Acta Limnologica Brasiliensia
https://actalb.org/article/doi/10.1590/S2179-975X2420
Acta Limnologica Brasiliensia
Thematic Section: Limnology of Subtropical Aquatic Environments

Organic matter decomposition in subtropical South America aquatic environments: a systematic and scientometric review

Decomposição de detritos orgânicos em ambientes aquáticos continentais em clima subtropical da América do Sul: uma revisão sistemática e cienciométrica

Pâmela Rodrigues Gayer; Andréa Luiza de Mattos de Moraes; Pablo Santos Guimarães; Fabiana Gonçalves Barbosa; Edélti Faria Albertoni; Luiz Ubiratan Hepp

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Abstract

Abstract:: Aim: To evaluate the general situation of studies on the decomposition of organic matter in aquatic environments in the subtropical region of South America.

Methods: We compiled publications (1990-2018) with a combination of words referring to decomposition, debris, aquatic environments and South American countries with subtropical climate. The characteristics of the publications were analysed over time.

Results: A total of 1,042 publications were found, with 106 specifically addressing the purpose of this study. For subtropical climates in South America, this research topic is incipient. Most studies were carried out in streams (39.6%) and studied the decomposition process and associated invertebrates (42.5%). There is a great deficiency of studies in lentic environments (e.g. lakes, 10%).

Conclusion: Studies on the decomposition of organic detritus in aquatic ecosystems in the subtropical region of South America are still emerging. While the knowledge about the role of shredders is more or less understood, the importance of microorganisms on the decomposition process still needs to be better evaluated. Finally, our study demonstrated that scientific collaboration boosted publication on the topic.

Keywords

leaf degradation, organic detritus, ecological processes, scientific production, aquatic metabolism

Resumo

Resumo:: Objetivo: Avaliar a situação geral dos estudos sobre a decomposição da matéria orgânica vegetal em ambientes aquáticos continentais da região subtropical da América do Sul.

Métodos: Utilizamos bancos de dados e compilamos publicações (1990-2018) utilizando combinações de palavras referentes à decomposição, detritos, ambientes aquáticos e países da América do Sul com clima subtropical. As características das publicações foram analisadas ao longo do tempo.

Resultados: Um total de 1.042 publicações foram encontradas, com 106 tratando especificamente do objetivo deste estudo. Em clima subtropical na América do Sul este tópico de pesquisa é incipiente. A maioria dos estudos foi realizada em riachos (39,6%) e avaliou o processo de decomposição e a associação de invertebrados (42,5%). Há uma grande deficiência em estudos realizados em ambientes lênticos (e.g. lagos, 10%).

Conclusão: Os estudos sobre a decomposição de detritos orgânicos em ecossistemas aquáticos na região subtropical da América do Sul são ainda emergentes. Enquanto o conhecimento sobre o papel dos fragmentadores é razoável, poucos estudos têm avaliado a importância de microrganismos no processo de decomposição. Finalmente, nosso estudo demonstrou que as colaborações científicas impulsionaram as publicações sobre o tema.
 

Palavras-chave

degradação foliar, detritos orgânicos, processos ecológicos, produção científica, metabolismo aquático

References

ABELHO, M. From litterfall to breakdown in streams: a review. TheScientificWorldJournal, 2001, 1, 656-680. http://dx.doi.org/10.1100/tsw.2001.103. PMid:12805769.

ALBERTONI, E.F., HEPP, L.U., CARVALHO, C. and PALMA-SILVA, C. Invertebrate composition in submerged macrophyte debris: habitat and degradation time effects. Ecología Austral, 2018, 28, 93-103.

ALBERTONI, E.F., PALMA-SILVA, C., TRINDADE, C.R.T. and FURLANETTO, L.M. Field evidence of the influence of aquatic macrophytes on water quality in a shallow eutrophic lake over a 13-year period. Acta Limnologica Brasiliensia, 2014, 26(2), 176-185. http://dx.doi.org/10.1590/S2179-975X2014000200008.

ARIA, M. and CUCCURULLO, C. Bibliometrix: An R-tool for comprehensive science mapping analysis. Journal of Informetrics, 2017, 11(4), 959-975. http://dx.doi.org/10.1016/j.joi.2017.08.007.

BARBOSA, F.G. The scientific literature on Limnoperna fortunei (Dunker 1857) from 1982 to 2012. Anais da Academia Brasileira de Ciências, 2014, 86(3), 1373-1384. http://dx.doi.org/10.1590/0001-3765201420130281. PMid:25140499.

BÄRLOCHER, F. Leaching. In: M.A.S. GRAÇA, F. BÄRLOCHER and M.O. GESSNER. Methods to study litter decomposition: a practical guide. Dordrecht: Springer, 2005. http://dx.doi.org/10.1007/1-4020-3466-0_5.

BELDA, M., HOLTANOVÁ, E., HALENKA, T. and KALVOVÁ, J. Climate classification revisited: from Köppento Trewartha. Climate Research, 2014, 59(1), 1-13. http://dx.doi.org/10.3354/cr01204.

BIASI, C., FONTANA, L.E., RESTELLO, R.M. and HEPP, L.U. Effect of invasive Hovenia dulcis on microbial decomposition and diversity of hyphomycetes in Atlantic forest streams. Fungal Ecology, 2020, 44, 100890. http://dx.doi.org/10.1016/j.funeco.2019.100890.

BORGES, S.H. A importância do ensino de pós-graduação na formação de recursos humanos para o estudo da biodiversidade no Brasil: um estudo de caso na ornitologia. Biota Neotropica, 2008, 8(1), 21-27. http://dx.doi.org/10.1590/S1676-06032008000100002.

BOYERO, L., PEARSON, R.G., GESSNER, M.O., BARMUTA, L.A., FERREIRA, V., GRAÇA, M.A., DUDGEON, D., BOULTON, A.J., CALLISTO, M., CHAUVET, E., HELSON, J.E., BRUDER, A., ALBARIÑO, R.J., YULE, C.M., ARUNACHALAM, M., DAVIES, J.N., FIGUEROA, R., FLECKER, A.S., RAMÍREZ, A., DEATH, R.G., IWATA, T., MATHOOKO, J.M., MATHURIAU, C., GONÇALVES JUNIOR, J.F., MORETTI, M.S., JINGGUT, T., LAMOTHE, S., M’ERIMBA, C., RATNARAJAH, L., SCHINDLER, M.H., CASTELA, J., BURIA, L.M., CORNEJO, A., VILLANUEVA, V.D. and WEST, D.C. A global experiment suggests climate warming will not accelerate litter decomposition in streams but might reduce carbon sequestration. Ecology Letters, 2011, 14(3), 289-294. http://dx.doi.org/10.1111/j.1461-0248.2010.01578.x. PMid:21299824.

BOYERO, L., RAMIREZ, A., DUDGEON, D. and PEARSON, R.G. Are tropical streams really different? Journal of the North American Benthological Society, 2009, 28(2), 397-403. http://dx.doi.org/10.1899/08-146.1.

CANIZARES-ESGUERRA, J. and CUETO, M. Latin American science: The long view. NACLA Report on the Americas, 2002, 35(5), 18-22. http://dx.doi.org/10.1080/10714839.2002.11722530.

CARVALHO, C., HEPP, L.U., PALMA-SILVA, C. and ALBERTONI, E.F. Decomposition of macrophytes in a shallow subtropical lake. Limnologica, 2015, 53, 1-9. http://dx.doi.org/10.1016/j.limno.2015.04.003.

COLE, L.J., STOCKAN, J. and HELLIWELL, R. Managing riparian buffer strips to optimise ecosystem services: A review. Agriculture, Ecosystems & Environment, 2020, 296, 106891. http://dx.doi.org/10.1016/j.agee.2020.106891.

COWAN, C.A., OSWOOD, M.W., BUTTIMORE, C.A. and FLANAGAN, P.W. Processing and macroinvertebrate colonization of detritus in an Alaskan subarctic stream. Holarctic Ecology, 1983, 6(4), 340-348. http://dx.doi.org/10.1111/j.1600-0587.1983.tb01228.x.

CUNHA-SANTINO, M.B., SCIESSERE, L. and BIANCHINI JUNIOR, I. As atividades das enzimas na decomposição da matéria orgânica particulada em ambientes aquáticos continentais. Oecologia Brasiliensis, 2008, 12(1), 30-41.

DIAS, M.S., ZUANON, J., COUTO, T.B.A., CARVALHO, M., CARVALHO, L.N., ESPÍRITO-SANTO, H.M.V., FREDERICO, R., LEITÃO, R.P., MORTATI, A.F., PIRES, T.H.S., TORRENTE-VILARA, G., VALE, J., ANJOS, M.B., MENDONÇA, F.P. and TEDESCO, P.A. Trends in studies of Brazilian stream fish assemblages. Natureza & Conservação, 2016, 14(2), 106-111. http://dx.doi.org/10.1016/j.ncon.2016.06.003.

DOMÍNGUEZ, E. and SANTOS, D.A. Co-authorship networks (and other contextual factors) behind the growth of taxonomy of South American Ephemeroptera: a scientometric approach. Zootaxa, 2014, 3754(1), 59-85. http://dx.doi.org/10.11646/zootaxa.3754.1.3. PMid:24869680.

DUDZIAK, E.A. Quem financia a pesquisa brasileira? Um estudo InCites sobre o Brasil e a USP [online]. São Paulo: SIBiUSP, 2018 [viewed 17 Jan. 2021]. Available from http://www.sibi.usp.br/noticias/quem-financia-a-pesquisa-brasileira-um-estudo-incites-sobre-o-brasil-e-a-usp/

FARJALLA, V.F., MARINHO, C.C. and ESTEVES, F.A. Uptake of oxygen in the initial stages of decomposition of aquatic macrophytes and detritus from terrestrial vegetation in a tropical coastal lagoon. Acta Limnologica Brasiliensia, 1999, 11(2), 185-193.

FONTANA, L.E., TONELLO, G., RESTELLO, R.M. and HEPP, L.U. A presença da agricultura altera a decomposição foliar e a composição das comunidades de invertebrados aquáticos em riachos subtropicais. Revista Perspectivas (Cochambamba), 2020, 44(165), 7-20. http://dx.doi.org/10.31512/persp.v.44.n.165.2020.70.p.7-20.

GESSNER, M.O., CHAUVET, E. and DOBSON, M. A perspective on leaf litter breakdown in streams. Oikos, 1999, 85(2), 377-384. http://dx.doi.org/10.2307/3546505.

GESSNER, M.O., SWAN, C.M., DANG, C.K., MCKIE, B.G., BARDGETT, R.D., WALL, D.H. and HATTENSCHWILER, S. Diversity meets decomposition. Trends in Ecology & Evolution, 2010, 25(6), 372-380. http://dx.doi.org/10.1016/j.tree.2010.01.010. PMid:20189677.

GONÇALVES JUNIOR, J.F. and CALLISTO, M. Organic-matter dynamics in the riparian zone of a tropical headwater stream in Southern Brasil. Aquatic Botany, 2013, 109, 8-13. http://dx.doi.org/10.1016/j.aquabot.2013.03.005.

GONÇALVES JUNIOR, J.F., FRANÇA, J.S., MEDEIROS, A.O., ROSA, C.A. and CALLISTO, M. Leaf breakdown in a tropical stream. International Review of Hydrobiology, 2006a, 91(2), 164-177. http://dx.doi.org/10.1002/iroh.200510826.

GONÇALVES JUNIOR, J.F., FRANÇA, J.S. and CALLISTO, M. Dynamics of allochthonous organic matter in a tropical Brazilian headstream. Brazilian Archives of Biology and Technology, 2006b, 49(6), 967-973. http://dx.doi.org/10.1590/S1516-89132006000700014.

GONÇALVES JUNIOR, J.F., GRAÇA, M.A.S. and CALLISTO, M. Litter decomposition in a Cerrado savannah stream is retarded by leaf toughness, low dissolved nutrients and a low density of shredders. Freshwater Biology, 2007, 52(8), 1440-1451. http://dx.doi.org/10.1111/j.1365-2427.2007.01769.x.

GRAÇA, M.A.S. The role of invertebrates on leaf decomposition in streams: a review. International Review of Hydrobiology, 2001, 86(4-5), 383-393. http://dx.doi.org/10.1002/1522-2632(200107)86:4/5<383::AID-IROH383>3.0.CO;2-D.

GRAÇA, M.A., FERREIRA, V., CANHOTO, C., ENCALADA, A.C., GUERRERO‐BOLAÑO, F., WANTZEN, K.M. and BOYERO, L. A conceptual model of litter breakdown in low order streams. International Review of Hydrobiology, 2015, 100(1), 1-12. http://dx.doi.org/10.1002/iroh.201401757.

GUIMARÃES, P.S., ZIGIOTTO, L., GARCIA, M., DELLAMANO-OLIVEIRA, M.J., VIEIRA, A.A. and GIROLDO, D. Phytoplankton relationship with bacterioplankton, dissolved carbohydrates and water characteristics in a subtropical coastal lagoon. Journal of Limnology, 2013, 72(3), 543-554. http://dx.doi.org/10.4081/jlimnol.2013.e45.

GULIS, V. and BÄRLOCHER, F. Fungi: Biomass, Production, and Community Structure. In. F.R. HAUER and G.A. LAMBERTI. Methods in Stream Ecology. Elsevier, 2017, pp. 177-192. http://dx.doi.org/10.1016/B978-0-12-416558-8.00010-X

HEPP, L.U., URBIM, F.M., TONELLO, G., LOUREIRO, R., SAUSEN, T.L., FORNEL, R. and RESTELLO, R.M. Influence of land-use on structural and functional macroinvertebrate composition communities associated on detritus in Subtropical Atlantic Forest streams. Acta Limnologica Brasiliensia, 2016, 28(0), 1-10. http://dx.doi.org/10.1590/S2179-975X0616.

HIEBER, M. and GESSNER, M.O. Contribution of stream detritivores, fungi, and bacteria to leaf breakdown based on biomass estimates. Ecology, 2002, 83(4), 1026-1038. http://dx.doi.org/10.1890/0012-9658(2002)083[1026:COSDFA]2.0.CO;2.

HOLZENTHAL, R.W., BLAHNIK, R.J., PRATHER, A.L. and KJER, K.M. Order Trichoptera Kirby, 1813 (Insecta), Caddisflies. Zootaxa, 2007, 1668(1), 639-698. http://dx.doi.org/10.11646/zootaxa.1668.1.29.

HOORENS, B., AERTS, R. and STROETENGA, M. Does initial litter chemistry explain litter mixture effects on decomposition? Oecologia, 2003, 137(4), 578-586. http://dx.doi.org/10.1007/s00442-003-1365-6. PMid:14505026.

HUGGETT, S. The rise of Latin American science. Research Trends, 2012, 31, 15-18.

IRONS, J.G., OSWOOD, M.W., STOUT, R.J. and PRINGLE, C.M. Latitudinal patterns in leaf litter breakdown: is temperature really important? Freshwater Biology, 1994, 32(2), 401-411. http://dx.doi.org/10.1111/j.1365-2427.1994.tb01135.x.

JUNQUEIRA, N.T., MAGNAGO, L.F. and POMPEU, P.S. Assessing fish sampling effort in studies of Brazilian streams. Scientometrics, 2020, 123(2), 841-860. http://dx.doi.org/10.1007/s11192-020-03418-4.

KANDUS, P., MINOTTI, P.G., MORANDEIRA, N.S., GRIMSON, R., GONZÁLEZ TRILLA, G., GONZÁLEZ, E.B., SAN MARTÍN, L. and GAYOL, M.P. Remote sensing of wetlands in South America: status and challenges. International Journal of Remote Sensing, 2017, 39(4), 993-1016. http://dx.doi.org/10.1080/01431161.2017.1395971.

KREVŠ, A. and KUČINSKIENE, A. Influence of invasive Acer negundo leaf litter on benthic microbial abundance and activity in the littoral zone of a temperate river in Lithuania. Knowledge and Management of Aquatic Ecosystems, 2017, 418, 418-426. http://dx.doi.org/10.1051/kmae/2017015.

LETA, J. and CHAIMOVICH, H. Recognition and international collaboration: The Brazilian case. Scientometrics, 2002, 53(3), 325-335. http://dx.doi.org/10.1023/A:1014868928349.

LI, Q., MOORHEAD, D.L., DEFOREST, J.L., HENDERSON, R., CHEN, J. and JENSEN, R. Mixed litter decomposition in a managed Missouri Ozark forest ecosystem. Forest Ecology and Management, 2009, 257(2), 688-694. http://dx.doi.org/10.1016/j.foreco.2008.09.043.

LIGEIRO, R., MORETTI, M.S., GONÇALVES JUNIOR, J.F. and CALLISTO, M. What is more important/ for invertebrate colonization in a stream with low-quality litter inputs: exposure time or leaf species? Hydrobiologia, 2010, 654(1), 125-136. http://dx.doi.org/10.1007/s10750-010-0375-8.

LIU, X., ZHANG, L. and HONG, S. Global biodiversity research during 1900-2009: a bibliometric analysis. Biodiversity and Conservation, 2011, 20(4), 807-826. http://dx.doi.org/10.1007/s10531-010-9981-z.

MAY, R.M. The scientific wealth of nations. Science, 1997, 275(5301), 793-796. http://dx.doi.org/10.1126/science.275.5301.793.

MELO, A.S., BINI, L.M. and CARVALHO, P. Brazilian articles in international journals on Limnology. Scientometrics, 2006, 67(2), 187-199. http://dx.doi.org/10.1007/s11192-006-0093-1.

NERES-LIMA, V., BRITO, E.F., KRSULOVIĆ, F.A., DETWEILER, A.M., HERSHEY, A.E. and MOULTON, T.P. High importance of autochthonous basal food source for the food web of a Brazilian tropical stream regardless of shading. International Review of Hydrobiology, 2016, 101(3-4), 132-142. http://dx.doi.org/10.1002/iroh.201601851.

NERES-LIMA, V., MACHADO-SILVA, F., BAPTISTA, D.F., OLIVEIRA, R.B., ANDRADE, P.M., OLIVEIRA, A.F., SASADA-SATO, C.Y., SILVA-JÚNIOR, E.F., FEIJÓ-LIMA, R., ANGELINI, R., CAMARGO, P.B. and MOULTON, T.P. Allochthonous and autochthonous carbon flows in food webs of tropical forest streams. Freshwater Biology, 2017, 62(6), 1012-1023. http://dx.doi.org/10.1111/fwb.12921.

NEVES, T.K., LAVARDA, R.A.B. and MARTINS, C.B. Práticas estratégicas de internacionalização de programas de pós-graduação: estudo de caso em uma universidade pública do Sul do Brasil. Revista Eletronica de Negócios Internacionais, 2019, 14(2), 93-110. http://dx.doi.org/10.18568/internext.v14i2.465.

OLIVEIRA-FILHO, A., BUDKE, J.C., JARENKOW, J.A., EISENLOHR, P.V. and NEVES, D.R.M. Delving into the variations in tree species composition and richness across South American subtropical Atlantic and Pampean forests. Journal of Plant Ecology, 2015, 8(3), 242-260. http://dx.doi.org/10.1093/jpe/rtt058.

PADIAL, A.A., BINI, L.M. and THOMAZ, S.M. The study of aquatic macrophytes in Neotropics: a scientometrical view of the main trends and gaps. Brazilian Journal of Biology = Revista Brasileira de Biologia, 2008, 68(4, Suppl.), 1051-1059. http://dx.doi.org/10.1590/S1519-69842008000500012. PMid:19197475.

PEREIRA, S.A., TRINDADE, C.R.T., ALBERTONI, E.F. and PALMA-SILVA, C. Aquatic macrophytes as indicators of water quality in subtropical shallow lakes, Southern Brazil. Acta Limnologica Brasiliensia, 2012, 24(1), 52-63. http://dx.doi.org/10.1590/S2179-975X2012005000026.

PIECZYŃSKA, E. Sources and fate of detritus in the shore zone of lakes. Aquatic Botany, 1986, 25, 153-166. http://dx.doi.org/10.1016/0304-3770(86)90051-3.

QUIROS, R. Predictors of relative fish biomass in lakes and reservoirs of Argentina. Canadian Journal of Fisheries and Aquatic Sciences, 1990, 47(5), 928-939. http://dx.doi.org/10.1139/f90-107.

R CORE TEAM R: A language and environment for statistical computing. Vienna: R Foundation for Statistical Computing, 2019. Available from: http://www.R-project.org/.

RAJA, H.A., SHEARER, C.A. and TSUI, C.K.-M. Freshwater Fungi. Chichester: John Wiley & Sons, Ltd, 2018. http://dx.doi.org/10.1002/9780470015902.a0027210

REGALADO, A. Brazilian science: Riding a gusher. Science, 2010, 330(6009), 1306-1312. http://dx.doi.org/10.1126/science.330.6009.1306. PMid:21127226.

SIDONE, O.J.G., HADDAD, E.A. and MENA-CHALCO, J.P. A ciência nas regiões brasileiras: evolução da produção e das redes de colaboração científica. Transinformação, 2016, 28(1), 15-32. http://dx.doi.org/10.1590/2318-08892016002800002.

SILVA, W.M. and PERBICHE-NEVES, G. Trends in freshwater microcrustaceans studies in Brazil between 1990 and 2014. Brazilian Journal of Biology = Revista Brasileira de Biologia, 2017, 77(3), 526-534. http://dx.doi.org/10.1590/1519-6984.17915. PMid:27925015.

SONG, N., YAN, Z.S., CAI, H.Y. and JIANG, H.L. Effect of temperature on submerged macrophyte litter decomposition within sediments from a large shallow and subtropical freshwater lake. Hydrobiologia, 2013, 714(1), 131-144. http://dx.doi.org/10.1007/s10750-013-1529-2.

SUBERKROPP, K. and KLUG, M.J. Fungi and bacteria associated with leaves during processing in a woodland stream. Ecology, 1976, 57(4), 707-719. http://dx.doi.org/10.2307/1936184.

TELÖKEN, F., ALBERTONI, E.F. and PALMA-SILVA, C. Leaf degradation of Salix humboldtiana Willd. (Salicaceae) and invertebrate colonization in a subtropical lake (Brazil). Acta Limnologica Brasiliensia, 2011, 23(1), 30-41. http://dx.doi.org/10.4322/actalb.2011.016.

TELÖKEN, F., ALBERTONI, E.F., HEPP, L.U. and PALMA-SILVA, C. Aquatic invertebrates associated with Salix humboldtiana litter in a subtropical stream. Ecología Austral, 2014, 24, 220-228. http://dx.doi.org/10.25260/EA.14.24.2.0.25.

TIEGS, S.D., COSTELLO, D.M., ISKEN, M.W., WOODWARD, G., MCINTYRE, P.B., GESSNER, M.O., CHAUVET, E., GRIFFITHS, N.A., FLECKER, A.S., ACUÑA, V., ALBARIÑO, R., ALLEN, D.C., ALONSO, C., ANDINO, P., ARANGO, C., AROVIITA, J., BARBOSA, M.V.M., BARMUTA, L.A., BAXTER, C.V., BELL, T.D.C., BELLINGER, B., BOYERO, L., BROWN, L.E., BRUDER, A., BRUESEWITZ, D.A., BURDON, F.J., CALLISTO, M., CANHOTO, C., CAPPS, K.A., CASTILLO, M.M., CLAPCOTT, J., COLAS, F., COLÓN-GAUD, C., CORNUT, J., CRESPO-PÉREZ, V., CROSS, W.F., CULP, J.M., DANGER, M., DANGLES, O., EYTO, E., DERRY, A.M., VILLANUEVA, V.D., DOUGLAS, M.M., ELOSEGI, A., ENCALADA, A.C., ENTREKIN, S., ESPINOSA, R., ETHAIYA, D., FERREIRA, V., FERRIOL, C., FLANAGAN, K.M., FLEITUCH, T., SHAH, J.J.F., FRAINER, A., FRIBERG, N., FROST, P.C., GARCIA, E.A., LAGO, L.G., SOTO, P.E.G., GHATE, S., GILING, D.P., GILMER, A., GONÇALVES JUNIOR, J.F., GONZALES, R.K., GRAÇA, M.A.S., GRACE, M., GROSSART, H.P., GUÉROLD, F., GULIS, V., HEPP, L.U., HIGGINS, S., HISHI, T., HUDDART, J., HUDSON, J., IMBERGER, S., IÑIGUEZ-ARMIJOS, C., IWATA, T., JANETSKI, D.J., JENNINGS, E., KIRKWOOD, A.E., KONING A.A., KOSTEN, S., KUEHN, K.A., LAUDON, H., LEAVITT, P.R., SILVA, A.L.L., LEROUX, S.J., LEROY, C.J., LISI, P.J., MACKENZIE, R., MARCARELLI, A.M., MASESE, F.O., MCKIE, B.G., MEDEIROS, A.O., MEISSNER, K., MILIŠA, M., MISHRA, S., MIYAKE, Y., MOERKE, A., MOMBRIKOTB, S., MOONEY, R., MOULTON, T., MUOTKA, T., NEGISHI, J.N., NERES-LIMA, V., NIEMINEN, M.L., NIMPTSCH, J., ONDRUCH, J., PAAVOLA, R., PARDO, S., PEETERS, P.C.J., POZO, J., PRINGLE, C., PRUSSIAN, A., QUENTA, E., QUESADA, A., REID, B., RICHARDSON, J.S., RIGOSI, A., RINCÓN, J., RÎŞNOVEANU, G., ROBINSON, C.T., RODRÍGUEZ-GALLEGO, L., ROYER, T.V., RUSAK, J.A., SANTAMANS, A.C., SELMECZY, G.B., SIMIYU, G., SKUJA,, A., SMYKLA, J., SRIDHAR, K.R., SPONSELLER, R., STOLER, A., SWAN, C.M., SZLAG, D., MELLO, F.T., TONKIN, J.D., UUSHEIMO, S., VEACH, A.M., VILBASTE, S., VOUGHT, LBM., WANG, C., WEBSTER, J.R., WILSON, P.B., WOELFL, S., XENOPOULOS, M.A., YATES, A.G., YOSHIMURA, C., YULE, C.M., ZHANG, Y.X., and ZWART, J.A. Global patterns and drivers of ecosystem functioning in rivers and riparian zones. Science Advances, 2019, 5(1), 1-5. http://dx.doi.org/10.1126/sciadv.aav0486.

TONELLO, G., NAZILOSKI, L.A., TONIN, A.M., RESTELLO, R.M. and HEPP, L.U. Effect of Phylloicus on leaf breakdown in a subtropical stream. Limnetica, 2016, 35(1), 243-252.

TONIN, A.M., HEPP, L.U. and GONÇALVES, J.F. Spatial variability of plant litter decomposition in stream networks: from litter bags to watersheds. Ecosystems, 2018, 21(3), 567-581. http://dx.doi.org/10.1007/s10021-017-0169-1.

TONIN, A.M., HEPP, L.U., RESTELLO, R.M. and GONÇALVES JUNIOR, J.F. Understanding of colonization and breakdown of leaves by invertebrates in a tropical stream is enhanced by using biomass as well as count data. Hydrobiologia, 2014, 740(1), 79-88. http://dx.doi.org/10.1007/s10750-014-1939-9.

TOURINHO, M.P., COSTA, A.P., MARTINS, K.P., BANDEIRA, M.G.S. and BARBOSA, F.G. Scientific knowledge on threatened species of the Brazilian Red List: freshwater fish as case study. Environmental Biology of Fishes, 2020, 103(6), 719-731. http://dx.doi.org/10.1007/s10641-020-00978-5.

TREVISAN, A. and HEPP, L.U. Dinâmica de componentes químicos vegetais e fauna associada ao processo de decomposição de espécies arbóreas em um riacho do norte do Rio Grande do Sul, Brasil. Neotropical Biology and Conservation, 2007, 2(1), 55-60.

VANNOTE, R.L., MINSHALL, G.W., CUMMINS, K.W., SEDELL, J.R. and CUSHING, C.E. The river continuum concept. Canadian Journal of Fisheries and Aquatic Sciences, 1980, 37(1), 130-137. http://dx.doi.org/10.1139/f80-017.

WALZ, N. Publications of BRIC- and Outreach Countries in International Journals on Limnology. International Review of Hydrobiology, 2010, 95(4-5), 298-312. http://dx.doi.org/10.1002/iroh.201011243.

WARD, J.V. and STANFORD, J.A. Thermal responses in the evolutionary ecology of aquatic insects. Annual Review of Entomology, 1982, 27(1), 97-117. http://dx.doi.org/10.1146/annurev.en.27.010182.000525.

WEBSTER, J.R. and BENFIELD, E.F. Vascular plant breakdown in freshwater ecosystems. Annual Review of Ecology and Systematics, 1986, 17(1), 567-594. http://dx.doi.org/10.1146/annurev.es.17.110186.003031.

World Bank. World development indicators database [online]. 2021, [viewed 16 Jan. 2021]. Available from: http://data.world bank.org.

YULE, C.M., LEONG, M.Y., LIEW, K.C., RATNARAJAH, R., SCHMIDT, K., WONG, H.M., PEARSON, R.G. and BOYERO, L. Shredders in Malaysia: abundance and richness are higher in cool upland tropical streams. Journal of the North American Benthological Society, 2009, 28(2), 404-441. http://dx.doi.org/10.1899/07-161.1.
 


Submitted date:
03/25/2020

Accepted date:
03/09/2021

Publication date:
04/23/2021

608326a0a9539526242bc1b3 alb Articles
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Acta Limnol. Bras. (Online)

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