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Latitude dictates plant diversity effects on instream decomposition.

Luz BoyeroJavier PérezNaiara López-RojoAlan M ToninFrancisco Correa-AranedaRichard G PearsonJaime BoschRicardo J AlbariñoSankarappan AnbalaganLeon A BarmutaLeah BeesleyFrancis J BurdonAdriano CalimanMarcos CallistoIan C CampbellBradley J CardinaleJ Jesús CasasAna M Chará-SernaSzymon CiapałaÉric ChauvetCheco Colón-GaudAydeé CornejoAaron M DavisMonika DegebrodtEmerson S DiasMaría E DíazMichael M DouglasArturo ElosegiAndrea C EncaladaElvira de EytoRicardo FigueroaAlexander S FleckerTadeusz FleituchAndré FrainerJuliana Silva FrançaErica A GarcíaGabriela GarcíaPavel GarcíaMark O GessnerPaul S GillerJesús E GómezSergio GómezJose F GonçalvesManuel A S GraçaRobert O HallNeusa HamadaLuiz U HeppCang HuiDaichi ImazawaTomoya IwataEdson S A JuniorSamuel KariukiAndrea Landeira-DabarcaMaría LealKaisa LehosmaaCharles M'ErimbaRichard MarchantRenato Tavares MartinsFrank O MaseseMegan R CamdenBrendan G McKieAdriana O MedeirosJen A MiddletonTimo MuotkaJunjiro N NegishiJesús PozoAlonso RamírezRenan de Souza RezendeJohn S RichardsonJosé RincónJuan Rubio-RíosClaudia SerranoAngela R ShafferFran SheldonChristopher M SwanNathalie S D TenkianoScott D TiegsJanine R TolodMichael VernaskyAnne WatsonMourine J YegonCatherine Mary Yule
Published in: Science advances (2021)
Running waters contribute substantially to global carbon fluxes through decomposition of terrestrial plant litter by aquatic microorganisms and detritivores. Diversity of this litter may influence instream decomposition globally in ways that are not yet understood. We investigated latitudinal differences in decomposition of litter mixtures of low and high functional diversity in 40 streams on 6 continents and spanning 113° of latitude. Despite important variability in our dataset, we found latitudinal differences in the effect of litter functional diversity on decomposition, which we explained as evolutionary adaptations of litter-consuming detritivores to resource availability. Specifically, a balanced diet effect appears to operate at lower latitudes versus a resource concentration effect at higher latitudes. The latitudinal pattern indicates that loss of plant functional diversity will have different consequences on carbon fluxes across the globe, with greater repercussions likely at low latitudes.
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