Dr. Mohammad Anwar Hossain
ProfessorDepartment of Genetics & Plant Breeding, Bangladesh Agricultural University, Mymensingh-2202, Bangladesh
Highest Degree
Ph.D. in Plant Stress Physiology and Molecular Biology from Ehime University, Japan
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Biography
Dr. Mohammad Anwar Hossain is currently working as Assistant Professor at Bangladesh Agricultural University. He obtained his Ph.D. in Plant Stress Physiology and Molecular Biology from The United Graduate School of Agricultural Sciences, Ehime University, Japan. His area of interest related to Plant Abiotic Stress Physiology and Molecular Biology. His area of expertise includes Plant Abiotic Stress, Protein Purification, Reactive Oxygen Species, Methyglyoxal, and Gene Cloning. He has 27 publications in journals as author/co-author.
Area of Interest:
Selected Publications
- Sohag, A.A.M., M. Tahjib-Ul-Arif, M.A.S. Polash, M.B. Chowdhury and S. Afrin et al., 2020. Exogenous glutathione-mediated drought stress tolerance in rice (Oryza sativa L.) is associated with lower oxidative damage and favorable ionic homeostasis. Iran. J. Sci. Technol., Trans. A: Sci., 44: 955-971.
CrossRef | Direct Link | - Rasel, M., M. Tahjib-Ul-Arif, M.A. Hossain, L. Hassan, S. Farzana and M. Brestic, 2020. Screening of salt-tolerant rice landraces by seedling stage phenotyping and dissecting biochemical determinants of tolerance mechanism. J. Plant Growth Regulation, 10.1007/s00344-020-10235-9.
CrossRef | Direct Link | - Hasanuzzaman, M., M. A. Hossain and M. Fujita, 2012. Exogenous selenium pretreatment protects rapeseed seedlings from cadmium induced oxidative stress by up-regulating the antioxidant defense and methylglyoxal detoxification systems. Biol. Trace Element Res., 149: 248-261.
CrossRef | PubMed | Direct Link | - Hossain, M.A., M. Hasanuzzaman and M. Fujita, 2011. Coordinate induction of antioxidant defense and glyoxalase system by exogenous proline and glycinebetaine is correlated with salt tolerance in mung bean. Frontiers Agric. China, 5: 1-14.
Direct Link | - Hasanuzzaman, M., M.A. Hossain and M. Fujita, 2011. Selenium-induced upregulation of the antioxidant defense and methylglyoxal detoxification system reduces salinity-induced damage in rapeseed seedlings. Biol. Trace Element Res., 143: 1704-1721.
CrossRef | - Hasanuzzaman, M., M.A. Hossain and M. Fujita, 2011. Nitric oxide modulates antioxidant defense and methylglyoxal detoxification system and reduces salinity induced damage in wheat seedling. Plant Biotechnol. Reports, 5: 353-365.
CrossRef | - Rohman, M.M., M.A. Hossain and M. Fujita, 2010. Levels of A Dominant Glutathione S-Transferase in Onion Bulbs have A Seasonal Relationship With Physiological Inhibitors. Aust. J. Crop Sci., 4: 55-62.
Direct Link | - Hossain, M.A., M. Hasanuzzaman and M. Fujita, 2010. Up-Regulation of Antioxidant and Glyoxalase Systems by Exogenous Glycinebetaine and Proline in Mung Bean Confer Tolerance to Cadmium Stress. Physiol. Mol. Biol. Plants, 16: 259-272.
CrossRef | Direct Link | - Hossain, M.A. and M. Fujita, 2010. Evidence for a role of exogenous glycinebetaine and proline in antioxidant defense and methylglyoxal detoxification systems in mung bean seedlings under salt stress. Physiol. Mol. Biol. Plants, 16: 19-29.
- Hasanuzzaman, M., M.A. Hossain and M. Fujita, 2010. Selenium in higher plants: Physiological role, antioxidant metabolism and abiotic stress tolerance. J. Plant Sci., 5: 354-375.
CrossRef | - Hasanuzzaman, M., M.A. Hossain and M. Fujita, 2010. Physiological and biochemical mechanisms of nitric oxide induced abiotic stress tolerance in plants. Am. J. Plant Physiol., 5: 295-324.
CrossRef | - Hossain, M.A., M.Z. Hossain and M. Fujita, 2009. Stress-induced changes of methylglyoxal level and glyoxalase I activity in pumpkin seedlings and cDNA cloning of glyoxalase I gene. Aust. J. Crop Sci., 3: 53-64.
- Hossain, M.A. and M. Fujita, 2009. Purification of glyoxalase I from onion bulbs and molecular cloning of Its cDNA. Biosci. Biotechnol. Biochem., 73: 2007-2013.
PubMed | - Hossain, M.A., L. Rahman and A.K.M. Shamsuddin, 2003. Genotype-environment interaction and stability analysis in soybean. J. Biol. Sci., 3: 1026-1031.
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