A common currency for the different ways in which patches and links can contribute to habitat availability and connectivity in the landscape

Santiago Saura, Lidón Rubio

Ecography · 2010 · 618 citations · 53 references

Concepts

TL;DR

Graph structures and habitat availability metrics are two recent complementary approaches for analysing landscape connectivity, gaining rapid popularity and providing significant conceptual improvements for conservation planning. The study develops a new method that partitions habitat availability metrics into three fractions to quantify how individual landscape elements contribute to overall connectivity, including stepping stone effects. The method derives three fractions from the habitat availability concept, measured in identical units, allowing direct comparison and combination within a unifying framework, and analyzes how each fraction’s importance varies with species traits and differs across critical patches in forest habitats of Lleida, Spain. The approach eliminates the need for arbitrary weighting of metrics from different backgrounds, and its conceptual and conservation implications are discussed, showing that it can be adapted to varying ecological and spatial detail while maintaining a coherent framework for identifying critical landscape elements.

Abstract

Graph structures and habitat availability metrics are two recent and complementary approaches for analysing landscape connectivity. They have gained rapid popularity and provided significant conceptual improvements for decision making in conservation planning. We present a further methodological development of the habitat availability concept and metrics by partitioning them into three separate fractions that quantify the different ways in which individual landscape elements can contribute to overall habitat connectivity and availability in the landscape, including stepping stone effects. These fractions are derived from the same concept, are measured in the same units and can be directly compared and combined within a unifying framework. This avoids the problematic and, so far, usual combination of metrics coming from different backgrounds and the arbitrary weighting of connectivity considerations in a broader context of conservation alternatives. We analyse how the relative importance of each fraction varies with species traits. In addition, we show how the critical patches differ for each of the fractions by analysing various forest habitats in the province of Lleida (NE Spain). We discuss the conceptual and conservation implications of this approach, which can be adapted to different degrees of ecological and spatial detail within the graph while still maintaining a coherent framework for the identification of critical elements in the landscape network.

References

53