Javascript must be enabled to continue!
Changes In Argentine Ant Trophic Position As A Function of Time
View through CrossRef
Abstract
The ecological effects of species introductions can change over time, but an understanding of how and why they do remains hindered by the lack of long-term data sets that permit investigation into underlying causes. We employed stable isotope analysis to estimate how trophic position changes as a function of time for the Argentine Ant, a widespread, abundant, and ecologically disruptive introduced species. Previous research at a site in southern California (Rice Canyon, San Diego Co.) found that Argentine Ant δ15N values were higher at the leading edge of invasion than at those same sites in years subsequent to invasion. To assess if a reduction in relative trophic position over time is a typical feature of ant invasions, we expanded the temporal and spatial scale of sampling and measured δ15N values of the Argentine ant at three locations with a known or inferred history of invasion: Rice Canyon (the site of the original study), the Sacramento River Valley (Yolo and Solano Cos., CA), and San Nicolas Island (Ventura Co., CA). Resampling Rice Canyon in 2019, 16 years after the original survey, revealed a significant increase in Argentine ant δ15N values. At the two other locations, Argentine ant δ15N values were independent of time since invasion (Sacramento River Valley) or position relative to the invasion front (San Nicolas Island). These findings suggest that post-invasion reductions in trophic position may not be a general phenomenon or could reflect transitory ecological processes that require finer-scale temporal sampling than was possible to achieve in the present study. Our findings are nonetheless consistent with the results of recent studies, which found that the effects of Argentine ant invasions persist over decadal time scales.
Springer Science and Business Media LLC
Title: Changes In Argentine Ant Trophic Position As A Function of Time
Description:
Abstract
The ecological effects of species introductions can change over time, but an understanding of how and why they do remains hindered by the lack of long-term data sets that permit investigation into underlying causes.
We employed stable isotope analysis to estimate how trophic position changes as a function of time for the Argentine Ant, a widespread, abundant, and ecologically disruptive introduced species.
Previous research at a site in southern California (Rice Canyon, San Diego Co.
) found that Argentine Ant δ15N values were higher at the leading edge of invasion than at those same sites in years subsequent to invasion.
To assess if a reduction in relative trophic position over time is a typical feature of ant invasions, we expanded the temporal and spatial scale of sampling and measured δ15N values of the Argentine ant at three locations with a known or inferred history of invasion: Rice Canyon (the site of the original study), the Sacramento River Valley (Yolo and Solano Cos.
, CA), and San Nicolas Island (Ventura Co.
, CA).
Resampling Rice Canyon in 2019, 16 years after the original survey, revealed a significant increase in Argentine ant δ15N values.
At the two other locations, Argentine ant δ15N values were independent of time since invasion (Sacramento River Valley) or position relative to the invasion front (San Nicolas Island).
These findings suggest that post-invasion reductions in trophic position may not be a general phenomenon or could reflect transitory ecological processes that require finer-scale temporal sampling than was possible to achieve in the present study.
Our findings are nonetheless consistent with the results of recent studies, which found that the effects of Argentine ant invasions persist over decadal time scales.
Related Results
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...
Trophic structure and a temporal shift in trophic diversity of mobile consumers in a subarctic estuary
Trophic structure and a temporal shift in trophic diversity of mobile consumers in a subarctic estuary
Abstract
Quantifying trophic relationships within and between species in terms of trophic position, ontogeny, and trophic diversity provides information on community-level ...
Refining the trophic diversity, network structure, and bottom‐up importance of prey groups for temperate reef fishes
Refining the trophic diversity, network structure, and bottom‐up importance of prey groups for temperate reef fishes
AbstractMarine fish communities are highly diverse and contribute significantly to ecosystem processes. However, understanding their specific functional roles and the importance of...
Neurophysiologic Characteristics of the Anterior Nucleus of the Thalamus during Deep Brain Stimulation Surgery for Epilepsy
Neurophysiologic Characteristics of the Anterior Nucleus of the Thalamus during Deep Brain Stimulation Surgery for Epilepsy
Introduction: Anterior nucleus of the thalamus (ANT) deep brain stimulation (DBS) is an increasingly promising treatment option for refractory epilepsy. Optimal therapeutic benefit...
Refining the trophic diversity, ecological network structure, and bottom-up importance of prey groups for temperate reef fishes
Refining the trophic diversity, ecological network structure, and bottom-up importance of prey groups for temperate reef fishes
Marine fish communities are highly diverse, including all trophic levels of consumers and contributing to many ecosystem processes. Understanding the specific functional roles of m...
POTENSI EKOLOGI SEMUT (FORMICIDAE) DI KAWASAN TAMBANG MINYAK BUMI TRADISIONAL WONOCOLO
POTENSI EKOLOGI SEMUT (FORMICIDAE) DI KAWASAN TAMBANG MINYAK BUMI TRADISIONAL WONOCOLO
This study aims to identify and analyse the ecological potential of ant species from the Formicidae family in the traditional petroleum mining area of Wonocolo, Bojonegoro Regency....
Factors promoting maternal trophic egg provisioning in non‐eusocial animals
Factors promoting maternal trophic egg provisioning in non‐eusocial animals
Abstract
The adaptive function of trophic egg‐laying is generally regarded as extended parental investment to the offspring. However, the evo...
Tropical land use drives endemic versus exotic ant communities in a global biodiversity hotspot
Tropical land use drives endemic versus exotic ant communities in a global biodiversity hotspot
AbstractUnderstanding how land-use change affects biodiversity is a fundamental step to develop effective conservation strategies in human-modified tropical landscapes. Here, we an...

