Context‐dependent effects of geographic, climate and land cover factors on hemipteran assemblages in different ecoregions of China

Author:

Mao Jiaping1ORCID,Jiang Xiaoming12,Tang Wenjia3,Heino Jani2,Alahuhta Janne2,Huang Xiaolei4ORCID

Affiliation:

1. State Key Laboratory of Eco‐Hydraulic in Northwest Arid Region of China Xi'an University of Technology Xi'an China

2. Geography Research Unit University of Oulu Oulu Finland

3. Qinghai Ecological Environment Monitoring Center Xining China

4. State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops College of Plant Protection, Fujian Agriculture and Forestry University Fuzhou China

Abstract

Abstract Understanding variation in assemblage composition (i.e., beta diversity) along geographic and environmental gradients is a central topic in biogeography and ecology. We compared relationships between hemipteran beta diversity (overall dissimilarity: βtotal, Sorensen dissimilarity; turnover component: βsim, the replacement of species between assemblages; nestedness‐resultant component: βsne, the nested difference in richness between assemblages) and geographic, climatic and land cover distances among four ecoregions (Northeast Ecoregion; Northern Ecoregion; Tibet Ecoregion; Southern Ecoregion) across China. The hemipteran assemblage composition differed markedly among ecoregions. In general, βtotal and βsim both significantly increased with increasing geographic, climatic and land cover distances. Intercepts and slopes of dissimilarity‐distance relationships all varied significantly among different ecoregions, suggesting different levels of within‐ecoregion assemblage heterogeneity and change rate in assemblage composition. Moreover, the slopes of βtotal and βsim were highest in Northeast Ecoregion but lowest in Northern Ecoregion, exhibiting latitudinal and longitudinal dissimilarity pattern. According to variation partitioning analysis, although the overall explained variance was relatively low, spatial variables explained a much greater proportion of variance compared to climate and land cover variables. To conclude, our results showed significant regional differences in assemblage composition and biodiversity among ecoregions. Both dispersal‐related and niche‐related processes affect hemipteran assemblage structure, while the low overall explained variance indicates that high dissimilarity in hemipteran composition is affected by multiple factors and processes that remained undetected in this study. Our results may be relevant for wider insect groups because hemipterans constitute a highly diverse group in terms of phylogenetic origins and functional significance.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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