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Tytuł artykułu

Effects of the Conversion of a Degraded Alpine Kobresia Meadow on the Organic Carbon and Nitrogen of Soil and Plants

Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Three sites with both degraded alpine Kobresia meadow (DM) and adjacent mix-seeded perennial grasses pastures (MSP) in the headwater region of the Yellow River, Qinghai-Tibetan Plateau, were selected to investigate plant and soil organic carbon (SOC), total nitrogen (TN) and their isotope composition. The SOC and TN in the top soil layer to a depth of 10 cm were significantly affected by ploughing and planting mix-seeded perennial grasses. The SOC content in 0–10 cm soil layer of MSPs was 25.6%, 5.5% and 12.9% lower than those of DMs at the I-III sites, respectively, and the rate of OC density loss was 23.8, 14.5 and 18.2%, respectively. The soil TN content in 0–10 cm soil layer of MSPs was 16.6%, 2.2% and 9.4% lower than those of the DMs at three sites, respectively, and the TN density was 15.6, 10.6 and 15.3% lower than those of DMs, respectively. The plant and soil 13C values (-27.03‰, -25.16‰, respectively) suggest that the vegetation of both DMs and MSPs are C3 plant communities. The 15 N value in the soil (>4‰) was significantly greater than in plants (<2‰). No differences of either 13C or 15N abundance between MSPs and DMs at Site I and II, but were found at Site III, indicating that the effects were site specific. The rehabilitation of a degraded Kobresia meadow has a significant influence on the soil properties, SOC and TN. Caution should be taken in site selection before performing conversion.
Rocznik
Strony
500--511
Opis fizyczny
Bibliogr. 38 poz., rys., tab.
Twórcy
autor
  • College of Eco-Environment and Engineering, Qinghai University, Xining 810016, P.R. China
autor
  • College of Eco-Environment and Engineering, Qinghai University, Xining 810016, P.R. China
autor
  • College of Eco-Environment and Engineering, Qinghai University, Xining 810016, P.R. China
autor
  • College of Eco-Environment and Engineering, Qinghai University, Xining 810016, P.R. China
autor
  • College of Eco-Environment and Engineering, Qinghai University, Xining 810016, P.R. China
Bibliografia
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  • 4. Cleveland C.C. , Liptzin D. 2007 — C:N:P stoi-chiometry in soil: is there a “Redfield ratio” for the microbial biomass? — Biogeochemistry, 85:235–252.
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  • 17. Ma Y. , Shang Z. , Shi J. , Dong Q. , Wang L. , Yang S. 2006 — Studies on communities diversity and their structure of “black-soil-land” degraded grassland in the headwater of Yellow River — Pratacultural Sci. 23: 6–11(in Chinese, English abstract).
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  • 22. Shang Z. 2006 — Studies on soil seed bank and regeneration of degraded alpine grassland in the headwaters of Yangtze and Yellow Rivers on Tibetan Plateau — Ph.D thesis, Gansu Agricultural University (in Chinese, English abstract).
  • 23. Tian Y. , Xu X. , Song M. , Zhou C. , Gao Q. , Ouyang H. 2009 — Carbon sequestration in two alpine soils on the Tibetan Plateau — J. Integr. Plant Biol. 51: 900–905 (in Chinese, English abstract).
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  • 25. Wang Z.P , Han X.G , Li L. H. 2008b — Effects of grassland conversion to croplands on soil organic carbon in the temperature Inner Mongolia — J. Environ. Manage. 86: 529–534.
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  • 27. Wang Q. , Li S. , Jing Z. , Wang W. 2008a — Re-sponse of carbon and nitrogen content in plants and soils to vegetation cover change in alpineKobresia meadow of the source region of Lantsang, Yellow and Yangtze Rivers — Acta Ecol. Sin. 28: 885–894.
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  • 29. Wang W. , Wang Q. , Wang H. 2006a — The effect of land management on plant community composition, species diversity, and productivity of alpine Kobresia steppe meadow — Ecol. Res. 21: 181–187.
  • 30. Wang W. , Wang Q. , Jing Z. , Li S. , Shi H. 2006b — Effects of vegetation cover change of alpine Kobresia meadow on plant community structure and diversity in source region of the Yangtze and Yellow River — Res. Sci. 28: 118–124 (in Chinese, English abstract).
  • 31. Wang W. , Wang Q. , Wang C. , Li H. , Wang G. 2005 — The effect of land management on carbon and nitrogen status in plants and soils of alpine meadows on the Tibetan Plateau — Land Degrad. Develop. 16: 405–415.
  • 32. Wang Q. , Zhou X. , Wang W. 1999 — Species diversity of main plant communities in alpine meadow — Collected Papers of Plateau Biology, 14:77–87 (in Chinese)
  • 33. Willms W.D. , Entz T. , Beck R. , Hao X. 2009 — Do introduced grasses improve forage production on the Mixed Prairie? — Range Ecol. Manage. 62: 53–59.
  • 34. Wu G. , Liu Z. , Zhang L. , Hu T. , Chen J. 2010 — Effects of artificial grassland establishment on soil nutrients and carbon properties in a black-soil-type degraded grassland — Plant Soil, 333: 469–479, DOI 10.1007/s11104-010-0363-9.
  • 35. Yang Y. , Fang J. , Tang Y. , Ji C. , Zheng C. , He J. , Zhu B. 2008 —Storage, patterns and controls of soil organic carbon in the Tibetan grasslands — Globe Change Biol. 14: 1592–1599.
  • 36. Zhou H. , Zhao X. , Zhou L. , Liu W. , Li Y. , Tang Y. 2005 — A study on correlations between veg-etation degradation and soil degradation in the ‘Alpine Meadow’ of the Qinghai-Tibetan Plateau — Acta Pratacultural. Sin. 14: 31–40 (in Chinese, English abstract).
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  • 38. Zoning Office of Qinghai Agricultural Resource (ZOQAR) 1997 — Soils of Qinghai — China Agriculture Press, Beijing, China, p. 94 (in Chinese).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5229e8c1-4648-4783-a617-e57e946736a5
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