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Effect of organic amendment amount on soil nematode community structure and metabolic footprints in soybean phase of a soybean-maize rotation on Mollisols 被引量:2

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摘要 It has been well documented that organic amendment affects soil nematode community structure.However,little is known about the effect of organic amendment amount on soil nematodes.To assess the effect of the amount of organic amendments on soil nematode community structure and metabolic activity,the community composition,abundance,and metabolic footprints of soil nematodes were determined in a long-term field experiment with various amounts of organic amendment in Northeast China.Fertilization treatments included an unfertilized control(CK),chemical fertilizer without manure amendment(OM0),manure applied at 7.5 Mg ha^-1 plus chemical fertilizer(OM1),and manure applied at 22.5 Mg ha^-1 plus chemical fertilizer(OM2).A total of 46 nematode genera were found.Treatments with the largest amount of organic amendment had the smallest number of plant parasite genera(5),but a largest number of dominant genera(7).Soil nematodes,bacterivores,and fungivores were the most abundant in OM2,followed by OM1,and the lowest in OM0 and CK.Organic amendment increased the enrichment index(EI),and the large amount of organic amendment increased the metabolic footprints of bacterivore(Baf)and fungivore(Fuf)and enrichment footprint(Ef).The relationships between Baf(or Fuf)and the increases in soil organic carbon(?SOC)and total nitrogen(?TN)were stronger than those of bacterivore(or fungivore)abundance with?SOC and?TN,except for the relationship between bacterivore abundance and ?SOC.The EI and Ef were positively correlated with ?SOC and ?TN.These findings suggest that the amount of organic amendment affects soil nematode activity and function at entry levels in soil food web,and that metabolic footprints of soil nematodes may be better indicators than their abundances in assessing their relationships with soil nutrients.
出处 《Pedosphere》 SCIE CAS CSCD 2020年第4期544-554,共11页 土壤圈(英文版)
基金 supported by the National Key Research and Development Program of China (No.2016YFD02003096) National Natural Science Foundation of China (Nos.41371296 and 41571219) Young Scientist Group of Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences (No.DLSXZ1605)
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  • 1Bongers, T. and Bongers, M. 1998. Functional diversity of nematodes. Applied Soil Ecology. 10: 259-251.
  • 2Bongers, T. and Ferris, H. 1999. Nematode community structure as a bioindicator in environmental monitoring. Trends of Ecology and Evolution. 14: 224-228.
  • 3De Goede, R. G. M. and Bongers, T. 1994. Nematode community structure in relation to soil and vegetation characteristics. Applied Soil Ecology. 1: 29--44.
  • 4Ekschmitt, K., Bakonyi, G., Bongers, M., Bonggers, T., Bostrom, S., Dogan, H., Harrison, A., Nagy, P., O'Donell, A. G., Papatheodoru, E. M., Sohlenius, B., Stamou, G. P. and Wolters, V. 2001. Nematode community structure as indicator of soil functioning in European grassland soils. European Journal of Soil Biology. 37: 263-268.
  • 5Feng, M. Y., Yang, Z., Deng, Y. L. and He, J. F. 2003. Grassland rehabilitation and social development in the low mountain area of the Jinsha River Valley, China. Mountain Research and Development. 23: 124-127.
  • 6Ferris, H., Bongers, T. and de Goede, R. G. M. 2001. A framework for soil food web diagnostics: extension of the nematode faunal analysis concept. Applied Soil Ecology. 18: 13-29.
  • 7Gao, J. L., Terefework, Z., Chen, W. X. and Lindstrom, K. 2001. Genetic diversity of rhizobia isolated from Astragalus adsurgens growing in different geographical regions of China. Journal of Biotechnology. 91: 155-168.
  • 8Jiang, D. M., Liu, Z. M., Cao, C. Y., Kou, Z. W. and Wang, R. Y. 2003. Desertification and Ecological Restoration of Horqin Sandy Land (in Chinese). China Environmental Science Press, Beijing. pp 357-366.
  • 9Kandji, S. T., Ogol, C. K. P. O. and Albrecht, A. 2001. Diversity of plant-parasitic nematodes and their relationships with some soil physico-chemical characteristics in improved fallows in western Kenya. Applied Soll Ecology. 18: 143-157.
  • 10Li, S. G., Harazono, Y., Oikawa, T, Zhao, H. L., He, Z. Y. and Chang, X. L. 2000. Grassland desertification by grazing and the resulting micrometeorological changes in Inner Mongolia. Agricultural and Forest Meteorology. 102: 125-137.

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