S M Nuruzzaman Manik
Tasmanian Institute of Agriculture, Bangladesh Agro-Processors' Association (BAPA), University of Tasmania, Chinese Academy of Agricultural Sciences, Sher-e-Bangla Agricultural University
About
S M Nuruzzaman Manik is currently working as a casual research worker at Tasmanian Institute of Agriculture, University of Tasmania. He is working on the project “abiotic stress tolerance” funded by the Grains Research and Development Corporation (GRDC), Australia. He completed PhD in Agriculture from Tasmanian Institute of Agriculture, University of Tasmania in 2022. He acquired Master of Science in Crop Cultivation and Farming System from the Graduate School of Chinese Academy of Agricultural Sciences, Beijing, China in 2016. He was recognized as an “outstanding best student” for his research. He completed his Bachelor of Science in Agriculture from Sher-e-Bangla Agricultural University, Dhaka, Bangladesh in 2012. He worked as an “Executive Researcher” at the renowned Bangladesh Agro-processors’ Association (BAPA) in Bangladesh during 2016 to 2018. He experienced with management of varieties of crops such as, barley, wheat, Arabidopsis and different tobacco varieties. He is a Permanent Resident of Australia and lives in Launceston, Tasmania.
Employment
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Tasmanian Institute of Agriculture Professional Casual2021 - Present
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Bangladesh Agro-Processors' Association (BAPA) Executive Research2016 - 2018
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Chinese Academy of Agricultural Sciences Tobacco Research Institute Master's student2014 - 2016
Education
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University of Tasmania Ph.D. in Agricultural Sciences2018 - 2022
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Chinese Academy of Agricultural Sciences Master of Science in Crop Cultivation and Farming System2013 - 2016
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Sher-e-Bangla Agricultural University Bachelor of Science in Agriculture (Hons.)2007 - 2010
Projects & Funding
Projects & funding information is unavailable.
Publications (16)
- Impacts of barley root cortical aerenchyma on growth, physiology, yield components, and grain quality under field waterlogging conditions Save
- Genome-Wide Association Study Reveals Marker Trait Associations (MTA) for Waterlogging-Triggered Adventitious Roots and Aerenchyma Formation in Barley Save
- Multidimensional screening and evaluation of morpho‐physiological indices for salinity stress tolerance in wheat Save
- Improving waterlogging tolerance of barley varieties Save
- Genome-wide association study reveals a genomic region on 5AL for salinity tolerance in wheat Save
- Improving Performance of Salt-Grown Crops by Exogenous Application of Plant Growth Regulators Save
- Genetic factors increasing barley grain yields under soil waterlogging Save
- Soil and Crop Management Practices to Minimize the Impact of Waterlogging on Crop Productivity Save
- Mechanisms and Physiological Roles of the CBL-CIPK Networking System in Arabidopsis thaliana Save
- Selective Remove of lignin in Tobacco Stalk by Bacillus and its Laccase Producing Characteristic Save