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Biodiversity of leaf litter fungi in streams along a latitudinal gradient
ArticleAbstract: Global patterns of biodiversity have emerged for soil microorganisms, plants and animals, and the exPalabras claves:Aquatic fungi, Global biodiversity, Latitudinal diversity gradient, litter decomposition, streams, TEMPERATUREAutores:Albariño R.J., Andrea C. Encalada, Andrea Landeira-Dabarca, Bärlocher F., Boyero L., Bruder A., Chauvet E., Douglas M.M., Dudgeon D., Fenoglio S., Ferreira V., Frainer A., Garcia E.A., Gessner M.O., Ghate S.D., Giling D.P., Gonçalves V., Gracą M.A.S., Iwata T., Matthaei C.D., McKie B.G., McMaster D., Medeiros A.O., Naggea J., Pozo J., Raposeiro P.M., Seena S., Sobral O., Sridhar K.R., Swan C.M., Tenkiano N.S.D., Yule C.M.Fuentes:googlescopusA conceptual model of litter breakdown in low order streams
ArticleAbstract: The detrital-based food web of many streams and rivers plays a fundamental role in the cycling and rPalabras claves:Aquatic hyphomycetes, decomposition, Organic matter, processing, Shredders, streamsAutores:Andrea C. Encalada, Boyero L., Canhoto C.M., Ferreira V., Gracą M.A.S., Guerrero-Bolaño F., Wantzen K.M.Fuentes:googlescopusGlobal Patterns and Controls of Nutrient Immobilization on Decomposing Cellulose in Riverine Ecosystems
ArticleAbstract: Microbes play a critical role in plant litter decomposition and influence the fate of carbon in rivePalabras claves:cotton strip assay, ecological stoichiometry, Nitrogen, nutrient cycling, Organic matter, phosphorusAutores:Albariño R.J., Arango C.P., Aroviita J., Baxter C.V., Bellinger B.J., Boyero L., Bruder A., Burdon F.J., Callisto M., Camacho A., Canhoto C.M., Capps K.A., Carlos Iñiguez-Armijos, Colas F., Cornut J., Costello D.M., Cross W.F., Danger M., De Eyto E., Derry A.M., Douglas M.M., Elósegui A., Ferreira V., Ferriol C., Fleituch T., Frainer A., Frost P.C., Garcia E.A., García L., García P.E., Gessner M.O., Giling D.P., Gonzales-Pomar R.K., Gracą M.A.S., Griffiths N.A., Grossart H.P., Guérold F.A., Halvorson H.M., Hepp L.U., Higgins S.N., Hishi T., Iwata T., José Elí Rincón, Kirkwood A.E., Koning A.A., Kosten S., Kuehn K.A., Laudon H., Leavitt P.R., Lemes da Silva A.L., Leroux S.J., LeRoy C.J., Lisi P.J., Marcarelli A.M., Masese F.O., Mathie D.M., McIntyre P.B., McKie B.G., Medeiros A.O., Miliša M., Miyake Y., Mooney R.J., Muotka T., Nimptsch J., Paavola R., Pardo I., Parnikoza I.Y., Patrick C.J., Peeters E.T.H.M., Pozo J., Reid B., Richardson J.S., Risnoveanu G., Robinson C.T., Royer T.V., Santamans A.C., Shah J.J.F., Simiyu G.M., Skuja A., Smykla J., Sponseller R.A., Teixeira-de-Mello F., Tiegs S.D., Verónica Crespo-Pérez, Vilbaste S., Villanueva V.D., Webster J.R., Woelfl S., Xenopoulos M.A., Yates A.G., Yule C.M., Zhang Y., Zwart J.A.Fuentes:googlescopusGlobal distribution of a key trophic guild contrasts with common latitudinal diversity patterns
ArticleAbstract: Most hypotheses explaining the general gradient of higher diversity toward the equator are implicitPalabras claves:Global distribution pattern, Latitudinal diversity gradient, Leaf litter quality, Shredder detritivores, Stream ecosystemsAutores:Albariño R.J., Andrea C. Encalada, Arunachalam M., Boulton A.J., Boyero L., Buria L.M., Callisto M., Chará J., Chará-Serna A.M., Chauvet E., Cornejo A., Davies J.N., Dudgeon D., Ferreira V., Gessner M.O., Gonçalves J.F., Gracą M.A.S., Helson J.E., Lamothe S., Li A.O.Y., Moretti M.S., Pearson R.G., Pringle C.M., Ramírez A., Villanueva V.D., Yule C.M., Zuñiga M.C.Fuentes:googlescopusGlobal patterns and drivers of ecosystem functioning in rivers and riparian zones
ArticleAbstract: River ecosystems receive and process vast quantities of terrestrial organic carbon, the fate of whicPalabras claves:Autores:Acuña V., Albariño R.J., Allen D.C., Alonso C., Andrea C. Encalada, Arango C.P., Aroviita J., Barbosa A.F., Barbosa M.V.M., Barmuta L.A., Baxter C.V., Bell T.D.C., Bellinger B.J., Boyero L., Brown L.E., Bruder A., Bruesewitz D.A., Burdon F.J., Callisto M., Canhoto C.M., Capps K.A., Carlos Iñiguez-Armijos, Castillo M.M., Chauvet E., Clapcott J., Colas F., Colón-Gaud C., Cornut J., Costello D.M., Cross W.F., Culp J.M., Danger M., De Eyto E., Derry A.M., Douglas M.M., Elósegui A., Entrekin S., Ethaiya D., Ferreira V., Ferriol C., Flanagan K.M., Flecker A.S., Fleituch T., FRIBERG N., Frost P.C., Garcia E.A., Gessner M.O., Ghate S.D., Giling D.P., Gilmer A., Gonçalves J.F., Gonzales R.K., Gracą M.A.S., Grace M., Griffiths N.A., Grossart H.P., Guérold F.A., Gulis V., Hepp L.U., Higgins S.N., Hishi T., Huddart J., Hudson J., Imberger S., Isken M.W., Iwata T., Janetski D.J., Jennings E., José Elí Rincón, Kirkwood A.E., Koning A.A., Kosten S., Kuehn K.A., Lago L.G., Laudon H., Leavitt P.R., Lemes da Silva A.L., Leroux S.J., LeRoy C.J., Lisi P.J., Mackenzie R.A., Marcarelli A.M., Masese F.O., McIntyre P.B., McKie B.G., Medeiros A.O., Meissner K., Miliša M., Mishra S., Miyake Y., Moerke A., Mombrikotb S., Olivier J. Dangles, Patricio Andino Guarderas, Rodrigo Eduardo Espinosa Barrera, Rodrigo Espinosa, Shah J.J.F., Soto P.E.G., Tiegs S.D., Verónica Crespo-Pérez, Villanueva V.D., Woodward G.Fuentes:googlescopusGlobal patterns of stream detritivore distribution: Implications for biodiversity loss in changing climates
ArticleAbstract: Aim We tested the hypothesis that shredder detritivores, a key trophic guild in stream ecosystems, aPalabras claves:Detritus, DIVERSITY, Guild, latitudinal gradient, leaf litter, Shredders, Species richness, Stream ecosystems, Trophic diversityAutores:Albariño R.J., Andrea C. Encalada, Arunachalam M., Barmuta L.A., Boulton A.J., Boyero L., Buria L.M., Callisto M., Castela J., Chará J., Chará-Serna A.M., Chauvet E., Cornejo A., Davies J.N., Dudgeon D., Ferreira V., Figueroa R., Gessner M.O., Gonçalves J.F., Gracą M.A.S., Helson J.E., Lamothe S., Li A.O.Y., M'Erimba C., Mathooko J.M., Moretti M.S., Pearson R.G., Ramírez A., Swan C.M., Villanueva V.D., Yule C.M., Zuñiga M.C.Fuentes:googlescopusEffects of litter diversity on decomposition and biological colonization of submerged litter in temperate and tropical streams
ArticleAbstract: Detrital food webs of woodland streams depend on terrestrial litter input and, thus, are susceptiblePalabras claves:Biodiversity-ecosystem function relationship, litter decomposition, litter richness, temperate stream, tropical rainforest streamAutores:Andrea C. Encalada, Ferreira V., Gracą M.A.S.Fuentes:googlescopusLatitudinal gradient of nestedness and its potential drivers in stream detritivores
ArticleAbstract: Understanding what mechanisms shape the diversity and composition of biological assemblages across bPalabras claves:Autores:Albariño R.J., Andrea C. Encalada, Arunachalam M., Boyero L., Callisto M., Chará J., Chará-Serna A.M., Chauvet E., Cornejo A., Dudgeon D., Ferreira V., Gessner M.O., Gonçalves J.F., Gracą M.A.S., Helson J.E., Hui C., Mathooko J.M., McKie B.G., Moretti M.S., Pearson R.G., Swan C.M., Yule C.M.Fuentes:googlescopusLeaf-litter decomposition across three flooding regimes in a seasonally flooded Amazonian watershed
OtherAbstract:Palabras claves:decomposition, ergosterol, Inga punctata, leaf litter, microbial decomposers, Stream ecology, Tiputini Biodiversity Station, Triplaris dugandii, tropicalAutores:Andrea C. Encalada, Capps K.A., Flecker A.S., Gracą M.A.S.Fuentes:googlescopusRiparian land use and the relationship between the benthos and litter decomposition in tropical montane streams
ArticleAbstract: Although stream-catchment interactions have been analysed in some detail in temperate environments,Palabras claves:Fungal activity, Litter processing, macroinvertebrate community, Phylloicus sp, Riparian vegetationAutores:Andrea C. Encalada, CAlles J., Canhoto C.M., Ferreira V., Gracą M.A.S.Fuentes:googlescopus