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◆ Journal of environmental management2026-09-03

Northward shifts and emerging refugia: Future habitat dynamics of Zygophyllum xanthoxylum.

Jiang Qi, Qiang Zhang, Yuqin Wang, Guobo Liu, Zhaoqi Wang, Chunhui Zhang, Yuan Ma, Yushou Ma, Xinquan Zhao, Xiaoli Wang

原始摘要(英文原文)· Original abstract
Dryland restoration is increasingly constrained by climate change-driven shifts in the ecological niches of foundation shrubs, yet forecasts often underrepresent geomorphic heterogeneity and model complexity. We assessed future habitat dynamics for Zygophyllum xanthoxylum (Bunge) Maxim., a xerophytic shrub central to desert-steppe restoration in northwestern China, by integrating 114 spatially thinned occurrence records with climate, soil, topographic and geomorphological predictors in an ENMeval-optimized MaxEnt framework. Projections for 2041-2100 under SSP2-4.5, SSP3-7.0 and SSP5-8.5 were evaluated across suitability classes, provinces, landforms and centroid trajectories. The selected model (RM = 1.2; FC = LQH) showed high discrimination, with a mean AUC of 0.943 and a TSS of 0.7582. Suitability was governed chiefly by winter cold, dry-month precipitation, diurnal thermal range, elevation, slope and precipitation seasonality, indicating that both climatic stress and terrain-mediated water balance constrain the species niche. Current suitable habitat occupied 54.10 × 104 km2, representing 5.6% of China, and was concentrated in Xinjiang, Gansu, Qinghai, Ningxia and Inner Mongolia. Future projections revealed redistribution rather than monotonic expansion: total suitability increased under SSP2-4.5 and SSP3-7.0, whereas SSP5-8.5 showed a sharp mid-century decline followed by partial recovery. Future changes in suitable geomorphic areas exhibit a pattern characterized by the continued expansion of low-to mid-elevation gentle geomorphic units, sustained high suitability in mid-elevation hills and plateaus, slight increases in high-elevation geomorphic units, and declining suitability in very high-elevation and strongly rugged mountainous geomorphic units. Habitat centroids moved northeastward by 308-437 km. This study provides scientific support and a methodological framework for formulating ecological restoration strategies under the Three-North Shelterbelt Program, optimizing species deployment, and assessing climate-change responses of similar xerophytic plants.
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Northward shifts and emerging refugia: Future habitat dynamics of Zygophyllum xanthoxylum. — 科研速览 Science Skim