Publication:
Spatial and phylogenetic structure of Alpine stonefly assemblages across seven habitats using DNA-species

cris.virtual.author-orcid0000-0003-3744-1339
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cris.virtual.departmentFacultad de Ciencias
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cris.virtualsource.author-orcid49095282-9e9a-4ca0-a361-84a7564621f3
cris.virtualsource.author-orcid#PLACEHOLDER_PARENT_METADATA_VALUE#
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cris.virtualsource.department49095282-9e9a-4ca0-a361-84a7564621f3
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dc.contributor.authorDra. Gamboa-Méndez, Maribet
dc.contributor.authorSerrana, Joeselle
dc.contributor.authorTakemon, Yasuhiro
dc.contributor.authorMonaghan, Yasuhiro
dc.contributor.authorWatanabe, Kozo
dc.date.accessioned2023-12-04T19:18:56Z
dc.date.available2023-12-04T19:18:56Z
dc.date.issued2023
dc.description.abstractStream ecosystems are spatially heterogeneous, with many different habitat patches distributed within a small area. The influence of this heterogeneity on the biodiversity of benthic insect communities is well documented; however, studies of the role of habitat heterogeneity in species coexistence and assembly remain limited. Here, we investigated how habitat heterogeneity influences spatial structure (beta biodiversity) and phylogenetic structure (evolutionary processes) of benthic stonefly (Plecoptera, Insecta) communities. We sampled 20 sites along two Alpine rivers, including seven habitats in four different reaches (headwaters, meandering, bar-braided floodplain, and lowland spring-fed). We identified 21 morphological species and delineated 52 DNA-species based on sequences from mitochondrial cox1 and nuclear ITS markers. Using DNA-species, we first analysed the patterns of variation in richness, diversity, and assemblage composition by quantifing the contribution of each reach and habitat to the overall DNA-species diversity using an additive partition analysis and distance-based redundancy analysis. Using gene-tree phylogenies, we assessed whether environmental filtering could lead to the co-occurrence of DNA-species using a two-step analysis to detect a phylogenetic signal. All four reaches significantly contributed to DNA-species richness, with the meandering reach having the highest contribution. Habitats had an effect on DNA-species diversity, where glide, riffle and, pool influenced the spatial structure of stonefly assemblage possibly due to the high habitat heterogeneity. Among the habitats, the pool showed significant phylogenetic clustering, suggesting high levels of evolutionary adaptation and strong habitat filtering. This assemblage structure may be caused by long-term stability of the habitat and the similar requirements for co-occurring species. Our study shows the importance of different habitats for the spatial and phylogenetic structure of stonefly assemblage and sheds light on the habitat-specific diversity that may help improve conservation practices.
dc.identifier.doi10.1007/s00442-023-05321-0
dc.identifier.urihttps://repositorio.ucsc.cl/handle/25022009/9844
dc.languageeng
dc.publisherOecologia
dc.subjectDNA
dc.subjectSpecies Habitats
dc.subjectSpatial structure
dc.subjectPhylogenetic structure
dc.subjectPlecoptera
dc.subject.ocdeCiencias Naturales::Ciencias biológicas
dc.subject.ods06
dc.subject.ods15
dc.titleSpatial and phylogenetic structure of Alpine stonefly assemblages across seven habitats using DNA-species
dc.typeartículo
dspace.entity.typePublication
oairecerif.author.affiliationFacultad de Ciencias
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