Stay updated with the latest publications from Sher-e-Bangla Agricultural University.
Mohsin, S.M.,Hasanuzzaman, M., M.H.M.B.Bhuyan, K. Parvin and M. Fujita (2019) Exogenous tebuconazole and trifloxystrobin regulates reactive oxygen species metabolism towards the mitigation of salt-induced damages in cucumber seedling. Plants 2019, 8(10), 427. doi:10.3390/plants8100428.
Read MoreRohman, M.M., M.R. Islam, M.B.Monsur, M. Amiruzzaman, M. Fujita and M. Hasanuzzaman (2019) Trehalose protects maize plants from salt stress and phosphorus deficiency. Plants. doi: 10.3390/plants8120568
Read MoreHasanuzzaman, M., K. Nahar, M.I.R. Khan, J.A. Mahmud, M.M.Alam and M. Fujita (2019) Regulation of reactive oxygen species metabolism and glyoxalase systems by exogenous osmolytes confers thermotolerance in Brassica napus.GesundePflanzen.72, 3–16. doi: 10.1007/s10343-019-00476-4.
Read MoreNaveed, M., N. Ramzan, A. Mustafa, A. Samad, B.Niamat, M. Yaseen, Z. Ahmad, M. Hasanuzzaman, N. Sun, W. Shi and X.Minggang (2020) Alleviation of salinity induced oxidative stress in Chenopodium quinoa by Fe biofortification and biochar – endophyte interaction. Agronomy. 10(2), 168; doi:10.3390/agronomy10020168.
Read MoreBhuyan, M.H.M.B., K. Parvin, S.M. Mohsin, J.A. Mahmud, M. Hasanuzzaman, M and M. Fujita (2020) Modulation of cadmium tolerance in rice: insight into vanillic acid-induced upregulation of antioxidant defense and glyoxalase systems. Plants. 9(2), 188; doi:10.3390/plants9020188
Read MoreMahmud, J.A., M. Hasanuzzaman, M.I.R. Khan, K. Nahar and M. Fujita (2020) β-aminobutyric acid pretreatment confers salt stress tolerance in Brassica napus L. by modulating reactive oxygen species metabolism and methylglyoxal detoxification. Plants. 9(2), 241. doi:10.3390/plants9020241
Read MoreElkelish, A.A., H.A.S. Alhaithloul, S.H. Qari, M.H. Soliman and M. Hasanuzzaman (2020) Pretreatment with Trichoderma harzianum alleviates waterlogging-induced growth alterations in tomato seedlings by modulating physiological, biochemical, and molecular mechanisms. Environmental and Experimental Botany. 171, 103946.doi:10.1016/j.envexpbot.2019.103946.
Read MoreMohsin, S.M., Mirza Hasanuzzaman, K. Nahar, M.S. Hossain, M.H.M.B.Bhuyan, K.Parvin and M. Fujita (2020) Tebuconazole and trifloxystrobin regulate the physiology, antioxidant defense and methylglyoxal detoxification systems in conferring salt stress tolerance in Triticum aestivum L. Physiology and Molecular Biology of Plants. doi: 10.1007/s12298-020-00810-5
Read MoreParvin, K., K. Nahar, M. Hasanuzzaman, M.H.M.B. Bhuyan, S.M. Mohsin and M. Fujita (2020) Exogenous vanillic acid enhances salt tolerance of tomato: Insight into plant antioxidant defense and glyoxalase systems. Plant Physiology and Biochemistry. 150:109-120. doi:10.1016/j.plaphy.2020.02.0.
Read MoreBhuyan, M.H.M.B., M. Hasanuzzaman, K. Parvin, S.M. Mohsin, J.A. Mahmud, K. Nahar and M. Fujita (2020) Nitric oxide and hydrogen sulfide: Two intimate collaborators regulating plant defense against abiotic stress. Plant Growth Regulations. 90:409–424. doi:10.1007/s10725-020-00594-4.
Read MoreLiu, J., M. Hasanuzzaman, H. Sun, J. Zhang, T. Peng, H. Sun, Z. Xin and Q. Zhao (2020) Comparative morphological and transcriptomic responses of lowland and upland rice to root-zone hypoxia. Environmental and Experimental Botany. 169, 103916. doi: 10.1016/j.envexpbot.2019.103916.
Read MoreMohsin, S.M., M. Hasanuzzaman, K. Parvin and M. Fujita (2020) Pretreatment of wheat (Triticum aestivum L.) seedlings with 2,4-D improves tolerance to salinity-induced oxidative stress and methylglyoxal toxicity by modulating ion homeostasis, antioxidant defenses, andglyoxalase systems. Plant Physiology and Biochemistry.152:221-231. doi: 10.1016/j.plaphy.2020.04.035
Read MoreAlam, M.K., R.W. Bell, M. Hasanuzzaman, N.Salahin, M.H. Rashid, N.Akter, S. Akhter, M.S. Islam, S. Islam, S. Naznin, M.F.A.Anik, M.M.R.B.Opu, H.B. Saif, M.J.Alam and M.F. Khatun (2020) Rice crop (Oryza sativa L.) establishment techniques in rice-based cropping systems and its implication on soil properties, global warming potential mitigation and crop yields. Agronomy, 10(6), 888. doi:10.3390/agronomy10060888
Read MoreHasanuzzaman, M., M.H.M.B. Bhuyan, A. Raza, B. Hawrylak-Nowak, R. Matraszek-Gawron, J.A. Mahmud, K. Nahar and M. Fujita (2020) Selenium in Plants: Boon or Bane? Environmental and Experimental Botany. 178: 104170.doi:10.1016/j.envexpbot.2020.104170.
Read MoreHasanuzzaman, M., M. A. Hossain, J.A. Teixeira da Silva, and M. Fujita (2012) Plant Responses and tolerance to abiotic oxidative stress: Antioxidant defense is a key factor. In: Bandi V, Shanker AK, Shanker C, Mandapaka M (eds) Crop Stress and its Management: Perspectives and Strategies. Springer, Berlin. pp. 261-316. DOI: 10.1007/978-94-007-2220-0_8.
Read MoreHasanuzzaman, M. and M. Fujita (2012) Heavy metals in the environment: Current status, toxic effects on plants and possible phytoremediation. In: Anjum NA, Pereira MA, Ahmad I, DuarteAC, Umar S, Khan NA (eds) Phytotechnologies: Remediation of Environmental Contaminants. Taylor and Francis/CRC Press, Boca Raton. pp. 7-73. doi: 10.1201/b12954-7.
Read MoreHasanuzzaman, M., K. Nahar and M. Fujita (2013) Extreme temperatures, oxidative stress and antioxidant defense in plants. In: Vahdati K, Leslie C (eds) Abiotic Stress - Plant Responses and Applications in Agriculture. InTech, Rijeka. pp. 169–205. DOI: 10.5772/54833.
Read MoreHasanuzzaman, M., K. Nahar, M. Fujita, P. Ahmad, R.Chandna, M.N.V.Prasad and M. Ozturk (2013) Enhancing plant productivity under salt stress – Relevance of poly-omics. In: Ahmad P, Azooz MM and Prasad MNV (eds) Salt Stress in Plants: Omics, Signaling andResponses. Springer, Berlin.pp. 113–156. DOI: 10.1007/978-1-4614-6108-1_6.
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