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PUBLICATIONS

Haragopal Dutta, Gyan P. Mishra, Muraleedhar S. Aski, Tejas C. Bosamia, Dwijesh C. Mishra, Jyotika Bhati, Subodh Kumar Sinha , Dunna Vijay, Manjunath Prasad C. T. , Shouvik Das, Prashant Anupama-Mohan Pawar, Atul Kumar , Kuldeep Tripathi, Ranjeet Ranjan Kumar , Devendra Kumar Yadava , Shiv Kumar  and Harsh Kumar Dikshit. Comparative transcriptome analysis, unfolding the pathways regulating the seed-size trait in cultivated lentil (Lens culinaris Medik). Frontiers in Genetics (2022). https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9399355/

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Lavi Rastogi, Aniket Anant Chaudharo, Raunak Sharma, Prashant Anupama-Mohan Pawar. Arabidopsis GELP7 functions as a plasma membrane‑localized acetyl xylan esterase, and its overexpression improves saccharification efficiency. accepted in plant molecular biology. 2022.  https://link.springer.com/article/10.1007/s11103-022-01275-8


Lavi Rastogi, Aniket Anant Chaudhari, Raunak Sharma, Prashant Anupama-Mohan Pawar. Arabidopsis GELP7 is plasma membrane-localized acetyl xylan esterase, and its overexpression improves saccharification efficiency. 17 September 2021, Preprint (Version 1) available at Research Square


Lavi Rastogi, Deepika Singh, Rajan Kumar Sah, Aniket Anant Chaudhari, and Prashant Anupama-Mohan Pawar. "Enhancement of Biomass for Deconstruction." Biomass for Bioenergy and Biomaterials. CRC Press, 2021. 179-210.  Book Chapter (2021)


Thapliyal, G, Vemanna, R., Pawar, PM-A., Barthwal, S., Meena, R., Pandey, S., Bhandari, S (2020). First record of off-season flowering in Populus deltoides from India: paradigm of climate change indicator. International Journal of Biometeorology

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Wang, Z., Pawar, PM-A., Derba-Maceluch, M., Hedenström, M., Chong, S., Tenkanen, M., Jönsson, and Mellerowicz, E.J (2020). Hybrid Aspen expressing a carbohydrate esterase family 5 acetyl xylan esterase under control of a wood-specific promoter shows improved saccharification. Frontiers in plant science

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Maceluch, M.D., Amini, F., Donev, E., Pawar, PM-A, Michaud, L., Johansson, U., Albrectsen, B., Mellerowicz, E.J. (2020). Cell wall acetylation in hybrid aspen affects field performance, foliar phenolic composition, and resistance to biological stress factors in a construct-dependent fashion. Frontiers in plant science

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Pawar, PM-A., Schnürer., A, Mellerowicz, E.J., Rönnberg-Wästljung, A. C. (2018). QTL Mapping of Wood FT-IR Chemotypes Shows Promise for Improving Biofuel Potential in Short Rotation Coppice Willow (Salix spp.). BioEnergy Research 11 (2), 351-363


Pawar, PM-A., Maceluch, M.D., Chong, S.L., Latha, GM., Bashar. S. S., Sparrman T., Hedenström M., Ahvenainen, P., Ozparpucu, M. Ruggerberg., M. Seriamma, R., Jönsson, L., Tenkanen M., Lawoko M., Mellerowicz, E.J. (2017). In muro deacetylation of xylan increases lignin extractability and improves saccharification of aspen wood. Biotechnology for Biofuels 10:98.


Pawar, PM-A., Ratke, C., Balasubramanian, V.K., Chong, S.L., Latha, GM., Adriasola, M., Sparrman, T., Hedenström M., Szwaj, K., Maceluch, M.D., Gaertner, C., Mouille, G., Ezcurra, I., Jönsson, L. Tenkanen M., Mellerowicz, E.J. (2017). Downregulation of RWA genes in hybrid aspen affects xylan acetylation and wood saccharification. New Phytologist 214(4), 1491-1505.


Pawar, PM-A., Maceluch, M.D., Chong, S.L., Gómez, L.D., Miedes, E., Banasiak, A., Gaertner, C., Mouille, G., Simon J. Mason, S.J.M., Molina, A., Sellstedt, A., Tenkanen M., Mellerowicz, E.J. (2016). Expression of fungal acetyl xylan esterase in Arabidopsis thaliana improves saccharification of stem lignocellulose. Plant Biotech. Journal. 14 (1), 387-397


Ratke, C., Pawar, PM-A., Balasubramanian, V.K., Naumann, M., Duncranz, M.L., Maceluch, M.D., Gorzsás, A., Satoshi, E., Ezcurra, I. and Mellerowicz, E.J. (2015). Populus GT43 family members group into distinct sets required for primary and secondary wall xylan biosynthesis and include useful promoters for wood modification. Plant Biotech. Journal, 13 (1), 26-37.


Manabe, Y., Verhertbruggen, Y., Gille, S., Harholt, J., Chong, S.L., Pawar, PM-A., Mellerowicz, E.J., Tenkanen, M., Cheng, K., Pauly, M. and Scheller, H.V. (2013). Reduced Wall Acetylation Proteins Play Vital and Distinct Roles in Cell Wall O-Acetylation in Arabidopsis. Plant Physiology 163, 1107-1117.


Pawar, PM-A., Koutaniemi, S., Tenkanen, M. and Mellerowicz, E.J. (2013). Acetylation of woody lignocellulose: significance and regulation. Frontiers in plant science 4 (118)

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Publications: Welcome

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