Plant Diversity and Soil Properties at Different Wetland Restoration Stages along a Major River in the Arid Northwest of China

Agricultural activity is widely recognized as one of the leading drivers of natural wetland loss in many parts of the world. The suitability of farmland abandonment as the wetland restoration has not been well studied in arid regions. The plant growth, community structure and soil property were exam...

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Published inWetlands (Wilmington, N.C.) Vol. 41; no. 1; p. 13
Main Authors Zhao, Ruifeng, Zhang, Xiaoya, Zhang, Lihua, Wang, Yuanbo
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.01.2021
Springer Nature B.V
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Abstract Agricultural activity is widely recognized as one of the leading drivers of natural wetland loss in many parts of the world. The suitability of farmland abandonment as the wetland restoration has not been well studied in arid regions. The plant growth, community structure and soil property were examined in three farmlands abandoned for 2 (W2), 6 (W6) and 15 (W15) years and reference wetland (Wr) in the Zhangye National Wetland Park in Gansu province. The results showed that the plant abundance, soil organic carbon, total nitrogen, soil water content increased and pH value decreased along the wetland restoration stages. Shannon-Wiener diversity and Pielou’s evenness index moved towards natural wetland with increasing time of farmland abandonment, the plant community composition of the three abandoned farmlands also changed from annual to perennial dominant species. The farmland abandonment is conducive to improve soil nutrients and quality. Soil and vegetation facilitated one another in the abandonment stages. Thus, farmland abandonment is rational for wetland restoration. The mechanism of interaction between plant and soil can be used to guide wetland restoration of abandoned farmland.
AbstractList Agricultural activity is widely recognized as one of the leading drivers of natural wetland loss in many parts of the world. The suitability of farmland abandonment as the wetland restoration has not been well studied in arid regions. The plant growth, community structure and soil property were examined in three farmlands abandoned for 2 (W2), 6 (W6) and 15 (W15) years and reference wetland (Wr) in the Zhangye National Wetland Park in Gansu province. The results showed that the plant abundance, soil organic carbon, total nitrogen, soil water content increased and pH value decreased along the wetland restoration stages. Shannon-Wiener diversity and Pielou’s evenness index moved towards natural wetland with increasing time of farmland abandonment, the plant community composition of the three abandoned farmlands also changed from annual to perennial dominant species. The farmland abandonment is conducive to improve soil nutrients and quality. Soil and vegetation facilitated one another in the abandonment stages. Thus, farmland abandonment is rational for wetland restoration. The mechanism of interaction between plant and soil can be used to guide wetland restoration of abandoned farmland.
ArticleNumber 13
Author Zhang, Lihua
Zhang, Xiaoya
Wang, Yuanbo
Zhao, Ruifeng
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  givenname: Xiaoya
  surname: Zhang
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  givenname: Lihua
  surname: Zhang
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  organization: College of Geography and Environment Science, Northwest Normal University
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Snippet Agricultural activity is widely recognized as one of the leading drivers of natural wetland loss in many parts of the world. The suitability of farmland...
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SubjectTerms abandoned land
Abandonment
Activity recognition
Agricultural land
Altitude
Arid regions
Arid zones
Biodiversity
Biomedical and Life Sciences
botanical composition
China
Climate change
Coastal Sciences
Community composition
Community structure
Correlation analysis
Dominant species
Ecology
Environmental Management
Environmental restoration
Flowers & plants
Freshwater & Marine Ecology
Hydrogeology
Hydrology
Landscape Ecology
Life Sciences
Methods
Moisture content
Nutrients
Old fields
Organic carbon
Plant communities
Plant diversity
Plant growth
Restoration
rivers
Soil improvement
Soil nutrients
soil organic carbon
Soil properties
Soil structure
Soil water
soil water content
total nitrogen
vegetation
Water content
wetland restoration
Wetlands
Wetlands Restoration
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Title Plant Diversity and Soil Properties at Different Wetland Restoration Stages along a Major River in the Arid Northwest of China
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