Eduard Akhunov
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Explore the profile of Eduard Akhunov including associated specialties, affiliations and a list of published articles.
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62
Citations
3454
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Recent Articles
1.
Nyine M, Davidson D, Adhikari E, Clinesmith M, Wang H, Akhunova A, et al.
Genome Biol
. 2025 Feb;
26(1):35.
PMID: 39985084
Background: Prioritizing wild relative diversity for improving crop adaptation to emerging drought-prone environments is challenging. Here, we combine the genome-wide environmental scans (GWES) in wheat diploid ancestor Aegilops tauschii (Ae....
2.
Wang W, Pan Q, Tian B, Yu Z, Davidson D, Bai G, et al.
Theor Appl Genet
. 2025 Jan;
138(2):38.
PMID: 39880939
Loss-of-function mutations induced by CRISPR-Cas9 in the TaGS3 gene homoeologs show non-additive dosage-dependent effects on grain size and weight and have potential utility for increasing grain yield in wheat. The...
3.
Coombes B, Lux T, Akhunov E, Hall A
BMC Biol
. 2024 Mar;
22(1):56.
PMID: 38454464
Background: RNA-seq is a fundamental technique in genomics, yet reference bias, where transcripts derived from non-reference alleles are quantified less accurately, can undermine the accuracy of RNA-seq quantification and thus...
4.
Peirce E, Evers B, Winn Z, Raupp W, Guttieri M, Fritz A, et al.
Pest Manag Sci
. 2024 Feb;
80(6):2976-2990.
PMID: 38318926
Background: The wheat stem sawfly (WSS, Cephus cinctus) is a major pest of wheat (Triticum aestivum) and can cause significant yield losses. WSS damage results from stem boring and/or cutting,...
5.
Yu Z, Yunusbaev U, Fritz A, Tilley M, Akhunova A, Trick H, et al.
Plant Biotechnol J
. 2023 Nov;
22(4):892-903.
PMID: 37975410
Wheat immunotoxicity is associated with abnormal reaction to gluten-derived peptides. Attempts to reduce immunotoxicity using breeding and biotechnology often affect dough quality. Here, the multiplexed CRISPR-Cas9 editing of cultivar Fielder...
6.
Zhang J, Xiong H, Burguener G, Vasquez-Gross H, Liu Q, Debernardi J, et al.
Proc Natl Acad Sci U S A
. 2023 Sep;
120(38):e2306494120.
PMID: 37703281
Wheat is an important contributor to global food security, and further improvements are required to feed a growing human population. Functional genetics and genomics tools can help us to understand...
7.
Niu J, Ma S, Zheng S, Zhang C, Lu Y, Si Y, et al.
Plant Cell
. 2023 Aug;
35(12):4199-4216.
PMID: 37647532
Breeding has dramatically changed the plant architecture of wheat (Triticum aestivum), resulting in the development of high-yielding varieties adapted to modern farming systems. However, how wheat breeding shaped the genomic...
8.
Bian R, Liu N, Xu Y, Su Z, Chai L, Bernardo A, et al.
Theor Appl Genet
. 2023 Mar;
136(3):52.
PMID: 36912970
Two QTLs with major effects on rolled leaf trait were consistently detected on chromosomes 1A (QRl.hwwg-1AS) and 5A (QRl.hwwg-5AL) in the field experiments. Rolled leaf (RL) is a morphological strategy...
9.
Taagen E, Jordan K, Akhunov E, Sorrells M, Jannink J
G3 (Bethesda)
. 2022 Nov;
12(12).
PMID: 36331396
Meiotic recombination is a source of allelic diversity, but the low frequency and biased distribution of crossovers that occur during meiosis limits the genetic variation available to plant breeders. Simulation...
10.
Guo Y, Betzen B, Salcedo A, He F, Bowden R, Fellers J, et al.
Nat Commun
. 2022 Oct;
13(1):6287.
PMID: 36271077
Puccinia graminis f.sp. tritici (Pgt) causes stem rust disease in wheat that can result in severe yield losses. The factors driving the evolution of its virulence and adaptation remain poorly...