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Small-scale switch in cover-perimeter relationships of patches indicates shift of dominant species during grassland degradation

  • Ming Hua Song*
  • , Johannes H.C. Cornelissen
  • , Yi Kang Li
  • , Xing Liang Xu
  • , Hua Kun Zhou
  • , Xiao Yong Cui
  • , Yan Fen Wang
  • , Rong Yan Xu
  • , Qi Feng
  • *Corresponding author for this work

    Research output: Contribution to JournalArticleAcademicpeer-review

    Abstract

    Aims Grasslands are globally threatened by climate changes and unsustainable land-use, which often cause transitions among alternative stable states, and even catastrophic transition to desertification. Spatial vegetation patch configurations have been shown to signify such transitions at large spatial scale. Here, we demonstrate how small-scale patch configurations can also indicate state transitions. Methods The whole spatial series of degradation successions were chosen in alpine grasslands characterized as seven typical communities. Patch numbers, and perimeter and cover of each patch were recorded using adjacent quadrats along transects in each type of the communities. Species abundance within each patch was measured. Important Findings Across seven grazing-induced degradation stages in the world's largest expanse of grassland, from dense ungrazed turf to bare black-soil crust, patch numbers and perimeters first increased as patch cover decreased. Numbers and perimeters then decreased rapidly beyond an intersection point at 68% of initial continuous vegetation cover. Around this point, the vegetation fluctuated back and forth between the sedge-dominated grassland breaking-up phase and the forb-dominated phase, suggesting impending shift of grassland state. This study thus demonstrates how ground-based small-scale vegetation surveys can provide a quantitative, easy-to-use signals for vegetation degradation, with promise for detecting the catastrophic transition to desertification.

    Original languageEnglish
    Pages (from-to)704-712
    Number of pages9
    JournalJournal of Plant Ecology
    Volume13
    Issue number6
    Early online date11 Sept 2020
    DOIs
    Publication statusPublished - Dec 2020

    Funding

    The study was supported by the Second Tibetan Plateau Scientific Expedition and Research (STEP) (grant no. 2019QZKK0302), the National Key Research and Development Program (2016YFC0501802, 2016YFC0501803) and the National Natural Science Foundation of China (41671263, 41730752).

    FundersFunder number
    National Natural Science Foundation of China41730752, 41671263
    National Natural Science Foundation of China
    National Key Research and Development Program of China2016YFC0501802, 2016YFC0501803
    National Key Research and Development Program of China

      UN SDGs

      This output contributes to the following UN Sustainable Development Goals (SDGs)

      1. SDG 15 - Life on Land
        SDG 15 Life on Land

      Keywords

      • Grassland degradation
      • State transition
      • Tibetan Plateau
      • Trade-off
      • Vegetation patchiness

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