生态学
物种丰富度
引进物种
生物
系统发育多样性
入侵物种
生物多样性
物种多样性
社区
系统发育树
归化
宏观生态学
生态系统多样性
航程(航空)
多样性(政治)
群落结构
物种复合体
α多样性
伽马多样性
淡水鱼
全球生物多样性
地理
消光(光学矿物学)
丰度(生态学)
系统发育学
作者
Wengang Zhang,Meng Xu,Shuya Fan,Jonathan Bennett,Ross N. Cuthbert,Jaimie T. A. Dick,Meelis Pärtel,Shaopeng Li
标识
DOI:10.1073/pnas.2604929123
摘要
The spread of invasive species poses a major threat to global biodiversity, yet predicting successful establishment of exotic species in novel environments remains challenging. Darwin's naturalization conundrum is a longstanding debate over whether exotic species closely or distantly related to native communities are more likely to succeed. Despite its long history, empirical studies continue to yield conflicting evidence. Here, we introduce the dark diversity concept, which refers to species that could theoretically inhabit a site but are currently absent. Combined with observed diversity, dark diversity integrates information on the potential diversity (site-specific species pool size) of the resident community and how completely that pool is locally present (community completeness). Analyzing a 340-y record of successful and failed fish introductions across 516 Swedish lakes, we showed that the effect of phylogenetic relatedness on invasion outcome depends on dark diversity context. Exotics closely related to resident species were more likely to establish in communities with smaller species pools and higher completeness, whereas phylogenetically distant exotic species were more successful in communities with larger species pools and lower completeness. Models with observed species richness obtained considerably less support. Thus, integrating the dark diversity framework clarifies the contrasting effects of phylogenetic relatedness on invasion outcomes, and helps reconcile this 160-y-old conundrum.
科研通智能强力驱动
Strongly Powered by AbleSci AI