Fishers' Knowledge Indicates Extensive Socioecological Impacts Downstream of Proposed Dams in a Tropical River

One Earth - Tập 2 Số 3 - Trang 255-268 - 2020
Anne Runde1, Gustavo Hallwass2,3, Renato Azevedo Matias Silvano1,3
1Department of Ecology, Universidade Federal do Rio Grande do Sul, Instituto de Biociencias, CP 15007, Porto Alegre, Rio Grande do Sul 91501-970, Brazil
2Federal University of Western Pará, Campus Oriximiná, Rodovia PA-254, n° 257, Santíssimo, Oriximiná, Pará Cep. 68270-000, Brazil
3Fisheries and Food Institute (FIFO), UNISANTA, Rua Oswaldo Cruz 277, Santos, São Paulo, Brazil

Tóm tắt

Từ khóa


Tài liệu tham khảo

2018

Welcomme, 2010, Inland capture fisheries, Philos. Trans. R. Soc. Biol. Sci., 365, 2881, 10.1098/rstb.2010.0168

Mkumbo, 2015, The Nile perch fishery of Lake Victoria: current status and management challenges, Fish Manag. Ecol., 22, 56, 10.1111/fme.12084

Andrew, 2007, Diagnosis and management of small-scale fisheries in developing countries, Fish Fish., 8, 227, 10.1111/j.1467-2679.2007.00252.x

Doria, 2017, The invisibility of fisheries in the process of hydropower development across the Amazon, Ambio, 47, 1

Begossi, 2018, Fish consumption on the Amazon: a review of biodiversity, hydropower and food security issues, Braz. J. Biol., 79, 1

de Graaf, 2018, The status of routine fishery data collection in Southeast Asia, central America, the South Pacific, and West Africa, with special reference to small-scale fisheries, J. Mar. Sci., 68, 1743

Castello, 2013, The vulnerability of Amazon freshwater ecosystems, Conserv. Lett., 6, 217, 10.1111/conl.12008

Castello, 2016, Large-scale degradation of Amazonian freshwater ecosystems, Glob. Chang Biol., 22, 990, 10.1111/gcb.13173

Winemiller, 2016, Balancing hydropower and biodiversity in the Amazon, Congo, and Mekong, Science, 351, 10, 10.1126/science.aac7082

Fearnside, 1999, Social impacts of Brazil’s Tucuruí dam, Environ. Manage., 24, 483, 10.1007/s002679900248

Sá-oliveira, 2015, Fish community structure as an indicator of the long-term effects of the damming of an Amazonian river, Environ. Biol. Fishes, 98, 273, 10.1007/s10641-014-0288-x

Kirchherr, 2016, Cleaning up the big muddy: a meta-synthesis of the research on the social impact of dams, Environ. Impact Assess. Rev., 60, 115, 10.1016/j.eiar.2016.02.007

Ernst, 2017, Socio-environmental conflicts on hydropower: the São Luiz do Tapajós project in Brazil, Environ. Sci. Policy, 73, 20, 10.1016/j.envsci.2017.03.005

2000

Castro-Diaz, 2018, Gender-differentiated impacts of the Belo Monte hydroelectric dam on downstream fishers in the Brazilian Amazon, Hum. Ecol., 46, 10.1007/s10745-018-9992-z

Forsberg, 2017, The potential impact of new Andean dams on Amazon fluvial ecosystems, PLoS One, 12, 1, 10.1371/journal.pone.0182254

Welcomme, 1979, 317

Welcomme, 1985

Junk, 1989, The flood pulse concept in river-floodplain systems, 110

Poff, 2002, How dams vary and why it matters for the emerging science of dam removal, Bioscience, 52, 659, 10.1641/0006-3568(2002)052[0659:HDVAWI]2.0.CO;2

Rosenberg, 1997, Large-scale impacts of hydroelectric development, Environ. Rev., 54, 27, 10.1139/a97-001

Carolsfeld, 2003, 372

Agostinho, 2008, Dams and the fish fauna of the Neotropical region: impacts and management related to diversity and fisheries, Braz. J. Biol., 68, 1119, 10.1590/S1519-69842008000500019

Barthem, 1991, Life strategies of some long-distance migratory catfish in relation to hydroelectric dams in the Amazon Basin, Biol. Conserv., 55, 339, 10.1016/0006-3207(91)90037-A

Jorge, 2016, As migrações do jaraqui e do tambaqui no rio Tapajós e suas relações com as USINAS hidrelétricas, 479

Power, 1996, Dams and downstream aquatic biodiversity: potential food web consequences of hydrologic and geomorphic change, Environ. Manage., 20, 887, 10.1007/BF01205969

Ponton, 1997, Early dry-season community structure and habitat use of young fish in tributaries of the river Sinnamary (French Guiana, South America) before and after hydrodam operation, Environ. Biol. Fishes, 50, 235, 10.1023/A:1007301510288

Anderson, 2018, Fragmentation of Andes-to-Amazon connectivity by hydropower dams, Sci. Adv., 4, 1, 10.1126/sciadv.aao1642

Santos, 2018, The decline of fisheries on the Madeira River, Brazil: the high cost of the hydroelectric dams in the Amazon Basin, Fish Manag. Ecol., 25, 380, 10.1111/fme.12305

Bunn, 2002, Basic principles and ecological consequences of altered flow regimes for aquatic biodiversity, Environ. Manage., 30, 492, 10.1007/s00267-002-2737-0

Agostinho, 2004, Flood regime, dam regulation and fish in the Upper Paraná River: effects on assemblage attributes, reproduction and recruitment, Rev. Fish Biol. Fish, 14, 11, 10.1007/s11160-004-3551-y

Poulsen, 2004

Song, 2017, Downstream effects of the Three Gorges Dam on larval dispersal, spatial distribution and growth of the four major Chinese carps call for reprioritization conservation measures, Can J. Fish Aquat. Sci., 75, 141, 10.1139/cjfas-2016-0278

de Mérona, 1993, The effects of flood regime and fishing effort on the overall abundance of an exploited fish community in the Amazon floodplain, Aquat. Living Resour., 6, 97, 10.1051/alr:1993010

de Ribeiro, 1995, Ecological integrity and fisheries ecology of the Araguaia-Tocantins River Basin, Brazil, Regul. Rivers Res. Manag., 11, 325, 10.1002/rrr.3450110308

Jackson, 2000, Riverine fish stock and regional agronomic responses to hydrological and climatic regimes in the upper Yazoo River basin, 242

Isaac, 2015, Seasonal and interannual dynamics of river-floodplain multispecies fisheries in relation to flood pulses in the Lower Amazon, Fish Res., 183, 352, 10.1016/j.fishres.2016.06.017

Petrere, 1996, Fisheries in large tropical reservoirs in South America, Lakes Reserv Res. Manag., 2, 111, 10.1111/j.1440-1770.1996.tb00054.x

de Mérona, 2010, 1

Zhong, 1996, Environmental impacts of hydroelectric projects on fish resources in China, Regul. Rivers Res. Manag., 12, 81, 10.1002/(SICI)1099-1646(199601)12:1<81::AID-RRR378>3.0.CO;2-9

Hallwass, 2013, Fishers’ knowledge identifies environmental changes and fish abundance trends in impounded tropical rivers, Ecol. Appl., 23, 392, 10.1890/12-0429.1

de Santana, 2014, Influência da barragem de Tucuruí no desempenho da pesca artesanal, estado do Pará, Rev. Econ. Sociol. Rural., 52, 249, 10.1590/S0103-20032014000200003

Sperling, 2012, Hydropower in Brazil: overview of positive and negative environmental aspects, Energy Proced., 18, 110, 10.1016/j.egypro.2012.05.023

Latrubesse, 2017, Damming the rivers of the Amazon basin, Nature, 546, 363, 10.1038/nature22333

Fearnside, 2015, Amazon dams and waterways: Brazil’s Tapajós Basin plans, Ambio, 44, 426, 10.1007/s13280-015-0642-z

Alarcon, 2016, Ocekadi Hidrelétricas conflitos socioambientais e resistência na bacia do Tapajós, Bras. Int. Rivers, 41–78, 293

Fearnside, 2015, Brazil’s Sao Luiz do Tapajos dam: the art of cosmetic environmental impact assessments, Water Altern., 8, 373

Richter, 2010, Lost in development’s shadow: the downstream human consequences of dams, Water Altern., 3, 14

Hallwass, 2015

Keppeler, 2017, Influence of protected areas on fish assemblages and fisheries in a large tropical river, Oryx, 51, 268, 10.1017/S0030605316000247

Silvano, 2017, 160

Hallwass, 2019, Fishers’ knowledge indicates temporal changes in composition and abundance of fishing resources in Amazon protected areas, Anim. Conserv.

Johannes, 2000, Ignore fishers ’ knowledge and miss the boat, Fish. Fish, 1, 257, 10.1046/j.1467-2979.2000.00019.x

Huntington, 2011, The local perspective, Nature, 478, 182, 10.1038/478182a

Huntington, 2000, Using traditional ecological knowledge in science: methods and applications, Ecol. Appl., 10, 1270, 10.1890/1051-0761(2000)010[1270:UTEKIS]2.0.CO;2

Silvano, 2008, Contributions of ethnobiology to the conservation of tropical rivers and streams, Aquat. Conserv Mar. Freshw. Ecosyst., 18, 241, 10.1002/aqc.825

Irvine, 2009, Can managers inform models ? Integrating local knowledge into models of red deer habitat use, J. Appl. Ecol., 46, 344, 10.1111/j.1365-2664.2009.01626.x

Lopes, 2019, Predicting species distribution from fishers ’ local ecological knowledge : a new alternative for data-poor management, Can J. Fish Aquat. Sci., 76, 1423, 10.1139/cjfas-2018-0148

Sáenz-Arroyo, 2005, Using fishers’ anecdotes, naturalists’ observations and grey literature to reassess marine species at risk: the case of the Gulf grouper in the Gulf of California, Mexico, Fish Fish., 6, 121, 10.1111/j.1467-2979.2005.00185.x

Ainsworth, 2008, Evidence of fishery depletions and shifting cognitive baselines in Eastern Indonesia, Biol. Conserv., 141, 848, 10.1016/j.biocon.2008.01.006

Anadón, 2009, Evaluation of local ecological knowledge as a method for collecting extensive data on animal abundance, Conserv Biol., 23, 617, 10.1111/j.1523-1739.2008.01145.x

Turvey, 2010, Rapidly shifting baselines in Yangtze fishing communities and local memory of extinct species, Conserv Biol., 24, 778, 10.1111/j.1523-1739.2009.01395.x

Poizat, 1997, Fishermen’s knowledge as background information in tropical fish ecology: a quantitative comparison with fish sampling results, Environ. Biol. Fishes, 50, 435, 10.1023/A:1007317423165

Silvano, 2006, When does this fish spawn? Fishermen’s local knowledge of migration and reproduction of Brazilian coastal fishes, Environ. Biol. Fishes, 76, 371, 10.1007/s10641-006-9043-2

Le Fur, 2011, Contribution of local fishermen to improving knowledge of the marine ecosystem and resources in the Republic of Guinea, West Africa, Can J. Fish Aquat. Sci., 68, 1454, 10.1139/f2011-061

Valbo-Jorgensen, 2000, Using local knowledge as a research tool in the study of rivers fish biology: experiences from the Mekong, Environ. Dev. Sustain., 2, 253, 10.1023/A:1011418225338

Calheiros, 2000, Participatory research methods in environmental science: local and scientific knowledge of a limnological phenomenon in the Pantanal wetland of Brazil, Adv. Appl. Ecol. Tech., 37, 684, 10.1046/j.1365-2664.2000.00524.x

Rochet, 2008, Ecosystem trends: evidence for agreement between fishers’ perceptions and scientific information, ICES J. Mar. Sci., 65, 1057, 10.1093/icesjms/fsn062

Salomon, 2007, Serial depletion of marine invertebrates leads to the decline of a strongly interacting grazer, Ecol. Appl., 17, 1752, 10.1890/06-1369.1

Esselman, 2010, Overcoming information limitations for the prescription of an environmental flow regime for a central American river, Ecol. Soc., 15, 6, 10.5751/ES-03058-150106

da Costa-Doria, 2014, O uso do conhecimento ecológico tradicional de pescadores no diagnóstico dos recursos pesqueiros em áreas de implantação de grandes empreendimentos, Desenvolv e Meio Ambient, 30, 89

Nunes, 2019, Fishers’ local ecological knowledge indicate migration patterns of tropical freshwater fish in an Amazonian river, Hydrobiologia, 10.1007/s10750-019-3901-3

2014, Aproveitamento hidrelétrico (AHE) São Luiz do Tapajós, estudo de impacto ambiental (EIA) instrumentos legais e normativos planos e projetos colocalizados definicao das áreas de influencia, 2, 244

Marmulla, 2001

da Batista, 1998, Characterizaton of the fishery in river communities in the low-Solimoes/high-Amazon region, Fish Manag. Ecol., 5, 419, 10.1046/j.1365-2400.1998.550419.x

Castello, 2013, Accounting for heterogeneity in small-scale fisheries management: the Amazon case, Mar. Policy, 38, 557, 10.1016/j.marpol.2012.09.001

Hallwass, 2016, Patterns of selectiveness in the Amazonian freshwater fisheries: implications for management, J. Environ. Plan. Manag., 59, 1537, 10.1080/09640568.2015.1081587

Muallil, 2011, Willingness to exit the artisanal fishery as a response to scenarios of declining catch or increasing monetary incentives, Fish Res., 111, 74, 10.1016/j.fishres.2011.06.013

Daw, 2011, Perceptions of trends in Seychelles artisanal trap fisheries: comparing catch monitoring, underwater visual census and fishers’ knowledge, Environ. Conserv., 38, 75, 10.1017/S0376892910000901

Bené, 2006

Agostinho, 2003, Migratory fishes of the Upper Paraná River Basin, Brazil, 19

Doria, 2018, Review of fisheries resource use and status in the Madeira River basin (Brazil, Bolivia, and Peru) before hydroelectric dam completion, Rev. Fish Sci. Aquacult., 26, 494, 10.1080/23308249.2018.1463511

Mesquita, 2015, Traditional knowledge and artisanal fishing technology on the Xingu River in Pará , Brazil, Braz. J. Biol., 75, 138, 10.1590/1519-6984.01314BM

Buckup, 2011

Pérez-Ruzafa, 2006, Effects of fishing protection on the genetic structure of fish populations, Biol. Conserv., 129, 244, 10.1016/j.biocon.2005.10.040

Jorge, 2016, As migrações do jaraqui e do tambaqui no rio Tapajós e suas relações com as USINAS hidrelétricas, 479

Huntington, 2017, How small communities respond to environmental change: patterns from tropical to polar systems, Ecol. Soc., 22, 9, 10.5751/ES-09171-220309

Hoeinghaus, 2009, Effects of river impoundment on ecosystem services of large tropical rivers: embodied energy and market value of artisanal fisheries, Conserv. Biol., 23, 1222, 10.1111/j.1523-1739.2009.01248.x

Ruffino M.L.. Provárzea—a natural resource management project for the Amazon flood plains. International Symposium on the Management of Large Rivers for Fisheries: Sustaining Livelihoods and Biodiversity in the New Millennium. Fisheries Management and Ecology, Phnom Penh, Cambodia, 12–15 February 2002.

McGrath, 1993, Fisheries and the evolution of resource management on the lower Amazon floodplain, Hum. Ecol., 21, 167, 10.1007/BF00889358

Pinto, 2015, Routines of riparian women of the Amazon region: activities and roles in the family, at work and in the community, Interpessoa, 9, 148, 10.5964/ijpr.v9i2.187

Silvano, 2001, Seasonal dynamics of fishery at the piracicaba river (Brazil), Fish Res., 51, 69, 10.1016/S0165-7836(00)00229-0

Ministério da Educação, 2013

2018

da Silva, 2009, Biodiversity, food consumption and ecological niche dimension: a study case of the riverine populations from the Rio Negro, Amazonia, Brazil, Environ. Dev. Sustain., 11, 489, 10.1007/s10668-007-9126-z

Åberg, 2003, Unemployment persistency, over-education and the employment chances of the less educated, Eur. Sociol. Rev., 19, 199, 10.1093/esr/19.2.199

McGrath, 2008, Constructing a policy and institutional framework for an ecosystem-based approach to managing the Lower Amazon floodplain, Environ. Dev. Sustain., 10, 677, 10.1007/s10668-008-9154-3

Minh, 2011, Resettling farm households in Northwestern Vietnam: livelihood change and adaptation, Int. J. Water Resour. Dev., 27, 769, 10.1080/07900627.2011.593116

Fearnside, 2007, Brazil’s Cuiabá-Santarém (BR-163) Highway: the environmental cost of paving a soybean corridor through the Amazon, Environ. Manage., 39, 601, 10.1007/s00267-006-0149-2

Malhi, 2008, Climate change, deforestation, and the fate of the Amazon, Science, 319, 169, 10.1126/science.1146961

Bigda-Peyton

Orr, 2012, Dams on the Mekong River : lost fish protein and the implications for land and water resources, Glob. Environ. Chang., 22, 925, 10.1016/j.gloenvcha.2012.06.002

Isaac, 2016, Food consumption as an indicator of the conservation of natural resources in riverine communities of the Brazilian Amazon, Ann. Braz. Acad. Sci., 87, 229

Isaac, 2011

da Batista, 2000, The fishing activity of the river people in the floodplain of the central Amazon, 417

Isaac, 1995, Os recursos pesqueiros da Amazônia brasileira, Bol Mus. Para. Emilio Goeldi, 11, 295

Manyari, 2007, Environmental considerations in energy planning for the Amazon region: downstream effects of dams, Energy Policy, 35, 6526, 10.1016/j.enpol.2007.07.031

Sá-oliveira, 2016, Factors structuring the fish community in the area of the Coaracy Nunes hydroelectric reservoir in Amapá, northern Brazil, Trop. Conserv Sci., 9, 16, 10.1177/194008291600900103

de Mérona, 1987, Les effets immédiats de la fermeture du barrage de Tucuruí sur Lichtyofaune en aval, Hydrobiol Trop., 20, 73

La Rovere, 2000

Godinho, 2007, Migration and spawning of female surubim (Pseudoplatystoma corruscans, Pimelodidae) in the São Francisco river, Brazil, Environ. Biol. Fishes, 80, 421, 10.1007/s10641-006-9141-1

Godinho, 2009, Migratory fishes of Brazil: life history and fish passages needs, River Res. Appl., 25, 702, 10.1002/rra.1180

Pelicice, 2014, Large reservoirs as ecological barriers to downstream movements of Neotropical migratory fish, Fish. Fish, 16

Pompeu, 2012, Existing and future challenges: the concept of successful fish passage in South America, River Res. Appl., 28, 504, 10.1002/rra.1557

Monaghan, 2015, Alternative ways to measure impacts of dam closure to the structure of fish communities of a Neotropical river, Ecohydrology, 28, 504

Maurstad, 2007, You wouldn’t spawn in a septic tank, would you?, Hum. Ecol., 35, 601, 10.1007/s10745-007-9126-5

Silvano, 2002, Ethnoichthyology and fish conservation in the piracicaba river (Brazil), J. Ethnobiol., 22, 285

de Mérona, 1999, Ecological monitoring of fish assemblages downstream of a hydroelectric dam in French Guiana (South America), Regul. Rivers Res. Manag., 15, 339, 10.1002/(SICI)1099-1646(199907/08)15:4<339::AID-RRR546>3.0.CO;2-0

de Mérona, 2005, Alteration of fish diversity downstream from Petit-Saut Dam in French Guiana. Implication of ecological strategies of fish species, Hydrobiologia, 551, 33, 10.1007/s10750-005-4448-z

dos Santos, 2009, 144

Ferreira, 1998, 214

Pelicice, 2008, Fish-passage facilities as ecological traps in large neotropical rivers, Conserv Biol., 22, 180, 10.1111/j.1523-1739.2007.00849.x

Schaeffer, 2013, The vulnerable Amazon: the impact of climate change on the untapped potential of hydropower systems, IEEE Power Energ. Mag., 11, 22, 10.1109/MPE.2013.2245584

Arantes, 2019, Impacts of hydroelectric dams on fishes and fisheries in tropical rivers through the lens of functional traits, Environ. Sustain., 37, 28

Lira, 2017, Fish passages in South America: an overview of studied facilities and research effort, Neotrop Ichthyol., 15, 10.1590/1982-0224-20160139

Figueiredo, 2014, Simulação de vazões e níveis de água médios mensais para o Rio Tapajós usando modelos ARIMA, Rev. Bras. Recur Hídricos., 19, 111

2014

Bray, 1957, An ordination of upland forest communities of southern Wisconsin, Ecol. Monogr., 27, 325, 10.2307/1942268

2016

Wickham, 2016

Santos, 1995, Impactos da hidreléctrica Samuel Sobre as comunidades de peixes do rio jamari (Rodonia, Brasil), Acta Amaz, 25, 247, 10.1590/1809-43921995253280