It seems that you're in Germany. We have a dedicated site for Germany. In the course of evolution, a great variety of root systems have learned to overcome the many physical, biochemical and biological problems brought about by soil.
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This development has made them a fascinating object of scientific study. This volume gives an overview of how roots have adapted to the soil environment and which roles they play in the soil ecosystem.
The text describes the form and function of roots, their temporal and spatial distribution, and their turnover rate in various ecosystems. Subsequently, a physiological background is provided for basic functions, such as carbon acquisition, water and solute movement, and for their responses to three major abiotic stresses, i. The volume concludes with the interactions of roots with other organisms of the complex soil ecosystem, including symbiosis, competition, and the function of roots as a food source.
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- Fine-Root Ecology Database (FRED) Version 2.0.
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- Root Ecology.
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As expected from the Ecological Studies series, the contributions are well-edited, up-to-date, concise and in-depth. As a summary of current knowledge of roots and how they do their job, this book deserves a place on all library shelves and will be of value to undergraduates writing essays through to those active in the research area.
New Phytologist Eos The Fine-Root Ecology Database FRED is a global data set of plant root traits and associated ancillary data on site, vegetation, edaphic, and climatic conditions. You can return to the Data portal here.
FRED database gathers root traits to advance understanding of below-ground plant ecology
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Personal tools Log in Register. Year of publication: Authors: Colleen M. Summary: The Fine-Root Ecology Database FRED is a global data set of plant root traits and associated ancillary data on site, vegetation, edaphic, and climatic conditions.