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Julia Kreiner

The genetic architecture of repeated local adaptation to climate in distantly related plants.
The genetic architecture of repeated local adaptation to climate in distantly related plants. Nat Ecol Evol. 2024 Oct; 8(10):1933-1947.
PMID: 39187610

Biotic interactions promote local adaptation to soil in plants.
Biotic interactions promote local adaptation to soil in plants. Nat Commun. 2024 Jun 18; 15(1):5186.
PMID: 38890322

Current status of community resources and priorities for weed genomics research.
Current status of community resources and priorities for weed genomics research. Genome Biol. 2024 05 27; 25(1):139.
PMID: 38802856

Quantifying the role of genome size and repeat content in adaptive variation and the architecture of flowering time in Amaranthus tuberculatus.
Quantifying the role of genome size and repeat content in adaptive variation and the architecture of flowering time in Amaranthus tuberculatus. PLoS Genet. 2023 Dec; 19(12):e1010865.
PMID: 38150485

Temporal collections to study invasion biology.
Temporal collections to study invasion biology. Mol Ecol. 2023 12; 32(24):6729-6742.
PMID: 37873879

Disentangling the genetic consequences of demographic change.
Disentangling the genetic consequences of demographic change. Mol Ecol. 2023 01; 32(2):278-280.
PMID: 36440474

Rapid weed adaptation and range expansion in response to agriculture over the past two centuries.
Rapid weed adaptation and range expansion in response to agriculture over the past two centuries. Science. 2022 12 09; 378(6624):1079-1085.
PMID: 36480621

Repeated origins, widespread gene flow, and allelic interactions of target-site herbicide resistance mutations.
Repeated origins, widespread gene flow, and allelic interactions of target-site herbicide resistance mutations. Elife. 2022 01 17; 11.
PMID: 35037853

Selective ancestral sorting and de novo evolution in the agricultural invasion of Amaranthus tuberculatus.
Selective ancestral sorting and de novo evolution in the agricultural invasion of Amaranthus tuberculatus. Evolution. 2022 01; 76(1):70-85.
PMID: 34806764

Resistance evolution, from genetic mechanism to ecological context.
Resistance evolution, from genetic mechanism to ecological context. Mol Ecol. 2021 11; 30(21):5299-5302.
PMID: 34651370

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