Literature DB >> 26886790

Sensitivity of global terrestrial ecosystems to climate variability.

Alistair W R Seddon1, Marc Macias-Fauria2, Peter R Long3, David Benz3, Kathy J Willis1,3,4.   

Abstract

The identification of properties that contribute to the persistence and resilience of ecosystems despite climate change constitutes a research priority of global relevance. Here we present a novel, empirical approach to assess the relative sensitivity of ecosystems to climate variability, one property of resilience that builds on theoretical modelling work recognizing that systems closer to critical thresholds respond more sensitively to external perturbations. We develop a new metric, the vegetation sensitivity index, that identifies areas sensitive to climate variability over the past 14 years. The metric uses time series data derived from the moderate-resolution imaging spectroradiometer (MODIS) enhanced vegetation index, and three climatic variables that drive vegetation productivity (air temperature, water availability and cloud cover). Underlying the analysis is an autoregressive modelling approach used to identify climate drivers of vegetation productivity on monthly timescales, in addition to regions with memory effects and reduced response rates to external forcing. We find ecologically sensitive regions with amplified responses to climate variability in the Arctic tundra, parts of the boreal forest belt, the tropical rainforest, alpine regions worldwide, steppe and prairie regions of central Asia and North and South America, the Caatinga deciduous forest in eastern South America, and eastern areas of Australia. Our study provides a quantitative methodology for assessing the relative response rate of ecosystems--be they natural or with a strong anthropogenic signature--to environmental variability, which is the first step towards addressing why some regions appear to be more sensitive than others, and what impact this has on the resilience of ecosystem service provision and human well-being.

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Year:  2016        PMID: 26886790     DOI: 10.1038/nature16986

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  11 in total

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Review 5.  Early-warning signals for critical transitions.

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Journal:  Nature       Date:  2009-09-03       Impact factor: 49.962

6.  Drought impact on forest carbon dynamics and fluxes in Amazonia.

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Journal:  Nature       Date:  2015-03-05       Impact factor: 49.962

Review 7.  Legacies of precipitation fluctuations on primary production: theory and data synthesis.

Authors:  Osvaldo E Sala; Laureano A Gherardi; Lara Reichmann; Esteban Jobbágy; Debra Peters
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9.  Tropical rain forest tree growth and atmospheric carbon dynamics linked to interannual temperature variation during 1984-2000.

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  59 in total

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5.  Identifying drivers of forest resilience in long-term records from the Neotropics.

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Review 6.  A unifying framework for studying and managing climate-driven rates of ecological change.

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7.  Relative importance of climate changes at different time scales on net primary productivity-a case study of the Karst area of northwest Guangxi, China.

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8.  Temporal variability in production is not consistently affected by global change drivers across herbaceous-dominated ecosystems.

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9.  Within-generation and transgenerational plasticity in growth and regeneration of a subordinate annual grass in a rainfall experiment.

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