Fauna in Soil Ecosystems

Fauna in Soil Ecosystems
Author: Gero Benckiser
Publsiher: CRC Press
Total Pages: 432
Release: 1997-01-02
Genre: Technology & Engineering
ISBN: 0824797868

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Offers an integrated presentation of the microbial, agronomic and recycling aspects of soil faunal potentials, emphasizing agricultural ecosystems and furnishing methods for modelling food webs. The text covers morphology, reproduction, abundances, basic requirements, competition, predation, parasitism, nutrient cycling and phytopathological interactions, soil physics and agricultural management, plus methods to quantify soil faunal groups.

Fauna in Soil Ecosystems

Fauna in Soil Ecosystems
Author: Gero Benckiser
Publsiher: CRC Press
Total Pages: 400
Release: 1997-01-02
Genre: Science
ISBN: 9781482273571

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Offers an integrated presentation of the microbial, agronomic and recycling aspects of soil faunal potentials, emphasizing agricultural ecosystems and furnishing methods for modelling food webs. The text covers morphology, reproduction, abundances, basic requirements, competition, predation, parasitism, nutrient cycling and phytopathological intera

Soil Fauna Assemblages

Soil Fauna Assemblages
Author: Uffe N. Nielsen
Publsiher: Cambridge University Press
Total Pages: 381
Release: 2019-03-28
Genre: Nature
ISBN: 9781107191488

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A holistic overview of soil fauna, their contributions to ecosystem function, and implications of global change belowground.

Fundamentals of Soil Ecology

Fundamentals of Soil Ecology
Author: David C. Coleman,D. A. Crossley, Jr.,Paul F. Hendrix
Publsiher: Academic Press
Total Pages: 404
Release: 2004-07-19
Genre: Nature
ISBN: 9780121797263

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Publisher Description

Ecosystem Consequences of Soil Warming

Ecosystem Consequences of Soil Warming
Author: Jacqueline E. Mohan
Publsiher: Academic Press
Total Pages: 592
Release: 2019-04-27
Genre: Science
ISBN: 9780128134931

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Ecosystem Consequences of Soil Warming: Microbes, Vegetation, Fauna and Soil Biogeochemistry focuses on biotic and biogeochemical responses to warmer soils including plant and microbial evolution. It covers various field settings, such as arctic tundra; alpine meadows; temperate, tropical and subalpine forests; drylands; and grassland ecosystems. Information integrates multiple natural science disciplines, providing a holistic, integrative approach that will help readers understand and forecast future planetwide responses to soil warming. Students and educators will find this book informative for understanding biotic and biogeochemical responses to changing climatic conditions. Scientists from a wide range of disciplines, including soil scientists, ecologists, geneticists, as well as molecular, evolutionary and conservation biologists, will find this book a valuable resource in understanding and planning for warmer climate conditions. Emphasizes biological components of soils, plants and microbes that provide linkages to physics and chemistry Brings together chapters written by global scientific experts with interests in communication and education Includes coverage of polar, alpine, tropical, temperate and dryland ecosystems

Soil Ecology and Management

Soil Ecology and Management
Author: Joann K. Whalen,Luis Sampedro
Publsiher: CABI
Total Pages: 308
Release: 2010
Genre: Technology & Engineering
ISBN: 9781845935634

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Describes the organisms inhabiting the soil, their functions and interactions and the dimensions of human impact on the activity of soil organisms and soil ecological function; and discusses basic soil characteristics and biogeochemical cycling, key soil flora and fauna, community-level dynamics (soil food webs) and the ecological and pedological functions of soil organisms. Also conveys an understanding of how human activities impact upon soil ecology in a section on ecosystem management and its effects on soil biota.

Soil Microbiology Ecology and Biochemistry

Soil Microbiology  Ecology and Biochemistry
Author: Eldor A. Paul
Publsiher: Academic Press
Total Pages: 598
Release: 2014-11-14
Genre: Technology & Engineering
ISBN: 9780123914118

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The fourth edition of Soil Microbiology, Ecology and Biochemistry updates this widely used reference as the study and understanding of soil biota, their function, and the dynamics of soil organic matter has been revolutionized by molecular and instrumental techniques, and information technology. Knowledge of soil microbiology, ecology and biochemistry is central to our understanding of organisms and their processes and interactions with their environment. In a time of great global change and increased emphasis on biodiversity and food security, soil microbiology and ecology has become an increasingly important topic. Revised by a group of world-renowned authors in many institutions and disciplines, this work relates the breakthroughs in knowledge in this important field to its history as well as future applications. The new edition provides readable, practical, impactful information for its many applied and fundamental disciplines. Professionals turn to this text as a reference for fundamental knowledge in their field or to inform management practices. New section on "Methods in Studying Soil Organic Matter Formation and Nutrient Dynamics" to balance the two successful chapters on microbial and physiological methodology Includes expanded information on soil interactions with organisms involved in human and plant disease Improved readability and integration for an ever-widening audience in his field Integrated concepts related to soil biota, diversity, and function allow readers in multiple disciplines to understand the complex soil biota and their function

Interactive Feedbacks between Soil Fauna and Soil Processes

Interactive Feedbacks between Soil Fauna and Soil Processes
Author: Maria Luz Cayuela,Julia Clause,Jan Frouz,Philippe C. Baveye
Publsiher: Frontiers Media SA
Total Pages: 120
Release: 2020-03-30
Genre: Electronic Book
ISBN: 9782889635481

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Soil fauna plays a significant role at all trophic levels of the soil food web and regulates processes that are crucial for soil functioning, such as nutrient cycling, immobilization and/or degradation of toxic compounds, formation of soil structure, greenhouse gas emissions and C turnover. Although soil fauna is not thought to contribute significantly to soil respiration during litter or soil organic matter (SOM) decomposition, the diversity of soil fauna has been found to strongly influence SOM distribution and dynamics. Yet, the functional contribution of soil fauna to many soil processes is not well understood due to methodological limitations and the high complexity of interactions at various spatiotemporal scales. In general, soil fauna has received far less scientific attention than bacteria and fungi (and lately archaea) in soil studies and has been regularly ignored in global biogeochemical models, with maybe exceptions for some earthworms. However, recent studies are raising the awareness of the influence of soil fauna on ecosystems dynamics. For instance, earthworms have been found to be major players in N2O emissions from soils. They exert a strong influence on C stabilization, and they promote the degradation of polycyclic aromatic hydrocarbons (PAHs). Less studied, ants and termites have been found to increase crop productivity in drylands, and different lifeforms of Collembola have been shown to impact microorganisms in various ways over time, thereby potentially affecting C and N cycles within farming systems. The influence of soil fauna indeed manifests over a broad ranges of spatiotemporal scales. For example, some effect such as aggregate formation may cumulate over time and finally contribute to the formation of whole soil profiles, which serve as a framework for other soil processes such as water movement, decomposition, etc. Meanwhile, soil biodiversity is impacted by an increasing human pressure through deforestation, agriculture intensification, habitat fragmentation or climate change (increasing temperatures, extreme weather events), which leads to soil biodiversity loss, in particular of soil fauna, with associated consequences on soil functioning and resilience.