Spatial heterogeneity recognition in estuarine intertidal benthic macrofaunal communities: Influence of sieve mesh-size and sampling depth

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Abstract

Estuarine intertidal soft-bottom macrobenthic infauna of the Tagus estuary was characterised using different mesh size sieves and sediment sampling depth. The study sampled 105 sites using a hand held 0.01 m2 corer. The top layer (0-5 cm) was sieved through nested 1.0 and 0.5 mm meshes whereas the bottom layer (5-20 cm) was through a 1 mm mesh. The total survey took 26 taxa of more than 5800 individuals and a total wet weight biomass of over 650 g. The top layer, using both sieves, gathered 23 taxa (92% of the total), more than 5600 specimens (96%) but less than 8 g of biomass (1%) whereas the 1.0 mm sieve retained 21 taxa (91%), more than 1700 specimens (31%) and almost 7 g of biomass (1%). Abundance was dominated by small annelids, of which Streblospio shrubsolii was 68%, whereas biomass was dominated by molluscs, with the bivalve Scrobicularia plana representing 98%. Multivariate analyses showed an abundance pattern where the top layer data was very similar to that obtained with both layers. The bottom layer data were needed to accurately represent the total biomass pattern. The macrofaunal spatial pattern identified with the 0.5 mm sieve data differed from that identified by the 1.0 mm and was essential to discriminate a faunal assemblage located along the upper part of the shore. It was concluded that in order to characterize the macrofauna community structure, based on the presence/absence of taxa, the top layer and a 1.0 mm sieve would be sufficient. An abundance-based characterization requires the top layer and a 0.5 mm sieve whereas a biomass-based characterization requires data for both layers but it is sufficient to use the 1.0 mm sieve. © 2007 Springer Science+Business Media B.V.

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Rodrigues, A. M., Meireles, S., Pereira, T., & Quintino, V. (2007). Spatial heterogeneity recognition in estuarine intertidal benthic macrofaunal communities: Influence of sieve mesh-size and sampling depth. In Hydrobiologia (Vol. 587, pp. 37–50). https://doi.org/10.1007/s10750-007-0684-8

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