Articles | Volume 12, issue 23
https://doi.org/10.5194/bg-12-6985-2015
https://doi.org/10.5194/bg-12-6985-2015
Research article
 | 
07 Dec 2015
Research article |  | 07 Dec 2015

Trends and climatic sensitivities of vegetation phenology in semiarid and arid ecosystems in the US Great Basin during 1982–2011

G. Tang, J. A. Arnone III, P. S. J. Verburg, R. L. Jasoni, and L. Sun

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Cited articles

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Atkinson, P. M., Jeganathan, C., Dash, J., and Atzberger, C.: Inter-comparison of four models for smoothing satellite sensor time-series data to estimate vegetation phenology, Remote Sens. Environ., 123, 400–417, 2011.
Botta, A., Viovy, N., Ciais, P., Friedlingstein, P., and Monfray, P.: A global prognostic scheme of leaf onset using satellite data, Glob. Change Biol., 6, 709–725, 2000.
Bradley, B. A. and Mustard, J. F.: Identifying land cover variability distinct from land cover change: cheatgrass in the Great Basin, Remote Sens. Environ., 94, 204–213, 2005.
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Short summary
We found that changes in wintertime and springtime precipitation played a more important role in the interannual variability of mean vegetation greenness while climate warming was mainly responsible for the 30-year positive trend in the magnitudes of mean vegetation greenness in the dryland ecosystems in the US Great Basin during 1982–2011.
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