Anne D Bjorkman
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Explore the profile of Anne D Bjorkman including associated specialties, affiliations and a list of published articles.
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32
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1305
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Recent Articles
1.
Osterman W, Hagan J, Whitton J, Bjorkman A
New Phytol
. 2025 Feb;
246(1):47-60.
PMID: 39925339
The relationship between polyploid formation, triploid fitness and plant reproduction has been studied for over a century, and uniparental reproduction has long been recognized to play a crucial role in...
2.
Hahn G, Damasceno G, Alvarez-Davila E, Aubin I, Bauters M, Bergmeier E, et al.
Nat Ecol Evol
. 2024 Dec;
9(2):237-248.
PMID: 39627407
Plant communities are composed of species that differ both in functional traits and evolutionary histories. As species' functional traits partly result from their individual evolutionary history, we expect the functional...
3.
Sanczuk P, Verheyen K, Lenoir J, Zellweger F, Lembrechts J, Rodriguez-Sanchez F, et al.
Science
. 2024 Oct;
386(6718):193-198.
PMID: 39388545
Climate change is commonly assumed to induce species' range shifts toward the poles. Yet, other environmental changes may affect the geographical distribution of species in unexpected ways. Here, we quantify...
4.
Barbero-Palacios L, Barrio I, Garcia Criado M, Kater I, Petit Bon M, Kolari T, et al.
Environ Evid
. 2024 Sep;
13(1):6.
PMID: 39294685
Background: Northern ecosystems are strongly influenced by herbivores that differ in their impacts on the ecosystem. Yet the role of herbivore diversity in shaping the structure and functioning of tundra...
5.
Osterman W, Hill A, Hagan J, Whitton J, Bacon C, Bjorkman A
Am J Bot
. 2024 Apr;
111(8):e16318.
PMID: 38654555
Premise: Numerous studies have found a positive association between dioecy and polyploidy; however, this association presents a theoretical conflict: While polyploids are predicted to benefit from self-reproduction for successful establishment,...
6.
Alison J, Payne S, Alexander J, Bjorkman A, Clark V, Gwate O, et al.
Glob Chang Biol
. 2024 Jan;
30(1):e17078.
PMID: 38273582
Microclimate-proximal climatic variation at scales of metres and minutes-can exacerbate or mitigate the impacts of climate change on biodiversity. However, most microclimate studies are temperature centric, and do not consider...
7.
Martins I, Schrodt F, Blowes S, Bates A, Bjorkman A, Brambilla V, et al.
Science
. 2023 Sep;
381(6662):1067-1071.
PMID: 37676959
Biotic responses to global change include directional shifts in organismal traits. Body size, an integrative trait that determines demographic rates and ecosystem functions, is thought to be shrinking in the...
8.
Garcia Criado M, Myers-Smith I, Bjorkman A, Normand S, Blach-Overgaard A, Thomas H, et al.
Nat Commun
. 2023 Jun;
14(1):3837.
PMID: 37380662
Climate change is leading to species redistributions. In the tundra biome, shrubs are generally expanding, but not all tundra shrub species will benefit from warming. Winner and loser species, and...
9.
von Oppen J, Assmann J, Bjorkman A, Treier U, Elberling B, Nabe-Nielsen J, et al.
Glob Chang Biol
. 2022 Sep;
28(24):7296-7312.
PMID: 36083034
Climate warming is inducing widespread vegetation changes in Arctic tundra ecosystems, with the potential to alter carbon and nutrient dynamics between vegetation and soils. Yet, we lack a detailed understanding...
10.
Staude I, Pereira H, Daskalova G, Bernhardt-Romermann M, Diekmann M, Pauli H, et al.
Ecol Lett
. 2021 Dec;
25(2):466-482.
PMID: 34866301
Species turnover is ubiquitous. However, it remains unknown whether certain types of species are consistently gained or lost across different habitats. Here, we analysed the trajectories of 1827 plant species...