| Literature DB >> 35382585 |
Greg P A Lamarre1,2,3, Nicholas A Pardikes1,4, Simon Segar5, Charles N Hackforth6, Michel Laguerre7, Benoît Vincent7, Yacksecari Lopez3, Filonila Perez3, Ricardo Bobadilla3, José Alejandro Ramírez Silva3, Yves Basset1,2,3,8.
Abstract
Understanding the causes and consequences of insect declines has become an important goal in ecology, particularly in the tropics, where most terrestrial diversity exists. Over the past 12 years, the ForestGEO Arthropod Initiative has systematically monitored multiple insect groups on Barro Colorado Island (BCI), Panama, providing baseline data for assessing long-term population trends. Here, we estimate the rates of change in abundance among 96 tiger moth species on BCI. Population trends of most species were stable (n = 20) or increasing (n = 62), with few (n = 14) declining species. Our analysis of morphological and climatic sensitivity traits associated with population trends shows that species-specific responses to climate were most strongly linked with trends. Specifically, tiger moth species that are more abundant in warmer and wetter years are more likely to show population increases. Our study contrasts with recent findings indicating insect decline in tropical and temperate regions. These results highlight the significant role of biotic responses to climate in determining long-term population trends and suggest that future climate changes are likely to impact tropical insect communities.Entities:
Keywords: Panama; climate change; functional traits; population trend; rainforest
Mesh:
Year: 2022 PMID: 35382585 PMCID: PMC8984363 DOI: 10.1098/rsbl.2021.0519
Source DB: PubMed Journal: Biol Lett ISSN: 1744-9561 Impact factor: 3.703