Genomics: Decoding the Universal Language of Life (Coursera)

Genomics: Decoding the Universal Language of Life (Coursera)

What is a genome? A genome contains all of the information that a cell needs to develop, function, and reproduce itself, and all the information needed for those cells to come together to form a person, plant, or animal. Genomes contain an organism’s complete set of genes, and also the even tinier genetic structures that help regulate when and how those genes are used. The ability to regrow a torn ligament, the clues that might predict the onset of mental illness, the nutritional potential of crops, and even the history of life itself, are all encoded in genomes. By taking this course, you will discover how scientists are deciphering the language of genomes to learn how to develop sustainable food and fuel supplies, improve disease treatment and prevention, and protect our environment.

Class Deals by MOOC List - Click here and see Coursera's Active Discounts, Deals, and Promo Codes.

Professor Robinson is the main instructor for this course. In addition, each module features several guest instructors. These guest instructors come from diverse fields of study—biology, physics, computer science, and many others—and pursue diverse research goals, yet they share a common interest in genomic approaches and technologies. The guest instructors include:

  • Elizabeth (Lisa) Ainsworth, Associate Professor of Plant Biology
  • Mark Band, Director of the Functional Genomics Facility
  • Alison Bell, Associate Professor of Animal Biology
  • Jenny Drnevich, Functional Genomics Bioinformatics Specialist with High-Performance Biological Computing
  • Christopher Fields, Associate Director of High-Performance Biological Computing
  • Bruce Fouke, Director of the Roy J. Carver Biotechnology Center
  • Glenn Fried, Director of the Carl R. Woese Institute for Genomic Biology Core Facilities
  • Nigel Goldenfeld, Professor of Physics
  • Brendan Harley, Assistant Professor of Chemical and Biomolecular Engineering
  • Alvaro Hernandez, Director of the High-Throughput Sequencing and Genotyping Facility
  • Victor Jongeneel, former NCSA Director of Bioinformatics and former Director of High-Performance Biological Computing
  • Kingsley Boateng, Senior Research Specialist with the Carl R. Woese Institute for Genomic Biology Core Facilities
  • Stephen Long, Professor of Plant Biology and Crop Sciences
  • Ruby Mendenhall, Associate Professor of African American Studies
  • William Metcalf, Professor of Microbiology
  • Karen Sears, Assistant Professor of Animal Biology
  • Saurabh Sinha, Associate Professor of Computer Science
  • Lisa Stubbs, Professor of Cell and Developmental Biology
  • Rachel Whitaker, Associate Professor of Microbiology
  • Derek Wildman, Professor of Molecular and Integrative Physiology
  • Peter Yau, Director of the Protein Sciences Facility

Syllabus

WEEK 1
Course Orientation
You will become familiar with the course, your classmates, and our learning environment. The orientation will also help you obtain the technical skills required for the course.
What Is a Genome and Why Do We Care?
Genes, genomes, DNA: these words have slipped into our daily news cycles and our awareness, but what they actually mean often remains unclear. In these lessons, we aim to give you, not just the Biology 101 explanation of what a genome is, but a real-life perspective on why you already care about genomics – perhaps in ways you didn’t even realize. Are you interested in where your food comes from, what health conditions you are most likely to develop, what fish will share your aquarium most successfully? Genomes are a key to finding a better answer to these and other everyday questions.

WEEK 2
What Were the First Genomes Like and How Do They Work Now?
You may have seen DNA visually represented in different ways: a twisted ladder, a tangle of string, an array of sloppy X shapes, a row of letters. But what is DNA actually doing, and how does it relate to genes and the genome? How are scientists able to move from studying the physical structure of the genome to understanding its functionality? This module will help you become more comfortable with these ideas.

WEEK 3
How Can We Use Genomes to Understand the Healthy Body and Fight Diseases?
Often, we hear about genes only when something goes wrong – when mutations, mistakes made in the DNA sequence, cause a disease like cancer cystic fibrosis. But what happens inside our cells that leads from a mutation in DNA to the physical symptoms of a disease? Why do some mutations cause positive outcomes, or no change at all? To answer these questions, we take a closer look at how information flows from genes, to RNA, to proteins, to all the physical structures and processes that make up living things.

WEEK 4
What Can Genomes Tell Us About How to Grow New Organs or New Crops?
If all the cells in all the tissues and organs of our bodies have the same genome, how is it that they can look so different? How does a hair cell, a white blood cell, or a brain cell know what to do or where to go? The answer can be found by looking beyond the structure of the genome, into the timing of its activities. Recognizing how the information stored in the genome can be used in flexible ways shows us how living things can develop and change over time.

WEEK 5
How Might Genomes Allow Us to Predict Health Problems Before They Occur?
You may have heard of "nature vs. nurture" or the modern day response, "nature AND nurture!" But how does "nurture," the environment, act through the genome? Can the biological effects of experience be passed from one generation to the next? And what does all of this have to do with everyday issues, like our physical and mental health? A closer look at two mechanisms that help regulate the activity for genes, epigenetic modifications and transcription factors, provides some answers.

WEEK 6
How Do the Genomes of Ecosystem Members Cooperate or Conflict?
The world is a big and sometimes incomprehensibly complex place. Just as no gene in the genome acts in isolation, no living thing on this planet exists in isolation. In this final module of the course, we explore some of the rich, complicated interactions between living things, their genomes, and the world that surrounds them.

Go to Class
MOOC List is learner-supported. When you buy through links on our site, we may earn an affiliate commission.

Related Courses

Health Across the Gender Spectrum (Coursera) Coursera
Stanford University

Health Across the Gender Spectrum (Coursera)

This course offers an intimate, story-based introduction to the experiences of six transgender children and their families. Through illustrated stories and short teaching videos, learners will gain a better understanding of gender identity and the gender spectrum. Stanford physicians, K-12 educators, and transgender faculty members offer practical tips for parents, teachers, healthcare providers and anyone who wants to help create a more gender-expansive environment - one in which all people can live authentically. As a global community of unique individuals, we can begin to build a world that is ready to nurture and love each and every child.

Oct 26th 2026
3 Weeks
Voice Disorders: What Patients and Professionals Need to Know (Coursera) Coursera
Icahn School of Medicine at Mount Sinai

Voice Disorders: What Patients and Professionals Need to Know (Coursera)

Knowledge regarding vocal production physiology and management options for voice disorders have experienced rapid growth over the past 40 years. This growth has resulted in a knowledge gap amongst patients and practitioners. Entirely new subspecialties of laryngology under otolaryngology and vocology under speech-language pathology have developed in response to this gap. This MOOC (Massive Open Online Course) is designed to educated patients, allied healthcare providers, vocal trainers/coaches, general medical practitioners and otolaryngologists.

Oct 26th 2026
5-12 Weeks
HI-FIVE: Health Informatics For Innovation, Value & Enrichment (Social/Peer Perspective) (Coursera) Coursera
Columbia University

HI-FIVE: Health Informatics For Innovation, Value & Enrichment (Social/Peer Perspective) (Coursera)

HI-FIVE (Health Informatics For Innovation, Value & Enrichment) Training is an approximately 10-hour online course designed by Columbia University in 2016, with sponsorship from the Office of the National Coordinator for Health Information Technology (ONC). The training is role-based and uses case scenarios. Our nation’s healthcare system is changing at a rapid pace. Transformative health care delivery programs depend heavily on health information technology to improve and coordinate care, maintain patient registries, support patient engagement, develop and sustain data infrastructure necessary for multi-payer value-based payment, and enable analytical capacities to inform decision making and streamline reporting.

Oct 26th 2026
4 Weeks
Gender and Sexuality: Diversity and Inclusion in the Workplace (Coursera) Coursera
University of Pittsburgh

Gender and Sexuality: Diversity and Inclusion in the Workplace (Coursera)

What is sex? What is gender? What is sexuality? What do we mean by LGBTQIA? How are these concepts related to the workplace? How have our understandings of these terms changed over time, and how have these changes impacted work and culture? To help you answer these important questions, this course will introduce you to the exciting field of gender, sexuality, and women's studies, and to LGBTQIA identities.

Oct 26th 2026
4 Weeks
The Science of Gastronomy (Coursera) Coursera
The Hong Kong University of Science and Technology - HKUST

The Science of Gastronomy (Coursera)

This course introduces a number of basic scientific principles underpinning the methodology of cooking, food preparation and the enjoyment of food. All topics covered have a strong basis in biology, chemistry, and physics application. Among others, they include the consumption of cooked food, the physiological and evolutionary implication of the senses, geographic and cultural influences on food, and the rationale behind food preparation. We will also discuss issues such as coupling of senses to improve sense stimulation; altering flavor by chemical means; and modification of the coloration to improve the appearance of dishes. Following the video demonstrations of the scientific principles of cooking, you will learn to recognize the key ingredients and their combinations for preparing good healthy food.

Oct 27th 2026
5-12 Weeks
Doping : Sports, Organizations and Sciences (Coursera) Coursera
University of Lausanne

Doping : Sports, Organizations and Sciences (Coursera)

The objective of this course is to encourage a critical understanding of doping. To achieve this goal, this course will rely on a multidisciplinary approach that allow you to see how different disciplines get into a single object, in different perspectives and in often complementary ways. This approach will also allow us to appreciate the complexity of a subject like doping. Doping in sports is a complex practice whose definition and identification is the result of socially and historically constructed norms. This course offers to shed light on the processes that led to the use and prohibition of doping substances.

Oct 26th 2026
4 Weeks
Understanding Plants - Part II: Fundamentals of Plant Biology (Coursera) Coursera
Tel Aviv University

Understanding Plants - Part II: Fundamentals of Plant Biology (Coursera)

This class is aimed at people interested in understanding the basic science of plant biology. In this four lecture series, we'll first learn about the structure-function of plants and of plant cells. Then we'll try to understand how plants grow and develop, making such complex structures as flowers. Once we know how plants grow and develop, we'll then delve into understanding photosynthesis - how plants take carbon dioxide from the air and water from soil, and turn this into oxygen for us to breathe and sugars for us to eat. In the last lecture we'll learn about the fascinating, important and controversial science behind genetic engineering in agriculture.

Oct 26th 2026
4 Weeks
Design and Interpretation of Clinical Trials (Coursera) Coursera
Johns Hopkins University

Design and Interpretation of Clinical Trials (Coursera)

Clinical trials are experiments designed to evaluate new interventions to prevent or treat disease in humans. The interventions evaluated can be drugs, devices (e.g., hearing aid), surgeries, behavioral interventions (e.g., smoking cessation program), community health programs (e.g. cancer screening programs) or health delivery systems (e.g., special care units for hospital admissions). We consider clinical trials experiments because the investigators rather the patients or their doctors select the treatment the patients receive.

Oct 26th 2026
5-12 Weeks
Pensamiento Científico (Coursera) Coursera
Universidad Nacional Autónoma de México

Pensamiento Científico (Coursera)

¿El pensamiento científico es sólo para científicos? Su utilidad va mucho más allá, ayudando a las personas a tomar mejores decisiones todos los días. El objetivo de este curso es fomentar en pensamiento científico en los alumnos para ayudarles a tomar mejores decisiones profesionales, personales y sociales.

Oct 26th 2026
5-12 Weeks
Major Depression in the Population: A Public Health Approach (Coursera) Coursera
Johns Hopkins University

Major Depression in the Population: A Public Health Approach (Coursera)

Public Mental Health is the application of the principles of medicine and social science to prevent the occurrence of mental and behavioral disorders and to promote mental health of the population. This course illustrates the principles of public health applied to depressive disorder, including principles of epidemiology, transcultural psychiatry, health services research, and prevention. It is predicted that by 2020 depressive disorder will be the most important cause of disease burden in the entire world! Every human being suffers from feeling depressed at some point or other, but only about one fifth of the population will experience an episode of depressive disorder over the course of their lives.

Oct 26th 2026
5-12 Weeks
Bioinformatic Methods II (Coursera) Coursera
University of Toronto

Bioinformatic Methods II (Coursera)

Large-scale biology projects such as the sequencing of the human genome and gene expression surveys using RNA-seq, microarrays and other technologies have created a wealth of data for biologists. However, the challenge facing scientists is analyzing and even accessing these data to extract useful information pertaining to the system being studied. This course focuses on employing existing bioinformatic resources – mainly web-based programs and databases – to access the wealth of data to answer questions relevant to the average biologist, and is highly hands-on.

Oct 26th 2026
5-12 Weeks