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High-altitude ecosystems shelter important reserves of biodiversity, water provision and soil organic carbon (SOC) stocks. Climate change, agricultural encroachment, overgrazing, and mining activities are endangering ecosystems sustainability, particularly in the high-Andean Puna. Increasing food...


Rolando, J.L.Turin, C.Ramírez, D.Mares, V.Monerris, J.Quiróz, R.[Key ecosystem services and ecological intensification of agriculture in the tropical high-Andean Puna as affected by land-use and climate changes.]Key ecosystem services and ecological intensification of agriculture in the tropical high-Andean Puna as affected by land-use and climate changes.

Expansion of crop production into high-altitude native grasslands is occurring in the Peruvian High-Andes due to climate change and agricultural intensification, with little understanding of the consequences to the ecosystem. The objective of this study was to determine the impact of land-use cha...


Rolando, J.L.Dubeux, J.C.Ramírez, D.Ruiz Moreno, M.Turin, C.Mares, V.Sollenberger, L.Quiróz, R.[Land use effects on soil fertility and nutrient cycling in the Peruvian High-Andean puna grasslands.]Land use effects on soil fertility and nutrient cycling in the Peruvian High-Andean puna grasslands.
Delgado Baquerizo, M.Maestre, F.Gallardo, A.Bowker, M.A.Wallenstein, M.D.Quero, J.L.Ochoa, V.Gozalo, B.García Gomez, M.Soliveres, S.García Palacios, P.Berdugo, M.Valencia, E.Escolar, C.Arredondo, T.Barraza-Cepeda, C.Bran, D.Carreira, J.A.Chaieb, M.Conceição, A.A.Derak, M.Eldridge, D.J.Escudero, A.Espinosa, C.I.Gaitan, J.Gatica, M.G.Gómez Gonzalez, S.Guzmán, E.Gutiérrez, J.R.Florentino, A.Hepper, E.Hernández, R.M.Huber-Sannwald, E.Jankju, M.Liu, J.Mau, R.L.Miriti, M.Monerris, J.Naseri, K.Noumi, Z.Polo, V.Prina, A.Pucheta, A.Ramírez, E.Ramírez, D.Romao, R.Tighe, M.Torres, D.Torres Diaz, C.Ungar, E.D.Val, J.Wamiti, W.Wang, D.Zaady, E.[Decoupling of soil nutrient cycles as a function of aridity in global drylands.]Decoupling of soil nutrient cycles as a function of aridity in global drylands.
Ulrich, W.Soliveres, S.Maestre, F.T.Gotelli, N.J.Quero, J.L.Delgado Baquerizo, M.Bowker, M.A.Eldridge, D.J.Ochoa, V.Gozalo, B.Valencia, E.Berdugo, M.Escolar, C.García Gomez, M.Escudero, E.Prina, A.Alfonso, G.Arredondo, T.Bran, D.Cabrera, O.Cea, A.P.Chaieb, M.Contreras, JacquelineDerak, M.Espinosa, C.I.Florentino, A.Gaitan, J.García Muro, V.Ghiloufi, W.Gómez Gonzalez, S.Gutiérrez, J.R.Hernández, R.M.Huber Sannwald, E.Jankju, M.Mau, R.L.Mendes Hughes, F.Miriti, M.Monerris, J.Muchane, M.Naseri, K.Pucheta, E.Ramírez, D.Raveh, E.Romao, R.L.Torres Diaz, C.Val, J.Veiga, J.P.Wang, D.Yuan, X.Zaady, E.[Climate and soil attributes determine plant species turnover in global drylands.]Climate and soil attributes determine plant species turnover in global drylands.

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