2017Natural Resource ModelingOpen access

Incorporating Allee effects into the potential biological removal level

Humza Haider, Sarah C. Oldfield, Tiffany Tu, Rosa Moreno, Jay E. Diffendorfer, Eric Alan Eager, Richard A. Erickson

Open full text 13 citations

Abstract

Abstract Potential biological removal (PBR) is an approach used to calculate sustainable harvest and “take” limits for populations. PBR was originally derived assuming logistic growth while ignoring the effects of small population size (i.e., an Allee effect). We derived a version of PBR that includes an Allee effect (i.e., small population size or densities limiting population growth rates). We found that PBR becomes less conservative when it fails to consider an Allee effect. Specifically, sustainable harvest and take levels based upon PBR with an Allee effect were between approximately 51% and 66% of levels based upon PBR without an Allee effect. Managers and biologists using PBR may need to consider the limitations if an Allee effect may be present in the species being modeled. Considerations for Management Based upon our finding, management considerations may include: acknowledging that populations under stress may also be subject to Allee effects; recognizing limitations of approaches such as PBR when applying them to small populations; and broadly considering the Allee effects when using population models for natural resource management.

Open-access reader

About this research paper

What this paper is about

Abstract Potential biological removal (PBR) is an approach used to calculate sustainable harvest and “take” limits for populations. PBR was originally derived assuming logistic growth while ignoring the effects of small population size (i.e., an Allee effect). We derived a version of PBR that includes an Allee effect (i.e., small population size or densities limiting population growth rates). We found that PBR becomes less conservative when it fails to consider an Allee effect. Specifically, sustainable harvest and take levels based upon PBR with an Allee effect were between approximately 51% and 66% of levels based upon PBR without an Allee effect. Managers and biologists using PBR may need to consider the limitations if an Allee effect may be present in the species being modeled. Considerations for Management Based upon our finding, management considerations may include: acknowledging that populations under stress may also be subject to Allee effects; recognizing limitations of approaches such as PBR when applying them to small populations; and broadly considering the Allee effects when using population models for natural resource management.

Why it matters

OpenAlex reports 13 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Abstract Potential biological removal (PBR) is an approach used to calculate sustainable harvest and “take” limits for populations. PBR was originally derived assuming logistic growth while ignoring the effects of small population size (i.e., an Allee effect). We derived a version of PBR that includes an Allee effect (i.e., small population size or densities limiting population growth rates). We found that PBR becomes less conservative when it fails to consider an Allee effect. Specifically, sustainable harvest and take levels based upon PBR with an Allee effect were between approximately 51% and 66% of levels based upon PBR without an Allee effect. Managers and biologists using PBR may need to consider the limitations if an Allee effect may be present in the species being modeled. Considerations for Management Based upon our finding, management considerations may include: acknowledging that populations under stress may also be subject to Allee effects; recognizing limitations of approaches such as PBR when applying them to small populations; and broadly considering the Allee effects when using population models for natural resource management.

Key concepts: Allee effect, Population, Ecology, Logistic function, Limiting, Biology, Mathematics, Statistics

Related papers

Back to paper searchBrowse research topicsOriginal source
Incorporating Allee effects into the potential biological removal level — Research Paper | ScholarLens