Gregory L Owens
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Explore the profile of Gregory L Owens including associated specialties, affiliations and a list of published articles.
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47
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1359
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Recent Articles
1.
Owens G, Caseys C, Mitchell N, Hubner S, Whitney K, Rieseberg L
Mol Biol Evol
. 2025 Jan;
42(1).
PMID: 39835697
The degree to which evolution repeats itself has implications regarding the major forces driving evolution and the potential for evolutionary biology to be a predictive (vs. solely historical) science. To...
2.
Bemmels J, Starko S, Weigel B, Hirabayashi K, Pinch A, Elphinstone C, et al.
Curr Biol
. 2025 Jan;
35(3):688-698.e8.
PMID: 39826555
Kelp forests are declining in many parts of the northeast Pacific. In small populations, genetic drift can reduce adaptive variation and increase fixation of recessive deleterious alleles, but natural selection...
3.
Huang K, Ostevik K, Jahani M, Todesco M, Bercovich N, Andrew R, et al.
Nat Ecol Evol
. 2024 Dec;
9(2):325-335.
PMID: 39633041
The probability of parallel genetic evolution is a function of the strength of selection and constraints imposed by genetic architecture. Inversions capture locally adapted alleles and suppress recombination between them,...
4.
Zhou Z, Owens G, Larson W, Lou R, Sudmant P
Bioinform Adv
. 2024 Jul;
4(1):vbae098.
PMID: 39006965
Summary: We developed loco-pipe, a Snakemake pipeline that seamlessly streamlines a set of essential population genomic analyses for low-coverage whole genome sequencing (lcWGS) data. loco-pipe is highly automated, easily customizable,...
5.
Fernandez-Melero B, Del Moral L, Todesco M, Rieseberg L, Owens G, Carrere S, et al.
Theor Appl Genet
. 2024 Feb;
137(3):56.
PMID: 38386181
A new Or gene introgressed in cultivated sunflower from wild Helianthus anomalus confers late post-attachment resistance to Orobanche cumana race G and maps to a target interval in Chromosome 4...
6.
Hirabayashi K, Debnath S, Owens G
G3 (Bethesda)
. 2023 Dec;
14(3).
PMID: 38142435
Lingonberry (Vaccinium vitis-idaea L.) produces tiny red berries that are tart and nutty in flavor. It grows widely in the circumpolar region, including Scandinavia, northern parts of Eurasia, Alaska, and...
7.
Soudi S, Jahani M, Todesco M, Owens G, Bercovich N, Rieseberg L, et al.
Elife
. 2023 Dec;
12.
PMID: 38095362
Local adaptation commonly involves alleles of large effect, which experience fitness advantages when in positive linkage disequilibrium (LD). Because segregating inversions suppress recombination and facilitate the maintenance of LD between...
8.
Sykes N, Kolora S, Sudmant P, Owens G
Mol Ecol
. 2023 Aug;
32(18):5013-5027.
PMID: 37548650
Nature has evolved a wealth of sex determination (SD) mechanisms, driven by both genetic and environmental factors. Recent studies of SD in fishes have shown that not all taxa fit...
9.
Bock D, Cai Z, Elphinstone C, Gonzalez-Segovia E, Hirabayashi K, Huang K, et al.
Plant Commun
. 2023 Apr;
4(5):100599.
PMID: 37050879
Studies of plants have been instrumental for revealing how new species originate. For several decades, botanical research has complemented and, in some cases, challenged concepts on speciation developed via the...
10.
Huang K, Jahani M, Gouzy J, Legendre A, Carrere S, Lazaro-Guevara J, et al.
Proc Natl Acad Sci U S A
. 2023 Mar;
120(14):e2205783119.
PMID: 36972449
Crop wild relatives represent valuable sources of alleles for crop improvement, including adaptation to climate change and emerging diseases. However, introgressions from wild relatives might have deleterious effects on desirable...