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海南岛近岸海草潜在适生区及与海洋牧场的空间关联分析

Potential seagrass suitable habitats in the coastal waters of Hainan Island and spatial association with marine ranches

  • 摘要: 为明确海南岛近岸海草资源的潜在分布格局,识别海草生物多样性热点区域,并分析海草适生区与海洋牧场的空间关联特征。本研究以海菖蒲、泰来草和卵叶喜盐草为研究对象,整合2021—2023年野外观测数据、历史文献记载的海草数据以及20项海洋环境因子数据,经斯皮尔曼相关分析与方差膨胀因子检验完成环境因子筛选,采用最大熵(MaxEnt)模型耦合堆叠集成算法预测3种目标海草的潜在适生区,并解析环境因子对物种分布的贡献。在此基础上,通过空间叠加分析识别海草生物多样性热点区与海洋牧场建设海域的空间重叠特征。结果表明:MaxEnt模型精度良好(AUC>0.8);海菖蒲和泰来草的高适生区主要分布于海南岛东部近岸,卵叶喜盐草的高适生区零散分布于海南岛东北部与西南部沿岸浅水区,且其总适生区面积最大,达5 994.23 km2;海水溶解氧和海水年均温度是海菖蒲和泰来草空间分布的主导环境因子,海水年均温度及盐度则是卵叶喜盐草分布的关键驱动因子;海草生物多样性热点区与海南岛东部已建及规划海洋牧场范围存在高度重叠。研究结果可为海草床保护修复选址和海洋牧场空间规划提供科学依据。

     

    Abstract: To further assess the distribution of seagrass resources in the coastal waters of Hainan Island, identify seagrass diversity hotspots, and analyze their spatial association with marine ranching. This study targeted three dominant tropical seagrass species: Enhalus acoroides, Thalassia hemprichii, and Halophila ovalis. Three categories of data were adopted in the analysis. The datasets include field survey data collected from 2021 to 2023, historical species distribution records, and 20 marine environmental parameters. We first conducted Spearman correlation analysis and variance inflation factor (VIF) screening to filter collinear environmental variables. Afterwards, we constructed a maximum entropy (MaxEnt) model combined with a stacking ensemble algorithm. This model was applied to predict the potential uitable habitats of the three seagrass species and quantify the contribution of each environmental variable. We further carried out spatial overlay analysis to identify seagrass diversity hotspots and calculate their spatial overlap with both existing and planned marine ranches. The MaxEnt model exhibited outstanding predictive performance, with all AUC values higher than 0.8. The high-suitability areas of E. acoroides and T. hemprichii clustered along the eastern coast of Hainan Island. In comparison, highly suitable habitats for H. ovalis were distributed in shallow waters near the northeastern and southwestern coasts. Among the three species, H. ovalis possessed the largest total suitable area of 5,994.23 km2. Dissolved oxygen and annual mean water temperature were the major environmental factors affecting the distribution of E. acoroides and T. hemprichii. Annual mean water temperature and salinity were the key limiting factors that determined the spatial pattern of H. ovalis. Seagrass diversity hotspots presented obvious spatial overlap with existing and planned marine ranches in eastern Hainan. The results of this research can offer scientific support for seagrass conservation, restoration site selection, and the optimized spatial planning of marine ranches.

     

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