio
[2] Beijing Forestry University,resources, and Key Laboratory for Microbial Resources of the Ministry of Education
来源
The Journal of Microbiology | 2008年 / 46卷
关键词
Nematode-trapping fungi; Pb toxicity; heavy metal tolerance;
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中图分类号
学科分类号
摘要
The diversity of nematode-trapping fungi (NTF) in two lead (Pb) mines in Yunnan Province, China was investigated in 2004. In total, 20 species belonging to five genera were identified from 500 samples collected at the Lanping and the Huize mines. Pb concentrations ranged from 216–7,150 mg/kg for the former and 132–13,380 mg/kg for the latter, respectively. The fungi were divided into five groups based on different trapping mechanisms. The trapping-net producer group contained the largest number of species, with nine. Two predators, Dactylellina ellipsosporum and Arthrobotrys oligospora, were found at frequencies of 32.85 % and 15.41 %, respectively. The diversity indexes of NTF were positively correlated with Pb pollution levels in both the Lanping Mine (r=0.66) and the Huize Mine (r=0.72), suggesting that the distribution of NTF was not negatively affected by Pb contamination. For most strains of a given species, there was no significant difference (P>0.01) in the Pb tolerance between the strains isolated from habitats with low or high Pb concentrations. However, Pb toxicity exerted adverse effects on trap formation and predacious capability of fungi. We discuss the possible metal tolerance mechanisms and their relationships to the survival strategy of NTF in Pb-polluted environments.
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  • [1] Aoyama M.(1997)Effects of heavy metal accumulation in apple orchard soils on microbial biomass and microbial activities Soil Sci. Plant Nutr. 43 601-612
  • [2] Nagumo T.(1984)Effects of metal toxicity on the size of the soil microbial biomass J. Soil Sci. 35 341-346
  • [3] Brookes P.C.(2001)Different sources of heavy metals and their long-term effects on soil microbial properties Bio. Fert. Soils 34 241-247
  • [4] McGrath S.P.(1992)The effects of cadmium and the cadmium-zinc interaction on the axenic growth of ectomycorrhizal fungi Plant Soil 145 237-243
  • [5] Chander K.(2004)Evolutionary adaptation to Zn toxicity in populations of Sulloid fungi New Phytol. 162 549-559
  • [6] Dyckmans J.(1963)The predaceous activity of nematode-trapping fungi added to soil Ann. Appl. Biol. 51 295-299
  • [7] Joergensen R.G.(1968)Relationships between nematode-trapping fungi and soil-borne phytonematodes Phytopathology 58 909-913
  • [8] Meyer B.(1990)DNA probe-mediated detection of resistant bacteria from soils highly polluted by heavy metals Appl. Environ. Microbiol. 56 1485-1491
  • [9] Raubuch M.(1951)The ecology of predacious fungi. I. Preliminary survey Trans. Brit. Mycol. Soc. 34 322-331
  • [10] Colpaert J.V.(1951)Further records of British predacious fungi. II Trans. Brit. Mycol. Soc. 34 194-209