Reading Tea Leaves Worldwide: Decoupled Drivers of Initial Litter Decomposition Mass-Loss Rate and Stabilization.

Judith M. Sarneel,Mariet M. Hefting,Taru Sanden,Johan van den Hoogen,Devin Routh,Bhupendra S. Adhikari,Juha M. Alatalo,Alla Aleksanyan,Inge H. J. Althuizen,Mohammed H. S. A. Alsafran,Jeff W. Atkins,Laurent Augusto,Mika Aurela, Aleksej V. Azarov,Isabel C. Barrio,Claus Beier,Maria D. Bejarano,Sue E. Benham,Bjorn Berg, Nadezhda V. Bezler,Katrin Bjornsdottir,Martin A. Bolinder,Michele Carbognani,Roberto Cazzolla Gatti,Stefano Chelli, Maxim V. Chistotin,Casper T. Christiansen, Pascal Courtois,Thomas W. Crowther,Michele S. Dechoum,Ika Djukic,Sarah Duddigan,Louise M. Egerton-Warburton,Nicolas Fanin, Maria Fantappie,Silvano Fares,Geraldo W. Fernandes,Nina V. Filippova,Andreas Fliessbach,David Fuentes,Roberto Godoy,Thomas Gruenwald,Gema Guzman,Joseph E. Hawes,Yue He, Jean-Marc Hero,Laura L. Hess,Katja Hogendoorn,Toke T. Hoye,Wilma W. P. Jans,Ingibjorg S. Jonsdottir,Sabina Keller,Sebastian Kepfer-Rojas, Natalya N. Kuz'menko,Klaus S. Larsen,Hjalmar Laudon,Jonas J. Lembrechts, Junhui Li,Jean-Marc Limousin, Sergey M. Lukin,Renato Marques,Cesar Marin,Marshall D. McDaniel, Qi Meek, Genrietta E. Merzlaya,Anders Michelsen,Leonardo Montagnani,Peter Mueller,Rajasekaran Murugan,Isla H. Myers-Smith,Stefanie Nolte,Raul Ochoa-Hueso, Bernard N. Okafor, Vladimir V. Okorkov,Vladimir G. Onipchenko, Maria C. Orozco,Tina Parkhurst,Carlos A. Peres,Matteo Petit Bon,Alessandro Petraglia,Martin Pingel,Corinna Rebmann,Brett R. Scheffers,Inger Schmidt,Mary C. Scholes,Efrat Sheffer, Lyudmila K. Shevtsova,Stuart W. Smith,Adriano Sofo,Pablo R. Stevenson,Barbora Strouhalova,Anders Sundsdal,Rafael B. Suhs, Gebretsadik Tamene,Haydn J. D. Thomas,Duygu Tolunay,Marcello Tomaselli,Simon Tresch,Dominique L. Tucker,Michael D. Ulyshen,Alejandro Valdecantos,Vigdis Vandvik,Elena I. Vanguelova,Kris Verheyen,Xuhui Wang,Laura Yahdjian, Xaris S. Yumashev,Joost A. Keuskamp

Ecology letters(2024)

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摘要
The breakdown of plant material fuels soil functioning and biodiversity. Currently, process understanding of global decomposition patterns and the drivers of such patterns are hampered by the lack of coherent large-scale datasets. We buried 36,000 individual litterbags (tea bags) worldwide and found an overall negative correlation between initial mass-loss rates and stabilization factors of plant-derived carbon, using the Tea Bag Index (TBI). The stabilization factor quantifies the degree to which easy-to-degrade components accumulate during early-stage decomposition (e.g. by environmental limitations). However, agriculture and an interaction between moisture and temperature led to a decoupling between initial mass-loss rates and stabilization, notably in colder locations. Using TBI improved mass-loss estimates of natural litter compared to models that ignored stabilization. Ignoring the transformation of dead plant material to more recalcitrant substances during early-stage decomposition, and the environmental control of this transformation, could overestimate carbon losses during early decomposition in carbon cycle models.
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citizen science,environmental drivers,global change,litter decomposition,mass loss,soil organic matter formation,stabilization,tea bag index
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