Vegetation browning patterns under compound soil and atmospheric dryness in northern permafrost ecosystems
Artikel i vetenskaplig tidskrift, 2026

Significant changes in vegetation greenness and browning have been observed across the northern permafrost zone, with important implications for ecosystem functioning and carbon uptake. While recent research has improved our understanding of the drivers of greening, the processes behind browning - especially the low-stature shrubs and herbaceous vegetation, which is more directly exposed to soil and atmospheric moisture deficits - remain less clear. To characterize browning patterns, we integrate multiple remote sensing datasets - including normalized difference vegetation index (NDVI), solar-induced chlorophyll fluorescence (SIF), and foliar chlorophyll concentration (FCC) - with gross primary productivity (GPP) simulations from CMIP6 Earth system models (ESM). We identify significant browning trends (-0.033 to - 0.025 decade-1, from MODIS NDVI) from 2001 to 2018, affecting approximately 20 % (~600,000 km2) of the study region. Browning is primarily modulated by compound soil and atmospheric dryness, reflected by declining soil moisture concurrent with increasing vapor pressure deficit. We further show that regional warming and changes in precipitation, together with permafrost-related constraints on infiltration and storage, modulate the spatial heterogeneity of compound dryness. CMIP6 projections suggest that compound dryness is likely to persist or intensify in permafrost ecosystems, implying continued risk of productivity loss, especially when combined with pulse disturbances such as wildfires.

Författare

Mousong Wu

Nanjing University

Oliver Sonnentag

Université de Montréal

Mark J. Lara

University of Illinois

Youhua Ran

Northwest Institute of Eco-Environment and Resources

Hans Chen

Chalmers, Rymd-, geo- och miljövetenskap, Geovetenskap och fjärranalys

Wenxin Zhang

University of Glasgow

Lunds universitet

Philippe Ciais

Laboratoire des Sciences du Climat et de l'Environnement

Bo Elberling

Köpenhamns universitet

Xin Li

Chinese Academy of Sciences

Anping Chen

Colorado State University

Songhan Wang

Nanjing Agricultural University

Yonghong Yi

Tongji University

Changhui Peng

Hunan Normal University

Université du Québec

Deliang Chen

Tsinghua University

Nature Communications

2041-1723 (ISSN) 20411723 (eISSN)

Vol. 17 1

Ämneskategorier (SSIF 2025)

Naturgeografi

Klimatvetenskap

Meteorologi och atmosfärsvetenskap

DOI

10.1038/s41467-026-75131-4

PubMed

42386781

Mer information

Senast uppdaterat

2026-08-20