Published August 26, 2025
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Tropical shrimp fishery: do bycatch-reducing devices effectively others Crustacea: Decapoda?
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Santos, Viviane Cristina da Costa, Bentes, Bianca, Silva, Leiliane Souza da, Brigida, Yan Rafael Gillet Santa, Martinelli-Lemos, Jussara Moretto (2025): Tropical shrimp fishery: do bycatch-reducing devices effectively others Crustacea: Decapoda? Journal of Natural History 59 (33-36): 2187-2202, DOI: 10.1080/00222933.2025.2536593, URL: https://doi.org/10.1080/00222933.2025.2536593
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- urn:lsid:plazi.org:pub:FFA5FF87ED5F20128E05FB19F779FFEE
References
- Andrew NL, Kennelly SJ, Broadhurst MK. 1993. An application of the Morrison soft TED to the offshore prawn
- Araujo JG, Mello Filho ADS, Peixoto UI, Bentes B, Santos MASD, Dutka-Gianelli J, Isaac V. 2022. Multidimensional evaluation of brown shrimp trawling fisheries on the Amazon Continental Shelf. Front Mar Sci. 9:801758. 3389/fmars.2022.801758.
- Asp NE, Gomes JD, Gomes VJ, Omachi CY, Silva AM, Siegle E, Serrao PF, Thompson CC, Nogueira LC, Francini-Filho et al. 2022. Water column and bottom gradients on the continental shelf eastward of the Amazon River implications for mesophotic reef occurrence. J Mar Syst. 225:103642. doi: 10.1016/j.jmarsys.2021.103642.
- Bahamon N, Sarda F, Suuronen P. 2006. Improvement of trawl selectivity in the NW Mediterranean demersal using a 40 mm square mesh codend. Fish Res. 81(1):15-25. doi: 10.1016/j.fishres.2006.05.020.
- Barthem RB, Schwassmann HO 1994. Amazon River influence on the seasonal displacement of the Salt Wedge Tocantins River Estuary, Brazil, 1983-1985. Boletim do Museu Paraense Emilio Goeldi [accessed 2025 Jul 31] repositorio.museu-goeldi.br/handle/mgoeldi/496
- Broadhurst MK. 2000. Modifications to reduce bycatch in prawn trawls: a review and framework for development Fish Biol Fish. 10(1):27-60. doi: 10.1023/A:1008936820089.
- Broadhurst MK, O'Doherty G. 1997. Specifications for the construction and installation of two by-catch reducing (BRDs) used in New South Wales prawn-trawl fisheries. Marine Freshwater Res. 48(6):485-489. doi: 10.1071/MF
- Broadhurst MK, Uhlmann SS. 2007. Short-term stress and mortality of juvenile school prawns, Metapenaeus discarded from seines and trawls. Fish Manag Ecol. 14(5):353-363. doi: 10.1111/j.1365-2400.2007.00563.x.
- Campbell LM, Cornwell ML. 2008. Human dimensions of bycatch reduction technology: current assumptions directions for future research. Endanger Species Res. 5:325-334. doi: 10.3354/esr00172b.
- Campos A, Fonseca P. 2004. The use of separator panels and square mesh windows for by-catch reduction crustacean trawl fishery off the Algarve (South Portugal). Fish Res. 69(2):147-156. doi: 10.1016/j.fishres.
- Cardoso LG, Haimovici M, Abdallah PR, Secchi ER, Kinas PG. 2021. Prevent bottom trawling in southern Brazil. Science (6538):138. doi: 10.1126/science.abh0279.
- Chaves PDT, Robert MDC. 2003. EmbarcaCoes, artes e procedimentos da pesca artesanal no litoral sul do
- Cordeiro RT, Neves BM, Rosa-Filho JS, Perez CD. 2015. Mesophotic coral ecosystems occur offshore and north Amazon River. Bull Mar Sci. 91(4):491-510. doi: 10.5343/bms.2015.1025.
- Cuende E, Arregi L, Herrmann B, Sistiaga M, Aboitiz X. 2020. Prediction of square mesh panel and codend size of blue whiting based on fish morphology. ICES J Mar Sci. 77(7-8):2857-2869. doi: 10.1093/icesjms/fsaa156.
- Dias-Neto J. 2011. Proposta de plano nacional de gestao para o uso sustentavel de camaroes marinhos do Brasil Plano de Gestao de Recursos Pesqueiros. 3:242.
- Duarte DL, Broadhurst MK, Ortega I, Pias BS, Dumont LF. 2018. Quantifying the morphology of key species caught southern Brazilian penaeid-trawl fishery as a precursor to improving selection. Lat Am J Aquat Res. 46(4):799- 10.3856/vol46-issue4-fulltext-17.
- Eayrs S, Cadrin SX, Glass CW. 2015. Managing change in fisheries: a missing key to fishery-dependent data
- ICES J Mar Sci. 72(4):1152-1158. doi: 10.1093/icesjms/fsu184.
- Eayrs S, Pol M. 2019. The myth of voluntary uptake of proven fishing gear: investigations into the challenges change in fisheries. ICES J Mar Sci. 76(2):392-401. doi: 10.1093/icesjms/fsy178.
- 2017. Ecosystem effects of invertebrate fisheries. Fish Fisheries. 18(1):40-53. doi: 10.1111/faf.12165.
- FAO. 2008. The state of world fisheries and aquaculture. In: Fisheries and aquaculture department. Rome: FAO and Aquaculture Department Food and Agriculture Organization of the United Nations; p. 196.
- FAO. 2020. The state of world fisheries and aquaculture. In: Sustainability in action. Rome: FAO Fisheries and Department Food and Agriculture Organization of the United Nations; p. 244. doi: 10.4060/ca9229en.
- et al. 2018. Perspectives on the Great Amazon Reef: extension, biodiversity, and threats. Front Mar Sci. 5:142 3389/fmars.2018.00142.
- Gillett R 2008. Global study of shrimp fisheries. FAO Fisheries Technical Paper. Rome, 331 p.
- Graham N. 2010. Technical measures to reduce bycatch and discards in trawl fisheries. In: Behavior of marine 10. Wiley; p. 343. doi: 10.1002/9780813810966.ch10.
- Guanais JHDG, Medeiros RP, Spach HL, Cattani AP, Santos LDO. 2014. Uso de dispositivos tecnologicos para a captura de braquiuros pela pesca artesanal de arrasto. Instituto de Ciencias Do Mar; [accessed 2025 Jul 31 repositorio.ufc.br/handle/riufc/28770.
- Hall MA, Alverson DL, Metuzals KI. 2000. By-catch: problems and Solutions. Mar Pollut Bull. 41(1-6):204-219. doi: S0025-326X(00)00111-9.
- Hall MA, Nakano H, Clarke S, Thomas S, Molloy J, Peckham SH, Hall SJ. 2007. Working with fishers to reduce and Kennelly SJ, editor. By-catch reduction in the world's fisheries. Vol. 7. Alemanha: Springer; p. 235-288.
- Isaac VJ, Braga TMP. 1999. By-catch in the marine fisheries off northern Brazil. Arquivos de Ciencias do Mar. 32:39 10.32360/acmar.v32i1-2.31342.
- Isaac VJ, Ferrari SF. 2017. Assessment and management of the north Brazil shelf large marine ecosystem. Environ 22:97-110. doi: 10.1016/j.envdev.2016.11.004.
- Jimenez H, Dumas P, Mouillot D, Bigot L, Ferraris J. 2016. Harvesting effects on functional structure and composition
- Kineke GC, Sternberg RW. 1995. Distribution of fluid muds on the Amazon continental shelf. Marine Geology (3-4):193-233. doi: 10.1016/0025-3227(95)00013-O.
- Lima FA, Butturi-Gomes D, Das Neves Pantoja MH, Martinelli-Lemos JM. 2022. Larval dispersal of Brachyura in one largest estuarine/marine systems in the world. PLOS ONE. 17(8):e0252695. doi: 10.1371/journal.pone.0252695
- Lima MSP, Oliveira JEL, de Nobrega MF, Lopes PFM. 2017. The use of local ecological knowledge as a approach to understand the temporal and spatial patterns of fishery resources distribution. J Ethnobiol Ethnomed (1):1-12. doi: 10.1186/s13002-017-0156-9.
- Lima WMGD, Pinaya WHD, Lutz IADF, Nascimento MSD, Silva LEOD, Cintra IHA, Bentes B. 2021. Effects of the industrial fishery system on fish community structure on the inner Amazon shelf. Ocean Coast Res. 69:1-13 1590/2675-2824069.20-021wmgdl.
- Lopes D, Fredou FL, Silva E, Calazans N, Peixoto S. 2017. Reproductive cycle of seabob shrimp Xiphopenaeus (Crustacea, Penaeidea) from the northeast coast of Brazil. Invertebr Reprod Dev. 61(3):137-141. doi: 07924259.2017.1311951.
- Maia BP, Silva VHS, Silva VHS. 2016. Gradiente latitudinal da beta diversidade da fauna acompanhante das industriais de camaroes marinhos da costa norte do brasil. Biota Amazonia. 6(1):31-39. doi: 10.18561/2179 biotaamazonia.v6n1p31-39.
- Medeiros RP, Guanais JHDG, de Oliveira Santos L, Spach HL, Silva CNS, Foppa CC, Cattani AP, Rainho AP. 2013.
- para a reduCao da fauna acompanhante na frota artesanal de arrasto do camarao sete-barbas: perspectivas a gestao pesqueira. Boletim Do Instituto de Pesca. 39(3):339-358. doi: 10.20950/1678-2305.2013v39n3p339.
- Moura RL, Amado-Filho GM, Moraes FC, Brasileiro PS, Salomon PS, Mahiques MM, Thompson FL. 2016. An extensive system at the Amazon River mouth. Sci Adv. 2(4):1501252. doi: 10.1126/sciadv.1501252.
- Nittrouer CA, Kuehl S, Demaster DJ, Kowsmann RO. 1986. The deltaic nature of Amazon shelf sedimentation. Geol
- Bull. 97(4):444-458. doi: 10.1130/0016-7606(1986)97<444:TDNOAS>2.0.CO;2.
- Nobrega PSVD, Santos CRMD, Cordeiro APB, Martinelli-Lemos JM. 2021. Invertebrates assemblage captured by shrimp's fishery on Amazon continental shelf. Lat Am J Aquat Res. 49(2):227-241. doi: 10.3856/vol49-issue -2600.
- Paiva KS, Aragao JAN, de Araujo Silva KC, Cintra IHA. 2009. Fauna acompanhante da pesca industrial do camarao-rosa plataforma continental norte brasileira. Trop J Fish Aquat Sci. 9:25-42.
- Peixoto UI, Mello-Filho AS, Bentes B, Isaac VJ. 2022. Trawl fishing fleet operations used to illustrate the life cycle southern brown shrimp: insights to management and sustainable. Fishes. 7(3):141. doi: 10.3390/fishes7030141
- Pomeroy RS. 2012. Managing overcapacity in small-scale fisheries in Southeast Asia. Mar Policy. 36(2):520-527 1016/j.marpol.2011.10.002.
- Prasetyo AP, Purwoko RM, Antoro H. 2017. The effectiveness of the Jones/Davis type by-catch reduction device reduce unintended catch of trawl fisheries. Aceh J Anim Sci. 2(2):48-56. doi: 10.13170/ajas.2.2.6860.
- Richardson PL, Hufford GE, Limeburner R, Brown WS. 1994. North Brazil current retroflection eddies. J Geophys Oceans. 99(C3):5081-5093. doi: 10.1029/93JC03486.
- Robinson LA, Frid CLJ. 2003. Dynamic ecosystem models and the evaluation of ecosystem effects of fishing: can meaningful predictions? Aquat Conserv Mar Freshwater Ecosyst 13(1):5-20. doi: 10.1002/aqc.506.
- Rocha LA, Pinheiro HT, Shepherd B, Papastamatiou YP, Luiz OJ, Pyle RL, Bongaerts P. 2018. Mesophotic coral are threatened and ecologically distinct from shallow water reefs. Science. 361(6399):281-284. [accessed 2025 doi: 10.1126/science.aaq1614.
- Rodrigues-Inoue ACM, Santos A, Martinelli-Lemos JM. 2021. Distribution patterns of Anomura, Axiidea and (Crustacea, Decapoda) larvae at the Amazon shelf. Regional Studies Marine Sci. 47:101946. doi: 10.1016/j. 101946.
- Santa Brigida YRGS, Santos VCC, Nobrega PSV, Martinelli-Lemos JM. 2025. Submitted Population structure of discarded as bycatch from the Penaeus subtilis (Decapoda) fishery on the Amazon Continental Shelf. J Nat Hist 1080/00222933.2025.2534167.
- Silva ACD, Araujo M, Bourles B. 2005. VariaCao sazonal da estrutura de massas de agua na plataforma continental Amazonas e area oceanica adjacente. Revista Brasileira de Geofisica. 23(2):145-157. doi: 10.1590 261X2005000200004.
- Silva ACD, Santos MDLS, Araujo MC, Bourles B. 2009. ObservaCoes hidrologicas e resultados de modelagem espalhamento sazonal e espacial da pluma de agua Amazonica. Acta Amazonica. 39(2):361-369. doi: S0044-59672009000200014.
- Silva CN, Dias JH, Cattani AP, Spach HL. 2012. Relative efficiency of square-mesh codends in an artisanal southern Brazil. Lat Am J Aquat Res. 40(1):124-133. doi: 10.3856/vol40-issuel-fulltext-12.
- Silva LS, Cavalcante-Braga DV, LourenCo CB, Schwamborn R, Martinelli-Lemos JM. 2021. Factors affecting the variability of planktonic shrimps (Dendrobranchiata) along an estuary -ocean gradient on the Amazon shelf. J Mar Biol Assoc UK. 101(2):331-342. doi: 10.1017/S0025315421000308.
- Souto-Vieira D, Silva VEL, Caliman A, Oliveira-Junior JGC, Silva BB, Nahum VJI, Fabre NN. 2024. Biodiversity dimensions fish communities inhabiting coastal muddy bottoms in the tropical Southwestern Atlantic. Estuarine Coastal 301:108750. doi: 10.1016/j.ecss.2024.108750.
- Stiles ML, Stockbridge J, Lande M, Hirschfield MF. 2010. Impacts of bottom trawling on fisheries, tourism and the environment. Belize: Oceana; p. 1-12.
- Suuronen P, Pitcher CR, McConnaughey RA, Kaiser MJ, Hiddink JG, Hilborn R. 2020. A path to a sustainable trawl Southeast Asia. Rev Fish Sci Aquac. 28(4):499-517. doi: 10.1080/23308249.2020.1767036.
- Thurstan RH, Brockington S, Roberts CM. 2010. The effects of 118 years of industrial fishing on UK bottom trawl
- Nat Commun. 1(1):15. doi: 10.1038/ncomms1013.
- Valinassab T, Daryanabard R, Dehghani R, Pierce GJ. 2006. Abundance of demersal fish resources in the Persian Oman Sea. J Mar Biol Assoc UK. 86(6):1455-1462. doi: 10.1017/S0025315406014512.