Vegetation expansion in the subnival Hindu Kush Himalaya

被引:101
作者
Anderson, Karen [1 ]
Fawcett, Dominic [1 ]
Cugulliere, Anthony [2 ]
Benford, Sophie [2 ]
Jones, Darren [2 ]
Leng, Ruolin [3 ]
机构
[1] Univ Exeter, Environm & Sustainabil Inst, Penryn Campus, Penryn, Cornwall, England
[2] Univ Exeter, Dept Geog, Penryn, Cornwall, England
[3] Lanzhou Univ, Dept Environm & Resources, Lanzhou, Gansu, Peoples R China
关键词
ecohydrology; Himalaya; Landsat; NDVI; remote sensing; subnival; time series; CLIMATE-CHANGE; TIBETAN PLATEAU; SHRUB ENCROACHMENT; GARHWAL HIMALAYA; RISK-ASSESSMENT; LAND-SURFACE; GLACIER; TEMPERATURE; SATELLITE; NEPAL;
D O I
10.1111/gcb.14919
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
The mountain systems of the Hindu Kush Himalaya (HKH) are changing rapidly due to climatic change, but an overlooked component is the subnival ecosystem (between the treeline and snow line), characterized by short-stature plants and seasonal snow. Basic information about subnival vegetation distribution and rates of ecosystem change are not known, yet such information is needed to understand relationships between subnival ecology and water/carbon cycles. We show that HKH subnival ecosystems cover five to 15 times the area of permanent glaciers and snow, highlighting their eco-hydrological importance. Using satellite data from the Landsat 5, 7 and 8 missions, we measured change in the spatial extent of subnival vegetation from 1993 to 2018. The Landsat surface reflectance-derived Normalized Difference Vegetation Index product was thresholded at 0.1 to indicate the presence/absence of vegetation. Using this product, the strength and direction of time-series trends in the green pixel fraction were measured within three regions of interest. We controlled for cloud cover, snow cover and evaluated the impact of sensor radiometric differences between Landsat 7 and Landsat 8. Using Google Earth Engine to expedite data processing tasks, we show that there has been a weakly positive increase in the extent of subnival vegetation since 1993. Strongest and most significant trends were found in the height region of 5,000-5,500 m a.s.l. across the HKH extent: R-2 = .302, Kendall's tau = 0.424, p < .05, but this varied regionally, with height, and according to the sensors included in the time series. Positive trends at lower elevations occurred on steeper slopes whilst at higher elevations, flatter areas exhibited stronger trends. We validated our findings using online photographs. Subnival ecological changes have likely impacted HKH carbon and water cycles with impacts on millions of people living downstream, but the strength and direction of impacts of vegetation expansion remain unknown.
引用
收藏
页码:1608 / 1625
页数:18
相关论文
共 96 条
[61]   Shrub canopies influence soil temperatures but not nutrient dynamics: An experimental test of tundra snow-shrub interactions [J].
Myers-Smith, Isla H. ;
Hik, David S. .
ECOLOGY AND EVOLUTION, 2013, 3 (11) :3683-3700
[62]   Shrub expansion in tundra ecosystems: dynamics, impacts and research priorities [J].
Myers-Smith, Isla H. ;
Forbes, Bruce C. ;
Wilmking, Martin ;
Hallinger, Martin ;
Lantz, Trevor ;
Blok, Daan ;
Tape, Ken D. ;
Macias-Fauria, Marc ;
Sass-Klaassen, Ute ;
Levesque, Esther ;
Boudreau, Stephane ;
Ropars, Pascale ;
Hermanutz, Luise ;
Trant, Andrew ;
Collier, Laura Siegwart ;
Weijers, Stef ;
Rozema, Jelte ;
Rayback, Shelly A. ;
Schmidt, Niels Martin ;
Schaepman-Strub, Gabriela ;
Wipf, Sonja ;
Rixen, Christian ;
Menard, Cecile B. ;
Venn, Susanna ;
Goetz, Scott ;
Andreu-Hayles, Laia ;
Elmendorf, Sarah ;
Ravolainen, Virve ;
Welker, Jeffrey ;
Grogan, Paul ;
Epstein, Howard E. ;
Hik, David S. .
ENVIRONMENTAL RESEARCH LETTERS, 2011, 6 (04)
[63]   Remote sensing study of snowline altitude at the end of melting season, Chandra-Bhaga basin, Himachal Pradesh, 1980-2007 [J].
Pandey, Pratima ;
Kulkarni, Anil V. ;
Venkataraman, G. .
GEOCARTO INTERNATIONAL, 2013, 28 (04) :311-322
[64]   PHENOLOGY OF HIGH-ALTITUDE PLANTS OF KUMAUN IN CENTRAL HIMALAYA, INDIA [J].
PANGTEY, YPS ;
RAWAL, RS ;
BANKOTI, NS ;
SAMANT, SS .
INTERNATIONAL JOURNAL OF BIOMETEOROLOGY, 1990, 34 (02) :122-127
[65]   Trends in NDVI and Tundra Community Composition in the Arctic of NE Alaska Between 1984 and 2009 [J].
Pattison, Robert R. ;
Jorgenson, Janet C. ;
Raynolds, Martha K. ;
Welker, Jeffery M. .
ECOSYSTEMS, 2015, 18 (04) :707-719
[66]   Change in winter snow depth and its impacts on vegetation in China [J].
Peng, Shushi ;
Piao, Shilong ;
Ciais, Philippe ;
Fang, Jingyun ;
Wang, Xuhui .
GLOBAL CHANGE BIOLOGY, 2010, 16 (11) :3004-3013
[67]   The Randolph Glacier Inventory: a globally complete inventory of glaciers [J].
Pfeffer, W. Tad ;
Arendt, Anthony A. ;
Bliss, Andrew ;
Bolch, Tobias ;
Cogley, J. Graham ;
Gardner, Alex S. ;
Hagen, Jon-Ove ;
Hock, Regine ;
Kaser, Georg ;
Kienholz, Christian ;
Miles, Evan S. ;
Moholdt, Geir ;
Moelg, Nico ;
Paul, Frank ;
Radic, Valentina ;
Rastner, Philipp ;
Raup, Bruce H. ;
Rich, Justin ;
Sharp, Martin J. ;
Andeassen, L. M. ;
Bajracharya, S. ;
Barrand, N. E. ;
Beedle, M. J. ;
Berthier, E. ;
Bhambri, R. ;
Brown, I. ;
Burgess, D. O. ;
Burgess, E. W. ;
Cawkwell, F. ;
Chinn, T. ;
Copland, L. ;
Cullen, N. J. ;
Davies, B. ;
De Angelis, H. ;
Fountain, A. G. ;
Frey, H. ;
Giffen, B. A. ;
Glasser, N. F. ;
Gurney, S. D. ;
Hagg, W. ;
Hall, D. K. ;
Haritashya, U. K. ;
Hartmann, G. ;
Herreid, S. ;
Howat, I. ;
Jiskoot, H. ;
Khromova, T. E. ;
Klein, A. ;
Kohler, J. ;
Konig, M. .
JOURNAL OF GLACIOLOGY, 2014, 60 (221) :537-552
[68]   Shrub tundra snowmelt [J].
Pomeroy, JW ;
Bewley, DS ;
Essery, RLH ;
Hedstrom, NR ;
Link, T ;
Granger, RJ ;
Sicart, JE ;
Ellis, CR ;
Janowicz, JR .
HYDROLOGICAL PROCESSES, 2006, 20 (04) :923-941
[69]   Asia's shrinking glaciers protect large populations from drought stress [J].
Pritchard, Hamish D. .
NATURE, 2019, 569 (7758) :649-+
[70]   TROUBLE IN TIBET [J].
Qiu, Jane .
NATURE, 2016, 529 (7585) :142-145