Microbial Restoration Ecology of Biological Soil Crusts

Microbial Restoration Ecology of Biological Soil Crusts
Title Microbial Restoration Ecology of Biological Soil Crusts PDF eBook
Author Ana Maria Giraldo Silva
Publisher
Pages 246
Release 2019
Genre Crust vegetation
ISBN

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Biological soil crusts (biocrusts) are topsoil communities of organisms that contribute to soil fertility and erosion resistance in drylands. Anthropogenic disturbances can quickly damage these communities and their natural recovery can take decades. With the development of accelerated restoration strategies in mind, I studied physiological mechanisms controlling the establishment of cyanobacteria in biocrusts, since these photoautotrophs are not just the biocrust pioneer organisms, but also largely responsible for improving key soil attributes such as physical stability, nutrient content, water retention and albedo. I started by determining the cyanobacterial community composition of a variety of biocrust types from deserts in the Southwestern US. I then isolated a large number of cyanobacterial strains from these locations, pedigreed them based on their 16SrRNA gene sequences, and selective representatives that matched the most abundant cyanobacterial field populations. I then developed methodologies for large-scale growth of the selected isolates to produce location-specific and genetically autochthonous inoculum for restoration. I also developed and tested viable methodologies to physiologically harden this inoculum and improve its survival under harsh field conditions. My tests proved that in most cases good viability of the inoculum could be attained under field-like conditions. In parallel, I used molecular ecology approaches to show that the biocrust pioneer, Microcoleus vaginatus, shapes its surrounding heterotrophic microbiome, enriching for a compositionally-differentiated "cyanosphere" that concentrates the nitrogen-fixing function. I proposed that a mutualism based on carbon for nitrogen exchange between M. vaginatus and its cyanosphere creates a consortium that constitutes the true pioneer community enabling the colonization of nitrogen-poor, bare soils. Using the right mixture of photosynthetic and diazotrophic cultures will thus likely help in soil restoration. Additionally, using physiological assays and molecular meta-analyses, I demonstrated that the largest contributors to N2-fixation in late successional biocrusts (three genera of heterocystous cyanobacteria) partition their niche along temperature gradients, and that this can explain their geographic patterns of dominance within biocrusts worldwide. This finding can improve restoration strategies by incorporating climate-matched physiological types in inoculum formulations. In all, this dissertation resulted in the establishment of a comprehensive "cyanobacterial biocrust nursery", that includes a culture collection containing 101 strains, isolation and cultivation methods, inoculum design strategies as well as field conditioning protocols. It constitutes a new interdisciplinary application of microbiology in restoration ecology.

Biological Soil Crusts: Spatio-temporal Development and Ecological Functions of Soil Surface Microbial Communities across Different Scales

Biological Soil Crusts: Spatio-temporal Development and Ecological Functions of Soil Surface Microbial Communities across Different Scales
Title Biological Soil Crusts: Spatio-temporal Development and Ecological Functions of Soil Surface Microbial Communities across Different Scales PDF eBook
Author Shubin Lan
Publisher Frontiers Media SA
Pages 339
Release 2024-08-09
Genre Science
ISBN 2832553028

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Biological soil crusts (biocrusts) are widely distributed throughout the world, and cover approximately 12% of the terrestrial surface. Biocrusts are composed of cyanobacteria, algae, lichens, mosses, and a great diversity of other microorganisms, which bind soil particles together to form a layer of biological-soil matrix on the soil surface typically of several millimetres thickness. They are important sites of regional and global microbial diversity and perform multiple ecological functions (multifunctionality). During the evolution of terrestrial life on earth, biocrusts are regarded as the main colonising photosynthetic organisms before the advent of vascular vegetation. They not only represent the early stages of terrestrial ecosystems, but also facilitate the ecosystem’s development and succession. Therefore, biocrusts are recognised as ecological engineers in the natural development of ecosystems and for the restoration of degraded terrestrial ecosystems. The development of biocrusts is highly heterogeneous, which is reflected on both temporal and spatial scales, and this heterogeneity is still clearly visible even in a small scale. However, up to now, only limited knowledge is acquired on biocrust temporal and spatial organisation. In particular there still is a large knowledge gap regarding the various biocrust communities under different developmental states and their related physiological metabolisms and ecological functions. Therefore, in-depth studies of these issues will undoubtedly further promote our understanding of the heterogeneous development of biocrusts, as well as their ecological multifunctionality in terrestrial ecosystems. The relevant contributions are expected to provide a scientific basis for the management of biocrusts and technology development (e.g. cyanobacteria-induced biocrust technology) for ecological restoration and the promotion of soil health.

Biological Soil Crusts

Biological Soil Crusts
Title Biological Soil Crusts PDF eBook
Author Jayne Belnap
Publisher Springer Science & Business Media
Pages 532
Release 2002-10-24
Genre Law
ISBN 9783540437574

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Soil fungi, microbes, microfauna, nitrogen fixation, hydrology, erosion, global change

Ecological Development and Functioning of Biological Soil Crusts After Natural and Human Disturbances

Ecological Development and Functioning of Biological Soil Crusts After Natural and Human Disturbances
Title Ecological Development and Functioning of Biological Soil Crusts After Natural and Human Disturbances PDF eBook
Author Vincent John Martin Noah Linus Felde
Publisher Frontiers Media SA
Pages 214
Release 2021-09-02
Genre Science
ISBN 2889712559

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Biological Soil Crusts: An Organizing Principle in Drylands

Biological Soil Crusts: An Organizing Principle in Drylands
Title Biological Soil Crusts: An Organizing Principle in Drylands PDF eBook
Author Bettina Weber
Publisher Springer
Pages 540
Release 2016-05-21
Genre Nature
ISBN 3319302140

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This volume summarizes our current understanding of biological soil crusts (biocrusts), which are omnipresent in dryland regions. Since they cover the soil surface, they influence, or even control, all surface exchange processes. Being one of the oldest terrestrial communities, biocrusts comprise a high diversity of cyanobacteria, algae, lichens and bryophytes together with uncounted bacteria, and fungi. The authors show that biocrusts are an integral part of dryland ecosystems, stabilizing soils, influencing plant germination and growth, and playing a key role in carbon, nitrogen and water cycling. Initial attempts have been made to use biocrusts as models in ecological theory. On the other hand, biocrusts are endangered by local disruptions and global change, highlighting the need for enhanced recovery methods. This book offers a comprehensive overview of the fascinating field of biocrust research, making it indispensable not only for scientists in this area, but also for land managers, policy makers, and anyone interested in the environment.

Soil Biota and Ecosystem Development in Post Mining Sites

Soil Biota and Ecosystem Development in Post Mining Sites
Title Soil Biota and Ecosystem Development in Post Mining Sites PDF eBook
Author Jan Frouz
Publisher CRC Press
Pages 319
Release 2013-09-25
Genre Science
ISBN 1466599316

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This book focuses on soil development in restoration of post‐mining sites. In particular, the authors address the role of biota, including plants, microorganisms, invertebrates, and their various interactions during the process of soil formation. The book largely deals with sites created by open‐cast mining, as this method represents a very destructive and, at the same time, intensively studied example of a mining operation. This book is a useful summary of recent knowledge for scholars dealing with ecosystem development after large disturbances as well as for practitioners dealing with reclamation and restoration of post‐mining land.

Biocrust-forming cyanobacteria inoculation to restore degraded soils from dryland ecosystems

Biocrust-forming cyanobacteria inoculation to restore degraded soils from dryland ecosystems
Title Biocrust-forming cyanobacteria inoculation to restore degraded soils from dryland ecosystems PDF eBook
Author José Raúl Román Fernández
Publisher Universidad Almería
Pages 190
Release 2021-03-12
Genre Science
ISBN 8413510554

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En las zonas áridas, la acción combinada del cambio climático y el aumento de la presión humana están causando una degradación acelerada de los ecosistemas. En este contexto, es necesario investigar nuevas estrategias de restauración que nos permitan mejorar las acciones de restauración en estas zonas. Para ello, en esta tesis se exploró el uso de biocostras, comunidades de organismos que colonizan los primeros centímetros del suelo y que viven en estrecha asociación con las partículas del suelo, para la recuperación de suelos degradados en ecosistemas áridos. De entre todos sus componentes, se investigó el potencial uso restaurador de la inoculación con especies de cianobacterias formadoras de biocostras, pues son los organismos que más potencial presentan para restaurar zonas áridas debido a sus condiciones fisiológicas adaptadas a ambientes extremos y su facilidad para ser aisladas y cultivadas ex situ. En concreto, se evaluó la viabilidad de diferentes especies nativas de cianobacterias para promover el desarrollo de una nueva biocostra que mejore las condiciones de los suelos degradados de zonas áridas, así como estrategias para la reducción del estrés ambiental en condiciones de campo. Los resultados de esta tesis constituyen un avance significativo en el uso de esta tecnología para recuperar suelos afectados por la degradación en ecosistemas áridos.