Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Stably coexisting communities deliver higher ecosystem multifunctionality

View through CrossRef
Abstract Linking the processes determining species coexistence and effects of biodiversity on ecosystem functioning is important for a mechanistic understanding of how species loss impacts ecosystems 1 . There are good theoretical reasons to expect stably coexisting communities to deliver higher ecosystem functioning, as niche differences should promote coexistence and complementarity 2 , however, there is still little empirical evidence to demonstrate this relationship 3 . We present a novel experimental approach to tackle this question, in which we first measured interaction coefficients and intrinsic growth rates for 12 grassland species 4 and used population models to estimate coexistence 5 . We then assembled 48 three-species communities, predicted to differ in their degree of coexistence and measured seven above and belowground functions. Here we extend findings demonstrating that biodiversity increases multifunctionality 6,7 to show that amongst communities with the same initial diversity, multifunctionality is higher when all the species are predicted to coexist. Decomposing coexistence into the influence of niche and fitness differences showed that multifunctionality was high in niche differentiated communities but also in those with a single highly competitive species. We further examined the effect of indirect interactions, which provide an alternative mechanism of coexistence in multispecies communities, and found that they also provided an alternative route to high multifunctionality. Our results point the way to a unification of coexistence and biodiversity theory and to a more mechanistic understanding of the functional effects of biodiversity change.
Title: Stably coexisting communities deliver higher ecosystem multifunctionality
Description:
Abstract Linking the processes determining species coexistence and effects of biodiversity on ecosystem functioning is important for a mechanistic understanding of how species loss impacts ecosystems 1 .
There are good theoretical reasons to expect stably coexisting communities to deliver higher ecosystem functioning, as niche differences should promote coexistence and complementarity 2 , however, there is still little empirical evidence to demonstrate this relationship 3 .
We present a novel experimental approach to tackle this question, in which we first measured interaction coefficients and intrinsic growth rates for 12 grassland species 4 and used population models to estimate coexistence 5 .
We then assembled 48 three-species communities, predicted to differ in their degree of coexistence and measured seven above and belowground functions.
Here we extend findings demonstrating that biodiversity increases multifunctionality 6,7 to show that amongst communities with the same initial diversity, multifunctionality is higher when all the species are predicted to coexist.
Decomposing coexistence into the influence of niche and fitness differences showed that multifunctionality was high in niche differentiated communities but also in those with a single highly competitive species.
We further examined the effect of indirect interactions, which provide an alternative mechanism of coexistence in multispecies communities, and found that they also provided an alternative route to high multifunctionality.
Our results point the way to a unification of coexistence and biodiversity theory and to a more mechanistic understanding of the functional effects of biodiversity change.

Related Results

Modeling Adaptive Optimization of Cultivated Land Multifunctionality in the Yangtze River Delta, China 
Modeling Adaptive Optimization of Cultivated Land Multifunctionality in the Yangtze River Delta, China 
Abstracts: The utilization of cultivated land and its evaluation has gradually transitioned from a singular focus on food production to encompassing socio-economic development, mai...
Burden of the Beast
Burden of the Beast
Introduction Throughout the COVID-19 pandemic, and its fluctuating waves of infections and the emergence of new variants, Indigenous populations in Australia and worldwide have re...
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...
Ecosystem multifunctionality shows unique stability responses to global change drivers
Ecosystem multifunctionality shows unique stability responses to global change drivers
Abstract Ecological research increasingly investigates the dimensionality of ecosystem functioning and stability through the multivariate relationships among their ...
The major axes of terrestrial ecosystem functions derived from ecosystem scale flux observations
The major axes of terrestrial ecosystem functions derived from ecosystem scale flux observations
<p>Understanding the coordination of ecosystem functions across global biomes is still a critical challenge in ecology to better predict biosphere response to environ...
Valuation of Ecosystem Services, Karnataka State, India
Valuation of Ecosystem Services, Karnataka State, India
Humans depend on the environment for their basic needs, such as food, fuel, minerals, water, air, etc. Burgeoning unplanned development activities to cater to the demands of the in...
Theoretical Insights into the Multifunctionality of Urban Green Spaces: A Review of Planning, Policy, and Practice
Theoretical Insights into the Multifunctionality of Urban Green Spaces: A Review of Planning, Policy, and Practice
The Urban Green Spaces (UGS) are gradually becoming anticipated to fulfill various ecological, social, economic, and governance roles in fast-urbanizing cities, especially those of...
Biocrust diversity enhances dryland saline soil multifunctionality
Biocrust diversity enhances dryland saline soil multifunctionality
AbstractBiocrusts are multifaceted communities including mosses, lichens, and cyanobacteria that are crucial for sustaining soil functions in drylands. Most studies on biocrust fun...

Back to Top