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Plant functional diversity promotes ecosystem multifunctionality in abandoned karst farmland under changing rainfall
Yuancai Qi1, Maji Wan1, Jinchun Liu1,2
1Key Laboratory of Eco-environments in the Three Gorges Reservoir Region, Ministry of Education, School of Life Sciences, Southwest University, Chongqing, China.
Increasing heavy rainfall frequency can maintain ecosystem multifunctionality (EMF) by boosting plant functional diversity, crucial for restoring degraded karst farmland under climate change.
Area of Science:
- Ecological science
- Climate change research
- Biodiversity studies
Background:
- Global climate change is altering rainfall patterns, impacting ecosystem multifunctionality (EMF).
- The specific effects of extreme rainfall on EMF drivers remain unclear.
- Understanding these drivers is vital for ecosystem restoration.
Purpose of the Study:
- To investigate the influence of altered rainfall frequency and intensity on EMF in abandoned karst farmland.
- To identify the primary drivers of EMF under changing climate conditions.
- To assess the roles of abiotic factors and biodiversity in maintaining EMF.
Main Methods:
- Quantified EMF using averaging and multiple-threshold approaches (Hill-Chao numbers).
- Measured plant and soil microbial diversity.
- Simulated varying rainfall frequencies and intensities on abandoned karst farmland.
Main Results:
- Increased heavy rainfall frequency reduced plant biodiversity but positively impacted EMF.
- Soil moisture content showed a positive relationship with EMF.
- Plant functional diversity was identified as a key driver, with its influence strengthening at higher thresholds.
Conclusions:
- Enhancing plant functional diversity is crucial for restoring EMF in abandoned karst farmland.
- Strategies promoting plant functional diversity can aid ecosystem restoration in degraded landscapes.
- Abiotic factors influence EMF indirectly through functional diversity, especially under high thresholds.
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