Javascript must be enabled to continue!
Climate Change and Physical Disturbance Manipulations Result in Distinct Biological Soil Crust Communities
View through CrossRef
ABSTRACT
Biological soil crusts (biocrusts) colonize plant interspaces in many drylands and are critical to soil nutrient cycling. Multiple climate change and land use factors have been shown to detrimentally impact biocrusts on a macroscopic (i.e., visual) scale. However, the impact of these perturbations on the bacterial components of the biocrusts remains poorly understood. We employed multiple long-term field experiments to assess the impacts of chronic physical (foot trampling) and climatic changes (2°C soil warming, altered summer precipitation [wetting], and combined warming and wetting) on biocrust bacterial biomass, composition, and metabolic profile. The biocrust bacterial communities adopted distinct states based on the mechanism of disturbance. Chronic trampling decreased biomass and caused small community compositional changes. Soil warming had little effect on biocrust biomass or composition, while wetting resulted in an increase in the cyanobacterial biomass and altered bacterial composition. Warming combined with wetting dramatically altered bacterial composition and decreased
Cyanobacteria
abundance. Shotgun metagenomic sequencing identified four functional gene categories that differed in relative abundance among the manipulations, suggesting that climate and land use changes affected soil bacterial functional potential. This study illustrates that different types of biocrust disturbance damage biocrusts in macroscopically similar ways, but they differentially impact the resident soil bacterial communities, and the communities' functional profiles can differ depending on the disturbance type. Therefore, the nature of the perturbation and the microbial response are important considerations for management and restoration of drylands.
American Society for Microbiology
Title: Climate Change and Physical Disturbance Manipulations Result in Distinct Biological Soil Crust Communities
Description:
ABSTRACT
Biological soil crusts (biocrusts) colonize plant interspaces in many drylands and are critical to soil nutrient cycling.
Multiple climate change and land use factors have been shown to detrimentally impact biocrusts on a macroscopic (i.
e.
, visual) scale.
However, the impact of these perturbations on the bacterial components of the biocrusts remains poorly understood.
We employed multiple long-term field experiments to assess the impacts of chronic physical (foot trampling) and climatic changes (2°C soil warming, altered summer precipitation [wetting], and combined warming and wetting) on biocrust bacterial biomass, composition, and metabolic profile.
The biocrust bacterial communities adopted distinct states based on the mechanism of disturbance.
Chronic trampling decreased biomass and caused small community compositional changes.
Soil warming had little effect on biocrust biomass or composition, while wetting resulted in an increase in the cyanobacterial biomass and altered bacterial composition.
Warming combined with wetting dramatically altered bacterial composition and decreased
Cyanobacteria
abundance.
Shotgun metagenomic sequencing identified four functional gene categories that differed in relative abundance among the manipulations, suggesting that climate and land use changes affected soil bacterial functional potential.
This study illustrates that different types of biocrust disturbance damage biocrusts in macroscopically similar ways, but they differentially impact the resident soil bacterial communities, and the communities' functional profiles can differ depending on the disturbance type.
Therefore, the nature of the perturbation and the microbial response are important considerations for management and restoration of drylands.
Related Results
Climate and Culture
Climate and Culture
Climate is, presently, a heatedly discussed topic. Concerns about the environmental, economic, political and social consequences of climate change are of central interest in academ...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract
The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
A Synergistic Imperative: An Integrated Policy and Education Framework for Navigating the Climate Nexus
A Synergistic Imperative: An Integrated Policy and Education Framework for Navigating the Climate Nexus
Climate change acts as a systemic multiplier of threats, exacerbating interconnected global crises that jeopardize food security, biodiversity, and environmental health. These chal...
The effect of soil type and crust cover on the absorption of atmospheric water vapor – laboratory and field trials. 
The effect of soil type and crust cover on the absorption of atmospheric water vapor – laboratory and field trials. 
<p>In arid and semiarid environments non-rainfall water inputs (NRWI) are an important source of water. In Israel's Negev desert direct absorption of atmospheric wate...
GEOSPATIAL ASPECTS OF FINANCIAL CAPACITY OF TERRITORIAL COMMUNITIES OF TERNOPIL REGION
GEOSPATIAL ASPECTS OF FINANCIAL CAPACITY OF TERRITORIAL COMMUNITIES OF TERNOPIL REGION
In the article geospatial aspects of the financial capacity of territorial communities of Ternopil region are described. The need to conduct such a study has been updated, since no...
Climate Change Communication in Mexico
Climate Change Communication in Mexico
Mexico has always been a committed participant in international efforts to address climate change. It was one of the first countries to comply with the mandates of the United Natio...
Measuring the level of corporate commitment regarding climate change strategies
Measuring the level of corporate commitment regarding climate change strategies
PurposeThis study aims to examine the various climate change practices adopted by firms and develop a set of corporate indexes that measure the level of climate change corporate co...
Distribution and drivers of soil bacterial communities across different soil management practices and soil diagnostic units in agricultural ecosystems
Distribution and drivers of soil bacterial communities across different soil management practices and soil diagnostic units in agricultural ecosystems
Soil bacterial communities play an important role in soil health, carbon (C), and nutrient cycling, as well as in soil-plant relationships in agroecosystems. However, our understan...

