Agriculture Biotechnologie & Microbiologie
Trends en Soil Microbial Écologie
Description
Since le very first estimation sur le abundance et role de microbial communities en le soil, researchers have attempted to assess distribution et functionalities de le species to correlate le entwining interactions between community structure et ecosystem function. Both culture-dependent et -independent approaches were worked out en deciphering et cataloging microbial diversity to investigate le linkage de microbial communities to le ecosystem function. Le book Trends en Soil Microbial ecology presents holistic account de analyzing microbial communities et describing their functional role avec increased understanding de their ecological significance en soils. While going through le book, le readers can generate a better understanding about le functional significance de microbial communities en soils (Chapter 1), application de functional metagenomics to uncover metabolic diversity de soil microbes (Chapter 2), role de soil microscale conditions to define spatial community distribution et function (Chapter 3) et CMEIAS computer-assisted microscopy pour rhizobacterial colonization sur roots (Chapter 4). Approchees pour identification de soil microbial communities (Chapter 5) et applications de plant growth promoting rhizobacteria (Chapter 6) are described pour readers interested en functional microbial diversity. Interesting topics like hydrolases activity pour bio-indication de soil fertility en agro-ecosystems (Chapter 7), significance de endophytes (Chapter 8), microbial resources pour crop improvement (Chapter 9), biological indicators pour soil health (Chapter 10), arbuscular-mycorrhizal symbiosis pour sustainable agriculture (Chapters 11 & 12), microbial biodiversity pour soil health (Chapter 13) et biological options pour crop health (Chapter 14) are covered to emphasize practically applicable issues sur le most demanding research area de sustainable soil et plant health. Different microbiological parameters as soil quality indicators (Chapter 15) et rhizosphere engineering pour crop under water stress (Chapter 16) are described to put before le readership a clearer picture de complex topics. Lastly, an attempt is made to let le readers understand analysis de le outcomes de metagenomics data using bioinformatics resources (Chapter 17). Le views de le authors are authoritative, based sur their long thorough research experience en le subject area et figures, schemes, tables, photographs et citations presented en le chapters make a better understanding de le subject.
Table des matières
Functional Significance de Microbial Communities en Soils; Uncovering le Metabolic Diversity de Soil Microbial Communities Through Functional Metagenomics; Le Role de Soil Microscale Conditions en Determining Microbial Spatial Distribution, Community Structure et Function; Spatial Écologie de Rhizobacterial Colonization sur Roots Analyzed by CMEIAS Ordinateur-Assisted Microscopy at Single-Cell Resolution; Identification de Soil Microbial Communities Approchees et Methodologies; Écologie, Diversity et Application de Plante Growth Promoting Rhizobacteria; Analyse de Hydolases Activity pour Bio-indication de Soil Fertility Related to Different Gestion de Agro-Ecosystems; Functional Significance de Endophytes; Harnessing Beneficial Microbial Resources pour Culture Improvement; Biologique Indicators de Soil Health; Le Arbuscular Mycorrhizal Symbiosis Un Underground Monde Wide Web; Interaction Between Arbuscular Mycorrhizal Fungi et le Soil Organisms et Their Role en Sustainable Agriculture; Microbial Biodiversity: Present et Future de Soil Health; Biologique Options pour Culture Health (Nutrition, Pest et Disease) Gestion - Sanguine to Sustainable Agriculture; Microbiological Parameters as Soil Quality Indicators; Rhizosphere Ingénierie de Culture Plantees by Bacterial ACC- deaminase Under Eau Stress; Bioinformatics Resources pour le Analyse de Unculturable Microbial Communities en Soils; Index