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Journal ArticleDOI

The influence of biotic interactions on soil biodiversity.

David A. Wardle
- 01 Jul 2006 - 
- Vol. 9, Iss: 7, pp 870-886
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TLDR
An improved understanding of what drives the diversity of life in the soil, incorporated within appropriate conceptual frameworks, should significantly aid the understanding of the structure and functioning of terrestrial communities.
Abstract
Belowground communities usually support a much greater diversity of organisms than do corresponding aboveground ones, and while the factors that regulate their diversity are far less well understood, a growing number of recent studies have presented data relevant to understanding how these factors operate. This review considers how biotic factors influence community diversity within major groups of soil organisms across a broad spectrum of spatial scales, and addresses the mechanisms involved. At the most local scale, soil biodiversity may potentially be affected by interactions within trophic levels or by direct trophic interactions. Within the soil, larger bodied invertebrates can also influence diversity of smaller sized organisms by promoting dispersal and through modification of the soil habitat. At larger scales, individual plant species effects, vegetation composition, plant species diversity, mixing of plant litter types, and aboveground trophic interactions, all impact on soil biodiversity. Further, at the landscape scale, soil diversity also responds to vegetation change and succession. This review also considers how a conceptual understanding of the biotic drivers of soil biodiversity may assist our knowledge of key topics in community and ecosystem ecology, such as aboveground-belowground interactions, and the relationship between biodiversity and ecosystem functioning. It is concluded that an improved understanding of what drives the diversity of life in the soil, incorporated within appropriate conceptual frameworks, should significantly aid our understanding of the structure and functioning of terrestrial communities.

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Journal ArticleDOI

The Theory of Island Biogeography

TL;DR: Preface to the Princeton Landmarks in Biology Edition vii Preface xi Symbols used xiii 1.
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Ecological intensification: harnessing ecosystem services for food security

TL;DR: Research efforts and investments are particularly needed to reduce existing yield gaps by integrating context-appropriate bundles of ecosystem services into crop production systems.
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Plant functional traits and soil carbon sequestration in contrasting biomes

TL;DR: It is proposed that a trait-based approach will help to develop strategies to preserve and promote carbon sequestration under global changes, and how the composition of key plant traits and soil biota related to carbon input, release and storage prevail in different biomes across the globe.
Journal ArticleDOI

Litter decomposition: what controls it and how can we alter it to sequester more carbon in forest soils?

TL;DR: In this article, a review of recent developments in litter decomposition research is presented, and the optimal strategy is to have litter transformed into humic substances and then chemically or physically protected in mineral soil.
References
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Journal ArticleDOI

The Theory of Island Biogeography

TL;DR: Preface to the Princeton Landmarks in Biology Edition vii Preface xi Symbols used xiii 1.
Book

The Theory of Island Biogeography

TL;DR: The Princeton Landmarks in Biology Edition vii Preface xi Symbols Used xiii 1. The Importance of Islands 3 2. Area and Number of Speicies 8 3. Further Explanations of the Area-Diversity Pattern 19 4. The Strategy of Colonization 68 5. Invasibility and the Variable Niche 94 6. Stepping Stones and Biotic Exchange 123 7. Evolutionary Changes Following Colonization 145 8. Prospect 181 Glossary 185 References 193 Index 201
Journal ArticleDOI

Diversity in tropical rain forests and coral reefs.

TL;DR: The commonly observed high diversity of trees in tropical rain forests and corals on tropical reefs is a nonequilibrium state which, if not disturbed further, will progress toward a low-diversity equilibrium community as mentioned in this paper.
Book

Resource competition and community structure

David Tilman
TL;DR: This book builds a mechanistic, resource-based explanation of the structure and functioning of ecological communities and explores such problems as the evolution of "super species," the differences between plant and animal community diversity patterns, and the cause of plant succession.
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