图书简介
Microbial Biomass informs readers of the ongoing global revolution in understanding soil and ecosystem microbial processes. The first paper on the subject was written by David Jenkinson in 1966, and here new insights and expansions are given on the fascinating world of soil microbial processes. In terms of contemporary issues, it also serves to support urgent efforts to sustainably manage land to feed a growing world population without compromising the environment. It presents new methods of investigation which are leading to more sustainable management of ecosystems, and improved understanding of ecosystem changes in an increasingly warmer world.
The book approaches the topic by looking at the emergence of our understanding of soil biological processes, and begins by tracing the conception and first measurement of soil microbial biomass. Following this, changes in ecosystems, and in natural ecosystem processes are discussed in relation to land management issues and global change. Microbial biomass and its diversity are recognized as key factors in finding solutions for more sustainable land and ecosystem management, aided by new molecular and other tools. The use of these tools is now being incorporated into emerging microbial-explicit predictive models, to help us study changes in earth system processes.
Perfect for use in research and practice, this book is written for undergraduate and graduate students, researchers and professionals of agronomy, chemistry, geology, physical geography, ecology, biology, microbiology, silviculture and ecology.
The Soil Microbial Biomass-Birth of a New Paradigm in Soil Biology; The Role of the Microbial Biomass in Cycling Nutrients; Managing Organic Matter in Agro-Ecosystems; Microbial Biomass and Functions in Paddy Soil; Soil Biodiversity and Ecosystem Functioning; Building New Predictive Models for Diverse Microbial Communities; Stable Isotope Probing of the Soil Microbial Biomass; New Culture-Independent Tools to Enhance Our Understanding of Soil Microbial Ecology; Implications of Microbial Traits for Wetland Functioning Under Disturbance; Arctic Soil Microbial Sensitivity and Responses to Temperature Changes; Fresh Perspectives on the Soil Nitrogen Cycle Under a Changing Climate
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