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Sitakanta Pattanaik

Explore the profile of Sitakanta Pattanaik including associated specialties, affiliations and a list of published articles. Areas
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Articles 52
Citations 1250
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Recent Articles
1.
Low P, Kong Q, Blaschek L, Ma Z, Lim P, Yang Y, et al.
Dev Cell . 2025 Feb; PMID: 39999844
The plant funiculus anchors the developing seed to the placenta within the inner dorsal pod strands of the silique wall and directly transports nutrients to the seeds. The lignified vasculature...
2.
Liu Y, Shi J, Patra B, Singh S, Wu X, Lyu R, et al.
Plant Cell Environ . 2024 Dec; PMID: 39718032
The evolutionary arms race between plants and insects has led to key adaptive innovations that drive diversification. Alkaloids are well-documented anti-herbivory compounds in plant chemical defences, but how these specialized...
3.
Yang Y, Kong Q, Ma Z, Lim P, Singh S, Pattanaik S, et al.
Plant Physiol . 2024 Dec; 197(2). PMID: 39704290
MYB family transcription factors (TFs) play crucial roles in plant development, metabolism, and responses to various stresses. However, whether MYB TFs are involved in regulating fatty acid biosynthesis in seeds...
4.
Zhou Y, Singh S, Patra B, Liu Y, Pattanaik S, Yuan L
J Exp Bot . 2024 Sep; 76(2):262-276. PMID: 39305223
Post-transcriptional and post-translational modification of transcription factors (TFs) and pathway enzymes significantly affect the stress-stimulated biosynthesis of specialized metabolites (SMs). Protein phosphorylation is one of the conserved and ancient mechanisms...
5.
Liu Y, Lyu R, Singleton J, Patra B, Pattanaik S, Yuan L
Plant Methods . 2024 Feb; 20(1):26. PMID: 38347628
Background: Virus-induced gene silencing (VIGS) is widely used in plant functional genomics. However, the efficiency of VIGS in young plantlets varies across plant species. Additionally, VIGS is not optimized for...
6.
Liu Y, Singh S, Pattanaik S, Wang H, Yuan L
Commun Biol . 2023 Oct; 6(1):1055. PMID: 37853112
Biosynthesis of specialized metabolites (SM), including phenolics, terpenoids, and alkaloids, is stimulated by many environmental factors including light. In recent years, significant progress has been made in understanding the regulatory...
7.
Hou X, Singh S, Werkman J, Liu Y, Yuan Q, Wu X, et al.
Int J Biol Macromol . 2023 Aug; 252:126472. PMID: 37625752
The activity of bHLH transcription factor MYC2, a key regulator in jasmonate signaling and plant specialized metabolism, is sensitive to repression by JASMONATE-ZIM-domain (JAZ) proteins and co-activation by the mediator...
8.
Lim A, Kong Q, Noor A, Song Y, Pattanaik S, Yuan L, et al.
Plant Physiol . 2023 Jul; 193(2):919-922. PMID: 37467048
No abstract available.
9.
Wu Z, Singh S, Lyu R, Pattanaik S, Wang Y, Li Y, et al.
Front Plant Sci . 2022 Sep; 13:932594. PMID: 36061790
Echinatin and licochalcone A (LCA) are valuable chalcones preferentially accumulated in roots and rhizomes of licorice (). The licorice chalcones (licochalcones) are valued for their anti-inflammatory, antimicrobial, and antioxidant properties...
10.
Singh S, Patra B, Singleton J, Liu Y, Paul P, Sui X, et al.
Methods Mol Biol . 2022 Jun; 2505:203-221. PMID: 35732947
Biosynthesis of the therapeutically valuable terpenoid indole alkaloids (TIAs), in the medicinal plant Catharanthus roseus, is one of the most elaborate and complex metabolic processes. Although genomic and transcriptomic resources...