Timeline of Biotechnology

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EUROPEAN EUROPEAN BIOTECH BIOTECH WEEK WEEK The Evolution of the Revolution Answers: • A mouse • A banana • A chicken Q&A Try to rate the following in order of how similar you think their genes are to your own: Mouse 75% Chicken: 60% Banana 55% Is DNA found in every cell of your body? Answer: Yes, apart from red blood cells How many meters of DNA does a cell contain? Answer: Roughly 2 meters of DNA How many bases in the DNA code are there in every cell of your body? Answer: There are approximately 3 billion (3,000,000,000) chemical letters (otherwise known as bases) in the DNA code in every cell in your body 1942 By carefully feeding cantaloupe mold in large tanks, American microbiologist Andrew Moyer develops a technique of producing penicillin in large quantities, launching its career as a “wonder drug”. 8,000 BC 4,000 BC 2,000 BC 500 BC 1968 1961 1973 1997 1998 1990 1970 1970 300 BC EUROPEAN EUROPEAN BIOTECH BIOTECH WEEK WEEK Biotechnology begins, as humans begin choosing or altering plants and livestock so they can be domesticated. Potatoes become the first cultivated food. Egyptians master the art of winemaking. Egyptians and Sumerians learn brewing and cheese making. In China, moldy soybean curds become the first antibiotic to treat infections and ailments. 1796 First small pox vaccine is discovered. Edward Jenner discovered the process of vaccination by inoculating a small boy with cowpox and then trying to re-infect him with smallpox. The boy recovered from the weaker cowpox infection and thus became immune to smallpox. The cowpox virus was called ‘Vaccinia’, from the Latin word for cow, ‘Vacca’. This is how the word ‘Vaccine’ came into use. 1941 Danish microbiologist A. Justin coins the term genetic engineering, a technique involving the transfer of a select piece of genetic material from one organism to another. 1958 DNA is produced in a test tube for the first time. Marshall W. Nirenberg and Har Gobind Khorana win the Nobel Prize for deciphering the genetic codes of the 20 amino acids, leading researchers to later conclude that the genetic code is universal among all living things. Discovery of messenger RNA ‘tape copy’ Messenger RNA plays a key role in protein synthesis. Messenger RNA, also known as mRNA, are RNA molecules that carry genetic information from the DNA in the cell nucleus to the protein-making machinery in the cell cytoplasm. For some time after the discovery of DNA’s genetic role and the deciphering of its double-stranded structure (by Crick and Watson), researchers remained perplexed about how exactly the genetic information was conveyed from the genes to the cytoplasm to produce the proteins required for cellular functions. The French biologists Francois Jacob and Jacques Monod received the Nobel Prize in Physiology or Medicine for their part in this research in 1965. 1971 First complete synthesis of a gene. First gene-spliced DNA from different organisms. Stanley Cohen and Herbert Boyer develop recombinant DNA technology. Con- sidered to be the birth of modern biotechnology, they complete the first successful genetic engineering exper- iment by inserting a gene from an African clawed toad into bacterial DNA. 1989 Discovery of defective gene for cystic fibrosis by Dr. Lap-Chee Tsui at Toronto’s Hospital for Sick Children. Similar discoveries later link specific genes to other disorders, such as autism, Huntington’s Disease, and a rare heart problem known as Right Ventricular Cardiomyopathy. Each has added to a growing knowledge of the complex relationship between gene function and disease. 1984 Genetic fingerprinting is discovered, which is used today to establish family relationships and to identify criminal suspects. 1986 The first genetically engineered plants are grown outside in fields for the first time in the USA. They are genetically altered tobacco plants. The world meets Dolly the sheep, the first cloned mammal. UNESCO adopts the Universal Declaration on the Human Genome and Human Rights, recognizing the human genome as a common heritage that must be safeguarded from inappropriate manipulation. The roundworm C. elegans becomes the first multi-cellular organism to have its genome completely sequenced. 1999 German and Swiss scientists develop golden rice, fortified with betacarotene, which stimulates production of Vitamin A, thus preventing forms of blindness. Chymosin, an enzyme used in cheese-making, becomes one of the first food products in Canada to be manufactured with recombinant techniques. Normally extracted from rennet, an enzyme complex found in the lining of a cow stomach, chymosin is now produced directly in agents such as e.coli bacteria. The Human Genome Project is launched. This international, 13-year effort to determine the sequences of the three billion chemical base pairs that make up the DNA of a person, eventually identifies 20,000–25,000 genes. 1976 The sequence of nucleic acid base pairs that combine to make DNA is determined for the first time for a specific gene. 1977 Herbert Boyer, founder of the pioneer biotechnology firm Genentech, uses E. coli bacteria to produce human insulin. The technique represents a significant improvement in the efficiency and long term viability of producing this vital medical therapy, formerly extracted from limited supplies of animal tissues that could lead to allergic reactions. The vast majority of insulin used in the today is now produced through this recombinant method. Norman Borlaug becomes the first plant breeder to win a Nobel Prize, for his work on new wheat varieties that increase yields by 70 per cent. This marks the beginning of the Green Revolution in world agriculture. American microbiologist Daniel Nathans discovers the first restriction enzyme that can cut DNA into pieces for various studies and applications. The restriction enzyme technique becomes a fundamental tool in modern genetic research, helping to create the biotechnology industry and providing the basis for the Human Genome Project. Swiss scientish Werner Arber, discover that bacterica defent themselves against viruses by cutting the birus DNA using special restriction enzymes. These enzymes are now widely used in modern DNA technologies. 1919 The word biotechnology is used in print for the first time. 1839-1855 German scientists Matthias Schleiden and Theodor Schwann propose that all organisms are composed of cells. Prussian physician Rudolf Virchow declares: „Every cell originates from another cell.” 1833 First enzyme discovered and isolated. Greeks develop grafting techniques for plant breeding. 1663 English physicist, mathematician and inventor Robert Hooke discovers the existence of the cell. 1675 Dutch student of natural history and microscope- maker Antonij van Leeuwenhoek discovers bacteria. 1838 Swedish chemist Jöns Jakob Berzelius discovers proteins. 1859 Charles Darwin’s landmark book, The Origin of Species is published. 1861 French chemist Louis Pasteur develops pasteurization, a process that protects food by heating it to kill dangerous microbes. 1865 After seven years of cultivating and testing thousands of pea plants, Gregor Mendel publishes a description of rules governing how hereditary traits pass between generations, the foundation of modern genetics. 1870-1910 Father of modern plant breeding Luther Burbank develops over 800 new strains of fruits, vegetables and flowers. His blight-resistant Burbank potato is heavily planted across Ireland, ending the potato famine. Botanist William James Beal produces the first experimental corn hybrid in the laboratory. 1922 In Toronto, Dr. Frederick Banting and his assistant Charles Best discover insulin as a treatment for diabetes. 1928 Scottish bacteriologist Sir Alexander Fleming discovers penicillin as an antibiotic. 1943 Canadian scientist Oswald Theodore Avery isolates pure DNA. 1953 James Watson and Francis Crick are the first to describe the double helix structure of DNA. 1982 The first recombinant DNA vaccine for livestock is developed. 2003 2009 2009 2013 The Human Genome Project is completed. Researchers at Canada’s Michael Smith Genome Sciences Centre in British Columbia are the first to sequence the SARS genome. 2010 First synthetic cell In May 2010, J. Craig Venter Institute created the first fully synthetic, self-replicating bacterial cell, which was named Synthia. While the U.S. government has plugged $430 million into synthetic biology since 2005, most of it has gone toward developing alternative fuels. Some firms are now starting to leverage the technology for medical purposes. 2011 Human Trials of Malaria Vaccine Human trials of a malaria vaccine are underway and showing positive results. This cold be the first vaccine against a parasitic infection. 2012 Draft Genome for Wheat An international team announces a draft of the wheat genome. A hybrid of three grasses, bread wheat has 3 genomes and over 96 000 genes within one plant, making it particularly complex to decipher. Winnipeg’s National Microbiology Laboratory completes the first genetic sequencing of the H1N1 flu virus, just as the disease is reaching international pandemic proportions. Quebecbased firm Medicago grows H5N1 (bird flu) vaccine in tobacco leaves. The product becomes the first plantbased influ- enza vaccine to undergo human trials in Canada. A Canadian team of scientists and engineers from the University of Toronto develop a microchip with nanoscale components to detect chemical markers for can- cer, a technique that could make diagnosis much faster. The international Potato Genome Sequencing Consortium, releases a draft of the full sequence of genome of the potato, the world’s third most important crop. The first bionic eye has seen the light of day in the United States, giving hope to the blind around the world. Developed by Second Sight Medical Products, the Argus II Retinal Prosthesis System has helped more than 60 people recover partial sight, with some experiencing better results than others. 2013 The world celebrates the 60th anniversary of Watson and Crick’s discovery of the double helix Access to treatment for HIV/ AIDS The United Nations adopts a political declaration adopted committed to expanding access to treatment for AIDS for 15 million people by 2015. In Europe, measures are already in place to achieve this goal. European biotechnology scientists launched a clinical trial of an anti-HIV biotech medicine produced using genetically modified tobacco- a first of its kind study in the EU. If the Phase I study is successful, larger trials will follow and researchers foresee a new antibody which will be combined with other medication to offer better protection against HIV/ AIDS at a far cheaper price, thus allowing wider access to treatment in poorer countries. 2005 The billionth biotech acre is planted by one of 8.5 million farmers in one of 21 countries. 1590 Dutch spectacle- maker Zacharias Janssen invents the microscope. 1855 The Escherichia coli bacterium is discovered. It later becomes a major research, development and production tool for biotechnology. 1885 Vaccine for Rabi’s disease discovered. Pasteur vaccinated a young boy who had been bitten by a rabid dog. This vaccine was made from the extract of the spinal column of a rabies infected rabbit. A modified version of this vaccination is still used today, and has saved thousands of lives. 1962 Nobel Prize for the discovery of the ‘Double Helix’ structure of DNA The Nobel Prize in Physiology or Medicine 1962 was awarded jointly to Francis Harry Compton Crick, James Dewey Watson and Maurice Hugh Frederick Wilkins “for their discoveries concerning the molecular structure of nucleic acids and its significance for information transfer in living material”. 2007 First Vaccine against human papillomavirus The first vaccine against human papillomavirus- a cause of cancer- is approved for use by women and girls in more than 80 countries. BIOTECHNOLOGY TIMELINE CELEBRATING INNOVATION IN BIOTECHNOLOGY

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Transcript of Timeline of Biotechnology

EUROPEAN EUROPEANBIOTECH BIOTECHW E E K W E E KThe Evolution of the RevolutionAnswers: A mouse A banana A chickenQ&ATry to rate the following in order of how similar you think their genes are to your own:M o u s e 7 5 % C h i c k e n : 6 0 % B a n a n a 5 5 %Is DNA found in every cell of your body?Answer:Y e s , a p a r t f r o m r e d b l o o d c e l l sHow many meters of DNA does a cell contain?Answer:R o u g h l y 2 m e t e r s o f D N AHow many bases in the DNA code are there in every cell of your body?Answer:T h e r e a r e a p p r o x i m a t e l y3 b i l l i o n ( 3 , 0 0 0 , 0 0 0 , 0 0 0 )c h e m i c a l l e t t e r s ( o t h e r w i s e k n o w n a sb a s e s ) i n t h e D N A c o d ei n e v e r y c e l l i n y o u r b o d y1942By carefully feeding cantaloupe mold in large tanks, American microbiologist Andrew Moyer develops a technique ofproducing penicillin in large quantities,launching its career as a wonder drug.8,000 BC4,000 BC2,000 BC500 BC19681961197319971998199019701970300 BCEUROPEAN EUROPEANBIOTECH BIOTECHW E E K W E E KBiotechnology begins, as humans begin choosing or altering plants and livestock so they can bedomesticated.Potatoes becomethe frst cultivated food.Egyptians master the art ofwinemaking.Egyptians and Sumerians learn brewing and cheese making.In China, moldy soybean curds become the frst antibiotic to treat infections and ailments.1796First small pox vaccine is discovered.Edward Jenner discovered the process of vaccination by inoculating a small boy with cowpox and then trying to re-infect him with smallpox. Theboy recovered from theweaker cowpox infection and thus became immuneto smallpox. The cowpox virus was called Vaccinia,from the Latin word for cow,Vacca. This is how the word Vaccine came into use.1941Danish microbiologist A. Justin coins theterm geneticengineering,a technique involvingthe transfer of a select piece of genetic material from oneorganism to another.1958DNA is produced in a test tubefor the frst time.Marshall W. Nirenberg and Har Gobind Khorana win the Nobel Prize for deciphering the genetic codes of the 20 amino acids,leading researchers to later conclude that the genetic code is universal among all living things.Discovery of messenger RNA tape copyMessenger RNA plays a key rolein protein synthesis. Messenger RNA, also known as mRNA, areRNA molecules that carry genetic information from the DNA in thecell nucleus to the protein-makingmachinery in the cell cytoplasm.For some time after the discovery of DNAs genetic role and thedeciphering of its double-stranded structure (by Crick and Watson),researchers remained perplexed about how exactly the genetic information was conveyed from thegenes to the cytoplasm to producethe proteins required for cellular functions.The French biologists Francois Jacob and Jacques Monod received the Nobel Prize in Physiology or Medicine for their part in this research in 1965.1971First completesynthesis of a gene.First gene-spliced DNA from diferent organisms.Stanley Cohen and Herbert Boyer develop recombinant DNA technology. Con-sidered to be the birth ofmodern biotechnology, they complete the frst successful genetic engineering exper-iment by inserting a genefrom an African clawed toad into bacterial DNA.1989Discovery of defective gene for cystic fbrosis by Dr. Lap-Chee Tsui at Torontos Hospital for Sick Children. Similar discoveries later link specifc genes to other disorders, such as autism,Huntingtons Disease, and a rare heart problem known as Right Ventricular Cardiomyopathy. Each has added to a growing knowledge of the complex relationship between gene function and disease.1984Genetic fngerprintingis discovered, which is used today to establish family relationships and to identify criminal suspects.1986The frst genetically engineered plants aregrown outside in felds for the frst time in the USA.They are genetically altered tobacco plants.The world meets Dolly the sheep,the frst cloned mammal. UNESCO adopts the Universal Declaration on the Human Genome and Human Rights, recognizing thehuman genome as a common heritage that must be safeguarded from inappropriate manipulation.The roundworm C.elegans becomes thefrst multi-cellular organism to have its genome completely sequenced.1999German and Swiss scientists developgolden rice, fortifed with betacarotene,which stimulates production ofVitamin A, thus preventing forms of blindness.Chymosin, an enzyme used in cheese-making, becomes one ofthe frst food products in Canada to be manufactured with recombinant techniques. Normally extracted from rennet, an enzyme complex found in the lining of a cow stomach, chymosin is now produced directly in agents such as e.coli bacteria.The Human Genome Project is launched. This international,13-year efort to determine thesequences of the three billion chemical base pairs that make upthe DNA of a person, eventually identifes 20,00025,000 genes.1976The sequence ofnucleic acid basepairs that combineto make DNA is determined for thefrst time for a specifc gene.1977Herbert Boyer, founder ofthe pioneer biotechnology frm Genentech, uses E. coli bacteria to produce human insulin. The techniquerepresents a signifcant improvement in the efciency and long term viability ofproducing this vital medical therapy, formerly extracted from limited supplies ofanimal tissues that could lead to allergic reactions. The vast majority of insulin used in the today is now produced through this recombinant method.Norman Borlaug becomes the frst plant breeder to win a Nobel Prize, for his work on new wheat varieties that increase yields by 70 per cent. This marks the beginning of theGreen Revolution in world agriculture.American microbiologist Daniel Nathans discovers the frst restriction enzyme that can cut DNA into pieces for various studies and applications. The restriction enzyme technique becomes a fundamental tool in modern genetic research, helpingto create the biotechnology industry and providing the basis for the Human GenomeProject.Swiss scientish Werner Arber,discover that bacterica defent themselves against viruses by cutting thebirus DNA usingspecial restriction enzymes. Theseenzymes are now widely used in modern DNA technologies.1919The word biotechnologyis used in print for the frst time.1839-1855German scientists Matthias Schleiden and Theodor Schwann propose that all organisms arecomposed of cells.Prussian physician RudolfVirchow declares:Everycelloriginates fromanothercell.1833First enzymediscovered and isolated.Greeks developgrafting techniques for plant breeding.1663English physicist,mathematician and inventor Robert Hookediscovers theexistence of thecell.1675Dutch student ofnatural history and microscope-maker Antonij van Leeuwenhoek discovers bacteria.1838Swedish chemist Jns JakobBerzelius discovers proteins.1859Charles Darwins landmark book,The Origin ofSpecies is published.1861French chemist Louis Pasteur develops pasteurization,a process that protects food by heating it to kill dangerous microbes.1865After seven years ofcultivating and testingthousands of pea plants,Gregor Mendel publishes a description of rules governing how hereditary traits pass between generations, the foundation of modern genetics.1870-1910Father of modern plant breeding Luther Burbank develops over 800 new strains of fruits, vegetables and fowers.His blight-resistant Burbank potato is heavily planted across Ireland, ending the potato famine.Botanist William James Beal produces the frst experimental corn hybrid in the laboratory.1922In Toronto, Dr.Frederick Bantingand his assistant Charles Best discover insulin as a treatment for diabetes.1928Scottish bacteriologist Sir Alexander Fleming discovers penicillin as an antibiotic.1943Canadian scientist Oswald TheodoreAvery isolates pureDNA.1953James Watson and Francis Crick arethe frst to describethe double helix structure of DNA.1982The frst recombinant DNA vaccine for livestock is developed.2003200920092013The Human Genome Project is completed.Researchers at Canadas Michael Smith Genome Sciences Centrein British Columbia are the frst to sequence the SARS genome.2010First synthetic cellIn May 2010, J. Craig Venter Institute created the frst fully synthetic, self-replicating bacterial cell, which was named Synthia.While the U.S. government has plugged $430 million into synthetic biology since 2005, most of it has gone toward developingalternative fuels. Some frms arenow starting to leverage thetechnology for medical purposes.2011Human Trials of Malaria VaccineHuman trials of a malaria vaccine areunderway and showing positive results.This cold be the frst vaccine against a parasitic infection.2012Draft Genome for WheatAn international team announces a draft ofthe wheat genome.A hybrid of threegrasses, bread wheat has 3 genomes and over 96 000 genes within one plant, making it particularly complex to decipher.Winnipegs National Microbiology Laboratory completes the frst genetic sequencing of the H1N1fu virus, just as the disease is reaching international pandemic proportions.Quebecbased frm Medicago grows H5N1 (bird fu) vaccinein tobacco leaves. The product becomes the frst plantbased infu-enza vaccine to undergo human trials in Canada.A Canadian team of scientists and engineers from the University of Toronto develop a microchipwith nanoscale components to detect chemical markers for can-cer, a technique that could makediagnosis much faster.The international Potato GenomeSequencing Consortium, releases a draft of the full sequence ofgenome of the potato, the worlds third most important crop.The frst bionic eye has seen the light of day in theUnited States, giving hope to the blind around the world.Developed by Second Sight Medical Products, the Argus II Retinal Prosthesis System has helped more than 60 peoplerecover partial sight, with some experiencing better results than others.2013The world celebrates the60th anniversary of Watson and Cricks discovery of thedouble helixAccess to treatment for HIV/ AIDSThe United Nations adopts a political declaration adopted committed to expanding access to treatment for AIDS for 15 million people by 2015. In Europe,measures are already in place to achievethis goal. European biotechnology scientists launched a clinical trial of an anti-HIV biotech medicine produced usinggenetically modifed tobacco- a frst of its kind study in the EU. If the Phase I study is successful, larger trials will follow and researchers foresee a new antibody which will be combined with other medication to ofer better protection against HIV/AIDS at a far cheaper price, thus allowingwider access to treatment in poorer countries.2005The billionth biotech acre is planted by one of8.5 million farmers in oneof 21 countries.1590Dutch spectacle-maker Zacharias Janssen invents themicroscope.1855The Escherichia coli bacterium is discovered.It later becomes a major research,development and production tool for biotechnology.1885Vaccine for Rabis diseasediscovered.Pasteur vaccinated a young boy who had been bitten by a rabid dog. This vaccine was madefrom the extract of the spinal column of a rabies infected rabbit. A modifed version ofthis vaccination is still used today, and has saved thousands of lives.1962Nobel Prize for the discovery of theDouble Helix structure of DNAThe Nobel Prize in Physiology or Medicine 1962 was awarded jointly to Francis Harry Compton Crick, James Dewey Watson and Maurice Hugh Frederick Wilkins for their discoveries concerning themolecular structure of nucleic acids and its signifcance for information transfer in living material.2007First Vaccine against human papillomavirusThe frst vaccine against human papillomavirus- a cause of cancer- is approved for use by women and girls in more than 80 countries.BIOTECHNOLOGY TIMELINE CELEBRATING INNOVATION IN BIOTECHNOLOGYPanel-timeline&quiz2x2m.indd 1 18/09/13 11:49