The structure of Lepidoptera-plant interaction networks across clades, life stages, and environmental gradients
Ho, H.-C.; Altermatt, F.
10.1101/2022.11.10.516059 bioRxivShow abstract
AimIntegrate biogeographic and ecological knowledge to understand the spatial-structural patterns of plant-insect interaction networks at the landscape scale. LocationThe 36,000 km2 German state of Baden-Wurttemberg, Central Europe. MethodsWe integrated extensive data of Lepidoptera-plant occurrences and interactions to inferentially construct local interaction networks across Baden-Wurttemberg, considering in total 3148 plant and 980 Lepidoptera species, covering butterflies, Noctuid moths, Geometrid moths and Bombycoid moths. We quantified clade- and life-stage-specific network structures and related these features to GIS-informed environmental conditions, thereby revealing the spatial (environmental) patterns and potential drivers of networks structural variation across the landscape. ResultsSpanning the same environmental gradients, Lepidoptera clades and life stages can form various interaction structures with food plants and exhibit distinct spatial-structural patterns. For all major Lepidopteran groups, except Geometrid moths, potential diet across life stages tended to broaden toward low-elevation farmlands. The larval and adult networks of butterflies became less modular with farmland coverage; the same for adult Noctuid moths, but the inverse for adult Geometrid moths. With increasing elevation, the larval and adult networks of Noctuid moths became less and more modular, respectively, whereas Geometrid adult networks became more modular. While the adult dietary niche of butterflies was more overlapped at low elevation, those of Noctuid and Geometrid moths further associated with land cover and were more overlapped toward low- and high-elevation farmlands, respectively. Main conclusionsEnvironmental factors and biotic interactions together shape ecological communities. By particularly accounting for species-interaction contexts, we revealed the spatial-structural patterns of Lepidoptera-plant networks along geo-climate and land-cover gradients, where the shaping mechanisms likely include both evolutionary (e.g., resource-consumer co-evolution) and ecological (e.g., competitive exclusion) processes and are specific to Lepidopteras clade or life stage. Such biogeographical structural patterns provide ecological and conservation implications at both species and community levels, and can indicate the potential response of Lepidoptera-plant communities to environmental changes.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A probabilistic view of forbidden links: their prevalence and their consequences for the robustness of plant-hummingbird communities 96%
- Global plant-frugivore trait matching is shaped by climate and biogeographic history 95%
- Non-random interactions within and across guilds shape the potential to coexist in multi-trophic ecological communities 94%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- The compound topology of a continent-wide host-parasite network explained by an integrative hypothesis of specialization. 94%
- Multilayer diffusion networks as a tool to assess the structure and functioning of fine grain sub-specific plant-pollinator networks 93%
- Food web complexity modulates environmental impacts on food chain length 93%
Similar papers in this journal
- Temporally robust occupancy frequency distributions in riverine ecosystems explained by local biodiversity regulation 94%
- Megafauna diversity and functional declines in Europe from the Last Interglacial (LIG) to the present 93%
- Müllerian mimicry in Neotropical butterflies: One mimicry ring to bring them all, and in the jungle bind them 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.