This study advances understanding of how the changes in ecosystem structure and function associated with woody shrub encroachment in semi-arid grasslands alter ecosystem carbon (C) dynamics. In terms of both magnitude and dynamism, dryland ecosystems represent a major component of the global C cycle. Woody shrub encroachment is a widespread phenomenon globally, which is known to substantially alter ecosystem structure and function, with resultant impacts on C dynamics. A series of focal sites were studied at the Sevilleta National Wildlife Refuge in central New Mexico, USA. A space-for-time analogue was used to identify how landscape structure and function change at four stages over a grassland to shrubland transition. The research had t...
Doctor of PhilosophyDivision of BiologyJohn M. BlairPlants are a major conduit through which carbon ...
Currently, drylands occupy more than one-third of the global terrestrial surface and are recognized ...
Projecting how arid and semi‐arid ecosystems respond to global change requires the integration of a ...
This study develops understanding of vegetation change and water, sediment and carbon dynamics in se...
Journal ArticleDrylands worldwide are experiencing rapid and extensive environmental change, concomi...
Drylands worldwide are experiencing rapid and extensive environmental change, concomitant with the e...
Drylands worldwide are experiencing rapid and extensive environmental change, concomitant with the e...
This study develops understanding of vegetation change and water, sediment and carbon dynamics in se...
Journal ArticleSoil organic carbon (SOC) is an important component of the global carbon cycle yet is...
Using biogeochemical tracing and ecohydrological monitoring to increaseunderstanding of water, sedim...
PublishedSemiarid ecosystems are susceptible to changes in dominant vegetation which may have signif...
Connectivity has recently emerged as a key concept for understanding hydrological response to vegeta...
Woody encroachment and proliferation within dryland ecosystems is potentially the second largest por...
Semiarid ecosystems are susceptible to changes in dominant vegetation which may have significant imp...
Replacement of grasslands and savannas by shrublands and woodlands has been widely reported in tropi...
Doctor of PhilosophyDivision of BiologyJohn M. BlairPlants are a major conduit through which carbon ...
Currently, drylands occupy more than one-third of the global terrestrial surface and are recognized ...
Projecting how arid and semi‐arid ecosystems respond to global change requires the integration of a ...
This study develops understanding of vegetation change and water, sediment and carbon dynamics in se...
Journal ArticleDrylands worldwide are experiencing rapid and extensive environmental change, concomi...
Drylands worldwide are experiencing rapid and extensive environmental change, concomitant with the e...
Drylands worldwide are experiencing rapid and extensive environmental change, concomitant with the e...
This study develops understanding of vegetation change and water, sediment and carbon dynamics in se...
Journal ArticleSoil organic carbon (SOC) is an important component of the global carbon cycle yet is...
Using biogeochemical tracing and ecohydrological monitoring to increaseunderstanding of water, sedim...
PublishedSemiarid ecosystems are susceptible to changes in dominant vegetation which may have signif...
Connectivity has recently emerged as a key concept for understanding hydrological response to vegeta...
Woody encroachment and proliferation within dryland ecosystems is potentially the second largest por...
Semiarid ecosystems are susceptible to changes in dominant vegetation which may have significant imp...
Replacement of grasslands and savannas by shrublands and woodlands has been widely reported in tropi...
Doctor of PhilosophyDivision of BiologyJohn M. BlairPlants are a major conduit through which carbon ...
Currently, drylands occupy more than one-third of the global terrestrial surface and are recognized ...
Projecting how arid and semi‐arid ecosystems respond to global change requires the integration of a ...