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Journal Article

Macroalgae morphological complexity affects the functional diversity of epifaunal annelid assemblages

Samuel Lucas da Silva Delgado Mendes; Nykon Craveiro; Paulo Cesar de Paiva; José Souto Rosa-Filho; Rodolfo Leandro Nascimento
Hydrobiologia · Vol. 853, Issue 13 · pp. 3695-3713 · 2026

Abstract

Host structural complexity influences the diversity of associated epifaunal species, but its role in shaping functional trait diversity remains underexplored. We developed a trait-based framework to assess whether macroalgal structural complexity significantly influences the functional assembly of marine annelid epifauna in a sandstone reef system at Enseada dos Corais Beach (NE Brazil). Sampling was conducted in December 2018, February 2019, April 2019, and June 2019. Ten fronds from each of four macroalgal species, Gelidiella acerosa, Palisada perforata (corticated), Padina gymnospora, and Ulva lactuca (foliose), were collected to describe the associated annelid fauna. Structural complexity was quantified using the interstitial space index (ISI), height, and the fractal dimensions of frond area (Da) and perimeter (Dp). Based on body length, feeding strategy, and larval development, the functional trait diversity of annelid assemblages was assessed using Rao’s quadratic entropy (Rao’s Q) and RLQ analysis. Corticated algae species hosted more functionally dissimilar annelid assemblages than foliose ones. Moreover, macroalgal morphological traits influenced epifaunal functional trait composition, particularly during the rainy season, when hydrodynamics are more intense. Our findings thus supported the hypothesis that increased habitat complexity positively influences functional trait diversity in marine macroalgal phytal communities.

Bibliographic Information

JournalHydrobiologia
PublisherSpringer
Publication Date2026-07-01
Publication Year2026
Volume853
Issue13
Pages3695-3713
Document TypeJournal Article
Print ISSN0018-8158
eISSN1573-5117
DOI10.1007/s10750-026-06176-1

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NARA Access Coverage1948-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10750
Publisher PageOpen Publisher Page
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