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Global Change Biology · 2021 · Vol. 27 · Issue 11 · Wiley
Increasing soil organic carbon (SOC) stocks is a promising way to mitigate the increase in atmospheric CO 2 concentration. Based on a simple ratio between CO 2 anthropogenic emissions and SOC stocks worldwide, it has been suggested that a 0.4% (4 per 1000) yearly increase in SOC stocks could compensate for current anthropogenic CO 2 emissions. Here, we used a reverse RothC modelling approach to estimate the amount of C inputs...
Global Change Biology · 2020 · Vol. 26 · Issue 1 · Wiley
There is growing international interest in better managing soils to increase soil organic carbon (SOC) content to contribute to climate change mitigation, to enhance resilience to climate change and to underpin food security, through initiatives such as international ‘4p1000’ initiative and the FAO's Global assessment of SOC sequestration potential (GSOCseq) programme. Since SOC content of soils cannot be easily measured, a ke...
Global Ecology and Biogeography · 2019 · Vol. 28 · Issue 2 · Wiley
Aim Plant functional groups are widely used in community ecology and earth system modelling to describe trait variation within and across plant communities. However, this approach rests on the assumption that functional groups explain a large proportion of trait variation among species. We test whether four commonly used plant functional groups represent variation in six ecologically important plant traits. Location Tundra bio...
Global Ecology and Biogeography · 2018 · Vol. 27 · Issue 12 · Wiley
Anne D. Bjorkman; Isla H. Myers‐Smith; Sarah C. Elmendorf; Signe Normand; Haydn J. D. Thomas; Juha M. Alatalo; Heather Alexander; Alba Anadon‐Rosell; Sandra Angers‐Blondin; Yang Bai; Gaurav Baruah; Mariska te Beest; Logan Berner; Robert G. Björk; Daan Blok; Helge Bruelheide; Agata Buchwal; Allan Buras; Michele Carbognani; Katherine Christie; Laura S. Collier; Elisabeth J. Cooper; J. Hans C. Cornelissen; Katharine J. M. Dickinson; Stefan Dullinger; Bo Elberling; Anu Eskelinen; Bruce C. Forbes; Esther R. Frei; Maitane Iturrate‐Garcia; Megan K. Good; Oriol Grau; Peter Green; Michelle Greve; Paul Grogan; Sylvia Haider; Tomáš Hájek; Martin Hallinger; Konsta Happonen; Karen A. Harper; Monique M. P. D. Heijmans; Gregory H. R. Henry; Luise Hermanutz; Rebecca E. Hewitt; Robert D. Hollister; James Hudson; Karl Hülber; Colleen M. Iversen; Francesca Jaroszynska; Borja Jiménez‐Alfaro; Jill Johnstone; Rasmus Halfdan Jorgensen; Elina Kaarlejärvi; Rebecca Klady; Jitka Klimešová; Annika Korsten; Sara Kuleza; Aino Kulonen; Laurent J. Lamarque; Trevor Lantz; Amanda Lavalle; Jonas J. Lembrechts; Esther Lévesque; Chelsea J. Little; Miska Luoto; Petr Macek; Michelle C. Mack; Rabia Mathakutha; Anders Michelsen; Ann Milbau; Ulf Molau; John W. Morgan; Martin Alfons Mörsdorf; Jacob Nabe‐Nielsen; Sigrid Schøler Nielsen; Josep M. Ninot; Steven F. Oberbauer; Johan Olofsson; Vladimir G. Onipchenko; Alessandro Petraglia; Catherine Pickering; Janet S. Prevéy; Christian Rixen; Sabine B. Rumpf; Gabriela Schaepman‐Strub; Philipp Semenchuk; Rohan Shetti; Nadejda A. Soudzilovskaia; Marko J. Spasojevic; James David Mervyn Speed; Lorna E. Street; Katharine Suding; Ken D. Tape; Marcello Tomaselli; Andrew Trant; Urs A. Treier; Jean‐Pierre Tremblay; Maxime Tremblay; Susanna Venn; Anna‐Maria Virkkala; Tage Vowles; Stef Weijers; Martin Wilmking; Sonja Wipf; Tara Zamin
Motivation The Tundra Trait Team (TTT) database includes field‐based measurements of key traits related to plant form and function at multiple sites across the tundra biome. This dataset can be used to address theoretical questions about plant strategy and trade‐offs, trait–environment relationships and environmental filtering, and trait variation across spatial scales, to validate satellite data, and to inform Earth system mo...
Global Change Biology · 2017 · Vol. 23 · Issue 4 · Wiley
Widespread global changes, including rising atmospheric CO 2 concentrations, climate warming and loss of biodiversity, are predicted for this century; all of these will affect terrestrial ecosystem processes like plant litter decomposition. Conversely, increased plant litter decomposition can have potential carbon‐cycle feedbacks on atmospheric CO 2 levels, climate warming and biodiversity. But predicting litter decomposition...
Molecular Ecology · 2009 · Vol. 18 · Issue 3 · Wiley
Barriers along a watercourse and interconnections between drainage systems are dynamic landscape elements that are expected to play major roles in the dispersal and genetic structure of fish species. The objective of this study was to assess the role of these elements using creek chub ( Semotilus atromaculatus ) in the Mastigouche Wildlife Reserve (Québec, Canada) as model. Numerous impassable waterfalls and interconnections a...
Molecular Ecology · 2002 · Vol. 11 · Issue 11 · Wiley
Current evolutionary forces and historical processes interact to shape the distribution of neutral genetic variability within and among populations. Focusing on the genetics of recently introduced organisms offers a good opportunity to understand the relative importance of these factors. This study concerns variation at 8 polymorphic microsatellite loci in 30 populations of Biomphalaria pfeifferi . The sampling area spans most...