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Associate Professor Marina Fortes
Associate Professor

Marina Fortes

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Phone: 
+61 7 336 54258

Overview

Background

Marina Fortes is an Associate Professor and Deputy Director for Agriculture in the Biotechnology program at The University of Queensland (UQ), where she leads the Livestock Genomics and Biotechnology Group. Her research focuses on applying genetics, genomics, and biotechnology to improve reproductive efficiency and sustainability in livestock systems. Her group integrates molecular biology, bioinformatics, and precision livestock technologies to address key challenges in the beef industry.

A major current focus of her research is understanding how physiological states, particularly pregnancy, influence enteric methane emissions, grazing behaviour, and metabolism in cattle. By combining field-based measurements with computational and genomic approaches, her work aims to improve carbon accounting methods and support the development of practical mitigation strategies for breeding herds, particularly in tropical production systems.

Marina holds a degree in Veterinary Medicine (2004) and a Master of Science in Animal Reproduction (2007) from the University of São Paulo, Brazil. She completed her PhD in Genetics in 2012 at UQ, supported by international scholarships from UQ and the Beef CRC, and received the Dean’s Commendation for her thesis. She then undertook a postdoctoral position at the Queensland Alliance for Agriculture and Food Innovation (QAAFI), further developing her expertise in genomics and livestock systems. In August 2014, she joined the School of Chemistry and Molecular Biosciences (SCMB) at UQ, where she established her research group.

Her research program is strongly connected to industry and international collaborators, contributing to a dynamic and applied research environment aligned with sustainable livestock production. Her work has been consistently supported by Meat & Livestock Australia, and she was awarded an Advanced Queensland Fellowship (2018–2021) for her research on the genomics of cow fertility.

Marina is also actively involved in teaching and training the next generation of scientists, contributing to undergraduate and postgraduate courses, including Livestock Biotechnology (BIOT7038) within the Master of Biotechnology program. She co-produced the Women in Science podcast alongside Marloes Dekker and Kirsty Short, promoting the visibility and engagement of women in STEM.

Availability

Associate Professor Marina Fortes is:
Available for supervision
Media expert

Qualifications

  • Bachelor of Veterinary Science, Universidade de São Paulo (USP)
  • Masters (Research) of Animal Reproduction, Universidade de São Paulo (USP)
  • Doctor of Philosophy, The University of Queensland
  • Collaboration / Affiliation, Universidade Estadual Paulista (Unesp), Universidade Estadual Paulista (Unesp)

Research interests

  • Beef Cattle Genomics

    In our research, genomics technologies are applied to cattle populations to understand the molecular mechanisms driving production traits and impact on selective breeding.

  • Reproductive Biology

    Understanding bovine reproductive biology, as a model to mammalian organisms, is a key component of our research that can benefit livestock production. Cattle fertility has major implications for the sustainability of the beef and dairy industries.

Research impacts

The Livestock Genomics and Biotechnology Group leads research that advances the sustainability of animal production. Working closely with the Australian beef industry, the group delivers outcomes directly relevant to cattle producers. By improving our understanding of livestock genomics, their research informs selective breeding strategies: an established and effective approach to increasing productivity while reducing the environmental footprint of food production.

Works

Search Professor Marina Fortes’s works on UQ eSpace

134 works between 2008 and 2026

121 - 134 of 134 works

2012

Journal Article

Candidate SNPs for carcass and meat traits in Nelore animals and in their crosses with Bos taurus

Curi, Rogerio Abdallah, Krauskopf, Monique Marcondes, Hadlich, Janaina Conte, Fortes, Marina Rufino Salinas, Vankan, Dianne Margaret, Silva, Josineudson Augusto II Vasconcelos, de Oliveira, Henrique Nunes and da Mota, Marcilio Dias Silveira (2012). Candidate SNPs for carcass and meat traits in Nelore animals and in their crosses with Bos taurus. Pesquisa Agropecuaria Brasileira, 47 (2), 294-301. doi: 10.1590/S0100-204X2012000200019

Candidate SNPs for carcass and meat traits in Nelore animals and in their crosses with Bos taurus

2012

Journal Article

Finding genes for economically important traits: Brahman cattle puberty

Fortes, M. R. S., Lehnert, S. A., Bolormaa, S., Reich, C., Fordyce, G., Corbet, N. J., Whan, V., Hawken, R. J. and Reverter, A. (2012). Finding genes for economically important traits: Brahman cattle puberty. Animal Production Science, 52 (2-3), 143-150. doi: 10.1071/AN11165

Finding genes for economically important traits: Brahman cattle puberty

2012

Conference Publication

Asociación genómica y uso de teoría de network para la disección genética de la pubertad en Bovinos

Fortes, M. R. S., Reverter, A., Hawken, R. J., Thomas, M. G. and Lehnert, S. A. (2012). Asociación genómica y uso de teoría de network para la disección genética de la pubertad en Bovinos. ALAG Congress, Rosario, Argentina, 28-31 October 2012.

Asociación genómica y uso de teoría de network para la disección genética de la pubertad en Bovinos

2012

Other Outputs

Genes and genetic markers associated with puberty in beef cattle

Fortes, Marina Rufino Salinas (2012). Genes and genetic markers associated with puberty in beef cattle. PhD Thesis, School of Veterinary Science, The University of Queensland.

Genes and genetic markers associated with puberty in beef cattle

2012

Conference Publication

Mutations in the PLAG1 region are associated with height, weight, puberty, IGF1 levels and fat deposition in beef cattle

Fortes, M. R. S., Sasazaki, S., Kemper, K. E., Reverter, A., Pryce, J., Barndse, W., Bunch, R., Zhang, Y. D., Hawken, R. J., Goddard, M. E. and Lehnert, S. A. (2012). Mutations in the PLAG1 region are associated with height, weight, puberty, IGF1 levels and fat deposition in beef cattle. 33rd Conference of the International Society of Animal Genetics (ISAG), Cairns, Australia, 15-20 July 2012. International Society of Animal Genetics.

Mutations in the PLAG1 region are associated with height, weight, puberty, IGF1 levels and fat deposition in beef cattle

2011

Journal Article

A single nucleotide polymorphism-derived regulatory gene network underlying puberty in 2 tropical breeds of beef cattle

Fortes, M. R. S., Reverter, A., Nagaraj, S. H., Zhang, Y., Jonsson, N. N., Barris, W., Lehnert, S., Boe-Hansen, G. B. and Hawken, R. J. (2011). A single nucleotide polymorphism-derived regulatory gene network underlying puberty in 2 tropical breeds of beef cattle. Journal of Animal Science, 89 (6), 1669-1683. doi: 10.2527/jas.2010-3681

A single nucleotide polymorphism-derived regulatory gene network underlying puberty in 2 tropical breeds of beef cattle

2011

Conference Publication

Dissecting the genetics underlying reproduction rate in tropically adapted beef cattle

Hawken, R. J., Zhang, Y. M., Fortes, M. R. S., Collis, E., Reverter, A., Barris, W.C., Fordyce, G., Holroyd, R. G., Tier, B., Burrow, H.M. and Lehnert, S. A. (2011). Dissecting the genetics underlying reproduction rate in tropically adapted beef cattle. Applied Genomics for Sustainable Livestock Breeding, Melbourne, Australia, 2-5 May 2011.

Dissecting the genetics underlying reproduction rate in tropically adapted beef cattle

2010

Journal Article

Association weight matrix for the genetic dissection of puberty in beef cattle

Fortes, Marina R. S., Reverter, Antonio, Zhang, Yuandan, Collis, Eliza, Nagaraj, Shivashankar H., Jonsson, Nick N., Prayaga, Kishore C., Barris, Wes and Hawken, Rachel J. (2010). Association weight matrix for the genetic dissection of puberty in beef cattle. Proceedings of the National Academy of Sciences of the United States of America, 107 (31), 13642-13647. doi: 10.1073/pnas.1002044107

Association weight matrix for the genetic dissection of puberty in beef cattle

2010

Journal Article

Real-time PCR genotyping and frequency of the myostatin F94L mutation in beef cattle breeds

Vankan, D. M., Waine, D. R. and Fortes, M. R. S. (2010). Real-time PCR genotyping and frequency of the myostatin F94L mutation in beef cattle breeds. Animal, 4 (4), 530-534. doi: 10.1017/S175173110999139X

Real-time PCR genotyping and frequency of the myostatin F94L mutation in beef cattle breeds

2009

Journal Article

Genetic polymorphisms related to meat traits in purebred and crossbred Nelore cattle

Curi, Rogerio Abdallah, Salinas Fortes, Marina Rufino, Loyola Chardulo, Luis Artur, Silveira, Antonio Carlos, Arrigoni, Mario De Beni, Martins, Cyntia Ludovico, Ortiz D' Avila Assumpcao, Mayra Elena and de Oliveira, Henrique Nunes (2009). Genetic polymorphisms related to meat traits in purebred and crossbred Nelore cattle. Pesquisa Agropecuaria Brasileira, 44 (12), 1660-1666. doi: 10.1590/S0100-204X2009001200015

Genetic polymorphisms related to meat traits in purebred and crossbred Nelore cattle

2009

Book Chapter

Achievement of research in the field of molecular genetics: recent molecular genetics achievements and unfolding applications to livestock

Garcia, Jose Fernando, Salinas Fortes, Marina Rufino, Porto-Neto, Laercio Ribeiro and Boettcher, Paul John (2009). Achievement of research in the field of molecular genetics: recent molecular genetics achievements and unfolding applications to livestock. Animal production and animal science worldwide: a review on developments and research in livestock systems. (pp. 53-58) edited by A. Rosati, A. Tewolde and C. Mosconi. Wageningen, Netherlands: Wageningen Academic Publishers. doi: 10.3920/978-90-8686-656-4

Achievement of research in the field of molecular genetics: recent molecular genetics achievements and unfolding applications to livestock

2009

Journal Article

Bovine gene polymorphisms related to fat deposition and meat tenderness

Fortes, Marina R. S., Curi, Rogerio A., Chardulo, Luis Artur L., Silveira, Antonio C., Assumpcao, Mayra E. O. D., Visintin, Jose Antonio and de Oliveira, Henrique N. (2009). Bovine gene polymorphisms related to fat deposition and meat tenderness. Genetics and Molecular Biology, 32 (1), 75-82. doi: 10.1590/S1415-47572009000100011

Bovine gene polymorphisms related to fat deposition and meat tenderness

2008

Book Chapter

Achievement of research in the field of molecular genetics: recent molecular genetics achievements and unfolding applications to livestock

Garcia, Jose Fernando, Fortes, Marina Rufino Salinas, Porto-Neto, Laercio Ribeiro and Boettcher, Paul John (2008). Achievement of research in the field of molecular genetics: recent molecular genetics achievements and unfolding applications to livestock. Animal production and animal science worldwide. (pp. 53-59) edited by A. Rosati, A. Tewolde and C. Mosconi. Wageningen, Netherlands: Wageningen Academic Publishers. doi: 10.3920/978-90-8686-656-4

Achievement of research in the field of molecular genetics: recent molecular genetics achievements and unfolding applications to livestock

2008

Conference Publication

Genotyping methodology and frequencies of the myostatin F94L mutation in Australian cattle breeds

Vankan, Dianne M., Corley, Sean, Wayne, Deanne and Fortes, Marina (2008). Genotyping methodology and frequencies of the myostatin F94L mutation in Australian cattle breeds. 31st Conference of the International Society of Animal Genetics, Amsterdam, Netherlands, July 20-24, 2008.

Genotyping methodology and frequencies of the myostatin F94L mutation in Australian cattle breeds

Funding

Current funding

  • 2022 - 2026
    LESTR Low Emission Saliva Test for Ruminants
    Meat & Livestock Australia
    Open grant

Past funding

  • 2019 - 2021
    Bull fertility update: historical data, new cohort and advanced genomics (Meat & Livestock Australia grant administered by CSIRO)
    CSIRO
    Open grant
  • 2019
    A versatile accurate mass, high resolution QTOF mass spectrometer for chemistry and proteomic applications
    UQ Major Equipment and Infrastructure
    Open grant
  • 2018 - 2021
    Female Reproduction Phenobank and Validation Herds
    Meat & Livestock Australia
    Open grant
  • 2017 - 2021
    Female Reproduction Phenobank and Validation Herds
    Advance Queensland Research Fellowships
    Open grant
  • 2016 - 2017
    Contribution of non-coding RNA to DNA structure in sperm and male fertility
    UQ Early Career Researcher
    Open grant
  • 2015 - 2017
    Functional genetic markers for beef cattle reproductive traits
    UniQuest Pty Ltd
    Open grant
  • 2014 - 2017
    Genomics and Gene Expression underpinning puberty for Improved Fertility in Australian Brahman Cattle
    UQ Postdoctoral Research Fellowship
    Open grant
  • 2014
    Transcriptome sequencing of Brahman heifers at puberty
    CSIRO Flagships Collaboration Fund
    Open grant
  • 2013 - 2015
    Heritability and role of new sperm assays
    Meat & Livestock Australia
    Open grant
  • 2013 - 2015
    Ideal markers for tropically adapted cattle - proof of concept: causative mutations for bull fertility
    Meat & Livestock Australia
    Open grant
  • 2013
    Heritability and genomics of sperm chromatin integrity: a male fertility parameter for Bos indicus bulls
    UQ New Staff Research Start-Up Fund
    Open grant

Supervision

Availability

Associate Professor Marina Fortes is:
Available for supervision

Looking for a supervisor? Read our advice on how to choose a supervisor.

Available projects

  • Uncovering the link between pregnancy and methane emissions in grazing cattle via artificial intelligence

    A PhD opportunity is available at The University of Queensland for a motivated domestic student (Australian or New Zealand) to contribute to research at the interface of computational science, precision agriculture, and livestock sustainability.

    This project aims to improve the understanding of how pregnancy influences enteric methane emissions, grazing behaviour, and metabolic processes in cattle. The outcomes will contribute to the development of more accurate methane accounting methodologies for breeding herds, with direct relevance to Australia’s livestock industry and climate targets.

    Project overview

    The candidate will work with a rich, high-resolution dataset collected under grazing conditions. A cohort of 40 Brahman heifers (pregnant and non-pregnant) was directly measured for methane emissions using field-based methodologies (SF6 tracer gas). The data also includes: estimates of dry matter intake under pasture conditions; behavioural data from GPS collars and accelerometers; blood metabolites; and rumen microbiome data.

    These data represent a commercially relevant Bos indicus production system, providing a unique opportunity to generate insights with real-world applicability. In addition, this project is a partnership between UQ (SCMB and QAAFI) and CSIRO.

    Please contact via the EOI in the link: https://study.uq.edu.au/study-options/phd-mphil-professional-doctorate/projects/uncovering-link-between-pregnancy-and-methane-emissions-grazing-cattle-artificial-intelligence

  • Literature Review Project: Greenhouse Gas Emissions from Beef Farming

    This project is suitable for Honours or Master students looking to do a literature review and/or write a research proposal about greenhouse gas emissions from beef farming. A variety of beef farming systems co-exist in Australia. The beef industry is interested in understanding which systems are more environmentally sustainable, in terms of greenhouse gas emissions.

  • The interface between genomes and diet in ruminants

    Global population growth is placing increasing demands on the agriculture sector to produce greater amounts of food more efficiently. Livestock products provide a nutritious source of protein for the world population and more efficient production will be required in the future to meet increasing demand. Breeds and individual cattle and sheep can show substantial differences in response to diet with some animals responding more productively than others. The proposed research program will investigate which parts of the genome likely underpin response to diet in cattle and sheep. Biochemical pathways relevant to the new science of nutrigenomics will be uncovered primarily through investigation of genome-wide gene expression data sets available for metabolically important tissues such as muscle, fat, and liver. Cutting edge bioinformatics tools including the latest approaches from network science will be deployed. This knowledge may help us understand why some animals fare better than others under given nutritional circumstances and perhaps inform decisions regarding diet formulation.

    This project is a collaboration with Dr. Nick Hudson https://researchers.uq.edu.au/researcher/14636

Supervision history

Current supervision

Completed supervision

Media

Enquiries

Contact Associate Professor Marina Fortes directly for media enquiries about:

  • Agriculture
  • Beef cattle
  • Genetics
  • Genomics

Need help?

For help with finding experts, story ideas and media enquiries, contact our Media team:

communications@uq.edu.au