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Allison Haaning

Explore the profile of Allison Haaning including associated specialties, affiliations and a list of published articles. Areas
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Articles 8
Citations 96
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Recent Articles
1.
Guo W, Schreiber M, Marosi V, Bagnaresi P, Jorgensen M, Braune K, et al.
Nat Genet . 2025 Feb; 57(2):441-450. PMID: 39901014
A pan-transcriptome describes the transcriptional and post-transcriptional consequences of genome diversity from multiple individuals within a species. We developed a barley pan-transcriptome using 20 inbred genotypes representing domesticated barley diversity...
2.
Sreekanta S, Haaning A, Dobbels A, ONeill R, Hofstad A, Virdi K, et al.
BMC Plant Biol . 2024 Mar; 24(1):194. PMID: 38493116
Background: In soybeans, faster canopy coverage (CC) is a highly desirable trait but a fully covered canopy is unfavorable to light interception at lower levels in the canopy with most...
3.
Wonneberger R, Schreiber M, Haaning A, Muehlbauer G, Waugh R, Stein N
Theor Appl Genet . 2023 Jul; 136(8):174. PMID: 37477711
Selection over 70 years has led to almost complete fixation of a haplotype spanning ~ 250 Mbp of chomosome 5H in European two-rowed spring barleys, possibly originating from North Africa....
4.
Virdi K, Sreekanta S, Dobbels A, Haaning A, Jarquin D, Stupar R, et al.
Plant Genome . 2023 Feb; 16(2):e20304. PMID: 36792954
Early canopy coverage is a desirable trait that is a major determinant of yield in soybean (Glycine max). Variation in traits comprising shoot architecture can influence canopy coverage, canopy light...
5.
Coulter M, Entizne J, Guo W, Bayer M, Wonneberger R, Milne L, et al.
Plant J . 2022 Jun; 111(4):1183-1202. PMID: 35704392
Accurate characterisation of splice junctions (SJs) as well as transcription start and end sites in reference transcriptomes allows precise quantification of transcripts from RNA-seq data, and enables detailed investigations of...
6.
Okagaki R, Haaning A, Bilgic H, Heinen S, Druka A, Bayer M, et al.
Plant Physiol . 2018 Feb; 176(4):2750-2760. PMID: 29440592
The shoot apical and axillary meristems control shoot development, effectively influencing lateral branch and leaf formation. The barley () () mutation blocks axillary meristem development, and mutant plants lack lateral...
7.
Sutherland M, Wang S, Quinn M, Haaning A, Ware S
Hum Mol Genet . 2013 Jan; 22(10):1913-23. PMID: 23303524
In humans, loss-of-function mutations in ZIC3 cause isolated cardiovascular malformations and X-linked heterotaxy, a disorder with abnormal left-right asymmetry of organs. Zic3 null mice recapitulate the human heterotaxy phenotype but...
8.
Quinn M, Haaning A, Ware S
Hum Mol Genet . 2012 Jan; 21(8):1888-96. PMID: 22234993
Limb anomalies are important birth defects that are incompletely understood genetically and mechanistically. GLI3, a mediator of hedgehog signaling, is a genetic cause of limb malformations including pre- and postaxial...
9.
Czosek R, Haaning A, Ware S
Pediatr Res . 2010 Jun; 68(4):275-80. PMID: 20581739
Duplication or absence of parts of the specialized cardiac conduction system in patients with heterotaxy syndrome causes significant clinical disease, but the mechanistic basis by which embryonic disruption of left-right...