Global patterns and drivers of ecosystem functioning in rivers and riparian zones


Abstract:

River ecosystems receive and process vast quantities of terrestrial organic carbon, the fate of which depends strongly on microbial activity. Variation in and controls of processing rates, however, are poorly characterized at the global scale. In response, we used a peer-sourced research network and a highly standardized carbon processing assay to conduct a global-scale field experiment in greater than 1000 river and riparian sites. We found that Earth's biomes have distinct carbon processing signatures. Slow processing is evident across latitudes, whereas rapid rates are restricted to lower latitudes. Both the mean rate and variability decline with latitude, suggesting temperature constraints toward the poles and greater roles for other environmental drivers (e.g., nutrient loading) toward the equator. These results and data set the stage for unprecedented "next-generation biomonitoring" by establishing baselines to help quantify environmental impacts to the functioning of ecosystems at a global scale.

Año de publicación:

2019

Keywords:

    Fuente:

    scopusscopus
    googlegoogle

    Tipo de documento:

    Article

    Estado:

    Acceso restringido

    Áreas de conocimiento:

    • Ecosistema
    • Ecosistema
    • Ecosistema

    Áreas temáticas de Dewey:

    • Ecología
    • Economía de la tierra y la energía
    Procesado con IAProcesado con IA

    Objetivos de Desarrollo Sostenible:

    • ODS 15: Vida de ecosistemas terrestres
    • ODS 13: Acción por el clima
    • ODS 6: Agua limpia y saneamiento
    Procesado con IAProcesado con IA