论文标题

入侵和互动确定开放发展系统中的种群组成

Invasion and Interaction Determine Population Composition in an Open Evolving System

论文作者

Park, Youngjai, Shimada, Takashi, Son, Seung-Woo, Park, Hye Jin

论文摘要

众所周知,物种之间的相互作用决定了生态系统中的种群组成。传统研究集中在固定人口结构上,以揭示相互作用如何塑造种群组成。但是,相互作用结构不是固定的,而是由于入侵而随着时间的变化而变化。因此,入侵和互动在塑造社区中起着重要作用。但是,尽管它很重要,但入侵和互动之间的相互作用尚未得到很好的探索。在这里,我们研究了考虑通用的Lotka-Volterra型动力学的开放发展系统中相互作用的入侵如何影响人口组成。我们的结果表明该系统具有两个不同的制度。一个特征是多样性低,及时占据主导物种的突然变化,当物种之间的相互作用强烈而浸润慢慢发生时,出现。另一方面,尽管相互作用很强,但频繁的入侵仍会引起更高的多样性,而丰度的变化缓慢。这是因为入侵发生在系统达到其平衡之前,这一直使系统始终从其平衡中拖动。在这种制度中,所有物种都具有相似的丰富性,这意味着快速入侵会导致政权转移。因此,无论入侵还是相互作用都决定了人口组成。

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 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.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源