相对物种丰度
稀有物种
丰度(生态学)
航程(航空)
生态学
常见种
生物
消光(光学矿物学)
频率依赖性
相对丰度分布
密度依赖性
社区
频率
统计
栖息地
物理
数学
人口
人口学
核磁共振
古生物学
材料科学
复合材料
社会学
作者
Glenda M. Yenni,Peter B. Adler,S. K. Morgan Ernest
摘要
Abstract Understanding why so many species are rare yet persistent remains a significant challenge for both theoretical and empirical ecologists. Yenni et al. (2012, Ecology , 93, 456–461) proposed that strong negative frequency dependence causes species to be rare while simultaneously buffering them against extinction. This hypothesis predicts that, on average, rare species should experience stronger negative frequency dependence than common species. However, it is unknown if ecological communities generally show this theoretical pattern. We discuss the implications of this phenomenon for community dynamics, and develop a method to test for a non‐random relationship between negative frequency dependence and relative abundance using species abundance data from 90 communities across a broad range of environments and taxonomic groups. To account for biases introduced by measurement error, we compared the observed correlation between species relative abundance and the strength of frequency dependence against expectations from a randomization procedure. In approximately half of the analysed communities, we found increasingly strong negative frequency dependence with decreasing relative abundance: rare species experienced stronger frequency dependence than common species. The randomization test never detected stronger negative frequency dependence in more common species. Our results suggest that strong negative frequency dependence is a signature of persistent, rare species in many communities.
科研通智能强力驱动
Strongly Powered by AbleSci AI