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

Insectivorous birds and bats outperform ants in the top‐down regulation of arthropods across strata of a Japanese temperate forest

View through CrossRef
Abstract Birds, bats and ants are recognised as significant arthropod predators. However, empirical studies reveal inconsistent trends in their relative roles in top‐down control across strata. Here, we describe the differences between forest strata in the separate effects of birds, bats and ants on arthropod densities and their cascading effects on plant damage. We implemented a factorial design to exclude vertebrates and ants in both the canopy and understorey. Additionally, we separately excluded birds and bats from the understorey using diurnal and nocturnal exclosures. At the end of the experiments, we collected all arthropods and assessed herbivory damage. Arthropods responded similarly to predator exclusion across forest strata, with a density increase of 81% on trees without vertebrates and 53% without both vertebrates and ants. Additionally, bird exclusion alone led to an 89% increase in arthropod density, while bat exclusion resulted in a 63% increase. Herbivory increased by 42% when vertebrates were excluded and by 35% when both vertebrates and ants were excluded. Bird exclusion alone increased herbivory damage by 28%, while the exclusion of bats showed a detectable but non‐significant increase (by 22%). In contrast, ant exclusion had no significant effect on arthropod density or herbivory damage across strata. Our results reveal that the effects of birds and bats on arthropod density and herbivory damage are similar between the forest canopy and understorey in this temperate forest. In addition, ants were not found to be significant predators in our system. Furthermore, birds, bats and ants appeared to exhibit antagonistic relationships in influencing arthropod density. These findings highlight, unprecedentedly, the equal importance of birds and bats in maintaining ecological balance across different strata of a temperate forest.
Title: Insectivorous birds and bats outperform ants in the top‐down regulation of arthropods across strata of a Japanese temperate forest
Description:
Abstract Birds, bats and ants are recognised as significant arthropod predators.
However, empirical studies reveal inconsistent trends in their relative roles in top‐down control across strata.
Here, we describe the differences between forest strata in the separate effects of birds, bats and ants on arthropod densities and their cascading effects on plant damage.
We implemented a factorial design to exclude vertebrates and ants in both the canopy and understorey.
Additionally, we separately excluded birds and bats from the understorey using diurnal and nocturnal exclosures.
At the end of the experiments, we collected all arthropods and assessed herbivory damage.
Arthropods responded similarly to predator exclusion across forest strata, with a density increase of 81% on trees without vertebrates and 53% without both vertebrates and ants.
Additionally, bird exclusion alone led to an 89% increase in arthropod density, while bat exclusion resulted in a 63% increase.
Herbivory increased by 42% when vertebrates were excluded and by 35% when both vertebrates and ants were excluded.
Bird exclusion alone increased herbivory damage by 28%, while the exclusion of bats showed a detectable but non‐significant increase (by 22%).
In contrast, ant exclusion had no significant effect on arthropod density or herbivory damage across strata.
Our results reveal that the effects of birds and bats on arthropod density and herbivory damage are similar between the forest canopy and understorey in this temperate forest.
In addition, ants were not found to be significant predators in our system.
Furthermore, birds, bats and ants appeared to exhibit antagonistic relationships in influencing arthropod density.
These findings highlight, unprecedentedly, the equal importance of birds and bats in maintaining ecological balance across different strata of a temperate forest.

Related Results

Energetics, Thermal Biology, and Torpor
Energetics, Thermal Biology, and Torpor
Abstract Although most Australian bats have been isolated from bat species in other parts of the world for prolonged periods and may functionally differ, little deta...
Multi-host viruses in Argentine ants and honey bees: Increased viral disease in honey bees is associated with Argentine ants
Multi-host viruses in Argentine ants and honey bees: Increased viral disease in honey bees is associated with Argentine ants
<p><b>Emerging infectious diseases threaten public health, livestock economies, and wildlife. Human-mediated species introductions can alter host and pathogen communiti...
Bats and Zoonoses: A Pilot Study to Investigate Bats as a Potential Source of Zoonotic Mycoses
Bats and Zoonoses: A Pilot Study to Investigate Bats as a Potential Source of Zoonotic Mycoses
Background: Bats are mammals that are distributed everywhere in the world except in the hottest desert and polar regions. Bats are involved in many ecosystem services that are impo...
Urban tropical forest islets as hotspots of ants in general and invasive ants in particular
Urban tropical forest islets as hotspots of ants in general and invasive ants in particular
AbstractUrbanization is a crucial driver of environmental and biodiversity change. It is suggested that urbanization favours generalist and invasive species and might harm speciali...
Factors Promoting Coexistence between Endemic Ants and Invasive Wasps
Factors Promoting Coexistence between Endemic Ants and Invasive Wasps
<p>Invasive animals can alter the community composition of native ecosystems by means of competition and predation. In this study I investigated the factors that may facilita...
Zero to hero
Zero to hero
Western images of Japan tell a seemingly incongruous story of love, sex and marriage – one full of contradictions and conflicting moral codes. We sometimes hear intriguing stories ...
To ornitofauna of the maniforated forestry of the Kharkov region
To ornitofauna of the maniforated forestry of the Kharkov region
Modern forest belts are a large, complex and important part of the biosphere. The unique biocenoses in which specific ornithocomplexes are formed which include birds of different e...

Back to Top