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Veronika Jedlickova

Explore the profile of Veronika Jedlickova including associated specialties, affiliations and a list of published articles. Areas
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Articles 12
Citations 84
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Recent Articles
1.
Nicolas Mala K, Skalak J, Zemlyanskaya E, Dolgikh V, Jedlickova V, Robert H, et al.
J Exp Bot . 2024 Aug; 75(20):6346-6368. PMID: 39171371
Multistep phosphorelay (MSP) signaling integrates hormonal and environmental signals to control both plant development and adaptive responses. Type-A RESPONSE REGULATOR (RRA) genes, the downstream members of the MSP cascade and...
2.
Jedlickova V, Stefkova M, Mandakova T, Sanchez Lopez J, Sedlacek M, Lysak M, et al.
Plant Methods . 2024 Feb; 20(1):29. PMID: 38368430
Background: Hairy roots constitute a valuable tissue culture system for species that are difficult to propagate through conventional seed-based methods. Moreover, the generation of transgenic plants derived from hairy roots...
3.
Jedlickova V, Stefkova M, Sedlacek M, Panzarova K, Robert H
J Vis Exp . 2024 Jan; (202). PMID: 38189519
Hairy root transformation represents a versatile tool for plant biotechnology in various species. Infection by an Agrobacterium strain carrying a Root-inducing (Ri) plasmid induces the formation of hairy roots at...
4.
Jedlickova V, Hejret V, Demko M, Jedlicka P, Stefkova M, Robert H
BMC Genomics . 2023 May; 24(1):236. PMID: 37142980
Background: Plant sexual reproduction is highly sensitive to elevated ambient temperatures, impacting seed development and production. We previously phenotyped this effect on three rapeseed cultivars (DH12075, Topas DH4079, and Westar)....
5.
Jedlickova V, Macova K, Stefkova M, Butula J, Stavenikova J, Sedlacek M, et al.
Front Plant Sci . 2022 Aug; 13:919290. PMID: 35991410
Our study examined the mutation efficiency of the CRISPR/Cas9 method for tryptophan aminotransferase genes involved in the auxin biosynthesis pathway. We made nine CRISPR/Cas9 constructs with various promoters driving the...
6.
Jedlickova V, Ebrahimi Naghani S, Robert H
Plant Cell . 2022 Jun; 34(9):3200-3213. PMID: 35708654
The phytohormone auxin is a master regulator of plant growth and development in response to many endogenous and environmental signals. The underlying coordination of growth is mediated by the formation...
7.
Jedlickova V, Jedlicka P, Lee H
Gen Comp Endocrinol . 2015 Oct; 223:38-46. PMID: 26432101
Aphids display an extraordinary phenotypic plasticity ranging from widespread reproductive and wing polyphenisms to the occurrence of sterile or subfertile soldier morphs restricted to eusocial species of the subfamilies Eriosomatinae...
8.
Neumann P, Pavlikova Z, Koblizkova A, Fukova I, Jedlickova V, Novak P, et al.
Mol Biol Evol . 2015 Mar; 32(7):1862-79. PMID: 25771197
In most eukaryotes, centromere is determined by the presence of the centromere-specific histone variant CenH3. Two types of chromosome morphology are generally recognized with respect to centromere organization. Monocentric chromosomes...
9.
Jedlicka P, Jedlickova V, Lee H
Comp Biochem Physiol A Mol Integr Physiol . 2014 Dec; 180:32-7. PMID: 25461486
Aphids are an economically important group of insects that have an intricate life cycle with seasonal polyphenism. This study aimed to explore the physiological background of aphid migration from unfavorable...
10.
Kodrik D, Staskova T, Jedlickova V, Weyda F, Zavodska R, Pflegerova J
Gen Comp Endocrinol . 2014 Dec; 210:1-11. PMID: 25449136
Adipokinetic hormones (AKHs) are a group of insect metabolic neurohormones, synthesized and released from an endocrine retrocerebral gland, the corpus cardiacum (CC). Small amounts of AKH have also been identified...