Overview
Background
Genetics of mental health (new research)
We are using the genetic model organism, C. elegans, do investigate the genetic basis of both normal and disordered behaviour. Our current interests are identifying the genes responsible for anxiety and depression as well as the genes for eating disoders and addiction. Using C. elegans as a model organism will also allow us to study gene function as it relates to behaviour.
Molecular mechanisms of phosphine resistance (other research)
Genetic mapping of oxidative stress resistance genes. The fumigant phosphine disrupts oxidative metabolism, resulting in the production of reactive oxygen intermediates. This causes the premature ageing and death of targeted pests. Insect pests of stored grain in Australia now exhibit resistance to phosphine at levels more than 200 times the normal lethal dose.
We have genetically mappedf and identified the genes responsible for phosphine resistance in tall major insect pests of stored grain. We are using a systems biology approach in the model organism C. elegans to understand the molecular basis of phosphine action. Our genetic studies have recently shown that resistance to phosphine is associated with an extension of lifespan
Availability
- Associate Professor Paul Ebert is:
- Available for supervision
- Media expert
Fields of research
Qualifications
- Bachelor (Honours) of Science (Advanced), University of California-Riverside
- Masters (Coursework) of Science, University of Washington
- Doctor of Philosophy, Washington State University
Research interests
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Genetics of mental health
The genetics of mental health is notoriously difficult to study. I am developing behavioural assays in the model organism, Caenorhabditis elegans to study the genetics and neuropharmacology of anxiety and depression as well as anorexia and addiction.
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Metabolic toxicology - fumigant toxicology
I am interested in energy metabolism and mitochondrial function. My work is based around the toxicology of the agricultural fumigant, phosphine. The phosphine resistance gene, dld, not only results in phosphine resistance, but also modulates cellular energy metabolism.
Research impacts
Mental health
Anxiety is the most common mental health condition. Hundreds of candidate anxiety genes have been identified by human Genome Wide Association Studies (GWAS), but the functions of these genes are difficult to study in humans or mammalian model organisms. We have developed behavioural assays using C. elegans that are allowing us to confirm the role in anxiety of the candidate genes identified by GWAS.
We have also identified a suite of compounds that can induce anorexia in C. elegans. This system is allowing us to test the limited number of candidate anorexia genes that have been identified by GWAS and to identify new genes by genetic screens.
Other research
Our discovery of the economically important phosphine resistance gene has allowed us to characterise resistance across Australia and India. It is now being use to monitor resistance management strategies in collaboration with major grain handling companies to improve commercial practice in Australia and India. This is the subject of a recent Australia-India AISRF project on which I was the UQ lead investigator. We have also used the gene marker to characterise resistance in Vietnam, China, Turkey. Others have used our work to characterise resistance in the USA and Brazil.
We have also sought to use our understanding of how phosphine works to identify synergistic gases that might be used to extend the useful life of phosphine as a grain fumigant. This work was supported by an ARC Discovery grant and a research grant from the Plant Biosecurity CRC.
We have also discovered the the phosphine resistance gene, dld, is a lifespan extending factor. Interestingly, it also protects against pathology in a C. elegans model of Alzheimer's disease, a serious ageing associated disease. Alzheimer's disease is a major disease of global importance with huge economic ramifications due to the level of care required by people who suffer from dementia. Our system allows us to explore the metabolic basis of the disease, an aspect that has until recently been largely neglected.
Works
Search Professor Paul Ebert’s works on UQ eSpace
2012
Journal Article
The rph1 gene is a common contributor to the evolution of phosphine resistance in independent field isolates of Rhyzopertha dominica
Mau, Yosep S., Collins, Patrick J., Daglish, Gregory J., Nayak, Manoj K., Pavic, Hervoika and Ebert, Paul R. (2012). The rph1 gene is a common contributor to the evolution of phosphine resistance in independent field isolates of Rhyzopertha dominica. PLoS One, 7 (2) e31541, e31541.1-e31541.13. doi: 10.1371/journal.pone.0031541
2012
Journal Article
Phosphine resistance in the rust red flour beetle, Tribolium castaneum (Coleoptera: Tenebrionidae): Inheritance, gene interactions and fitness costs
Jagadeesan, Rajeswaran, Collins, Patrick J., Daglish, Gregory J., Ebert, Paul R. and Schlipalius, David I. (2012). Phosphine resistance in the rust red flour beetle, Tribolium castaneum (Coleoptera: Tenebrionidae): Inheritance, gene interactions and fitness costs. PloS One, 7 (2) e31582, e31582.1-e31582.12. doi: 10.1371/journal.pone.0031582
2012
Journal Article
The redox system in C. elegans, a phylogenetic approach
Johnston, Andrew D. and Ebert, Paul R. (2012). The redox system in C. elegans, a phylogenetic approach. Journal of Toxicology, 2012 546915, 546915.1-546915.20. doi: 10.1155/2012/546915
2011
Journal Article
Mechanisms of phosphine toxicity
Nath, Nisa S., Bhattacharya, Ishita, Tuck, Andrew G., Schlipalius, David I. and Ebert, Paul R. (2011). Mechanisms of phosphine toxicity. Journal of Toxicology, 2011 494168, 494168.1-494168.9. doi: 10.1155/2011/494168
2011
Journal Article
Sulfurous gases as biological messengers and toxins: Comparative genetics of their metabolism in model organisms
Mathew, Neal D., Schlipalius, David I. and Ebert, Paul R. (2011). Sulfurous gases as biological messengers and toxins: Comparative genetics of their metabolism in model organisms. Journal of Toxicology, 2011 394970, 394970.1-394970.14. doi: 10.1155/2011/394970
2008
Journal Article
Mitochondrial uncouplers act synergistically with the fumigant phosphine to disrupt mitochondrial membrane potential and cause cell death
Valmas, Nicholas, Zuryn, Steven and Ebert, Paul R. (2008). Mitochondrial uncouplers act synergistically with the fumigant phosphine to disrupt mitochondrial membrane potential and cause cell death. Toxicology, 2008 (252), 33-39. doi: 10.1016/j.tox.2008.07.060
2008
Journal Article
Gene interactions constrain the course of evolution of phosphine resistance in the lesser grain borer, Rhyzopertha dominica
Schlipalius, D. I., Chen, W., Collins, P.J., Nguyen, T., Reilly, P.E.B. and Ebert, P. R. (2008). Gene interactions constrain the course of evolution of phosphine resistance in the lesser grain borer, Rhyzopertha dominica. Heredity, 100 (5), 506-516. doi: 10.1038/hdy.2008.4
2008
Conference Publication
DNA testing for phosphine resistance - the future of resistance monitoring and management
Schlipalius, D.I., Jagadeesan, R., Mau, Y., Collins, P.J. and Ebert, P.R. (2008). DNA testing for phosphine resistance - the future of resistance monitoring and management. 8th International Conference on Controlled Atmosphere and Fumigation in Stored Products, Chengdu, China, 21-26 September 2008. China: Sichuan Publishing house of Science & Technology.
2008
Conference Publication
Biochemical mechanisms of phosphine action and resistance
Kuang, J., Zuryn, S., Valmas, N., Cha'on, U, Cui, Y.W., Cheng, Q., Tuck, A., Collins, P.J. and Ebert, P.R. (2008). Biochemical mechanisms of phosphine action and resistance. 8th International Conference on Controlled Atmosphere and Fumigation in Stored Products, Chengdu, China, 21-26 September 2008. China: Sichuan Publishing house of Science & Technology.
2008
Book Chapter
Honeybee
Schlipalius, D., Ebert, P. R. and Hunt, G. J. (2008). Honeybee. Genome mapping and genomics in arthropods. (pp. 1-16) edited by Wayne Hunter and Chittaranjan Kole. Berlin, Germany: Springer. doi: 10.1007/978-3-540-73833-6_1
2007
Journal Article
Disruption of iron homeostasis increases phosphine toxicity in Caenorhabditis elegans
Cha'on, Ubon, Valmas, Nicholas, Collins, Patrick J., Reilly, Paul E. B., Hammock, Bruce D. and Ebert, Paul R. (2007). Disruption of iron homeostasis increases phosphine toxicity in Caenorhabditis elegans. Toxicological Sciences, 96 (1), 194-201. doi: 10.1093/toxsci/kfl187
2006
Journal Article
Comparative toxicity of fumigants and a phosphine synergist using a novel containment chamber for the safe generation of concentrated phosphine gas
Valmas, N. and Ebert, P R (2006). Comparative toxicity of fumigants and a phosphine synergist using a novel containment chamber for the safe generation of concentrated phosphine gas. Plos One, 1 (2 Articfle e130) e130, 1-6. doi: 10.1371/journal.pone.0000130
2006
Journal Article
New tools for management of phosphine resistance
Schlipalius, D., Collins, P. J., Maul, Y. and Ebert, P. R. (2006). New tools for management of phosphine resistance. Outlooks on Pest Management, 17 (2), 52-56. doi: 10.1564/16apr02
2006
Conference Publication
Should peers be the face of first year learning?
Miller, V., Oldfield, E. G., O'Brien, M., Hughes, C. P. and Ebert, P. R. (2006). Should peers be the face of first year learning?. 9th Pacific Rim First Year in Higher Education Conference, Griffith University Gold Coast, Qld, Australia, 12-14 July, 2006.
2005
Journal Article
Identification of functional sequences in the pregenomic RNA promoter of the Banana streak virus Cavendish strain (BSV-Cav)
Remans, T., Grof, C. P. L., Ebert, P. R. and Schenk, P. M. (2005). Identification of functional sequences in the pregenomic RNA promoter of the Banana streak virus Cavendish strain (BSV-Cav). Virus Research, 108 (1-2), 177-186. doi: 10.1016/j.virusres.2004.09.005
2005
Journal Article
Functional promoter analysis using an approach based on an in vitro evolution strategy
Remans, Tony, Grof, Christopher P. L., Ebert, Paul R. and Schenk, Peer M. (2005). Functional promoter analysis using an approach based on an in vitro evolution strategy. Biotechniques, 38 (2), 209-216. doi: 10.2144/05382ST01
2004
Journal Article
Antagonistic interaction between abscisic acid and jasmonate-ethylene signaling pathways modulates defense gene expression and disease resistance in Arabidopsis
Anderson, Jonathan P., Badruzsaufari, Ellet, Schenk, Peer M., Manners, John M., Desmond, Olivia J., Ehlert, Christina, Maclean, Donald J., Ebert, Paul R. and Kazan, Kemal (2004). Antagonistic interaction between abscisic acid and jasmonate-ethylene signaling pathways modulates defense gene expression and disease resistance in Arabidopsis. Plant Cell, 16 (12), 3460-3479. doi: 10.1105/tpc.104.025833
2004
Conference Publication
Genomic strategies in the study of nutrition
Ebert, P. R. (2004). Genomic strategies in the study of nutrition. Nutrition Society of Australia 28th Annual Scientific Meeting, Brisbane, 11-13 Aug, 2004.
2004
Conference Publication
Molecular mechanisms of phosphine toxicity and the genetics of resistence
Ebert, P. R., Cheng, Q., Valmas, N., Zuryn, S. J., Cha'on, U., Schlipalius, D., Collins, P., Mau, Y., Chen, W., Whan, A. P., Huang, Y. and Chiu, H. (2004). Molecular mechanisms of phosphine toxicity and the genetics of resistence. Entomology Strength in Diversity, Brisbane, Australia, 11-15 August. Australia: Carillon Conference Management.
2004
Edited Outputs
Asia Pacific Journal of Clinical Nutrition
P. R. Ebert ed. (2004). Asia Pacific Journal of Clinical Nutrition. Nutrition Society of Australia 28th Annual Scientific Meeting, Brisbane Convention Centre, Brisbane, 11-13 August. Australia: H E C Press.
Funding
Past funding
Supervision
Availability
- Associate Professor Paul Ebert is:
- Available for supervision
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Available projects
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Phosphine toxicology
This project is focused on energy metabolism and mitochondrial function as it relates to the toxicology of the agricultural fumigant, phosphine. This project employs a systems biology approach that ionvolves bioinformatics, genomics, metabolomics and functional genetics in the model organism, Caenorhabditis elegans.
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Genetics of mental health
A major focus of my lab is investigating the genetics of mental health in the genetic model organism, C. elegans. The fundamental insight that makes it possible to study mental health in a nematode like C. elegans is that at the foundation of every behavioural disorder is a completely normal evolved behaviour. Thus, to study anxiety, the most widespread mental health problem that affects society, one has only to recognise that it is a component of harm avoidance mechanisms. Every animal has the ability to detect and evaluate potential harms, so the genetics of harm avoidance can provide fundamental insight into a bewildering array of anxiety disorders that currently lack a unifying theoretical foundation.
My lab is using a combination of psychoactive drugs, C. elegans strains with neural signalling mutations and the tools of systems biology to study:
- Eating disorders
- Addiction
- Anxiety
And possibly:
- Depression
- Attention deficit hyperactivity disorder
- Learning and forgetting
Supervision history
Current supervision
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Master Philosophy
Mechanisms of phosphine toxicity under low oxygen
Principal Advisor
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Doctor Philosophy
Transposon Activation as an Adaptive Stress Response in C. elegans
Principal Advisor
Other advisors: Professor Sandie Degnan
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Doctor Philosophy
Comparative analysis of instinctual feeding behaviour and addiction in the genetic model organism, C. elegans.
Principal Advisor
Other advisors: Associate Professor Steven Zuryn
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Doctor Philosophy
Pharmacogenetics of anorexia in the model organism C.elegans
Principal Advisor
Other advisors: Associate Professor Steven Zuryn
Completed supervision
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2022
Doctor Philosophy
Investigating Environmental Stress as a Driver of Epigenetic and Genetic Variation Using the Model Organism C. elegans.
Principal Advisor
Other advisors: Associate Professor Steven Zuryn
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2019
Doctor Philosophy
The relationship between phosphine resistance and genetic determinants of longevity
Principal Advisor
Other advisors: Dr Rebecca Cramp
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2018
Doctor Philosophy
Phosphine Toxicity in Caenorhabditis elegans: Synergy and Cross-Resistance with Other Pest Control Treatments, Including Gamma Radiation
Principal Advisor
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2018
Doctor Philosophy
Characterization of Caenorhabditis elegans phosphine resistant mutant alh-6(wr3)
Principal Advisor
Other advisors: Professor James Fraser
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2017
Doctor Philosophy
Metabolic study of Alzheimer's disease using mutant C. elegans
Principal Advisor
Other advisors: Professor Jürgen Götz
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2017
Doctor Philosophy
Phosphine resistance mechanisms in Caenorhabditis elegans
Principal Advisor
Other advisors: Professor Massimo Hilliard
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2016
Doctor Philosophy
Genetics of phosphine resistance in the rice weevil Sitophilus oryzae (L.) (Coleoptera: Curculionidae)
Principal Advisor
Other advisors: Professor Steve Chenoweth
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2015
Doctor Philosophy
Developing high-throughput methods for C. elegans to better understand the newly discovered gasotransmitter sulfur dioxide
Principal Advisor
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2012
Doctor Philosophy
Molecular genetics and ecology of phosphine resistance in Lesser Grain Borer, Rhyzopertha dominica (F.) (Coleoptera: Bostrichidae)
Principal Advisor
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2009
Doctor Philosophy
Studies on Phosphine Toxicity and resistance mechanisms in Caenorhabditis elegans
Principal Advisor
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2008
Doctor Philosophy
Comparative Genetic and Toxicological Analysis of Phosphine Resistance in the Lesser Grain Borer [(Rhyzopertha dominica (f.) (Coleoptera: Bostrichidae)]
Principal Advisor
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2008
Doctor Philosophy
Mitochondrial Phosphine Toxicity and the Physiology and Genetics of Longevity in Caenorhabditis Elegans
Principal Advisor
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2008
Doctor Philosophy
Genetic mapping and pharmacological analysis of phosphine toxicity and resistance pathways in Caenorhabditis elegans
Principal Advisor
Other advisors: Dr Simon Worrall
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2006
Doctor Philosophy
ROLE OF IRON AND FERRITIN IN THE TOXICITY OF PHOSPHINE TO Caenorhabditis elegans
Principal Advisor
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2005
Master Philosophy
GABA NEUROTRANSMITTER TRANSPORTERS (GAT)-1A AND GAT-1B, FROM THE HONEY BEE (APIS MELLIFERA): STRUCTURE, PHYLOGENETICS, EXPRESSION AND FUNCTION
Principal Advisor
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2005
Doctor Philosophy
MOLECULAR ANALYSIS OF CROSS COMMUNICATION BETWEEN SIGNAL TRANSDUCTION PATHWAYS DURING PATHOGEN RESISTANCE RESPONSE IN Arabidopsis thaliana
Principal Advisor
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2004
Doctor Philosophy
GENETIC ENGINEERING OF DISEASE RESISTANCE BY THE MANIPULATION OF PLANT DEFENCE SIGNALLING GENES
Principal Advisor
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2004
Doctor Philosophy
MOLECULAR GENETICS AND LINKAGE ANALYSIS OF PHOSPHINE RESISTANCE IN THE LESSER GRAIN BORER, RHYZOPERTHA DOMINICA (COLEOPTERA: BOSTRICHIDAE)
Principal Advisor
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2003
Doctor Philosophy
BANANA STREAK BADNAVIRUS (BSV) PROMOTERS - CHARACTERISATION, OPTIMISATION AND APPLICATION
Principal Advisor
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2002
Doctor Philosophy
MOLECULAR-GENETICS OF OLFACTION AND ITS ROLE IN THE REGULATION OF INSECT BEHAVIOUR
Principal Advisor
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2015
Doctor Philosophy
Mechanisms underlying inhibition of muscle disuse atrophy during aestivation in the green-striped burrowing frog, Cyclorana alboguttata
Associate Advisor
Other advisors: Dr Rebecca Cramp, Professor Craig Franklin
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2007
Doctor Philosophy
MITOCHONDRIAL GENOMICS OF LICE (INSECTA: PHTHIRAPETERA)
Associate Advisor
Other advisors: Professor Stephen Barker
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2005
Doctor Philosophy
Biochemical and functional characterization of cysteine proteases from ginger rhizome (Zingiber officinale)
Associate Advisor
Media
Enquiries
Contact Associate Professor Paul Ebert directly for media enquiries about:
- C elegans - genetics
- Fumigant phosphine resistance in insects
- Genetics - C elegans
- Grain storage insects
- Insect fumigants
- Insect genetics
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