Dr. Md. Abu Saleh
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Dr. Md. Abu Saleh

Associate Professor
University of Rajshahi, Bangladesh


Highest Degree
Ph.D. in Microbial Biotechnology from University of Chinese Academy of Sciences, China

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Area of Interest:

Biomedical Sciences
100%
Genetic Engineering
62%
Biotechnology
90%
Molecular Biotechnology
75%
Microbial Genetics
55%

Research Publications in Numbers

Books
0
Chapters
1
Articles
51
Abstracts
0

Selected Publications

  1. Pramanik, S.K., S. Mahmud, G.K. Paul, T. Jabin and K. Naher et al., 2021. Fermentation optimization of cellulase production from sugarcane bagasse by Bacillus pseudomycoides and molecular modeling study of cellulase. Curr. Res. Microbial Sci., 10.1016/j.crmicr.2020.100013.
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  2. Mahmud, S., M.A.R. Uddin, G.K. Paul, M.S.S. Shimu and S. Islam et al., 2021. Virtual screening and molecular dynamics simulation study of plant-derived compounds to identify potential inhibitors of main protease from SARS-CoV-2. Briefings Bioinf., 10.1093/bib/bbaa428.
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  3. Swargiary, A., S. Mahmud and M.A. Saleh, 2020. Screening of phytochemicals as potent inhibitor of 3-chymotrypsin and papain-like proteases of SARS-CoV2: an in silico approach to combat COVID-19. J. Biomol. Struct. Dyn., 10.1080/07391102.2020.1835729.
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  4. Paul, G., S. Mahmud, K. Naher, T. Jabin and L. Mahmud et al., 2020. Isolation and characterization of bacteria from two soil samples and their effect on wheat (Triticum aestivum L.) growth promotion. J. Adv. Biotechnol. Exp. Ther., 10.5455/jabet.2020.d132.
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  5. Mahmud, S., M.A.R. Uddin, M. Zaman, K.M. Sujon and M.E. Rahman et al., 2020. Molecular docking and dynamics study of natural compound for potential inhibition of main protease of SARS-CoV-2. J. Biomol. Struct. Dyn., 10.1080/07391102.2020.1796808.
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  6. Mahmud, S., E. Rahman, Z. Nain, M. Billah and S. Karmakar et al., 2020. Computational discovery of plant-based inhibitors against human carbonic anhydrase IX and molecular dynamics simulation. J. Biomol. Struct. Dyn., 10.1080/07391102.2020.1753579.
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  7. Lu, M., X.Q. Ma, M. Abu Saleh and F.L. Li, 2018. Thermophilic Cellulolytic Enzymes: From Discovery to Design. In: Fungal Cellulolytic Enzymes, Fang, X. and Y. Qu (Eds.)., Springer, Singapore, ISBN: 978-981-13-0748-5, pp: 167-185.
  8. Saleh, M.A., W.J. Han, M. Lu, B. Wang, H. Li, R.M. Kelly and F.L. Li, 2017. Two distinct α-L-arabinofuranosidases in Caldicellulosiruptor species drive degradation of arabinose-based polysaccharides. Applied. Environ. Microbiol., Vol. 83.Environ. Microbiol., Vol. 83. 10.1128/AEM.00574-17.
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  9. Han, W.J., H. Su, M. Abu Saleh, P.Y. Zhang, F.L. Li and M. Lu, 2017. Characterization of an acetyl xylan esterase Axe7 from Caldicellulosiruptor sp. F32. Microbiol. China, 44: 1056-1064.
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  10. Kabir, A.S., M.P.E. Shaekh, F. Parvin, K.M.F. Haque and K.K. Nipa et al., 2015. Isolation and characterization of bacteria from industrial effluents and their tolerance to heavy metals. Asian J. Microbiol. Biotechnol. Environ. Sci., 17: 1-6.
  11. Yeasmin, S., N. Jahan, A.S. Kabir, K.K. Nipa, M.H. Rahaman, M.S. Uddin, M.A. Saleh and S. Zaman, 2014. Reducing the toxic effects of some heavy metals (cd, cr and pb) on growth of rhizobium strain rvm-307 by fe and cu. Rajshahi Uni. J. Environ., Sci., 3: 41-48.
  12. Shaekh, M.P.E., A. Mondol, M.M. Islam, A.S. Kabir and M.A. Saleh et al., 2013. Isolation, characterization and identification of an antagonistic bacterium from Penaeus monodon. Int. J. Sci. Eng. Res., 4: 54-61.
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  13. Saleh,M.A., S. Zaman and G. Kabir, 2013. Yield response of black gram to inoculation by different Rhizobium strains using various types of adhesives. Asian J. Biol. Sci., 6: 181-186.
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  14. Saleh, M.A., S. Zaman and G. Kabir, 2013. Nodulation of black gram as influenced by Rhizobium inoculation using different types of adhesives. Nat. Sci., 11: 152-157.
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  15. Saleh, M.A., 2013. Comparativeviability of two Rhizobium strains in soils. Int. J. Applied Nat. Sci., 2: 17-22.
  16. Saleh, M.A. and A.E. Ekram, 2013. Arsenate reduction by some bacteria isolated from industrial effluents of Rajshahi, Bangladesh. Int. J. Applied Nat. Sci., 2: 23-30.
  17. Saleh, M. and A. Ekram, 2013. Characterization of bacteria isolated from penaeus monodon digestive tract with cytotoxic evaluation. Int. J. Applied Nat. Sci., 2: 15-22.
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  18. Saleh, M.A., S. Zaman, M.S. Uddin, A.E. Ekram and M.A. Mazid, 2012. In vitro clonal propagation from nodal explants of neem (Azadirachta indica A. Juss.). Bangladesh J. Environ. Sci., 23: 143-146.
  19. Rahman, M.M., M.S.Uddin, S. Zaman, M.A. Saleh, A.E. Ekram, P. Farhana and M.H. Razu, 2012. Comparative study on growth and morphological characteristics of a wild type strain Rhizobium sp. (RCA-220) and a genetically engineered E. coli BL21. J. Bio-Sci., 20: 75-82.
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  20. Mazid, M.A., S. Zaman, M.S. Uddin, A.E. Ekram, M.A. Saleh and M.M.U. Deen, 2011. High frequency regeneration of Dahlia pinnata through In vitro culture. J. Bangladesh Soc. Agric. Technol., 8: 93-98.
  21. Ekram, A.E., M.A. Saleh, M.S. Uddin, M.A. Mazid and S. Zaman, 2011. Screening of bioactive properties of aphanamixispolystachya for cytotoxic and repellent potentials against Artemia salina nauplii and Tribolium castaneum(herbst) adults. Bangladesh J. Environ. Sci., 21: 31-35.
  22. Salah Uddin, M., Z. Jiti, M.A. Saleh, A. Ekram, B. Sikdar and S. Zaman, 2010. Role of large plasmid DNA in salt tolerance of a novel strain Gracilibacillus sp. GTY. J. Bio-Sci., 18: 34-39.
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  23. Zaman, S. and M.A. Saleh, 2005. Mutagenic effect of ethylene glycol on somatic cells of wheat (Triticum aestivum L). J. Life Sci., 1: 43-49.
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