You searched for: genetics genomics
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through genomic technologies (GT). Existing datasets are the fast track for creating the large… In our research, genomics technologies are applied to cattle populations to understand the… Dissecting the genetics underlying reproduction rate in tropically adapted beef cattle… Bull fertility update: historical data, new cohort and advanced genomics (Meat & Livestock Australia grant administered by CSIRO)… the research: cattle trials, molecular genetics work in the laboratory, bioinformatics, and data analyses.… Beef Cattle Genomics… Livestock Genomics Group. As a researcher, Marina is interested in genetics and genomics, sustainable… genetics and biology can help devise genomic selection methods to improve heifer fertility. In this…
Marina Fortes has a degree in Veterinary Medicine (2004) and a Master of Science in Animal Reproduction (2007) from the University of Sao Paulo, Brazil. She completed her PhD in genetics, in 2012 at The University of Queensland (UQ). For her PhD Marina had international scholarships from UQ and the …
The Livestock Genomics Group leads research projects that impact on the sustainability of animal production. The Australian beef industry is our main research partner, and so our projects deliver outcomes to cattle producers. A better understanding of the genomics of livestock informs selective bree …
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through the GBR. Using innovative approaches from population genomics, invasive species genetics, and… Ecological genetics in the North Atlantic: environmental gradients and adaptation at specific loci… Genetics of climate-change adaptation in Great Barrier Reef corals… Focusing regional marine conservation: merging seascape genetics and biophysical modeling within a graph-theoretic framework… , evolution and genomics to study climate-change adaptation of corals in the Great Barrier Reef. More detail… Ecological and evolutionary genomics My research group uses genetic… The field of seascape genetics aims to evaluate the effects of environmental features on spatial…
Ecological and evolutionary genomics
My research group uses genetic markers as tools for understanding dispersal and gene flow, often with conservation implications and most frequently focusing on highly dispersive marine animals such as fishes, mussels, and corals. We also study how gene flow and …
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evolved to the completion of her PhD in molecular genetics in 2008. Prior to her current appointments she… . Wild Sorghum species also allow comparative genomic approaches for understanding the genetic basis of…
Dr Shapter's background was originally in Agricultural Science and higher education which evolved to the completion of her PhD in molecular genetics in 2008. Prior to her current appointments she was the senior researcher on ARC linkage, Australian Flora Foundation and RIRDC research grants looking …
As a research assistant Frances worked on projects developing the application of pyrosequencing to wheat microsatellites and allele specific PCR for SNP detection in Barley (1). During her PhD she identified novel genotypes (2) and phenotypes (3,4) within Australia's unique native grasses which may …
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Modern genetics and biotechnology of soybean: Nitrogen fixation and nodulation… Enhancing the genetic and genomic understanding of the legume tree, Pongamia pinnata, as a source of sustainable biodiesel and aviation fuel.… Functional genomics using plant biotechnology (genetics, genomics, bioinformatics, transcriptomics), genetic transformation and genome editing (CRISPR).… A/Prof Brett Ferguson’s research interest are in molecular genetics, genomics, genetic… of genetics. Both mutants and transgenics displaying ethylene insensitivity have now been described…
A/Prof Brett Ferguson’s research interest are in molecular genetics, genomics, genetic transformation and genome editing, such as CRISPR, to unravel the molecular mechanisms driving plant development. His primary focus is on legume crops, using biotechnology and bioinformatic approaches to identi …
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population genomic approaches and classical genetics with field experiments to trace the genes responsible… remain largely unknown. Therefore we have a limited understanding of how ecology and genetics interact… Divergent selection and heterogenous genomic divergence… How does naturally occurring manganese affect the physiology, genetics and health of organisms on Groote Eylandt?… The genetics basis of adaptation… parallel evolution of these forms. Analyses of the patterns of genomic differentiation between…
In The Ortiz-Barrientos Lab we seek to understand how natural selection drives the origin of traits and new species. We combine empirical and theoretical approaches from multiple disciplines.
We are located in beautiful Brisbane, Australia, in the School of The Environment at The University of Que …
Our research informs how plants come about and how they adapt to harsh conditions. As we seek to discover rules for adaptation, we hope this knowledge will guide research in agriculture and conservation biology. We currently collaborate with an amazing suite of researchers to figure out how plant sy …
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broadly applicable to the wider research community, and help to answer key questions in genetics and evolutionary biology in the current genomic era.… Integrating genomics and multivariate evolutionary quantitative genetics: a case study of constraints on sexual selection in Drosophila serrata… Building Capacity in Quantitative Genomics… Quantitative genetics of the vectors of human infectious disease… Our lab aims to test fundamental hypotheses in genetics and evolutionary biology. Principally… Indirect genetics effects (IGEs)-when the genotype of one individual affects the phenotypic…
Our lab aims to test fundamental hypotheses in genetics and evolutionary biology. Principally, we are interested the relationship between genotypic and phenotypic change during adaptive evolution. This line of inquiry requires an understanding of both the type of selection acting on traits as they e …
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Functional genomics and genetics of legumes to define the plant's function during nodulation and lateral root growth… Functional genomics and molecular physiology of nodules.Professor Gresshoff is the… . This transcriptome dataset will serve as a valuable basis for studies on functional genomics, molecular genetics and molecular breeding of Pongamia.…
Functional genomics and molecular physiology of nodules.
Professor Gresshoff is the Director of the ARC Centre of Excellence for Integrative Legume Research.
His main research interests are the following areas:
1) Functional genomic analysis of nodulation and nitrogen fixation in legumes:
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High marker density GWAS provides novel insights into the genomic architecture of terpene oil yield in Eucalyptus… ecological importance. Currently, little genomic information for E. pauciflora is available. Here, we…
I am a computational biologist with a centre-wide role in the ARC Centre of Excellence for Plant Success in Nature and Agriculture, based here at UQ. I spend my time researching new computational techniques for predicting complex quantitative traits by integrating multiple layers of 'omics data (amo …
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sea sponge from the Great Barrier Reef, and advanced multi-omic approaches (genomics plus cell… Genomic insights into the marine sponge microbiome… Building Capacity in Quantitative Genomics… Evolutionary and ecological genomics of marine invertebrate animals. Animals evolve… variation was analysed via population genetics and phylogenetics, and by nested clade analyses (NCA). Our…
Evolutionary and ecological genomics of marine invertebrate animals.
Animals evolve because their genomes need to respond to the constantly changing environment presented by both their external habitat and their internal microbial symbionts. Over evolutionary time, these different factors interact …
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Our group uses genomics to study microorganisms on the Great Barrier Reef (GBR) and assess their roles in maintaining reef health and stability.… A genomic view of the reef-building coral Porites lutea and its microbial symbionts… Genomics… microbial communities that underpin coral health. Here, we present an integrated genomic characterization…