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	<title><![CDATA[BOL: Related items]]></title>
	<link>https://bioinformaticsonline.com/related/28269?offset=550</link>
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  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/22944/icgeb-bioinformatics-research-associate-vacancy</guid>
  <pubDate>Thu, 25 Jun 2015 20:41:00 -0500</pubDate>
  <link></link>
  <title><![CDATA[ICGEB Bioinformatics Research Associate Vacancy]]></title>
  <description><![CDATA[
<p>Research Associate Position at ICGEB, New Delhi with Dr. Amit Sharma</p>

<p>Starting 15th July 2015, the position relates to a project specifically for in silico drug docking, screening, design, optimisation and linkage with active chemists. </p>

<p>Experience in many docking softwares and operating systems is essential. </p>

<p>Additional experience in bioinformatics and computational biology tools will be useful. </p>

<p>Submit curriculum vitae to: sb.icgeb@gmail.com</p>

<p>Closing date: 5 July 2015</p>
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	<guid isPermaLink="true">https://bioinformaticsonline.com/blog/view/44503/entire-human-genome-sequencing</guid>
	<pubDate>Tue, 02 Apr 2024 01:19:29 -0500</pubDate>
	<link>https://bioinformaticsonline.com/blog/view/44503/entire-human-genome-sequencing</link>
	<title><![CDATA[Entire Human Genome Sequencing !]]></title>
	<description><![CDATA[<p>Cost-effective whole human genome sequencing has revolutionized the landscape of genetic research and personalized medicine by making comprehensive genetic analysis accessible to a wider population. Through advancements in sequencing technologies, such as next-generation sequencing (NGS), costs have significantly decreased, enabling researchers and healthcare providers to analyze an individual's complete genetic makeup with greater efficiency and affordability. This has profound implications for disease diagnosis, prognosis, and treatment, as it allows for the identification of genetic predispositions and the customization of healthcare interventions based on an individual's unique genetic profile. Moreover, as the cost continues to decline, the potential for population-scale genomic studies and large-scale screening programs becomes increasingly feasible, promising to further enhance our understanding of human genetics and improve healthcare outcomes on a global scale.</p><p>Here are few companies:</p><p>https://mynucleus.com/</p><p>https://myome.com/</p><p>https://nebula.org/whole-genome-sequencing-dna-test/</p>]]></description>
	<dc:creator>LEGE</dc:creator>
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  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/23384/research-scientist-at-dupont</guid>
  <pubDate>Fri, 17 Jul 2015 20:36:17 -0500</pubDate>
  <link></link>
  <title><![CDATA[Research Scientist at DuPONT]]></title>
  <description><![CDATA[
<p>Research Scientist<br />Hyderabad, Telangana<br />Job Description</p>

<p>Job Description</p>

<p>The Global Trait Discovery Informatics (GTDI) group located at the DuPont Knowledge Centre (DKC), Hyderabad, India is currently seeking applications for a highly motivated computational biologist. The GTDI group contributes to research programs in plant biotechnology at the DKC as well as across research centers located in DuPont Pioneer, Johnston, Iowa and at the DuPont Experimental Station in Wilmington, Delaware.</p>

<p>We are looking for candidates who have experience in analysis of high-throughput -omics datasets. The researcher will be primarily responsible for analyzing diverse -omics datatypes, such as transcriptomics, proteomics and metabolomics and actively contribute towards building streamlined solutions.</p>

<p>The candidate will be part of a diverse team of experimental biologists, computational biologists and software developers. A critical aspect of this position involves working with global teams across multiple locations and will require effective project coordination and communication skills. This is an exciting opportunity for candidates with strong data driven skills, who want to work at the interface of computational and experimental biology and contribute towards scientific discovery.</p>

<p>Responsibilities</p>

<p>·Integrate and analyze multiple datatypes in the context of experimental observations with a goal towards formulating testable hypothesis.</p>

<p>·Understanding the research questions from experimental biologists and formulate relevant in silico analyses.</p>

<p>·Establish and implement systematic analysis workflows starting from processing of raw data to biological interpretation.</p>

<p>·Critically analyze a wide variety of experimental data with a view to solving the underlying research questions.</p>

<p>·Identify and generate datasets for scientific testing and evaluation of algorithms.</p>

<p>Qualifications</p>

<p>PhD in computational biology, bioinformatics, population genetics, complex systems, computer sciences or any relevant physical or mathematical sciences, with experience in analyzing diverse -omics datasets.</p>

<p>Job Qualifications</p>

<p>Qualifications</p>

<p>PhD in computational biology, bioinformatics, population genetics, complex systems, computer sciences or any relevant physical or mathematical sciences, with experience in analyzing diverse -omics datasets.</p>

<p>More at http://careers.dupont.com/jobsearch/job-details/research-scientist/006077W-01/</p>
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	<guid isPermaLink="true">https://bioinformaticsonline.com/blog/view/44754/early-genome-screening-the-new-health-horoscope</guid>
	<pubDate>Thu, 02 Jan 2025 19:44:36 -0600</pubDate>
	<link>https://bioinformaticsonline.com/blog/view/44754/early-genome-screening-the-new-health-horoscope</link>
	<title><![CDATA[Early Genome Screening: The New Health Horoscope!]]></title>
	<description><![CDATA[<p>In an era where precision medicine is reshaping healthcare, genome screening is emerging as the modern equivalent of a health horoscope. It offers insights into our biological "stars," unraveling predispositions to various conditions and empowering individuals with knowledge to navigate their health journeys proactively. But how reliable is this "horoscope," and how does it impact our lives?</p><h3>Understanding Genome Screening</h3><p>Genome screening involves analyzing an individual's DNA to identify genetic variations that may influence health and disease susceptibility. This can range from simple single-gene tests to comprehensive whole-genome sequencing. By peering into our genetic blueprint, we can uncover risks for conditions like cancer, diabetes, cardiovascular diseases, and even rare genetic disorders.</p><p>The process is straightforward: a saliva or blood sample is collected, and advanced sequencing technologies decipher the genetic code. The results provide a personalized health map, guiding lifestyle modifications, preventive measures, or medical interventions.</p><h3>A Shift from Reactive to Proactive Healthcare</h3><p>Traditional healthcare often focuses on treating diseases after they manifest. Genome screening flips this model on its head, enabling a shift toward prevention and early intervention. For instance:</p><ul>
<li>
<p><strong>Cancer Risk Management</strong>: Individuals with BRCA1 or BRCA2 gene mutations can opt for enhanced screening programs or preventive surgeries to mitigate their risk of breast and ovarian cancers.</p>
</li>
<li>
<p><strong>Cardiovascular Health</strong>: Genetic predispositions to conditions like familial hypercholesterolemia can prompt early cholesterol monitoring and lifestyle adjustments.</p>
</li>
<li>
<p><strong>Rare Diseases</strong>: Identifying carriers of genetic disorders can aid in family planning and reduce the incidence of inherited conditions.</p>
</li>
</ul><h3>The Ethical and Practical Concerns</h3><p>While genome screening offers incredible promise, it is not without challenges:</p><ol>
<li>
<p><strong>Accuracy and Interpretation</strong>: Genetic predisposition does not guarantee disease. Misinterpretation of results can lead to unnecessary anxiety or unwarranted medical interventions.</p>
</li>
<li>
<p><strong>Privacy and Data Security</strong>: Genetic data is highly sensitive. Ensuring robust data protection measures is crucial to prevent misuse.</p>
</li>
<li>
<p><strong>Accessibility and Equity</strong>: High costs and limited availability may restrict access to genome screening, exacerbating health disparities.</p>
</li>
</ol><h3>Balancing Science and Pseudoscience</h3><p>The comparison of genome screening to horoscopes isn&rsquo;t entirely unfounded. Both offer predictive insights, but the scientific foundation of genome screening distinguishes it from astrology. Unlike the alignment of celestial bodies, genetic predictions are based on rigorous data and evidence. However, the probabilistic nature of genetic predispositions underscores the importance of interpreting results in conjunction with clinical and lifestyle factors.</p><h3>The Road Ahead</h3><p>As genome screening becomes more affordable and integrated into routine healthcare, its potential to transform lives is immense. Policymakers, healthcare providers, and genetic counselors must collaborate to ensure ethical implementation, public awareness, and equitable access.</p><p>Imagine a future where your genetic "horoscope" is a trusted guide, not just a prediction. Early genome screening could help chart a healthier path for generations, making it a cornerstone of personalized medicine. After all, our genes might just hold the key to unlocking a future of better health and well-being.</p><p>&nbsp;</p>]]></description>
	<dc:creator>LEGE</dc:creator>
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  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/23247/ra-at-csir-urdip</guid>
  <pubDate>Fri, 10 Jul 2015 18:34:03 -0500</pubDate>
  <link></link>
  <title><![CDATA[RA at CSIR-URDIP]]></title>
  <description><![CDATA[
<p>CSIR - UNIT FOR RESEARCH AND DEVELOPMENT OF INFORMATION PRODUCTS (CSIR- URDIP)</p>

<p>Adv. No. URDIP/ 15/2015</p>

<p>Opportunity for young Bioinformatics Professionals to make a career in the area of Intellectual Property</p>

<p>CSIR has set up a Unit for Research and Development of Information Products (CSIRURDIP) at Pune to work in the area of scientific informatics. One of the major focus areas of research work at CSIR-URDIP is PATENT INFORMATICS. With the increasing applications of Bioinformatics in the areas of life sciences industry such as Agriculture and Health Care (Diagnostics and Drugs), the output of research in these area is being protected by different forms of Intellectual Property rights. Realizing the importance of IP in the Bioinformatics field, Department of Biotechnology (DBT) has sanctioned a project on “Development, Facilitation and Harvesting of Bioinformatics related Intellectual Property” at CSIR-URDIP.</p>

<p>The project will involve application of Patent Informatics tools and techniques to Bioinformatics (including creation of patent landscapes, preparation of techno-legal reports of patentability, freedom to operate studies) to help protect IPRs and develop and conduct training programmes on IPRs related to Bioinformatics.</p>

<p>CSIR-URDIP invites applications from young Bioinformatics professionals to work on this emerging area which offers challenging opportunities and attractive career possibilities in future.</p>

<p>Position I: Research Associate</p>

<p>No of Positions: One</p>

<p>Consolidated amount Payable: = Rs 26,400.00</p>

<p>Qualification: PhD in Bioinformatics. In exceptional cases, candidature of M. Tech. candidates with First class in Bioinformatics with three years of relevant work experience will also be considered.</p>

<p>Job requirement: The prospective candidate will be expected to identify patents/scientific literature in field of Bioinformatics, evaluate them Vis a Vis other patents in fields and come up landscape / FTO / Patentability reports.</p>

<p>Age Limit: 35 years. </p>

<p>The candidates meeting the above criteria may appear for walk in interview at their cost on Monday 13th July 2015 at 02:00 p.m. with the CV and supporting documents (original plus copies) at the following address: CSIR Unit or Research and Development of Information Products (URDIP), "Tapovan" S.No. 113 &amp; 114, Near NCL Colony Baner Side Gate, NCL Estate, Pashan Road, Pune-411008, Maharashtra, India</p>

<p>Advertisement: www.urdip.res.in/download/DBT_RA_Advt_July%202015.pdf</p>
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	<guid isPermaLink="true">https://bioinformaticsonline.com/blog/view/45240/pg2-making-pangenome-graphs-easier-to-understand</guid>
	<pubDate>Tue, 18 Aug 2026 04:38:23 -0500</pubDate>
	<link>https://bioinformaticsonline.com/blog/view/45240/pg2-making-pangenome-graphs-easier-to-understand</link>
	<title><![CDATA[PG2: Making Pangenome Graphs Easier to Understand]]></title>
	<description><![CDATA[<p>Genomics is moving beyond the traditional approach of studying DNA using a single reference genome. Today, researchers are increasingly using pangenomes, which represent genetic information from multiple genomes and capture a much broader range of genetic diversity.</p><p>However, pangenome graphs can be highly complex, making them difficult to visualize and interpret. A recent study published in BMC Bioinformatics introduces PG2 (PanGenoGrapher), an open-source, web-based tool designed to address this challenge.&nbsp;The source code and user guide are openly available on GitHub at https://github.com/iVis-at-Bilkent/pangenographer. A publicly accessible sample deployment is hosted at http://pg2.cs.bilkent.edu.tr. In addition, a demonstration video illustrating the primary use cases of PG2 is available at https://www.youtube.com/watch?v=yCd7-aGY6CQ.</p><p>PG2 combines advanced graph-layout algorithms with an interactive visualization platform. It allows researchers to explore genomic paths, identify variations, and examine relationships between different parts of a pangenome graph more easily.</p><p>This is important because visualization can play a major role in bioinformatics. When complex genomic information is presented clearly, researchers can more easily identify patterns, understand genetic variation, and generate new biological insights.</p><p>The development of PG2 represents a step toward making pangenome analysis more accessible and intuitive. As genomic datasets continue to grow and graph-based representations become more common, tools like PG2 can help researchers navigate this increasing complexity.</p><p>Ultimately, PG2 demonstrates how combining genomics, graph algorithms, and interactive visualization can make sophisticated biological data easier to understand and analyze.</p><p>Reference: Solun, G. K., Dogrusoz, U., Bing&ouml;l, Z., &amp; Alkan, C. (2026). PG2: algorithms and a web-based tool for effective layout and visual analysis of pangenome graphs. BMC Bioinformatics. DOI: 10.1186/s12859-026-06555-4.</p>]]></description>
	<dc:creator>Jitendra Narayan</dc:creator>
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  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/23277/project-fellow-at-ihbt-palampur-himachal-pradesh</guid>
  <pubDate>Sun, 12 Jul 2015 07:54:37 -0500</pubDate>
  <link></link>
  <title><![CDATA[Project Fellow at IHBT - Palampur, Himachal Pradesh]]></title>
  <description><![CDATA[
<p>The Institute is working relentlessly on developing technologies for sustainable utilization of Himalayan bioresources, and in the area of tea, floriculture, bamboos and medicinal and aromatic plants. Looking at the mission of the Institute,the quantum of work undertaken and milestones achieved it was rightly conceived to rename the Institute from CSIR Complex Palampur to Institute of Himalayan Bioresource Technology at a high level meeting. Finally the Institute received its new name Institute of Himalayan Bioresource Technology (IHBT) in 1997 by then Prime Minister Shri H.D. Deve Gowda. Till date this is the only kind of National R&amp;D laboratory in the state of Himachal.</p>

<p>Detail Of Institute of Himalayan Bioresource Technology (IHBT) Project Fellow Recruitment:</p>

<p>No.of Posts: 02</p>

<p>Qualification : 1st Class B. Tech. in Bioinformatics/ Computational Biology Or M.Sc. in Bioinformatics/ Computational Biology with 55% marks OR M.Tech. in Bioinformatics/ Computational Biology with 55% marks.</p>

<p>Age : 28 years as on 10.06.2015</p>

<p>Pay Scale: Rs.12,000/- P.M/Rs.14,000/- P.M.</p>

<p>Age : 35 years,(Up to 40 years for members of SC/STs).</p>

<p>Selection Procedure For Institute of Himalayan Bioresource Technology (IHBT) – Project Fellow Post:</p>

<p>Written Test on 10/06/2015.</p>

<p>Shortlisted candidates will undertake face to face interview.</p>

<p>Dates are yet to be announced for the final selection</p>

<p>Walkin Procedure For Project Fellow vacancy in Institute of Himalayan Bioresource Technology (IHBT):</p>

<p>Eligible candidates may appear for Walk-in-Interview on Date : 10.06.2015, Time 9:00 A.M. Venue : CSIR- IHBT Palampur (H.P.) alongwith an application on prescribed format. Candidates must also bring with them original certificates of testimonials at the time of the appearing for interview failing which he/she will not be allowed to appear for interview.</p>

<p>Important Dates To Remember :<br />Walk in date for this job : 10/06/2015</p>
]]></description>
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	<guid isPermaLink="true">https://bioinformaticsonline.com/blog/view/45289/the-atlas-of-nine-billion-possibilities</guid>
	<pubDate>Wed, 09 Sep 2026 02:07:58 -0500</pubDate>
	<link>https://bioinformaticsonline.com/blog/view/45289/the-atlas-of-nine-billion-possibilities</link>
	<title><![CDATA[The Atlas of Nine Billion Possibilities]]></title>
	<description><![CDATA[<p>Imagine a book that holds all the instructions for building a human, made up of billions of letters. What if you changed just one letter? Maybe nothing would happen. Or that tiny change could affect how a gene works, quietly shaping a cell&rsquo;s biology or even helping cause disease.</p><p>Scientists face a big challenge with the human genome. They can read its letters, but understanding their roles is much harder. Only about 2 percent of the genome codes for proteins. The rest acts like a huge control panel, deciding when and where genes turn on. With about 9 billion possible single-letter changes, testing them all in a lab just isn&rsquo;t possible.</p><p>So, Google DeepMind asked a new question: what if we could predict what those changes might do?</p><p>This question led to the AlphaGenome Atlas (https://deepmind.google.com/science/alphagenome/atlas?), a detailed map of nearly every possible single-letter change in the human genome. Instead of checking each change one by one, researchers can use the Atlas to spot the ones most likely to matter. The AlphaGenome Variant Impact (AVI) score works like a trail marker, pointing scientists toward the changes worth a closer look.</p><p>This is where the Atlas gets especially useful. Much of the genome lies outside the protein-coding regions, where DNA acts as a switch or controller for genes. AlphaGenome lets researchers explore these areas and see how small changes could affect gene activity.</p><p>An atlas isn't the destination; it's a guide.</p><p>The AlphaGenome Atlas doesn&rsquo;t replace experiments or solve every mystery. Instead, it helps scientists decide where to begin. From billions of possibilities, it turns the vast genetic landscape into something researchers can start to explore.</p><p>There are nine billion possibilities, a vast map, and maybe among them therWith nine billion possibilities and a huge map to explore, there may be clues hidden here to some of medicine&rsquo;s toughest mysteries.</p><p>More at&nbsp;https://storage.googleapis.com/deepmind-media/DeepMind.com/Blog/alphagenome-atlas-a-predictive-map-of-every-possible-dna-letter-change-in-the-human-genome/alphagenome-atlas.pdf</p>]]></description>
	<dc:creator>Jitendra Narayan</dc:creator>
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  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/23369/assistant-professor-professor-at-central-university-of-south-bihar</guid>
  <pubDate>Thu, 16 Jul 2015 22:36:53 -0500</pubDate>
  <link></link>
  <title><![CDATA[Assistant Professor/ Professor at Central University of South Bihar]]></title>
  <description><![CDATA[
<p>Central University of South Bihar</p>

<p>(Established under Central Universities Act, 2009)</p>

<p>BIT Campus, PO: B.V. College,</p>

<p>Patna – 800 014 (Bihar)</p>

<p>Employment Notice No. CUSB / 27 / Faculty / 2015</p>

<p>Appointment for Faculty Positions Applications in the prescribed form are invited from the eligible candidates for the following posts shown against the subjects to be filled up on regular/contract/re-employment after superannuation basis:</p>

<p>1 Bioinformatics - 03 Posts</p>

<p>2 Biotechnology – 02 Posts</p>

<p>12 Life Science – 04 Posts</p>

<p>The duly filled in application form, complete in all respect along with fee must be sent only by Speed post/Registered post/Courier to The Registrar, Central University of South Bihar, BIT Campus, P.O. : B.V. College, Patna-800014.</p>

<p>Last Date of Receiving Application 10th August, 2015</p>

<p>Advertisement:</p>

<p>http://cub.ac.in/index.php?option=com_content&amp;view=article&amp;id=31&amp;Itemid=157</p>
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  <guid isPermaLink='true'>https://bioinformaticsonline.com/opportunity/view/23672/jrf-in-bioinformatics-rajiv-gandhi-centre-for-biotechnology-rgcb-thiruvananthapuram</guid>
  <pubDate>Sat, 08 Aug 2015 01:22:29 -0500</pubDate>
  <link></link>
  <title><![CDATA[JRF in Bioinformatics @ Rajiv Gandhi Centre for Biotechnology (RGCB), Thiruvananthapuram]]></title>
  <description><![CDATA[
<p>Rajiv Gandhi Centre for Biotechnology (RGCB), Thiruvananthapuram<br />Job Code: 060815(10)Y</p>

<p>Jr Research Fellow Posts At Rajiv Gandhi Centre for Biotechnology<br />Rajiv Gandhi Centre for Biotechnology (RGCB) invites applications to recruit on vacant posts of Junior Research Fellow (JRF). Applications against these Government Jobs can be submitted on or before 15 August 2015.</p>

<p>Rajiv Gandhi Centre for Biotechnology Vacancy 2015 Details<br />Name of the post – Junior Research Fellow (JRF)<br />Total vacancies –</p>

<p>Age Limit: Below 28 years as on 15-08-2015.</p>

<p>Qualification(s): Masters Degree in Life Sciences/Biotechnology/Bioinformatics.</p>

<p>How to Apply: Duly filled-in applications in prescribed application format along with copies of required documents should be reach to: Rajiv Gandhi Centre for Biotechnology Thycaud PO, Poojappura, Thiruvananthapuram – 695014, Kerala. </p>

<p>More at http://rgcb.res.in/temporary-position-available-10/</p>
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