about
Aridity modulates N availability in arid and semiarid Mediterranean grasslands.Changes in biocrust cover drive carbon cycle responses to climate change in drylands.Decoupling of soil nutrient cycles as a function of aridity in global drylands.Climate and soil attributes determine plant species turnover in global drylands.Biocrust-forming mosses mitigate the negative impacts of increasing aridity on ecosystem multifunctionality in drylands.Structure and functioning of dryland ecosystems in a changing world.Plant species richness and ecosystem multifunctionality in global drylandsMicrobial diversity drives multifunctionality in terrestrial ecosystems.Functional trait diversity maximizes ecosystem multifunctionality.Human impacts and aridity differentially alter soil N availability in drylands worldwideChanges in biocrust cover drive carbon cycle responses to climate change in drylandsPlant spatial patterns identify alternative ecosystem multifunctionality states in global drylandsA missing link between facilitation and plant species coexistence: nurses benefit generally rare species more than common onesSimulated climate change reduced the capacity of lichen-dominated biocrusts to act as carbon sinks in two semi-arid Mediterranean ecosystemsVascular Plants and Biocrusts Modulate How Abiotic Factors Affect Wetting and Drying Events in DrylandsResponse to Comment on "Plant Species Richness and Ecosystem Multifunctionality in Global Drylands"Global ecosystem thresholds driven by aridity
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description
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Miguel Berdugo
@ast
Miguel Berdugo
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Miguel Berdugo
@es
Miguel Berdugo
@nl
Miguel Berdugo
@sl
type
label
Miguel Berdugo
@ast
Miguel Berdugo
@en
Miguel Berdugo
@es
Miguel Berdugo
@nl
Miguel Berdugo
@sl
prefLabel
Miguel Berdugo
@ast
Miguel Berdugo
@en
Miguel Berdugo
@es
Miguel Berdugo
@nl
Miguel Berdugo
@sl
P106
P1153
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P21
P31
P496
0000-0003-1053-8907