
Stefano Manzoni
Articles
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Sep 13, 2024 |
nature.com | Xianjin He |Steven Allison |Yuanyuan Huang |Stefano Manzoni |Rose Z. Abramoff |Elisa Bruni | +11 more
AbstractMicrobial carbon use efficiency (CUE) affects the fate and storage of carbon in terrestrial ecosystems, but its global importance remains uncertain. Accurately modeling and predicting CUE on a global scale is challenging due to inconsistencies in measurement techniques and the complex interactions of climatic, edaphic, and biological factors across scales.
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Apr 2, 2024 |
hal.science | Elsa Abs |Alexander Chase |Stefano Manzoni |Philippe Ciais
Microbial evolution-An under-appreciated driver of soil carbon cycling Mots clés cycle evolution global change microbe cycle evolution global change microbe Fichier principal Global Change Biology - 2024 - Abs - Microbial evolution An under‐appreciated driver of soil carbon cycling.pdf (4.78 Mo) Télécharger le fichier Origine : Fichiers éditeurs autorisés sur une archive ouverte
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Feb 11, 2024 |
nph.onlinelibrary.wiley.com | Björn Lindahl |Stefano Manzoni |Arjun Chakrawal
Introduction The question of whether the decomposition of complex polymers, such as lignin and similar compounds, represents a significant rate-limiting step to terrestrial carbon (C) cycling has been a subject of extensive research. However, a gap in understanding of the mechanistic controls on the decomposition of these recalcitrant compounds remains (Thevenot et al., 2010; Hall et al., 2020).
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Feb 11, 2024 |
nph.onlinelibrary.wiley.com | Björn Lindahl |Stefano Manzoni |Arjun Chakrawal
Introduction The question of whether the decomposition of complex polymers, such as lignin and similar compounds, represents a significant rate-limiting step to terrestrial carbon (C) cycling has been a subject of extensive research. However, a gap in understanding of the mechanistic controls on the decomposition of these recalcitrant compounds remains (Thevenot et al., 2010; Hall et al., 2020).
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