Abstract

The protection of biodiversity is a complex societal, political and ultimately practical imperative of current global society. The imperative builds upon scientific knowledge on human dependence on the life-support systems of the Earth. This paper aims at introducing main types of uncertainty inherent in biodiversity science, policy and management, as an introduction to a companion paper summarizing practical experiences of scientists and scholars (Haila et al. 2014). Uncertainty is a cluster concept: the actual nature of uncertainty is inherently context-bound. We use semantic space as a conceptual device to identify key dimensions of uncertainty in the context of biodiversity protection; these relate to [i] data; [ii] proxies; [iii] concepts; [iv] policy and management; and [v] normative goals. Semantic space offers an analytic perspective for drawing critical distinctions between types of uncertainty, identifying fruitful resonances that help to cope with the uncertainties, and building up collaboration between different specialists to support mutual social learning.

Highlights

  • Uncertainty is an essential ingredient of science, manifested in all phases of conducting research, drawing conclusions, and putting the conclusions into societal practice (Funtowicz and Ravetz 1990)

  • Though, the Millennium Assessment was made in such a generalized mood that uncertainty did not find a natural niche in the results

  • We present a preliminary model of the semantic space in the final section of this paper

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Summary

Launched to accelerate biodiversity conservation

Uncertainty in biodiversity science, policy and management: a conceptual overview. Penev | Received 8 July 2014 | Accepted 19 August 2014 | Published 9 October 2014 http://zoobank.org/5D64703F-13C4-4166-ACAD-5BF1AE24407E

Introduction
On the specificity of biodiversity research
Further clarification of the nature of uncertainty
Toward collective collaborative assessment

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