Modulating factors of the abundance and distribution of Achelous spinimanus (Latreille, 1819) (Decapoda, Portunoidea), a fishery resource, in Southeastern Brazil

Author:

Sousa Aline Nonato de1,Bertini Giovana12,Taddei Fabiano Gazzi13,da Costa Rogério Caetano14,Silva Thiago Elias da1,Fransozo Adilson1

Affiliation:

1. Núcleo de Estudos em Biologia, Ecologia e Cultivo de Crustáceos—NEBECC, Universidade Estadual Paulista “Júlio de Mesquita Filho”—UNESP, Botucatu, São Paulo, Brasil

2. Laboratório de Biologia e Cultivo de Crustáceos—LABCRUST, Universidade Estadual Paulista “Júlio de Mesquita Filho”—UNESP, Registro, São Paulo, Brasil

3. Laboratório de Estudos de Crustáceos Amazônicos—LECAM, Universidade do Estado do Amazonas—UEA, Parintins, Amazonas, Brasil

4. Laboratório de Biologia de Camarões Marinhos e de Água Doce—LABCAM, Universidade Estadual Paulista “Júlio de Mesquita Filho”—UNESP, Bauru, São Paulo, Brasil

Abstract

This is the first study to examine how different environmental factors may influence the distribution of swimming crab Achelous spinimanus across geographically distant and distinct habitats. We analyzed the influence of bottom water temperature and salinity, sediment texture and organic matter content on the spatiotemporal distribution of A. spinimanus. The crabs were collected from January 1998 until December 1999 by trawling with a shrimp fishing boat outfitted with double-rig nets. The sampling took place in Ubatumirim (UBM), Ubatuba (UBA) and Mar Virado (MV) bays, located in the northern coast of São Paulo State (Brazil). These three bays were chosen as they differed in many physiographic features. We captured 1,911 crabs (UBM = 351; UBA = 1,509; MV = 51), and there were significant differences in abundance between bays and between stations. The distribution of A. spinimanus was primarily associated with sediment features: abundance was higher in stations with sandy sediments classified as gravel, very coarse sand, and intermediate sand. Portunoidea usually burrow in the sediment for protection against predators and to facilitate the capture of fast prey. In addition, the station with the highest abundance of A. spinimanus was also naturally protected from fishing activities, and composed of heterogeneous sediment, in terms of grain size. Hence, the combination of a favorable sediment heterogeneity and protection from fishery activities seemed to be effective modulators of the abundance and distribution of A. spinimanus in these bays.

Funder

São Paulo Research Foundation (FAPESP)

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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