DNA barcoding reveals cryptic diversity of fish eggs in Equatorial Southwestern Atlantic
Ana Cecília Pinho Costa
Tatiane Martins Garcia
Tallita Cruz Lopes Tavares
Rafael dos Santos Rocha
Rodrigo Maggioni
Marcelo de Oliveira Soares
Abstract
DNA barcoding presents a reliable and universal tool for species identification; however, few studies have used this methodology to analyze fish egg diversity in low-latitude seascapes. In the present study, DNA barcodes were used to assess the diversity of fish eggs in the Equatorial Southwestern Atlantic, a rich but understudied region. We sampled two seascapes for analyzing the fish diversity: seagrass and rhodolith beds. Collectively, 112 fish eggs were sorted for genetic analysis, of which 31 were successfully sequenced. One egg was successfully identified at the order level, three at the family level, 20 at the genus level, and seven at the species level. Several tropical fish species have not yet been barcoded and deposited in genetic databases; therefore, our novel research has expanded our knowledge of the diversity of fish eggs in low-latitude areas. Molecular identification revealed a cryptic diversity among the types of eggs collected from major tropical seascapes. Importantly, efforts should be made to improve the barcode database for fish eggs and larvae worldwide. This baseline information is essential for assessing the global environmental changes affecting fish diversity in coastal seas.
Costa A.C.P., Garcia T.M., Tavares T.C.L., Rocha R.d.S., Maggioni R. and de Oliveira Soares M. (2023) DNA barcoding reveals cryptic diversity of fish eggs in Equatorial Southwestern Atlantic. Regional Studies in Marine Science 65: 103069. 10.1016/j.rsma.2023.103069
@article{Costa2023,
Title = {DNA barcoding reveals cryptic diversity of fish eggs in Equatorial Southwestern Atlantic},
Author = {Costa, Ana Cecília Pinho and Garcia, Tatiane Martins and Tavares, Tallita Cruz Lopes and Rocha, Rafael dos Santos and Maggioni, Rodrigo and de Oliveira Soares, Marcelo},
Editor = {},
Journal = {Regional Studies in Marine Science},
Year = {2023},
Pages = {103069},
Volume = {65},
Doi = {10.1016/j.rsma.2023.103069},
Abstract = {DNA barcoding presents a reliable and universal tool for species identification; however, few studies have used this methodology to analyze fish egg diversity in low-latitude seascapes. In the present study, DNA barcodes were used to assess the diversity of fish eggs in the Equatorial Southwestern Atlantic, a rich but understudied region. We sampled two seascapes for analyzing the fish diversity: seagrass and rhodolith beds. Collectively, 112 fish eggs were sorted for genetic analysis, of which 31 were successfully sequenced. One egg was successfully identified at the order level, three at the family level, 20 at the genus level, and seven at the species level. Several tropical fish species have not yet been barcoded and deposited in genetic databases; therefore, our novel research has expanded our knowledge of the diversity of fish eggs in low-latitude areas. Molecular identification revealed a cryptic diversity among the types of eggs collected from major tropical seascapes. Importantly, efforts should be made to improve the barcode database for fish eggs and larvae worldwide. This baseline information is essential for assessing the global environmental changes affecting fish diversity in coastal seas.},
}
TY - JOUR
AU - Costa, Ana Cecília Pinho
AU - Garcia, Tatiane Martins
AU - Tavares, Tallita Cruz Lopes
AU - Rocha, Rafael dos Santos
AU - Maggioni, Rodrigo
AU - de Oliveira Soares, Marcelo
TI - DNA barcoding reveals cryptic diversity of fish eggs in Equatorial Southwestern Atlantic
T2 - Regional Studies in Marine Science
PY - 2023
SP - 103069
VL - 65
DO - 10.1016/j.rsma.2023.103069
AB - DNA barcoding presents a reliable and universal tool for species identification; however, few studies have used this methodology to analyze fish egg diversity in low-latitude seascapes. In the present study, DNA barcodes were used to assess the diversity of fish eggs in the Equatorial Southwestern Atlantic, a rich but understudied region. We sampled two seascapes for analyzing the fish diversity: seagrass and rhodolith beds. Collectively, 112 fish eggs were sorted for genetic analysis, of which 31 were successfully sequenced. One egg was successfully identified at the order level, three at the family level, 20 at the genus level, and seven at the species level. Several tropical fish species have not yet been barcoded and deposited in genetic databases; therefore, our novel research has expanded our knowledge of the diversity of fish eggs in low-latitude areas. Molecular identification revealed a cryptic diversity among the types of eggs collected from major tropical seascapes. Importantly, efforts should be made to improve the barcode database for fish eggs and larvae worldwide. This baseline information is essential for assessing the global environmental changes affecting fish diversity in coastal seas.
ER -