Regional Sustainability ›› 2026, Vol. 7 ›› Issue (4): 100372.doi: 10.1016/j.regsus.2026.100372

• Research article • Previous Articles     Next Articles

Spatiotemporal variations in oasis structure and landscape stability in the middle reaches of the Konqi River based on high-spatial-resolution multispectral imagery

JIN Jingyua,b,c,d, LI Junlia,c,*(), BAO Anminga,c, WEI Chunxiae, LI Fujiea,b,f,g, WANG Haoyua,b,c, ZHANG Jiudana,b,c, Naibi SULEIa,b,c   

  1. aState Key Laboratory of Ecological Safety and Sustainable Development in Arid Lands, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi, 830011, China
    bUniversity of Chinese Academy of Sciences, Beijing, 100049, China
    cKey Laboratory of GIS & RS Application Xinjiang Uygur Autonomous Region, Urumqi, 830011, China
    dRemote Sensing Application Research Center of Xinjiang Uygur Autonomous Region, Urumqi, 830002, China
    eXinjiang Tarim Populus Euphratica National Nature Reserve Administration, Korla, 841000, China
    fField Observation and Research Station of Water Resources and Ecological Effect in Lower Reaches of Tarim River Basin, Urumqi, 830057, China
    gUrumqi Natural Resources Comprehensive Survey Center, China Geological Survey, Urumqi, 830057, China
  • Received:2025-07-17 Revised:2026-02-01 Accepted:2026-07-15 Published:2026-08-30 Online:2026-08-05
  • Contact: *E-mail address: lijl@ms.xjb.ac.cn (LI Junli).

Abstract:

Inland river oasis ecosystems have undergone substantial transformations due to extensive land exploitation. It is essential to understand the environmental implications and consequences of such activities to ensure the ecological safety of these ecosystems. This study applied a U-Net model to multi-temporal imagery acquired from the Système Probatoire d’Observation de la Terre (SPOT) and Sentinel-2 satellites to map structural variations of oasis ecosystems in the middle reaches of the Konqi River, China, from 1986 to 2023. Based on the mapping results, the study analysed landscape pattern changes in the context of water resource utilisation and agricultural development. The stability of the oasis in the middle reaches of the Konqi River was also assessed through landscape pattern analysis. The results showed that, from 1986 to 2023, the landscape transitioned predominantly from a natural desert ecosystem to an anthropogenic farmland ecosystem. Significant increases were observed in cropland, orchard, and urban land, with increases of 143.39%, 337.73%, and 143.39%, respectively. Conversely, grassland, shrub woodland, and bare land decreased by 58.04%, 27.30%, and 25.57%, respectively. Notably, grassland and shrub woodland together contributed to 75.15% of the cropland increase, while bare land accounted for 64.83% of the urban expansion. Cropland and orchard primarily expanded along riparian zones and irrigation channels, with new orchard developing from existing croplands that have favourable water, soil, and transportation conditions. From a landscape perspective, the proliferation and clustering of cropland and orchard patches enhanced the connectivity of the oasis ecosystem. The overall stability of the oasis landscape in the middle reaches of the Konqi River gradually increased. This study offers a scientific evaluation of land exploitation and the overall stability of oasis ecosystems under conditions of limited water resources.

Key words: Ecosystem structure, Landscape pattern, Oasis structure, Landscape stability, Remote sensing, Konqi River