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Do the taxonomic and functional diversity of mobile macroinvertebrates in kelp forest reflect the habitat complexity?
Moreno Mendoza, R.; Angeles-Gonzalez, L.E.; Hernandez-Miranda, E.; Riera, R.; Díaz, C. (2026). Do the taxonomic and functional diversity of mobile macroinvertebrates in kelp forest reflect the habitat complexity? Regional Studies in Marine Science 93: 104711. https://dx.doi.org/10.1016/j.rsma.2025.104711
In: Regional Studies in Marine Science. Elsevier: Amsterdam. ISSN 2352-4855, meer
Peer reviewed article  

Beschikbaar in  Auteurs 

Trefwoorden
    Aquatic sciences > Marine sciences > Ecology > Marine ecology
    Macrocystis pyrifera (Linnaeus) C.Agardh, 1820 [WoRMS]
Author keywords
    Biodiversity indices; Humboldt Current System; Rocky reef

Auteurs  Top 
  • Moreno Mendoza, R.
  • Angeles-Gonzalez, L.E.
  • Hernandez-Miranda, E.
  • Riera, R.
  • Díaz, C.

Abstract
    Habitat complexity is one of the key drivers that structure biodiversity and is positively associated with species richness, density, and diversity. In this work, we assessed and compared the biodiversity of mobile macroinvertebrates in temperate rocky reefs of the South Pacific by using taxonomic (species richness, diversity, and evenness) and functional diversity indices (functional entities richness, functional redundancy, functional over-redundancy, and functional vulnerability). In the present study, we surveyed four giant kelp (Macrocystis pyrifera) beds with varying holdfast densities and vertical relief in the Biobio region of Chile. Mobile macroinvertebrates larger than 2.5 cm in total length were recorded using an underwater visual census for one year during four seasons. To calculate functional diversity indices, we measured five functional traits: body size, body shape, diet, adult motility, and burying capacity. Our results show that species richness, diversity, and evenness were highest in Laraquete (South of Biobio). Functional entity richness was highest in Llico and lowest in Penco (northern Biobio). Redundancy and functional over-redundancy were also highest in Laraquete. The Generalized Linear Mixed Models revealed differences in functional diversity indices between localities, driven by medium and high substrate environments (p < 0.05). Our study suggests that taxonomic and functional diversity have a positive relationship with substrate height and underscores the importance of habitat complexity in marine conservation efforts.

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