Showing posts with label #jobs. Show all posts
Showing posts with label #jobs. Show all posts

Wednesday, 19 July 2023

The OceanOmics Centre is hiring! Research technician positions available

We are recruiting two new positions for the Minderoo OceanOmics Centre at UWA: a Marine Genomics Research Technician and an eDNA Research Technician / Scientific Officer. These are both full-time two-year positions (with likely opportunities for extension), and applications close 11:55 PM AWST on Sunday, 6 August 2023. Please see the link below to find out more. Informal enquiries are also welcome - please contact Rich Edwards.

We are seeking two new members of the technical support team for the OceanOmics Centre, particularly with respect to all aspects of DNA sequencing (sample extraction, library preparation and setting up sequencing runs). You’ll get to play with the latest sequencing technologies, including Illumina NovaSeq/NextSeq, PacBio Sequel/Revio, and ONT PromethION P24. One role will focus on marine vertebrate reference genomes, and associated techniques (e.g. high molecular weight DNA extract, and HiC proximity ligation). The other role has an environmental DNA (eDNA) focus, with more emphasis on Illumina sequencing and liquid handling robots.

About the team

The Minderoo OceanOmics Centre at UWA is a partnership between UWA and Minderoo Foundation to undertake research and development under the direction of Minderoo’s OceanOmics Program. Part of Minderoo’s Flourishing Oceans initiative, this ambitious program aims to revolutionise ocean conservation through application of novel environmental DNA technologies. This includes the development of innovative laboratory and computational approaches to optimise and scale collection, processing and analysis of environmental DNA (eDNA) from marine environments, as well as generate a comprehensive reference library of marine vertebrate genome data. All data produced as part of the OceanOmics program will be subject to rigorous QA/QC and released publicly through open access repositories.

Located in the Bayliss Building on the UWA Crawley Campus, the OceanOmics Centre combines a joint Ocean Genomes Laboratory, an OceanOmics/eDNA Laboratory, and Computational Biology Services. Equipped with the latest high-throughput sequencing technology, liquid handling robotics, flow cytometry, and computational infrastructure, the centre is staffed by a collaborative team of scientists (from both Minderoo and UWA) and UWA technical staff. Core centre operations support the Minderoo OceanOmics Program, under the direction of senior Minderoo employees.

UWA staff, including this postholder, are part of the UWA Oceans Institute, a multidisciplinary research institution with core offices in the nearby Indian Ocean Marine Research Centre building, and liaise closely with Minderoo employees for day-to-day operations.

For more details, and to apply, visit the UWA jobs site: https://external.jobs.uwa.edu.au/cw/en/job/512661 and https://external.jobs.uwa.edu.au/cw/en/job/514981.

We are also recruiting students for three Pawsey student internships.

Thursday, 29 June 2023

Three Pawsey Internship projects available for the Ocean Genomes Project

We have three Pawsey student internships available this summer with the Ocean Genomes Laboratory in the Minderoo OceanOmics Centre at UWA. Closing date: 07 August, 2023 at 17:00 AWST (Perth time). This is a 10-week, paid program open to exceptional undergrad (2nd/3rd year), Honours, Master’s and PhD students. Apply at the CSIRO Application page. Please get in touch if you want to know more and/or are interested in a student research project in the lab.

Optimising workflows for whole genome assembly for marine vertebrates (Project #04)

The biodiversity of marine vertebrates is critical for the health of our ocean’s ecosystem, but is under immediate threat from climate change, pollution, overfishing and habitat destruction. To advance our understanding of how best to protect and sustain our ocean life, global efforts are underway (such as the Vertebrate Genome Project; VGP) to establish a complete library of high-quality reference genomes for all ~22,000 marine vertebrates.

Reference genomes are pivotal not only for answering fundamental questions in marine biology and evolution, but also for guiding the conservation of species most at risk within our changing oceans, and for accurately monitoring biodiversity.

This project utilizes data generated in-house, either by Illumina short-read or PacBio high-fidelity long-read sequencing of Australian marine vertebrate species. The primary objective is to optimize analysis workflows on Pawsey, encompassing the entire life cycle of the data from its raw format to the ultimate outcome of a high-quality assembled genome. We have data across a diverse range of species covering small to large genome sizes.

A containerised Pawsey workflow for Diploidocus (Project #10)

Bioinformatics in general, and genomics specifically, is replete with complex workflows that do not translate easily to HPC. Frequently, genomics pipelines will incorporate many different tools and/or in-built functions with very different computational requirements in terms of multithreading, memory requirements and IO pressures. The Diploidocus genome curation pipeline exemplifies this problem with some lengthy single-processor steps building on data produced by highly parallelised tools, such as minimap2. As well as adapting a specific mission-critical tool, this project will help identify and establish some general principles for optimising genomics code/workflows for running on Setonix.

Diploidocus is a published genome curation and clean-up tool that utilises several different underlying bioinformatics tools and in-built algorithms. Different steps (and tools) in the pipeline have markedly different CPU, IO and memory requirements, including some lengthy non-parallelised portions. This makes it hard to run efficiently on HPC without wasting resource allocation and/or failing to take advantage of parallelisation when available.

The expected outcome of this project is a Nextflow workflow for the deployment of the Diploidocus pipeline on HPC. This will (a) increase in-house efficiency of HPC usage, and (b) make Diploidocus more attractive as a tool to other research groups.

A containerised Pawsey workflow high throughput phylogenomics (Project #14)

This project aims to produce a robust and efficient phylogenomics workflow for whole genome sequencing data.

One important application of genome assemblies is to test and improve the taxonomic classification of species using large-scale genome-wide phylogenetics, known as phylogenomics. There is a previously developed Snakemake workflow for the rapid generation of phylogenomic trees from low- to mid-coverage whole genome shotgun sequencing data. This pipeline (1) creates multiple rapid draft assemblies; (2) identifies an optimal set of orthologous genes per species using BUSCO and BUSCOMP; (3) generates a multiple sequence alignment per gene; (4) generates a phylogenetic tree per gene; and (5) generates a consensus tree from all the individual gene trees.

There is now a requirement to (1) update the pipeline to be optimised for the high-coverage draft and reference genomes created by the Ocean Genomes Project, and (2) convert this pipeline from PBS/Snakemake to SLURM/Nextflow in-line with other genomics workflows being developed at the Minderoo OceanOmics Centre at UWA.

This project will adapt the wgs2tree workflow to optionally start from a set of existing genome assemblies and BUSCO orthologue annotations and implement a Nextflow/SLURM workflow optimised to run efficiently on Pawsey.

Thursday, 22 June 2023

The Minderoo OceanOmics Centre at UWA is hiring - lab manager position available

We are recruiting a new lab manager position for the Minderoo OceanOmics Centre at UWA. This is a full-time three-year position, available at Level 6 or 7, depending on experience. Applications close 11:55 PM AWST on Thursday, 13 July 2023. Please see the link below to find out more. Informal enquiries are also welcome - please contact Rich Edwards.

We are seeking a detail-oriented professional who possesses excellent organisational and managerial skills, ideally with a strong scientific background. Your operations experience will ensure smooth functioning of the laboratory, promoting a safe, productive and efficient working environment. As lab manager, you will work closely with the Lead Academic of the OceanOmics Centre to optimise operations to support the goals of Minderoo’s OceanOmics Program.

About the team

The Minderoo OceanOmics Centre at UWA is a partnership between UWA and Minderoo Foundation to undertake research and development under the direction of Minderoo’s OceanOmics Program. Part of Minderoo’s Flourishing Oceans initiative, this ambitious program aims to revolutionise ocean conservation through application of novel environmental DNA technologies. This includes the development of innovative laboratory and computational approaches to optimise and scale collection, processing and analysis of environmental DNA (eDNA) from marine environments, as well as generate a comprehensive reference library of marine vertebrate genome data. All data produced as part of the OceanOmics program will be subject to rigorous QA/QC and released publicly through open access repositories.

Located in the Bayliss Building on the UWA Crawley Campus, the OceanOmics Centre combines a joint Ocean Genomes Laboratory, an OceanOmics/eDNA Laboratory, and Computational Biology Services. Equipped with the latest high-throughput sequencing technology, liquid handling robotics, flow cytometry, and computational infrastructure, the centre is staffed by a collaborative team of scientists (from both Minderoo and UWA) and UWA technical staff. Core centre operations support the Minderoo OceanOmics Program, under the direction of senior Minderoo employees. UWA staff, including this postholder, are part of the UWA Oceans Institute, a multidisciplinary research institution with core offices in the nearby Indian Ocean Marine Research Centre building, and liaise closely with Minderoo employees for day-to-day operations.

For more details, and to apply, visit the UWA jobs site: https://external.jobs.uwa.edu.au/cw/en/job/514000.

Watch this space for some further opportunities coming soon: two laboratory research technicians, and three Pawsey student internships.

Friday, 21 October 2022

The Ocean Genomes Lab is hiring - Bioinformatics and Sequencing technicians wanted!

Adding to the recently advertised Sequencing technician posts (closing 27 October), we are now pleased to advertise two bioinformatics research assistant positions to support our creation of marine vertebrate reference genome library. If you have experience with genome assembly or bioinformatics workflows, and are passionate about saving marine biodiversity, come and join us!

Two positions are available at Level 5 or 6, depending on your experience. Both roles will be providing bioinformatics support for our marine vertebrate reference genome project. You’ll get to play with data from the latest sequencing toys, including Illumina NovaSeq 6000, NextSeq 2000 and iSeq 100, the PacBio Sequel IIe, and ONT (probably PromethION and MinION).

Job roles will include developing and applying genome assembly workflows, data curation and QC, data sharing, and development/benchmarking of comparative genomics and genome assembly curation tools. If you have experience or passion for integrating bioinformatics workflows with Laboratory Information Management Systems and/or Electronic Laboratory Notebooks, we’d also love to hear to from you. SQL database skills would not go amiss too.

We’re a new team with lots to do, so there is plenty of scope to make the position your own and play to your strengths.

The closing date for applications is 11:55 PM AWST on Thursday 10 November 2022.

To learn more about these opportunities, please click here or contact Rich Edwards at rich.edwards@uwa.edu.au.

ABOUT THE TEAM

The Minderoo OceanOmics Centre at UWA combines a joint Ocean Genomes Laboratory, an OceanOmics Laboratory, and Computational Biology Services.

Equipped with the latest high-throughput sequencing technology and in collaboration with global partners, the Ocean Genomes Laboratory will generate a comprehensive library of high quality marine vertebrate reference genome assemblies. All such reference genome data will be subject to rigorous QA/QC and all assemblies will be released publicly with open access.

The Ocean Genomes Laboratory will undertake research and development under the direction of Minderoo’s ambitious OceanOmics Program which has the goal of revolutionising ocean conservation through novel marine sampling and genomics approaches and scaling these to significantly advance our knowledge of marine life. The Ocean Genomes Laboratory and Computational Biology Services will include state of the art infrastructure including sample and eDNA preparation areas, flow cytometry, single cell sequencing equipment and the latest bioinformatics and computational biology tools.

Thursday, 6 October 2022

The Ocean Genomes Laboratory is hiring!

The Minderoo OceanOmics Centre at UWA Ocean Genomes Laboratory is now hiring our technical team to support high throughput DNA sequencing and genome assembly. We currently have three "wet" lab positions going: a Sequencing Specialist Scientific Officer, and two Sequencing Technician positions. Both roles will be providing technical support in the lab, particularly with respect to all aspects of DNA sequencing (sample extraction, library preparation and setting up sequencing runs). You'll get to play with the latest sequencing toys, including Illumina NovaSeq 6000, NextSeq 2000 and iSeq 100, the PacBio Sequel IIe, and ONT (probably PromethION and MinION).

The closing date for applications is 11:55 PM AWST on Thursday 27 October 2022.

To learn more about these opportunities, please click on the links above or contact Rich Edwards at rich.edwards@uwa.edu.au. We will also be advertising some bioinformatics positions soon.

About the team

The Minderoo OceanOmics Centre at UWA combines a joint Ocean Genomes Laboratory, an OceanOmics Laboratory, and Computational Biology Services.

Equipped with the latest high-throughput sequencing technology and in collaboration with global partners, the Ocean Genomes Laboratory will generate a comprehensive library of high quality marine vertebrate reference genome assemblies. All such reference genome data will be subject to rigorous QA/QC and all assemblies will be released publicly with open access.

The Ocean Genomes Laboratory will undertake research and development under the direction of Minderoo’s ambitious OceanOmics Program which has the goal of revolutionising ocean conservation through novel marine sampling and genomics approaches and scaling these to significantly advance our knowledge of marine life. The Ocean Genomes Laboratory and Computational Biology Services will include state of the art infrastructure including sample and eDNA preparation areas, flow cytometry, single cell sequencing equipment and the latest bioinformatics and computational biology tools.

Monday, 8 August 2022

Senior Postdoc wanted for UWA Ocean Genomes Lab! (Closing soon)

The new Ocean Genomes Laboratory (part of the Minderoo OceanOmics Centre at the UWA Oceans Institute) is hiring a Level B postdoc in marine genomics. (Three-year fixed term full time role, or flexible working equivalent.)

This is a rare opportunity to work as part of a collaborative team in a high-profile state of the art genomics research facility dedicated to studying marine vertebrates. You should have a PhD in bioinformatics, computational biology, molecular genetics or genomics, plus an interest in marine vertebrates and postdoctoral experience in high throughput DNA sequencing and whole genome assembly. The lab is new and there is plenty of scope to shape its direction beyond the core mission creating a marine vertebrate reference genome library as part of the Vertebrate Genome Project. You will also have an important role in helping to supervise the lab staff and research team.

Closing date: 11:55pm AWST, Friday 12 August 2022

Please see the UWA job advert for more details.

About the team

The Minderoo OceanOmics Centre at UWA combines a joint Ocean Genomes Laboratory, an OceanOmics Laboratory, and a Computational Biology Program.

Equipped with the latest high-throughput sequencing technology, and in collaboration with global partners, the Ocean Genomes Laboratory will generate a comprehensive library of high-quality marine vertebrate reference genome assemblies. All reference genome data will be subject to rigorous QA/QC and all assemblies will be released publicly through open access.

The OceanOmics Centre will be located in the Bayliss Building on the UWA Crawley Campus, OceanOmics staff sharing the building with research and teaching staff primarily from the UWA School of Molecular Sciences and interacting with staff in the UWA Oceans Institute in the nearby IOMRC building.

About the opportunity

As a Research Fellow you will join a research group committed to applying modern molecular biological methods to marine research.

Using modern genomic approaches, you will undertake research on marine vertebrates, focussed on the production, QC and assembly of high-quality reference genome data. You will participate in the entire workflow from sample collection and processing, generating genomic sequence data in the laboratory using multiple modern genome sequencing technologies, with a focus on data processing, assembly, curation, analysis and dissemination.

In this unique role you will also be supported to develop your leadership skills. Working closely with the Centre’s UWA Principal Research Fellow, junior postdoctoral academics, the Centre’s Laboratory Manager, and diverse researchers from Minderoo Foundation you will contribute to decision making, oversee the work of technicians and PhD students and provide leadership in modern high-quality genome assembly production and publication.

Friday, 22 July 2022

The Edwards Lab is moving to the UWA Oceans Institute!

More details will follow but, in August, I will be starting a new position at the University of Western Australia Oceans Institute to head up the new Ocean Genomes Laboratory as part of the Minderoo OceanOmics Centre. This exciting project will collaborate closely with the Minderoo Foundation, the Vertebrate Genome Project, and scientists across Australia to create marine vertebrate reference genomes.

The goal of the Ocean Genomes Lab is "building and openly publishing the reference libraries for marine vertebrates ... to accurately detect, monitor and determine the health of these species". The lab is still being setup and we're hiring. Currently available is a Level B postdoc positions: http://bit.ly/OceanOmics. If building genomes is your thing, and you want to help fight the biodiversity crisis in our oceans, come and work with me! (Or pass it on if you know someone who does!) Research Assistant positions will follow.

Look out for a bunch of updates over the next few weeks, both as I update some of the outstanding presentations and posters from this year, and as the website rebrands. In the meantime, please get in touch if any of this sounds interesting!

Friday, 4 September 2020

We are recruiting! Two year Postdoc available in plant conservation genomics

We have a two year full time postdoc position available to conduct bioinformatics, laboratory and field research in the area of conservation genomics as part of ARC Linkage Project LP180100721, and assist in the supervision of honours and postgraduate research students as required. This is a collaborative project between the University of New South Wales, Royal Botanic Gardens Sydney and the Australian National University to develop approaches for the conservation of plant species that are threatened by a fungal pathogen (Austropuccinia psidii, the cause of myrtle rust). Techniques involved include but are not limited to field collection of plant material, DNA extraction, plant growth experiments, execution of software for bioinformatic and statistical analyses.

More details can be found on the UNSW jobs site here: https://external-careers.jobs.unsw.edu.au/cw/en/job/499957/postdoctoral-research-associate. Informal enquiries are welcome if you want to know more about the project.

Tuesday, 9 July 2019

We’ve been funded! ARC Linkage - Optimising plant populations for ecological restoration and resilience

We are very happy to report another successful ARC Linkage grant application.

LP180100721: Optimising plant populations for ecological restoration and resilience

Dr Richard Edwards; Professor Justin Borevitz; Dr Jason Bragg; Dr Maurizio Rossetto; Dr Brett Summerell; Dr Marlien van der Merwe

When choosing individual plants for restoration populations, there is potentially a trade-off between maximising genetic diversity (‘adaptability’) and selection for desirable properties (‘adaptation’). This project aims to develop pioneering methods to quantify this trade-off, and facilitate the design of optimised populations, with a focus on two Australian rainforest trees that are being impacted by myrtle rust infection: Rhodamnia argentea and Rhodamnia rubescens. By studying the genetic variation in each species, and how this relates to myrtle rust resistance and climate, this project aims to design populations that are genetically diverse, maximally resistant to myrtle rust, and adapted to future climate.

We are collaborating with the Royal Botanic Garden and Domain Trust to apply genomics to challenges of conservation for rainforest trees in the face of climate change and invasive pathogens.

There will be job and studentship opportunities associated with this grant, so watch this space (or get in touch)!

Wednesday, 26 October 2016

BABS is recruiting - academic positions available in bioinformatics, systems biology, medical genomics and biotechnology

The School of Biotechnology and Biomolecular Sciences (BABS) at the University of New South Wales, Sydney, Australia, is seeking to recruit world class scholars with outstanding and recognised research records in Biotechnology, Bioinformatics, Systems Biology or Medical Genomics.

Our School, located at the Kensington campus in Sydney, is part of the Faculty of Science. We have an international reputation in biotechnology, molecular and cellular biology, and microbiology. Particular areas of research strength within these fields include proteomics and genomics, gene regulation, metabolism,environmental microbiology and infectious diseases.

We currently have combined track (research and teaching) opportunities to join BABS as part of a strategic initiative in Systems level Biology and Genomics in the School. BABS hosts the Ramaciotti Centre for Genomics, which has world class facilities for sequencing and is arguably Australia’s premier facility for research genomics. BABS is also home to the Systems Biology Initiative, which is supported by high performance computing facilities, including national supercomputers. Our researchers also have access to outstanding proteomics and metabolomics facilities at the UNSW Bioanalytical Mass Spectrometry Facility and the Mark Wainwright Analytical Centre which provide state-of-the-art facilities and services for animal studies; in vivo and ex vivo preclinical imaging; flow cytometry; biochemical, biophysical and chemical analyses; and electron microscopy. We have collaborative links with the Garvan Institute, the Lowy Cancer Research Centre and other biomedical research organisations within and outside Sydney.

For more information about the School, please visit: www.babs.unsw.edu.au/

About UNSW Australia

  • UNSW Australia is a research-intensive university ranked in the world’s top 50 (QS 2016)
  • Strong regional and global engagement improving and transforming lives through excellence in research, outstanding education and a commitment to advancing a just society
  • The top university in the state of New South Wales in the 2015 Excellence in Research for Australia

UNSW is at the cutting edge of academia with a strong and growing international reputation. A global leader in discovery, innovation, impact, education and thought leadership, can make an enormous difference to the lives of people in Australia and around the world. The recently launched UNSW 2025 Strategy is an innovative, ambitious and altruistic agenda, reflecting a conviction across our University to achieve great things for society during the next decade.

Further details

Further details can be found here:

Any enquiries contact: Associate Professor Mark Tanaka

Applications close: Sunday 13 November 2016 (AEST)

Thursday, 25 August 2016

Honours and undergrad research opportunities

Honours

BABS are currently recruiting the next cohort of Honours students for Semester 1 2017. As usual, the EdwardsLab is looking to recruit enthusiastic students in two main areas:

1. Functional genomics using long-read PacBio sequencing. We are particularly keen to get a student to work on either (a) aspects of our ARC Linkage grant, investigating the evolution of a novel biochemical pathway in yeast, or (b) de novo whole genome sequencing of the cane toad. We also have a number of projects with bacteria for those with a keen interest in microbiology. In each case, the lab is collaborating with experts in the relevant organisms.

2. Applying biological sequence analysis and molecular evolution to study the molecular basis of protein-protein interactions. The main lab software, SLiMSuite has a number of improvements and developments that would benefit from some dedicated attention from a research student. We are also looking for someone who might want to help develop the lab servers.

More details of honours can be found on the BABS website, or please get in touch if you have questions about specific projects. Applications from non-UNSW students are also encouraged.

* BABS are also running an Honours information and networking night on 16th September.*

Summer Vacation Research Scholarships

BABS is once again running its highly successful Summer Vacation Research Scholarship (SVRS) scheme and the EdwardsLab are looking to take on one or two students in the same areas as indicated above.

How to apply

We do not yet have a specific undergraduate application form but it is helpful if you can follow the PhD application process and just make it clear that you are interested in Honours or SVRS. As well as helping select between applicants, this form is also useful for me to make sure that students are assigned an appropriate project.

Friday, 6 May 2016

ARC Linkage Success! - Elucidating the genetic basis of newly evolved metabolic functions in yeast

We are very happy to report a successful ARC Linkage Projects 2016 grant application:

LP160100610: Elucidating the genetic basis of newly evolved metabolic functions in yeast

Dr Richard Edwards; Professor Marc Wilkins; Associate Professor Mark Tanaka; Dr Paul Attfield; Dr Phillip Bell

This project intends to research how complex metabolic pathways originate and evolve. This project will use cutting edge genome sequencing and molecular techniques to elucidate the heritable genetic basis of Baker’s yeast, which has been the selectively evolved to use xylose as a sole carbon source: something vital for second generation biofuel production that wild yeast cannot do. This project will combine detailed molecular characterisation of highly adapted yeast strains with a novel “molecular palaeontology” approach to trace the evolutionary process and identify functionally significant loci under selection. Detailed characterisation of this trait will accelerate the development of future yeast strains and test fundamental evolutionary theories.

This will continue the work we have been doing on PacBio sequencing and yeast genomics in collaboration with our industrial partners, Microbiogen Pty Ltd.

There will be job and studentship opportunities associated with this grant, so watch this space! (Or get in touch!)

Tuesday, 19 May 2015

Honours and undergrad research opportunities (deadlines soon!)

There are several research opportunities for students in the Edwards Lab with deadlines coming up:

  1. Mid-session Honours entry. Deadline: 4pm Friday 1st of June. Please see the BABS website for more information.

  2. BABS3301 Biomolecular Science Laboratory Project (Advanced) course. (See below.)

  3. BABS Second-year student internships. Deadline: COB Friday 22/5/2015.

The lab has a number of projects available, of which three examples are listed below. I am happy to discuss other bioinformatics project options around the general theme of sequence analysis and/or protein-protein interactions. There are also some website/software engineering projects available.

Research focus

Applying biological sequence analysis and molecular evolution to study the molecular basis of protein-protein interactions.

Suitable for students who have majored in Biochemistry, Molecular Biology, Microbiology or Genetics. Projects are 100% computational; would suit students with computer programming experience and an interest in molecular evolution, or vice versa.

Example projects

Project 1: Molecular mimicry in host-pathogen interactions Many viruses hijack host cellular machinery through the molecular mimicry of host Short Linear Motifs (SLiMs). It is likely that pathogenic bacteria may employ similar strategies. This project will apply state-of-the-art SLiM prediction tools developed in our lab to published datasets of host-pathogen protein-protein interactions. This will help us understand how pathogens mess with their hosts – and how to stop them!

Project 2: Mining cancer genomics for disease mutations that disrupt protein function SLiMs tend to be involved in low affinity interactions and have a small number of amino acid residues that are required for function. These attributes make them potential sites of mutations that slightly disrupt cellular function, sometimes only in specific genetic backgrounds or environments. This project will combine methods for proteome-wide SLiM prediction with human genomics data and genetic variants associated with disease. This will focus on mutations in cancers, which affect many of the same pathways targeted by molecular mimicry in viruses.

Project 3: Yeast as a model for protein interaction dynamics In addition to giving us bread and beer, the yeast Saccharomyces cerevisiae is an awesome eukaryotic model organism. This project will compare proteinprotein interactions in humans and yeast to learn how both organisms exploit SLiMs and post-translational modifications to dynamically control the complex inner workings of their cells.

BABS3301 Biomolecular Science Laboratory Project

Students with a WAM of 75 or more who are enrolled in a Biochemistry, Genetics or Molecular Biology major in one of the BSc, BSc(Adv) or BMedSc programs should consider enrolling in the BABS3301 (Biomolecular Science Laboratory Project (Advanced) course. This course is designed to introduce you to research methodology, and to stimulate critical and lateral thinking in the context of problem solving. The course involves directed reading, laboratory work and use of internet resources. You will work on a research project under the supervision of a member of the academic staff. Enrolment in this course is by invitation and is based on academic performance and is restricted to Science and Advanced students enrolled in one of the BABS majors (i.e. Biotechnology, Genetics, Microbiology, Molecular Biology and Cellular Biology Major or Plans or the Biochemistry and Molecular Biology, Genetics or Microbiology and Immunology specialisations).

Monday, 23 February 2015

Deadline for Semester 2 international PhD studentships

The UNSW deadline for Semester 2 PhD applications for International Students is 26 Feb 2015. To allow sufficient time for assessment and processing, any Edwards Lab applications must be received TODAY (23 Feb 2015) for Semester 2, 2015. (Supported applicants will still need to make a UNSW application for the deadline.) Any applications received after this date will be considered for Semester 1, 2016. Unfortunately, these things need to be planned and researched a long time in advance!

Wednesday, 21 January 2015

How to apply for a PhD in the Edwards Lab

Choosing the right lab and project in which to do a PhD is one of the most important decisions in the life of a scientist. It is in the best interests of all concerned to make sure that there is a good fit. To this end, there is now a lab PhD application form for all interested applicants. (Click the link or image to download.)

The purpose of the form is two-fold:

  1. To assess the skills, experience, and interests of applicants.
  2. To assess key CV points for those intending to apply for UNSW Scholarships.

The lab does not currently have any funding for students but I am happy to receive applications from funded students and students wishing to apply for UNSW scholarships or other schemes. Please check the UNSW key dates page for application deadlines etc. - students may want to delay their application and strengthen their experience/CV in the meantime.

Informal enquiries are welcome but generic “Dear Sir/Professor” emails will be ignored. Please read this blog post, “How (not) to apply for a PhD”, before applying.

Note: Applicants with insufficient bioinformatics experience will not be considered (see below). It is simply too much of a risk (for both student and supervisor) to take such a student on, as not everyone takes to purely computational work. You must also demonstrate good communication in English, which includes all email communication.

Available projects

There are no specific projects on offer and PhD research topics will ultimately be a collaborative decision based on the skills and interests of the student as well as the current status of various research in the lab. Available projects range from algorithm and bioinformatics resource development to primarily data analysis projects. Examples include, but are not limited to:

  • Yeast genomics using long-read PacBio sequencing. We are particularly keen to get a student to work on aspects of our ARC Linkage grant, investigating the evolution of a novel biochemical pathway in yeast.
  • De novo whole genome sequencing and assembly of the cane toad.
  • The role of gene duplication in the evolution of snakes.
  • The development of diploid genome assembly analysis tools.
  • Development of network approaches to understanding SLiM-mediated protein-protein interactions. (Strong maths required.)
  • Predictions of molecular mimicry from host-pathogen interaction data.
  • Exploring the role of SLiM mutations in cancer and other human diseases.
  • Development of a database of SLiM predictions.
  • Benchmarking, optimising and extending SLiM discovery tools.

There is no single perfect applicant profile: please provide a frank and honest appraisal of your interests, skills and future goals in your application.

Submitting your application

Completed applications forms should be emailed with a CV and degree transcript to richard.edwards@unsw.edu.au. Please name each file with your family name, initials and document type, e.g.

EdwardsRJ.Application.docx
EdwardsRJ.CV.pdf
EdwardsRJ.Transcript.pdf
PDFs are preferred but MS Word *.docx files are also OK. Remember: attention to detail is very important in bioinformatics. Boxes in the application form may be resized but please keep answers succinct; you will be judged on the quality of your writing.

Note: Applicants will also need to submit a formal application through the UNSW Graduate Research School. This is not recommended until an agreement has been made to sponsor your application. Please also note that any agreement to sponsor your application is not agreement to take you on as a student. The final decision regarding supervision will not be made until after all of the applications have been received and processed by UNSW.

Masters and undergraduate project applicants

Applicants for undergraduate projects (Honours/SVRS) or Masters programs should use the same form but indicate the program that they are applying for.

Bioinformatics Experience Requirements

All projects are 100% computational. To be considered as an international PhD applicant, you must have completed at least one 100% computational project as part of your undergrad or masters, or have equivalent computational experience (e.g. work placement as a programmer or data analyst). Taught courses are not sufficient at this level unless you can also provide some evidence of skill at scripting/programming, such as an extensive body of work at Rosalind. Unfortunately, the risks are simply too high otherwise.

Monday, 4 August 2014

Undergraduate Summer Vacation Research Scholarships

UNSW School of Biotechnology and Biomolecular Sciences is offering a number of Summer Vacation Research Scholarships (SVRS):

Are you a science student who would like the opportunity to experience the real world of scientific research first-hand? Students in the penultimate (second last) year of their undergraduate program in Science or a related discipline are invited to apply for a SVRS to join a BABS research team and participate in research over the coming summer.

Each scholarship is valued at $3,800 and students will participate in a 6-week research project.

The School facilitates collaborative research efforts across discipline boundaries for fundamental discoveries, generation of commercial opportunities and clinical research. BABS has key strengths in environmental microbiology, genetics and cellular biology, molecular medicine, and associated technology development in the areas of functional genomics and many facets of biotechnology. The School has a unique strength in combining fundamental biological and biomolecular sciences with a strong applied biotechnology and medical focus. 

See the BABS undergraduate scholarships page for further details and a full list of projects available. We have one advertised project (below) but I am happy to discuss other projects related to any area of research in the lab.


Project: Molecular mimicry in host-pathogen interactions

Many viruses hijack host cellular machinery through the molecular mimicry of host Short Linear Motifs (SLiMs). It is likely that pathogenic bacteria may employ similar strategies. This project will apply state-of-the-art SLiM prediction tools developed in our lab to published datasets of host-pathogen protein-protein interactions. This will help us understand how pathogens mess with their hosts - and how to stop them! 

Time project is available: From Early December 2014 to Mid February 2015

Preferred students: Students should have an interest in molecular mechanisms and bioinformatics. Prior experience or an interest in programming would be beneficial but is not required.

Other conditions: This project is computational.

Tuesday, 12 November 2013

Postdoc opportunity in Short Linear Motif discovery!

As part of the move to UNSW, a 10 month computational postdoc position is available in the lab. The position is not attached to a specific grant and thus the research focus of the position is flexible and open for negotiation. It will, however, be something related to the lab’s primary research focus of computational Short Linear Motif (SLiM) discovery.

Possible projects include (but are not limited to): molecular mimicry by viral or bacterial pathogens; the role of SLiMs in cancer; interrogating protein-protein interaction networks to predict SLiM function; SLiM prediction database/visualisation development. For more on the research of the lab, please visit my old University of Southampton and/or new UNSW pages or email for more information.

Short-listing will (probably!) begin on 1/12/13 but applications are welcome until the position is filled. To apply, or find out more, please email a copy of your CV and your research interests. Candidate should have good computational skills. Start date is flexible but likely to be around January 2014.