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Vasudevan Kumar

Département GxABT > Plant Sciences

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Main Referenced Co-authors
Vanderschuren, Hervé  (3)
Basengere Bisimwa, Espoir (1)
Cao, Jianmin (1)
Cao, Yanan (1)
Chang, Aixia  (1)
Main Referenced Keywords
acylsugar (1); acylsugar biosynthesis (1); African cassava mosaic virus (1); Cassava (1); cassava viruses (1);
Main Referenced Disciplines
Biochemistry, biophysics & molecular biology (3)

Publications (total 3)

The most downloaded
34 downloads
Kwibuka, B. Y., Winter, S., Basengere Bisimwa, E., Vasudevan, K., Sanfaçon, H., Vanderschuren, H., & Massart, S. (08 January 2026). Genomic Organization of the Newly Discovered Cassava CongoCheravirus Reveals a Unique Maf/HAM1 Motif in theC-Terminal Region of the RNA1 Polyprotein and Suggests thePresence of Two Protein Domains Upstream of the PutativeHelicase Domain. Viruses, 18 (84). doi:10.3390/v18010084 https://hdl.handle.net/2268/339562

The most cited

14 citations (Scopus®)

Chang, A., Hu, Z., Chen, B., Vanderschuren, H., Chen, M., Qu, Y., Yu, W., Li, Y., Sun, H., Cao, J., Vasudevan, K., Li, C., Cao, Y., Zhang, J., Shen, Y., Yang, A., & Wang, Y. (2022). Characterization of trichome-specific BAHD acyltransferases involved in acylsugar biosynthesis in Nicotiana tabacum. Journal of Experimental Botany. doi:10.1093/jxb/erac095 https://hdl.handle.net/2268/292119

Kwibuka, B. Y., Winter, S., Basengere Bisimwa, E., Vasudevan, K., Sanfaçon, H., Vanderschuren, H., & Massart, S. (08 January 2026). Genomic Organization of the Newly Discovered Cassava CongoCheravirus Reveals a Unique Maf/HAM1 Motif in theC-Terminal Region of the RNA1 Polyprotein and Suggests thePresence of Two Protein Domains Upstream of the PutativeHelicase Domain. Viruses, 18 (84). doi:10.3390/v18010084
Peer Reviewed verified by ORBi

Chang, A., Hu, Z., Chen, B., Vanderschuren, H., Chen, M., Qu, Y., Yu, W., Li, Y., Sun, H., Cao, J., Vasudevan, K., Li, C., Cao, Y., Zhang, J., Shen, Y., Yang, A., & Wang, Y. (2022). Characterization of trichome-specific BAHD acyltransferases involved in acylsugar biosynthesis in Nicotiana tabacum. Journal of Experimental Botany. doi:10.1093/jxb/erac095
Peer Reviewed verified by ORBi

Syed-Shan-e-Ali, Z., Vasudevan, K., Lentz, E. M., & Vanderschuren, H. (2020). Virus-Induced Gene Silencing (VIGS) in Cassava Using Geminivirus Agroclones. Methods in Molecular Biology, 2172, 51-64. doi:10.1007/978-1-0716-0751-0_5
Peer Reviewed verified by ORBi

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