Diversity of arbuscular mycorrhizal fungi in greenhouse soils continuously planted to watermelon in North China

被引:0
作者
Hui Jiao
Yinglong Chen
Xiangui Lin
Runjin Liu
机构
[1] Qingdao Agricultural University,Institute of Mycorrhizal Biotechnology
[2] The University of Western Australia,School of Earth and Environment (M087)
[3] Institute of Soil Science,State Key Laboratory of Soil and Sustainable Agriculture
[4] Chinese Academy of Sciences,undefined
来源
Mycorrhiza | 2011年 / 21卷
关键词
Arbuscular mycorrhizal fungi; Denaturing gradient gel electrophoresis; Greenhouse; Watermelon; Diversities; Monoculture;
D O I
暂无
中图分类号
学科分类号
摘要
In North China, watermelon is grown in commercial greenhouses in a continuous monoculture and with high application rates of manure or compost. The aim of this study was to determine how the diversity of arbuscular mycorrhizal fungi (AMF) in these soils changed over long periods (0 to 20 years) of monoculture. AMF in control soils (from fields not replanted with watermelon and located near the greenhouses) and in greenhouses (in Daxing, Beijing, and Weifang, Shandong) that had been continuously replanted with watermelon for 5, 10, 15, or 20 years (three greenhouses per year per location) were identified and quantified based on spore morphology and on denaturing gradient gel electrophoresis (DGGE). The total number of AMF species and genera were 13 and 3 in soils replanted for 5–20 years and 19 and 4 in control soils. AMF species richness (SR), the Shannon–Wiener index (H), and spore density declined as the number of years in which watermelon was replanted increased. The available phosphorus, potassium, and nitrogen in the soil increased as the number of years in which watermelon was replanted increased. Values for SR and H were higher when based on DGGE than on spore morphology. The results suggest that current greenhouse practices in North China reduce the AMF diversity in the soil.
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页码:681 / 688
页数:7
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共 138 条
  • [1] Antunes PM(2009)Influence of commercial inoculation with Plant Soil 317 257-266
  • [2] Koch AM(2006) on the structure and functioning of an AM fungal community from an agricultural site Biol Fertil Soils 42 286-298
  • [3] Dunfield KE(2003)Species composition of arbuscular mycorrhizal fungi in two mountain meadows with differing management types and levels of plant biodiversity J Arid Environ 55 223-229
  • [4] Hart MM(2004)Mycorrhizal dependency of Chihuahuan desert plants is influenced by life history strategy and root morphology FEMS Microbiol Lett 241 265-270
  • [5] Downing A(2003)Temporal temperature gradient gel electrophoresis (TTGE) as a tool for the characterization of arbuscular mycorrhizal fungi Trees 17 200-206
  • [6] Rillig MC(2003)Mycorrhizal response of Chin J Appl Ecol 14 18-22
  • [7] Klironomos JN(2009) growing in two different soils in the field Mycorrhiza 19 317-328
  • [8] Borstler B(1998)Effects of soil factors on AMF in the rhizosphere of wild plants Nature 394 431-99
  • [9] Renker C(1989)Molecular diversity of arbuscular mycorrhizal fungi in onion roots from organic and conventional farming systems in the Netherlands New Phytol 112 93-390
  • [10] Kahmen A(1992)Ploughing the word-wide-web Agron J 84 387-292