
Overview
Background
Dr Mobashwer Alam is a Senior Research Fellow at the Centre for Horticultural Science, a theme leader of Predictive Agriculture for Improved Productivity and Value, an Advance Queensland Industry Fellow, and the team leader of the National Passionfruit Breeding and Evaluation Program (PF22000) at the Queensland Alliance for Agriculture and Food Innovation, UQ. He is currently based at Maroochy Research Station, Nambour, QLD 4560, Sunshine Coast. He has more than twenty years of research and teaching experience in the public and private industries and in universities in Australia and Bangladesh. Dr Alam has experience in multi-disciplinary research, including plant breeding, quantitative genetics, genomics, plant physiology, and crop modelling. Before joining at QAAFI, Dr Alam had been working as a Senior Plant Breeder (Grain Sorghum) at Nuseed Pty Ltd. He achieved his PhD in plant molecular genetics through the School of Agriculture and Food Sciences of the University of Queensland. Before coming in Australia in 2008, Dr Alam had been working as a lecturer and assistant professor of the Department of Genetics and Plant Breeding at Patuakhali Science and Technology University in Bangladesh. Throughout his academic and research career, he worked on multiple crops, including Macadamia, Passionfruit, Stone Fruits, Sorghum, Sugarcane, Lablab Bean, Tomato, Okra, and Ash Gourd. He is interested in developing rapid breeding tools and utilizing plant genomics in horticultural crop improvement.
Availability
- Dr Mobashwer Alam is:
- Available for supervision
- Media expert
Fields of research
Qualifications
- Bachelor (Honours) of Plant Science, Bangladesh Agricultural University
- Masters (Extended) of Genetics, Bangladesh Agricultural University
- Doctor of Philosophy, The University of Queensland
Research interests
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Developing quick breeding tools for rapid genetic gain in Macadamia
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Crop Improvement through Plant Molecular Genetics and Genomics
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Quantitative Genetic study of Complex traits
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Developing rapid disease diagnostic tools
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Rapid phenotyping using artificial intelligence
Works
Search Professor Mobashwer Alam’s works on UQ eSpace
2023
Journal Article
Genome-wide investigation of aquaporin genes in Corchorus spp and their role in organ development and abiotic stress tolerance
Ahmed, Borhan, Alam, Mobashwer, Aktar, Nasima, Hossain, Md. Sabbir, Ullah, Md. Wali, Bashar, Kazi Khayrul, Kabir, Shah Md Tamim, Emdad, Emdadul Mannan and Islam, Md. Shahidul (2023). Genome-wide investigation of aquaporin genes in Corchorus spp and their role in organ development and abiotic stress tolerance. Plant Gene, 34 100410, 100410. doi: 10.1016/j.plgene.2023.100410
2023
Journal Article
Genetic parameters of husk spot resistance in macadamia breeding families
Nunn, Jasmine, Hardner, Craig, De Faveri, Joanne, Akinsanmi, Olufemi A., O’Connor, Katie, Alam, Mobashwer and Topp, Bruce (2023). Genetic parameters of husk spot resistance in macadamia breeding families. Euphytica, 219 (5) 54, 1-21. doi: 10.1007/s10681-023-03169-2
2023
Book Chapter
Current biotechnological approaches in maize improvement
Chakraborty, Moutoshi, Munshi, Saurab Kishore, Haque, Ashraful, Azad, Md. Abul Kalam, Islam, Tofazzal, Alam, Mobashwer and Shiddiky, Muhammad J. A. (2023). Current biotechnological approaches in maize improvement. Maize improvement: current advances in yield, quality, and stress tolerance under changing climatic scenarios. (pp. 137-180) Cham, Switzerland: Springer Cham. doi: 10.1007/978-3-031-21640-4_8
2023
Journal Article
The effects of pollen source on the fatty acid profile of macadamia kernels
Hu, Wei, Fitzgerald, Melissa, Topp, Bruce, Alam, Mobashwer, Pun, Sharon, Dianna, Liu, Torrisi, Caterina and O’Hare, Tim J. (2023). The effects of pollen source on the fatty acid profile of macadamia kernels. Journal of Food Composition and Analysis, 115 104943, 1-7. doi: 10.1016/j.jfca.2022.104943
2023
Journal Article
Evaluation of in-field inoculation methods for characterisation of macadamia germplasm to husk spot incidence and severity
Nunn, Jasmine, Akinsanmi, Olufemi Akinyemi, Hardner, Craig, De Faveri, Joanne, O'Connor, Katie, Alam, Mobashwer and Topp, Bruce (2023). Evaluation of in-field inoculation methods for characterisation of macadamia germplasm to husk spot incidence and severity. Plant Disease, 107 (1), 76-82. doi: 10.1094/pdis-03-22-0507-re
2022
Conference Publication
The effect of maturity on the concentration of fatty acids in macadamia
Hu, Wei , O'Hare, Tim , Fitzgerald, Melissa , Topp, Bruce and Alam, Mobashwer (2022). The effect of maturity on the concentration of fatty acids in macadamia. TropAg International Agriculture Conference, Brisbane, Australia, 31 October - 2 November 2022.
2022
Journal Article
Precision genome editing in plants using gene targeting and prime editing: existing and emerging strategies
Hassan, Md Mahmudul, Yuan, Guoliang, Liu, Yang, Alam, Mobashwer, Eckert, Carrie A., Tuskan, Gerald A., Golz, John F. and Yang, Xiaohan (2022). Precision genome editing in plants using gene targeting and prime editing: existing and emerging strategies. Biotechnology Journal, 17 (10) 2100673, 1-18. doi: 10.1002/biot.202100673
2022
Conference Publication
Diversity of omega-7 (palmitoleic acid) content in macadamia nuts and possible biosynthetic pathways influencing its concentration
Hu, W., Fitzgerald, M., Topp, B., Alam, M. and O'Hare, T. (2022). Diversity of omega-7 (palmitoleic acid) content in macadamia nuts and possible biosynthetic pathways influencing its concentration. 3rd International Conference on Food Bioactives & Health, Parma, Italy, 21-24 June 2022. Parma, Italy: MV Congressie.
2022
Journal Article
Bioinformatic investigation and functional analysis of 214 hereditary genes identified non-coding RNAs as therapeautic tool for breast cancer management
Bhyan, Salma Begum, Cummins, Scott, Alam, Mobashwer and Zhao, Min (2022). Bioinformatic investigation and functional analysis of 214 hereditary genes identified non-coding RNAs as therapeautic tool for breast cancer management. Gene Reports, 27 101565, 101565. doi: 10.1016/j.genrep.2022.101565
2022
Conference Publication
Evaluating seven macadamia seedling and cutting rootstocks for their effect on scion growth
Poudel, Pragya Dhakal , Cowan, Max , Topp, Bruce and Alam, Mobashwer (2022). Evaluating seven macadamia seedling and cutting rootstocks for their effect on scion growth. The 2nd International Electronic Conference on Plant Sciences, Online, 1-15 Dec 2021. Basel, Switzerland: MDPI. doi: 10.3390/iecps2021-12040
2022
Conference Publication
Crown position and rootstock genotype influence leaf stomatal density in Macadamia sp.
Wakefield, Sam , Topp, Bruce and Alam, Mobashwer (2022). Crown position and rootstock genotype influence leaf stomatal density in Macadamia sp.. The 2nd International Electronic Conference on Plant Sciences, Online, 1-15 December 2021. Basel, Switzerland: MDPI. doi: 10.3390/iecps2021-11922
2022
Conference Publication
Image based phenotyping of shell thickness revealed strong association with kernel recovery in macadamia
Nguyen, Truong Duc , Topp, Bruce and Alam, Mobashwer (2022). Image based phenotyping of shell thickness revealed strong association with kernel recovery in macadamia. The 2nd International Electronic Conference on Plant Sciences, Online, 1-15 December 2021. Basel, Switzerland: MDPI. doi: 10.3390/iecps2021-12037
2021
Journal Article
Discovery of Single Nucleotide Polymorphisms for Resistance to Abnormal Vertical Growth in Macadamia
Zakeel, Mohamed Cassim Mohamed, Alam, Mobashwer, Geering, Andrew D. W., Topp, Bruce and Akinsanmi, Olufemi A. (2021). Discovery of Single Nucleotide Polymorphisms for Resistance to Abnormal Vertical Growth in Macadamia. Frontiers in Plant Science, 12 756815, 756815. doi: 10.3389/fpls.2021.756815
2021
Journal Article
The genome of the endangered Macadamia jansenii displays little diversity but represents an important genetic resource for plant breeding
Sharma, Priyanka, Murigneux, Valentine, Haimovitz, Jasmine, Nock, Catherine J., Tian, Wei, Kharabian Masouleh, Ardashir, Topp, Bruce, Alam, Mobashwer, Furtado, Agnelo and Henry, Robert J. (2021). The genome of the endangered Macadamia jansenii displays little diversity but represents an important genetic resource for plant breeding. Plant Direct, 5 (12) e364, e364. doi: 10.1002/pld3.364
2021
Other Outputs
The genome of the endangered Macadamia jansenii displays little diversity but represents an important genetic resource for plant breeding
Sharma, Priyanka, Murigneux, Valentine, Haimovitz, Jasmine, Nock, Catherine J., Tian, Wei, Masouleh, Ardashir Kharabian, Topp, Bruce, Alam, Mobashwer, Furtado, Agnelo and Henry, Robert J. (2021). The genome of the endangered Macadamia jansenii displays little diversity but represents an important genetic resource for plant breeding. doi: 10.1101/2021.09.08.459545
2021
Journal Article
Phenotypic characterisation for growth and nut characteristics revealed the extent of genetic diversity in wild macadamia germplasm
Mai, Thuy T. P., Hardner, Craig M., Alam, Mobashwer M., Henry, Robert J. and Topp, Bruce L. (2021). Phenotypic characterisation for growth and nut characteristics revealed the extent of genetic diversity in wild macadamia germplasm. Agriculture, 11 (7) 680, 1-14. doi: 10.3390/agriculture11070680
2021
Journal Article
Genomic prediction for whole weight, body shape, meat yield, and color traits in the Portuguese oyster Crassostrea angulata
Vu, Sang V., Knibb, Wayne, Gondro, Cedric, Subramanian, Sankar, Nguyen, Ngoc T. H., Alam, Mobashwer, Dove, Michael, Gilmour, Arthur R., Vu, In Van, Bhyan, Salma, Tearle, Rick, Khuong, Le Duy, Le, Tuan Son and O’Connor, Wayne (2021). Genomic prediction for whole weight, body shape, meat yield, and color traits in the Portuguese oyster Crassostrea angulata. Frontiers in Genetics, 12 661276, 661276. doi: 10.3389/fgene.2021.661276
2021
Book Chapter
Molecular breeding for combating salinity stress in sorghum: progress and prospects
Chakma, Nidhi, Chakraborty, Moutoshi, Bhyan, Salma and Alam, Mobashwer (2021). Molecular breeding for combating salinity stress in sorghum: progress and prospects. Molecular breeding in wheat, maize and sorghum: strategies for improving abiotic stress tolerance and yield. (pp. 421-432) edited by Mohammad Anwar Hossain, Mobashwer Alam, Saman Seneweera, Sujay Rakshit and Robert Henry. Wallingford, United Kingdom: CABI. doi: 10.1079/9781789245431.0024
2020
Journal Article
Jute CDPK genes and their role in stress tolerance and fiber development: a genome-wide bioinformatic investigation of Chorchorus capsularis and C. olitorius
Ahmed, Borhan, Alam, Mobashwer, Hasan, Fakhrul, Emdad, Emdadul Mannan, Islam, Shahidul and Rahman, Nazibur (2020). Jute CDPK genes and their role in stress tolerance and fiber development: a genome-wide bioinformatic investigation of Chorchorus capsularis and C. olitorius. Plant Gene, 24 100252, 100252. doi: 10.1016/j.plgene.2020.100252
2020
Conference Publication
Macadamia nuts – good fats, bad fats, and biofortification
O’Hare, T. J., Hong, H. T., Pun, S., Liu, D., Torrisi, C., Mai, T., Alam, M., Russell, D. and Topp, B. (2020). Macadamia nuts – good fats, bad fats, and biofortification. XXX International Horticultural Congress IHC2018: International Symposium on Fruit and Vegetables for Processing, International Symposium on Quality and Safety of Horticultural Products and VII International Symposium on Human Health Effects of Fruits and Vegetables, Istanbul, Turkey, 12 August 2018. Leuven, Belgium: International Society for Horticultural Science. doi: 10.17660/ACTAHORTIC.2020.1292_50
Funding
Current funding
Past funding
Supervision
Availability
- Dr Mobashwer Alam is:
- Available for supervision
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Available projects
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Genetics of stomatal size and density in Macadamia
Macadamia is an Australian native crop that is economically significant due to the numerous health benefits of its extremely valuable nut. To develop climate-resistant crops, the Australian macadamia breeding programme focuses on identifying simple and heritable features associated with low water loss and high photosynthesis. Stomatal pores in a leaf's epidermis allow for water loss via transpiration and CO2 absorption for photosynthesis. Stomata size and density are important factors in plant water efficiency and carbon capture. It may be possible to maximise CO2 uptake and water loss by adjusting the size and density of stomata. Many genes and signalling pathways are involved in the complex regulation of stomatal development. The genetic basis of macadamia stomatal size and density remains unknown. This study will investigate the phenotypic variation of the macadamia stomatal apparatus in a wide range of breeding progeny, cultivars, and wild germplasm. The trait's heritability will be determined, and a genome-wide association study will be conducted to identify potential genes associated with the trait. Discovering the genetic basis of the traits in macadamia will be useful for future breeding decisions and planning.
This project is available for Summer scholarship/Honours/Masters coursework/MPhil students, can also be extended to a PhD project.
The student will develop skills in phenotyping, genetics, data analysis, and interpretation of results.
Location: Maroochy Research Facility, 47 Mayers Rd, Nambour. Student needs to travel to Nambour, Tairo and Bundaberg for data/sample collection)
Required background: Genetics, Plant Breeding, Genomics, Botany, Biology, Plant Physiology
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Molecular investigation to determine species composition and extent of genetic base of Australian elite selections of Macadamia
Macadamia is an Australian native crop and is highly valued for its kernel. Using the available cultivars as parents, Australian national macadamia breeding program generated >15,000 breeding progeny and selected 53 elites through first and generation of progeny evaluation. Most of the parents of these selections belong to Macadamia integrifolia or M. tetraphylla or their hybrids. Although pedigree information of the 53 selections is available, species identity is still unexplored.
This project is aimed to investigate the genetic patterns in 53 elite selections and will identify species composition using high-throughput markers. Genetic information from wild species will be used in species composition analysis. Genetic diversity of the selected accessions will be compared with the diversity within cultivated and wild gene pools.
This project is available for summer or winter scholarship/Masters coursework/Hounours students.
Location: Maroochy Research Facility, 47 Mayers Rd, Nambour.
Required background: Biochemistry & Molecular Biology / Genetics / Agriculture/ Botany/ Plant Breeding /Environmental Science/ Ecology
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Macadamia root stock genetics on the variability in scion architecture and branching.
The management of excessive vigour through pruning and hedging is a major expense in commercial macadamia orchards. Recently, Queensland Department of Agriculture and Fisheries (QDAF) and the University of Queensland (UQ) took initiatives to control scion vigour by using rootstocks through two consecutive Horticulture Innovation (HI) Australia funded projects: “Transforming subtropical/tropical tree crop productivity” (AI 13004) and National Tree Crop Intensification in Horticulture Program (AS18000). A diverse range of germplasm of macadamia rootstocks were planted at Nambour with a single scion cultivar. Investigating the effect of rootstocks on the variability in the architectural traits and branching pattern of the scion will be useful to select rootstocks for vigour management. In this project, the scholar will collaborate with a research higher degree student and measure growth traits and branching pattern of a common scion. A branching index equation will be developed to characterise trees for the variability in branching. Statistical analysis will be conducted to find out the effect of rootstock genotypes on scion vigour.
This project is available for Summer scholarship/Honour/Masters course work/MPhil and can be extended to a PhD project.
Required background: Genetics / Agriculture/ Botany/ Plant Breeding /Environmental Science/ Ecology
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Genome wide association study on the phenotypic variability in flowering time in macadamia
Flowering is a phenological trait, which is important for orchard management and productivity. Planting cultivars with known time of flowering will assist farmers in orchard management decisions regarding fertilization, irrigation, establishment of pollinators and pest control. Over the last few decades, the Australian industry breeding program has developed and phenotypically characterized a large collection of cultivated and wild germplasm and multi-parental seedling populations. A quantitative genetic analysis of the phenotypic data will be useful to select progeny with known flowering time. However, the conventional tree breeding approach is time consuming, and laborious. Genomic approach offers potential to increase breeding efficiency through marker-assisted selection. Discovering molecular markers involved in the variability in flowering will help breeders to develop an efficient selection tool. This project was aimed to explore the variability and inheritance pattern of flowering phenology in macadmaia germplasm and to identify genomic regions associated with the trait variation. Using high-throughput DNA marker, a genome-wide association study will be conducted on a colelction of wild genetic resources. Identified markers can be use in future marker assisted selection of breeding progeny.
This project is available for Summer scholarship/Honour/Masters course work/MPhil and can be extended to a PhD project.
Location: Maroochy Research Facility, 47 Mayers Rd, Nambour
Required background: Biochemistry & Molecular Biology / Genetics / Agriculture/ Botany/ Plant Breeding /Environmental Science/ Ecology
Supervision history
Current supervision
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Doctor Philosophy
Exploring the genetic and physiological basis of scion vigour in macadamia
Principal Advisor
Other advisors: Professor Bruce Topp, Dr Lindsay Shaw, Dr Vivi Arief
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Doctor Philosophy
Developing efficient breeding strategies to improve yield and quality in passionfruit
Principal Advisor
Other advisors: Professor Bruce Topp, Dr Vivi Arief, Professor Heather Smyth
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Doctor Philosophy
Genetic basis of the variability in nut traits and their association with nutborer and fruit spotting bug resistance in macadamia
Principal Advisor
Other advisors: Professor Bruce Topp
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Doctor Philosophy
Developing next generation trait diagnostics platforms for analysing single nucleotide polymorphisms in plant breeding
Principal Advisor
Other advisors: Professor Bruce Topp, Professor Femi Akinsanmi
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Master Philosophy
Genetic basis of the variability in nut traits and their association with nut borer resistance in macadamia
Principal Advisor
Other advisors: Professor Bruce Topp
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Doctor Philosophy
Exploring the genetic and physiological basis of scion vigour in macadamia
Principal Advisor
Other advisors: Professor Bruce Topp, Dr Lindsay Shaw, Dr Vivi Arief
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Doctor Philosophy
Impacts of Pests and Diseases in a Range of Orchard Management Systems in Macadamia
Associate Advisor
Other advisors: Professor Femi Akinsanmi
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Doctor Philosophy
Study of self-fertility in a macadamia breeding program
Associate Advisor
Other advisors: Professor Bruce Topp
Completed supervision
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2024
Doctor Philosophy
Genetic Factors Affecting the Accumulation of Palmitoleic Acid and other Beneficial Fatty Acids in Macadamia Nut Kernels.
Associate Advisor
Other advisors: Professor Bruce Topp
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2023
Doctor Philosophy
Genetic variation in Macadamia for resistance to Husk Spot, caused by Pseudocercospora macadamiae
Associate Advisor
Other advisors: Professor Femi Akinsanmi, Associate Professor Craig Hardner, Professor Bruce Topp
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2021
Doctor Philosophy
Genomic-assisted exploitation of wild germplasm for improvement of macadamia
Associate Advisor
Other advisors: Professor Robert Henry, Associate Professor Craig Hardner, Professor Bruce Topp
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2019
Doctor Philosophy
Selection strategies to improve yield in macadamia using component traits and genomics
Associate Advisor
Other advisors: Professor Robert Henry, Associate Professor Craig Hardner, Professor Ben Hayes, Professor Bruce Topp
Media
Enquiries
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- Plant Breeding
- Plant Genetics
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