Diversity and deadwood-based interaction networks of saproxylic beetles in remnants of riparian cloud forest
We studied the saproxylic beetle community inhabiting deadwood in remnants of riparian cloud forests in "La Antigua" basin, in central Veracruz (Mexico). We assessed the influence of deadwood features (tree species, trunk position, trunk diameter, trunk volume and decomposition stages) on...
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Abstract | We studied the saproxylic beetle community inhabiting deadwood in remnants of riparian cloud forests in "La Antigua" basin, in central Veracruz (Mexico). We assessed the influence of deadwood features (tree species, trunk position, trunk diameter, trunk volume and decomposition stages) on saproxylic beetle diversity. In order to assess the stability of beetle species-deadwood interactions, we also analyzed the ecological networks structure. A total of 63 deadwood trunks, belonging to four tree species, were sampled by standardized hand-collection throughout well-preserved remnants of riparian cloud forest. We found that tree species and deadwood decay stage are the main drivers that determine the diversity and stability of saproxylic beetle species interactions. Our results indicate that Quercus corrugata is the main tree species in terms of maintaining the significantly highest saproxylic beetle diversity, but with no stable interactions (saproxylic beetle-deadwood). A nested network structure was detected for Clethra mexicana and Liquidambar styraciflua, with a pool of core (generalist) saproxylic beetle species. We observed that beetle diversity from the early and late deadwood stages comprises distinct assemblages and the four stages of decomposition showed a nested network structure. During deadwood succession, community composition and guilds changed among networks; the early successional stage had more specialized xylophagous beetles, while other guilds (mycophagous, saprophagous and zoophagous) arrive later and become the core species in the advanced stages of decomposition networks. Heliscus tropicus (Passalidae) is a key species constituting the core of all of the networks and could be considered an ecosystem engineer in cloud forests. By exploring links between saproxylic beetles and deadwood characteristics, we can further our understanding of species interaction in order to develop management strategies oriented towards the protection of species and their habitats in this threatened ecosystem. |
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AbstractList | We studied the saproxylic beetle community inhabiting deadwood in remnants of riparian cloud forests in "La Antigua" basin, in central Veracruz (Mexico). We assessed the influence of deadwood features (tree species, trunk position, trunk diameter, trunk volume and decomposition stages) on saproxylic beetle diversity. In order to assess the stability of beetle species-deadwood interactions, we also analyzed the ecological networks structure. A total of 63 deadwood trunks, belonging to four tree species, were sampled by standardized hand-collection throughout well-preserved remnants of riparian cloud forest. We found that tree species and deadwood decay stage are the main drivers that determine the diversity and stability of saproxylic beetle species interactions. Our results indicate that Quercus corrugata is the main tree species in terms of maintaining the significantly highest saproxylic beetle diversity, but with no stable interactions (saproxylic beetle-deadwood). A nested network structure was detected for Clethra mexicana and Liquidambar styraciflua, with a pool of core (generalist) saproxylic beetle species. We observed that beetle diversity from the early and late deadwood stages comprises distinct assemblages and the four stages of decomposition showed a nested network structure. During deadwood succession, community composition and guilds changed among networks; the early successional stage had more specialized xylophagous beetles, while other guilds (mycophagous, saprophagous and zoophagous) arrive later and become the core species in the advanced stages of decomposition networks. Heliscus tropicus (Passalidae) is a key species constituting the core of all of the networks and could be considered an ecosystem engineer in cloud forests. By exploring links between saproxylic beetles and deadwood characteristics, we can further our understanding of species interaction in order to develop management strategies oriented towards the protection of species and their habitats in this threatened ecosystem. We studied the saproxylic beetle community inhabiting deadwood in remnants of riparian cloud forests in “La Antigua” basin, in central Veracruz (Mexico). We assessed the influence of deadwood features (tree species, trunk position, trunk diameter, trunk volume and decomposition stages) on saproxylic beetle diversity. In order to assess the stability of beetle species-deadwood interactions, we also analyzed the ecological networks structure. A total of 63 deadwood trunks, belonging to four tree species, were sampled by standardized hand-collection throughout well-preserved remnants of riparian cloud forest. We found that tree species and deadwood decay stage are the main drivers that determine the diversity and stability of saproxylic beetle species interactions. Our results indicate that Quercus corrugata is the main tree species in terms of maintaining the significantly highest saproxylic beetle diversity, but with no stable interactions (saproxylic beetle-deadwood). A nested network structure was detected for Clethra mexicana and Liquidambar styraciflua , with a pool of core (generalist) saproxylic beetle species. We observed that beetle diversity from the early and late deadwood stages comprises distinct assemblages and the four stages of decomposition showed a nested network structure. During deadwood succession, community composition and guilds changed among networks; the early successional stage had more specialized xylophagous beetles, while other guilds (mycophagous, saprophagous and zoophagous) arrive later and become the core species in the advanced stages of decomposition networks. Heliscus tropicus (Passalidae) is a key species constituting the core of all of the networks and could be considered an ecosystem engineer in cloud forests. By exploring links between saproxylic beetles and deadwood characteristics, we can further our understanding of species interaction in order to develop management strategies oriented towards the protection of species and their habitats in this threatened ecosystem. |
Audience | Academic |
Author | Ramírez-Hernández, Alfredo Escobar, Federico Reyes-Castillo, Pedro Martínez-Falcón, Ana Paola Micó, Estefanía Almendarez, Sandra |
AuthorAffiliation | 1 CONACYT-IPICYT/Consorcio de Investigación, Innovación y Desarrollo para las Zonas Áridas, San Luis Potosí, México 5 Instituto de Ecología, A. C. (INECOL), Xalapa, México 4 Universidad Autónoma de San Luis Potosí, San Luis Potosí, México 2 Centro de Investigaciones Biológicas, Universidad Autónoma del Estado de Hidalgo, Hidalgo, México Universidade Federal de Mato Grosso do Sul, BRAZIL 3 Centro Iberoamericano de la Biodiversidad (CIBIO), Universidad de Alicante, Alicante, España |
AuthorAffiliation_xml | – name: 2 Centro de Investigaciones Biológicas, Universidad Autónoma del Estado de Hidalgo, Hidalgo, México – name: 4 Universidad Autónoma de San Luis Potosí, San Luis Potosí, México – name: 1 CONACYT-IPICYT/Consorcio de Investigación, Innovación y Desarrollo para las Zonas Áridas, San Luis Potosí, México – name: 5 Instituto de Ecología, A. C. (INECOL), Xalapa, México – name: Universidade Federal de Mato Grosso do Sul, BRAZIL – name: 3 Centro Iberoamericano de la Biodiversidad (CIBIO), Universidad de Alicante, Alicante, España |
Author_xml | – sequence: 1 givenname: Alfredo orcidid: 0000-0002-7261-7443 surname: Ramírez-Hernández fullname: Ramírez-Hernández, Alfredo organization: CONACYT-IPICYT/Consorcio de Investigación, Innovación y Desarrollo para las Zonas Áridas, San Luis Potosí, México – sequence: 2 givenname: Ana Paola surname: Martínez-Falcón fullname: Martínez-Falcón, Ana Paola organization: Centro de Investigaciones Biológicas, Universidad Autónoma del Estado de Hidalgo, Hidalgo, México – sequence: 3 givenname: Estefanía surname: Micó fullname: Micó, Estefanía organization: Centro Iberoamericano de la Biodiversidad (CIBIO), Universidad de Alicante, Alicante, España – sequence: 4 givenname: Sandra surname: Almendarez fullname: Almendarez, Sandra organization: Universidad Autónoma de San Luis Potosí, San Luis Potosí, México – sequence: 5 givenname: Pedro surname: Reyes-Castillo fullname: Reyes-Castillo, Pedro organization: Instituto de Ecología, A. C. (INECOL), Xalapa, México – sequence: 6 givenname: Federico surname: Escobar fullname: Escobar, Federico organization: Instituto de Ecología, A. C. (INECOL), Xalapa, México |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/30978221$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1016_j_ecolind_2022_109197 crossref_primary_10_1128_mSphere_00856_20 crossref_primary_10_1371_journal_pone_0228880 crossref_primary_10_1007_s13744_021_00933_8 crossref_primary_10_1016_j_ecoleng_2022_106812 crossref_primary_10_1016_j_foreco_2020_118237 crossref_primary_10_16970_entoted_1291924 crossref_primary_10_3390_insects14050446 crossref_primary_10_1016_j_foreco_2023_121609 |
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Snippet | We studied the saproxylic beetle community inhabiting deadwood in remnants of riparian cloud forests in "La Antigua" basin, in central Veracruz (Mexico). We... We studied the saproxylic beetle community inhabiting deadwood in remnants of riparian cloud forests in “La Antigua” basin, in central Veracruz (Mexico). We... |
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SubjectTerms | Analysis Animals Basins Beetles Biodiversity Biology and Life Sciences Cloud forests Clouds Coleoptera Coleoptera - classification Coleoptera - physiology Communities Community composition Dead wood Decay Decomposition Distribution Ecological monitoring Ecology Ecology and Environmental Sciences Ecosystems Environmental changes Forest ecosystems Forest management Forests Guilds Habitats Keystone species Land degradation Mexico Natural resources Networks Physical Sciences Plant species Protected species Riparian areas Riparian environments Riparian forests Species diversity Stability analysis Strategic planning (Business) Trees Varieties Wildlife conservation |
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Title | Diversity and deadwood-based interaction networks of saproxylic beetles in remnants of riparian cloud forest |
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