The impact of ants and vertebrate predators on arthropods and plants: a meta-analysis
Sam, K.; Houska Tahadlova, M.; Mrazova, A.; Freiberga, I.; Toszogyova, A.; Sreekar, R.
Show abstract
The trophic interactions between plants, insect herbivores and their predators are complex and prone to trophic cascades. Theory predicts that predators increase plant biomass by feeding on herbivores. However, it remains unclear whether different types of predators regulate herbivores to the same degree, and how intraguild predation impacts these trophic interactions. Specifically, we lack a more comprehensive look at the effects of various groups of predators on a global scale. Here we report a meta-analysis of 486 experiments gathered from 157 publications reporting the effect of insectivorous vertebrates (birds and bats) and ants on abundances of predatory (spiders, ants, others) and herbivorous (chewers and others) arthropods; on arthropod richness and plant damage. Generally, the absence of vertebrate predators led to the increase of predatory arthropods by 18%, herbivorous arthropods by 75%, and plant damage by 47%. In contrast, after the removal of ants, the increase in the abundances of other predatory arthropods did not compensate for missing ants, herbivore arthropods increased their abundances by 53%, and plant damage increased by 146%. The effects of ant exclosures were stronger in communities at lower elevations and latitudes, while we did not detect any clear geographical patterns in the effect of vertebrate exclosures. Neither precipitation nor NDVI had a significant impact on most of the measured effects, and the effect of exclosures was robust for both plant growth forms and different habitat types. We found vertebrate insectivores to be the more dominant predators of arthropods, but we detected that the strength of their trophic cascades was weakened by intraguild predation. On the other hand, we found that although ants were relatively less dominant as predators, and their influence was detectable only in the most productive sites, the effect of trophic cascades on plants they caused was stronger than that of vertebrate insectivores.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Impacts of agrochemical intensification on the assembly and reassembly of a mainland-island model metacommunity 95%
- Plant provenance affects pollinator network: implications for ecological restoration 93%
- Metabarcoding and ecological interaction networks for selecting candidate biological control agents 93%
Similar papers in this journal
- Habitat amount, temperature and biotic interactions drive community structure, life-history traits, and performance traits of cavity-nesting bees and wasps and their natural enemies in cities 94%
- Temperature drives variation in flying insect biomass across a German malaise trap network 94%
- Pollinators differentially respond to local and landscape grassland features 94%
Similar papers in this journal
- Decomposition disentangled: a test of the multiple mechanisms by which nitrogen enrichment alters litter decomposition 92%
- Narrow oviposition preference of an insect herbivore risks survival under conditions of severe drought 92%
- Flower visitation of alien plants is non-linearly related to phylogenetic and floral similarity to native plants 92%
Similar papers in this journal
- Simple attributes predict the importance of plants as hosts to the richness of fungi and arthropods 95%
- Plant demographic knowledge is biased towards short-term studies of temperate-region herbaceous perennials 93%
- The Madingley General Ecosystem Model predicts bushmeat yields, species extinction rates and ecosystem-level impacts of bushmeat harvesting 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.