Invasion and interaction determine population composition in an open evolving ecological system

Author:

Park Youngjai1234ORCID,Shimada Takashi56ORCID,Son Seung-Woo237ORCID,Park Hye Jin13ORCID

Affiliation:

1. Department of Physics, Inha University 1 , Incheon 22212, South Korea

2. Department of Applied Physics, Hanyang University 2 , Ansan 15588, South Korea

3. Asia Pacific Center for Theoretical Physics (APCTP) 3 , Pohang 37673, South Korea

4. Center for Neuroscience Imaging Research, Institute for Basic Science (IBS) 4 , Suwon 16419, South Korea

5. Mathematics and Informatics Center, The University of Tokyo 5 , Tokyo 113-8656, Japan

6. Department of Systems Innovation, Graduate School of Engineering, The University of Tokyo 6 , Tokyo 113-8656, Japan

7. Department of Applied Artificial Intelligence, Hanyang University 7 , Ansan 15588, South Korea

Abstract

It is well-known that interactions between species determine the population composition in an ecosystem. Conventional studies have focused on fixed population structures to reveal how interactions shape population compositions. However, interaction structures are not fixed but change over time due to invasions. Thus, invasion and interaction play an important role in shaping communities. Despite its importance, however, the interplay between invasion and interaction has not been well explored. Here, we investigate how invasion affects the population composition with interactions in open evolving ecological systems considering generalized Lotka–Volterra-type dynamics. Our results show that the system has two distinct regimes. One is characterized by low diversity with abrupt changes of dominant species in time, appearing when the interaction between species is strong and invasion slowly occurs. On the other hand, frequent invasions can induce higher diversity with slow changes in abundances despite strong interactions. It is because invasion happens before the system reaches its equilibrium, which drags the system from its equilibrium all the time. All species have similar abundances in this regime, which implies that fast invasion induces regime shift. Therefore, whether invasion or interaction dominates determines the population composition.

Publisher

AIP Publishing

Subject

Applied Mathematics,General Physics and Astronomy,Mathematical Physics,Statistical and Nonlinear Physics

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