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[Prediction of dynamics of suitable producing areas for Ophiopogon japonicus under human activities and climate change based on Biomod2 ensemble modeling].

Created on 03 Aug 2026

Authors

Run-Quan Ou, Chao-Geng Lyu, Qiao-Hui Zhang, Jia-Hui Sun, Zhi-Xian Jing, Yi-Heng Wang, Lan-Ping Guo

Published in

Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica. Volume 51. Issue 11. Pages 3170-3180.

Abstract

This study employed an ensemble species distribution model Biomod2 integrated with ArcGIS spatial analysis and utilized climate, soil, and human footprint data to predict the potential suitable habitats for Ophiopogon japonicus under various scenarios and to assess the key drivers governing its distribution. RESULTS:: revealed that mean diurnal temperature range, temperature seasonality, and human footprint were the primary factors determining its distribution. When anthropogenic disturbances were excluded, the area of highly suitable habitats expanded significantly, extending notably into regions such as Guizhou, Chongqing, and Jiangsu. Under a low carbon emission scenario, the suitable habitat area showed a trend of gradual increase followed by stabilization. In contrast, under a high emission scenario, it contracted substantially and exhibited increased spatial fragmentation. In short, human activities and climate change had a significant impact on the suitable producing areas for O. japonicus. The findings provided an important scientific basis for the conservation and utilization of key producing areas, the long-term preservation of germplasm resources, and the sustainable development of the O. japonicus industry. Furthermore, this study demonstrated that the ensemble modeling approach enhanced the scientific validity and robustness of producing area predictions, offering valuable insights for optimizing future habitat planning and adaptive management strategies of O. japonicus.

PMID:
42543276
Bibliographic data and abstract were imported from PubMed on 03 Aug 2026.

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