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Amazon river plume influence on planktonic decapods in the tropical Atlantic.

Authors :
de Santana, Claudeilton Severino
Lira, Simone Maria de Albuquerque
Varona, Humberto L.
Neumann-Leitão, Sigrid
Araujo, Moacyr
Schwamborn, Ralf
Source :
Journal of Marine Systems. Dec2020, Vol. 212, pN.PAG-N.PAG. 1p.
Publication Year :
2020

Abstract

The western tropical Atlantic is strongly influenced by the Amazon, receiving the full discharge from the largest river basin of the world. In order to ascertain the coastal-oceanic gradient in abundance and composition of planktonic decapod communities along the Amazon River Plume (ARP) and its retroflection, 33 plankton samples were obtained along three sampling transects: Coastal and oceanic area influenced by the ARP (Coastal IARP and Ocean IARP , respectively), and oceanic waters without ARP influence (Ocean). A total of 13,117 specimens, belonging to 33 taxa, were analyzed. The distribution of planktonic decapod communities was strongly influenced by the Amazon discharge, showing the following patterns: (1) The coastal-oceanic gradients in decapod abundance are similar to other shelf areas of eastern South America, with higher abundance in the area under ARP influence, (2) meroplanktonic decapods dominate in coastal and some oceanic areas due to the offshore transport of coastal organisms along the ARP retroflection, and (3) the ARP is clearly responsible for the observed differences in community structure between the three transects. Furthermore, this study highlights the importance of coastal and shelf environments as main sources of planktonic decapods for pelagic ecosystems in the tropical Atlantic during the period of strong North Brazil Current retroflection. • A total of 13,117 specimens, belonging to 33 taxa, were analyzed. • Planktonic decapod distributions were strongly influenced by the Amazon discharge. • Higher abundance of decapods in the area under plume influence • Larval forms dominate in coastal and oceanic plume areas. • Coastal areas are sources of planktonic decapods for offshore pelagic ecosystems. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09247963
Volume :
212
Database :
Academic Search Index
Journal :
Journal of Marine Systems
Publication Type :
Academic Journal
Accession number :
146711705
Full Text :
https://doi.org/10.1016/j.jmarsys.2020.103428