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Climate change reduces extent of temperate drylands and intensifies drought in deep soils

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Schlaepfer, D.R., Bradford, J.B., Lauenroth, W.K., Munson, S.M., Tietjen, B., Hall, S.A., Wilson, S.D., Duniway, M.C., Jia, G., Pyke, D.A., Lkhagva, A. & Jamiyansharav, K. (2017). Climate change reduces extent of temperate drylands and intensifies drought in deep soils. Nat Commun, 8, 14196.

Summary

Drylands cover 40% of the global terrestrial surface and provide important ecosystem services. While drylands as a whole are expected to increase in extent and aridity in coming decades, temperature and precipitation forecasts vary by latitude and geographic region suggesting different trajectories for tropical, subtropical, and temperate drylands. Uncertainty in the future of tropical and subtropical drylands is well constrained, whereas soil moisture and ecological droughts, which drive vegetation productivity and composition, remain poorly understood in temperate drylands. Here we show that, over the twenty first century, temperate drylands may contract by a third, primarily converting to subtropical drylands, and that deep soil [...]

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Relationship of the proportion of transpiration derived from deep soil moisture between current values and its future response..JPG
“elationship of the proportion of transpiration derived from deep soil moisture”
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elationship of the proportion of transpiration derived from deep soil moisture
elationship of the proportion of transpiration derived from deep soil moisture

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  • John Wesley Powell Center for Analysis and Synthesis

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DOI https://www.sciencebase.gov/vocab/category/item/identifier 10.1038/ncomms14196

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noteSchlaepfer, D.R., Bradford, J.B., Lauenroth, W.K., Munson, S.M., Tietjen, B., Hall, S.A., Wilson, S.D., Duniway, M.C., Jia, G., Pyke, D.A., Lkhagva, A. & Jamiyansharav, K. (2017). Climate change reduces extent of temperate drylands and intensifies drought in deep soils. Nature Communications, 8, 14196.

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