J Plant Ecol ›› Advance articles     DOI:10.1093/jpe/rtag205

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Mixed culture enhances coral sand weathering more than monoculture

Zhaofeng Chang1, 2, Zhimin Li1, Jianghao Tan1, 2, Yang Liu1, Xianzhen Luo1, Qingqing Ren1, 2, Huiying Lin1, 2, Faming Wang1, Junhua Yan1, Hai Ren1, Enqing Hou1*   

  1. 1 Key Laboratory of National Forestry and Grassland Administration On Plant Conservation and Utilization in Southern China and Guangdong Provincial Key Laboratory of Applied Botany, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China;
    2 University of Chinese Academy of Sciences, Beijing 100049, China
    *Corresponding author: Dr. Enqing Hou, tel.:, E-mail: houeq@scbg.ac.cn
  • Received:2025-12-09 Revised:2026-07-19 Accepted:2026-08-04 Published:2026-08-29
  • Supported by:
    This research was supported by the National Key R&D Program of China (2021YFC3100400) and the National Natural Science Foundation of China (32322054 and 32271644).

Abstract: The success of vegetation establishment on barren lands, particularly those derived from poor-structured or nutrient-deficient parent materials like coral sand, hinges upon complex interactions between plants and their environment. To unravel these dynamics, we investigated how coral sand weathering responded to a factorial design combining four distinct culture modes (plant-free controls, monocultures of Casuarina equisetifolia and Scaevola taccada, and their mixed culture) with three particle compositions of coral sand, in a greenhouse. Results showed that the particle size of coral sand neither affected nor interacted with culture modes on coral sand weathering. All plant cultures significantly enhanced the weathering releases of Ca and Mg, compared to the plant-free control. The C. equisetifolia monoculture enhanced coral sand weathering (Ca: 3152 mg pot-1; Mg: 629 mg pot-1) more than the S. taccada monoculture (Ca: 2413 mg pot-1; Mg: 500 mg pot-1), preliminarily due to its higher root specific length and surface area. Nutrients released from coral sand in the C. equisetifolia monoculture was mainly leached out (Ca: 72%; Mg: 85%), while in the S. taccada monoculture it was mainly stored in the plant biomass (Ca: 71%; Mg: 59%), due to a larger aboveground biomass of S. taccada. These differences between species resulted in a 6% ~ 32.4% enhancement of coral sand weathering in their mixed culture than in their monocultures. Overall, our study underscores the priority of selecting plant species with complementary functional traits for constructing vegetation on coral islands.

Key words: coral sand, weathering rate, mixed culture, particle size