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What’s it about?
Nobel Prize winner James Watson chronicles the journey of genetic science from Mendel's laws to DNA's structure and its impact on modern medicine and business. - Opens the same content in full screenSee more
Book details
ISBN-13
978-0307521484Edition
ReprintPublisher
KnopfPublication date
January 16, 2009Language
EnglishFile size
24.7 MB
-
What’s it about?
Nobel Prize winner James Watson chronicles the journey of genetic science from Mendel's laws to DNA's structure and its impact on modern medicine and business. -
Book details
ISBN-13
978-0307521484Edition
ReprintPublisher
KnopfPublication date
January 16, 2009Language
EnglishFile size
24.7 MB
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- ISBN-13978-0307521484
- EditionReprint
- PublisherKnopf
- Publication dateJanuary 16, 2009
- LanguageEnglish
- File size24.7 MB
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Watson’s lively, panoramic narrative begins with the fanciful speculations of the ancients as to why “like begets like” before skipping ahead to 1866, when an Austrian monk named Gregor Mendel first deduced the basic laws of inheritance. But genetics as we recognize it today—with its capacity, both thrilling and sobering, to manipulate the very essence of living things—came into being only with the rise of molecular investigations culminating in the breakthrough discovery of the structure of DNA, for which Watson shared a Nobel prize in 1962. In the DNA molecule’s graceful curves was the key to a whole new science.
Having shown that the secret of life is chemical, modern genetics has set mankind off on a journey unimaginable just a few decades ago. Watson provides the general reader with clear explanations of molecular processes and emerging technologies. He shows us how DNA continues to alter our understanding of human origins, and of our identities as groups and as individuals. And with the insight of one who has remained close to every advance in research since the double helix, he reveals how genetics has unleashed a wealth of possibilities to alter the human condition—from genetically modified foods to genetically modified babies—and transformed itself from a domain of pure research into one of big business as well. It is a sometimes topsy-turvy world full of great minds and great egos, driven by ambitions to improve the human condition as well as to improve investment portfolios, a world vividly captured in these pages.
Facing a future of choices and social and ethical implications of which we dare not remain uninformed, we could have no better guide than James Watson, who leads us with the same bravura storytelling that made The Double Helix one of the most successful books on science ever published. Infused with a scientist’s awe at nature’s marvels and a humanist’s profound sympathies, DNA is destined to become the classic telling of the defining scientific saga of our age.
Amazon.com Review
After 1975, DNA was no longer solely the concern of academics trying to understand the molecular underpinnings of life. The molecule moved beyond the cloisters of white-coated scientists into a very different world populated largely by men in silk ties and sharp suits.
In later chapters, Watson aims barbs at those who are concerned by genetic tinkering, calling them "alarmists" who don't understand how the experiments work. It is in these arguments that Watson may lose favor with those whose notions of science were born after Silent Spring. Nevertheless, DNA encompasses both sides of the political issues involved in genetics, and Watson is an enthusiastic proponent of debate on the subject. The book accompanies a 5-part PBS series. --Therese Littleton
Review
–Francis Collins, director of the National Human Genome Research Institute
“Unlocking the secret of life was the greatest accomplishment of science in the 20th century and laid the foundation for medicine in the 21st century. Over the past 50 years, Jim Watson has been at the center of this revolution. No one has a broader perspective. And, no one can tell its story more compellingly. Watson brings alive the grand ideas, human foibles, and social challenges in a way will both engage the general public and inspire a new generation of young scientists.”
–Eric Lander, founder and director of the Whitehead Center for Genome Research
"This is the story of DNA and therefore the story of life, history, sex (lots of sex!), money, drugs, and still-to-be-revealed secrets. DNA is quite a molecule–she's been around a long time and played a lot of roles. At last, she has a truly worthy biographer."
–Mary-Claire King, American Cancer Society Professor, University of Washington School of Medicine
“Only James Watson combines the verve and authority to take us on such an exciting, fast-paced journey into the continuing storm of DNA science. This landmark summary asks where the new biology will take us, and gives arresting vignettes of major participants in the DNA revolution. The key experiments and fascinating unknowns are laid out as plain as day.”
–Victor McElheny, author of Watson and DNA: Making a Scientific Revolution
"James Watson has been an eyewitness to each revolution in molecular biology, from the double helix to the genome. He sees further and clearer than anybody else in the field. Give this fabulously good book to anybody who wants to understand what all the excitement is about."
–Matt Ridley, author of Genome
“Only James Watson could have written this book: no one else knows DNA from so many perspectives—discoverer, scientific leader, author of one of the great scientific memoirs of all time—and no one else writes in such an utterly riveting and independent manner. DNA is a singularly lucid life story of a molecule and its determining role in human nature, society, medicine, and our future as a species. It is an important book and a delight to read.”
--Kay Redfield Jamison, Ph.D., Professor of Psychiatry, Johns Hopkins School of Medicine, and author of An Unquiet Mind.
From the Inside Flap
Watson s lively, panoramic narrative begins with the fanciful speculations of the ancients as to why like begets like before skipping ahead to 1866, when an Austrian monk named Gregor Mendel first deduced the basic laws of inheritance. But genetics as we recognize it today with its capacity, both thrilling and sobering, to manipulate the very essence of living things came into being only with the rise of molecular investigations culminating in the breakthrough discovery of the structure of DNA, for which Watson shared a Nobel prize in 1962. In the DNA molecule s graceful curves was the key to a whole new science.
Having shown that the secret of life is chemical, modern genetics has set mankind off on a journey unimaginable just a few decades ago. Watson provides the general reader with clear explanations of molecular processes and emerging technologies. He shows us how DNA continues to alter our understanding of human origins, and of our identities as groups and as individuals. And with the insight of one who has remained close to every advance in research since the double helix, he reveals how genetics has unleashed a wealth of possibilities to alter the human condition from genetically modified foods to genetically modified babies and transformed itself from a domain of pure research into one of big business as well. It is a sometimes topsy-turvy world full of great minds and great egos, driven by ambitions to improve the human condition as well as to improve investment portfolios, a world vividly captured in these pages.
Facing a future of choices and social and ethical implications of which we dare not remain uninformed, we could have no better guide than James Watson, who leads us with the same bravura storytelling that made The Double Helix one of the most successful books on science ever published. Infused with a scientist s awe at nature s marvels and a humanist s profound sympathies, DNA is destined to become the classic telling of the defining scientific saga of our age.
From the Back Cover
–Francis Collins, director of the National Human Genome Research Institute
“Unlocking the secret of life was the greatest accomplishment of science in the 20th century and laid the foundation for medicine in the 21st century. Over the past 50 years, Jim Watson has been at the center of this revolution. No one has a broader perspective. And, no one can tell its story more compellingly. Watson brings alive the grand ideas, human foibles, and social challenges in a way will both engage the general public and inspire a new generation of young scientists.”
–Eric Lander, founder and director of the Whitehead Center for Genome Research
"This is the story of DNA and therefore the story of life, history, sex (lots of sex!), money, drugs, and still-to-be-revealed secrets. DNA is quite a molecule–she's been around a long time and played a lot of roles. At last, she has a truly worthy biographer."
–Mary-Claire King, American Cancer Society Professor, University of Washington School of Medicine
“Only James Watson combines the verve and authority to take us on such an exciting, fast-paced journey into the continuing storm of DNA science. This landmark summary asks where the new biology will take us, and gives arresting vignettes of major participants in the DNA revolution. The key experiments and fascinating unknowns are laid out as plain as day.”
–Victor McElheny, author of Watson and DNA: Making a Scientific Revolution
"James Watson has been an eyewitness to each revolution in molecular biology, from the double helix to the genome. He sees further and clearer than anybody else in the field. Give this fabulously good book to anybody who wants to understand what all the excitement is about."
–Matt Ridley, author of Genome
“Only James Watson could have written this book: no one else knows DNA from so many perspectives—discoverer, scientific leader, author of one of the great scientific memoirs of all time—and no one else writes in such an utterly riveting and independent manner. DNA is a singularly lucid life story of a molecule and its determining role in human nature, society, medicine, and our future as a species. It is an important book and a delight to read.”
--Kay Redfield Jamison, Ph.D., Professor of Psychiatry, Johns Hopkins School of Medicine, and author of An Unquiet Mind.
About the Author
Andrew Berry, with a Ph.D. in fruit fly genetics, is a research associate of Harvard University’s Museum of Comparative Zoology. A writer and teacher, he is the editor of a collection of the writings of the Victorian biologist Alfred Russel Wallace, Infinite Tropics (Verso, 2002).
Excerpt. © Reprinted by permission. All rights reserved.
. . .
Beginnings of Genetics: From Mendel to Hitler
My mother, Bonnie Jean, believed in genes. She was proud of her father's Scottish origins, and saw in him the traditional Scottish virtues of honesty, hard work, and thriftiness. She, too, possessed these qualities and felt that they must have been passed down to her from him. His tragic early death meant that her only nongenetic legacy was a set of tiny little girl's kilts he had ordered for her from Glasgow. Perhaps therefore it is not surprising that she valued her father's biological legacy over his material one.
Growing up, I had endless arguments with Mother about the relative roles played by nature and nurture in shaping us. By choosing nurture over nature, I was effectively subscribing to the belief that I could make myself into whatever I wanted to be. I did not want to accept that my genes mattered that much, preferring to attribute my Watson grandmother's extreme fatness to her having overeaten. If her shape was the product of her genes, then I too might have a hefty future. However, even as a teenager, I would not have disputed the evident basics of inheritance, that like begets like. My arguments with my mother concerned complex characteristics like aspects of personality, not the simple attributes that, even as an obstinate adolescent, I could see were passed down over the generations, resulting in "family likeness." My nose is my mother's and now belongs to my three sons.
Sometimes characteristics come and go within a few generations, but sometimes they persist over many. One of the most famous examples of a long-lived trait is known as the "Hapsburg Lip." This distinctive elongation of the jaw and droopiness to the lower lip-which made the Hapsburg rulers of Europe such a nightmare assignment for generations of court portrait painters-was passed down intact over at least twenty-three generations.
The Hapsburgs added to their genetic woes by intermarrying. Arranging marriages between different branches of the Hapsburg clan and often among close relatives may have made political sense as a way of building alliances and ensuring dynastic succession, but it was anything but astute in genetic terms. Inbreeding of this kind can result in genetic disease, as the Hapsburgs found out to their cost. Charles II, the last of the Hapsburg monarchs in Spain, not only boasted a prize-worthy example of the family lip-he could not even chew his own food-but was also a complete invalid, and incapable, despite two marriages, of producing children.
Genetic disease has long stalked humanity. In some cases, such as Charles II's, it has had a direct impact on history. Retrospective diagnosis has suggested that George III, the English king whose principal claim to fame is to have lost the American colonies in the Revolutionary War, suffered from an inherited disease, porphyria, which causes periodic bouts of madness. Some historians-mainly British ones-have argued that it was the distraction caused by George's illness that permitted the Americans' against-the-odds military success. While most hereditary diseases have no such geopolitical impact, they nevertheless have brutal and often tragic consequences for the afflicted families, sometimes for many generations. Understanding genetics is not just about understanding why we look like our parents. It is also about coming to grips with some of humankind's oldest enemies: the flaws in our genes that cause genetic disease.
our ancestors must have wondered about the workings of heredity as soon as evolution endowed them with brains capable of formulating the right kind of question. And the readily observable principle that close relatives tend to be similar can carry you a long way if, like our ancestors, your concern with the application of genetics is limited to practical matters like improving domesticated animals (for, say, milk yield in cattle) and plants (for, say, the size of fruit). Generations of careful selection-breeding initially to domesticate appropriate species, and then breeding only from the most productive cows and from the trees with the largest fruit-resulted in animals and plants tailor-made for human purposes. Underlying this enormous unrecorded effort is that simple rule of thumb: that the most productive cows will produce highly productive offspring and from the seeds of trees with large fruit large-fruited trees will grow. Thus, despite the extraordinary advances of the past hundred years or so, the twentieth and twenty-first centuries by no means have a monopoly on genetic insight. Although it wasn't until 1909 that the British biologist William Bateson gave the science of inheritance a name, genetics, and although the DNA revolution has opened up new and extraordinary vistas of potential progress, in fact the single greatest application of genetics to human well-being was carried out eons ago by anonymous ancient farmers. Almost everything we eat-cereals, fruit, meat, dairy products-is the legacy of that earliest and most far-reaching application of genetic manipulations to human problems.
An understanding of the actual mechanics of genetics proved a tougher nut to crack. Gregor Mendel (1822-1884) published his famous paper on the subject in 1866 (and it was ignored by the scientific community for another thirty-four years). Why did it take so long? After all, heredity is a major aspect of the natural world, and, more important, it is readily, and universally, observable: a dog owner sees how a cross between a brown and black dog turns out, and all parents consciously or subconsciously track the appearance of their own characteristics in their children. One simple reason is that genetic mechanisms turn out to be complicated. Mendel's solution to the problem is not intuitively obvious: children are not, after all, simply a blend of their parents' characteristics. Perhaps most important was the failure by early biologists to distinguish between two fundamentally different processes, heredity and development. Today we understand that a fertilized egg contains the genetic information, contributed by both parents, that determines whether someone will be afflicted with, say, porphyria. That is heredity. The subsequent process, the development of a new individual from that humble starting point of a single cell, the fertilized egg, involves implementing that information. Broken down in terms of academic disciplines, genetics focuses on the information and developmental biology focuses on the use of that information. Lumping heredity and development together into a single phenomenon, early scientists never asked the questions that might have steered them toward the secret of heredity. Nevertheless, the effort had been under way in some form since the dawn of Western history.
The Greeks, including Hippocrates, pondered heredity. They devised a theory of "pangenesis," which claimed that sex involved the transfer of miniaturized body parts: "Hairs, nails, veins, arteries, tendons and their bones, albeit invisible as their particles are so small. While growing, they gradually separate from each other." This idea enjoyed a brief renaissance when Charles Darwin, desperate to support his theory of evolution by natural selection with a viable hypothesis of inheritance, put forward a modified version of pangenesis in the second half of the nineteenth century. In Darwin's scheme, each organ-eyes, kidneys, bones-contributed circulating "gemmules" that accumulated in the sex organs, and were ultimately exchanged in the course of sexual reproduction. Because these gemmules were produced throughout an organism's lifetime, Darwin argued any change that occurred in the individual after birth, like the stretch of a giraffe's neck imparted by craning for the highest foliage, could be passed on to the next generation. Ironically, then, to buttress his theory of natural selection Darwin came to champion aspects of Lamarck's theory of inheritance of acquired characteristics-the very theory that his evolutionary ideas did so much to discredit. Darwin was invoking only Lamarck's theory of inheritance; he continued to believe that natural selection was the driving force behind evolution, but supposed that natural selection operated on the variation produced by pangenesis. Had Darwin known about Mendel's work (although Mendel published his results shortly after The Origin of Species appeared, Darwin was never aware of them), he might have been spared the embarrassment of this late-career endorsement of some of Lamarck's ideas.
Whereas pangenesis supposed that embryos were assembled from a set of minuscule components, another approach, "preformationism," avoided the assembly step altogether: either the egg or the sperm (exactly which was a contentious issue) contained a complete preformed individual called a homunculus. Development was therefore merely a matter of enlarging this into a fully formed being. In the days of preformationism, what we now recognize as genetic disease was variously interpreted: sometimes as a manifestation of the wrath of God or the mischief of demons and devils; sometimes as evidence of either an excess of or a deficit of the father's "seed"; sometimes as the result of "wicked thoughts" on the part of the mother during pregnancy. On the premise that fetal malformation can result when a pregnant mother's desires are thwarted, leaving her feeling stressed and frustrated, Napoleon passed a law permitting expectant mothers to shoplift. None of these notions, needless to say, did much to advance our understanding of genetic disease.
By the early nineteenth century, better microscopes had defeated preformationism. Look as hard as you like, you will never see a tiny homunculus curled up inside a sperm or egg cell. Pangenesis, though an earlier misconception, lasted rather longer-the argument would persist that the gemmules were simply too small to visualize-but was eventually laid to rest by August Weismann, who argued that inheritance depended on the continuity of germ pl...
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| ASIN | B001PSEQAG |
| Publisher | Knopf |
| Publication date | January 16, 2009 |
| Edition | Reprint |
| Accessibility | Learn more |
| Language | English |
| File size | 24.7 MB |
| Screen Reader | Supported |
| Enhanced typesetting | Enabled Enhanced typesetting: EnabledEnhanced typesetting improvements offer faster reading with less eye strain and beautiful page layouts, even at larger font sizes. |
| X-Ray | Not Enabled |
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| Print length | 659 pages Print length: 659 pagesThe estimated length is calculated using the number of page turns on a Kindle, using settings to closely represent a physical book. |
| ISBN-13 | 978-0307521484 |
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- 5 out of 5 starsVerified Purchase
Pieces of the Puzzle:
Reviewed in the United States on October 8, 2014Format: KindleAt the heart of every cell lies a collection of molecules that hold the key to biology's incredible diversity: DNA. In his 2003 book "DNA: The Secret of Life" molecular biologist James D Watson gives the reader an in depth tour of genetics, it's history, where it stands today and where it's going tomorrow. In the early 1950s Watson, along with Francis Crick and Maurice Wilkins, codiscovered the hidden structure of DNA, for which they shared the 1962 Nobel Prize. That discovery is pretty well covered in "The Double Helix" so, if you've read that one, this book may be covering some familiar ground for you. But if you, like me, have not read TDH then DNA will serve as a good introduction to that era. Watson covers the early history of genetics starting in the early 19th century with Gregor Mendel and his work on heredity of the pea plants. The term "genetics" was coined about 1909 by a British biologist, William Bateson. But even before Mendel and Bateson people were thinking about heredity; theories like pangenesis and homunculus were popular for a time. Darwin proposed Natural Selection in 1859 but was troubled by not knowing a mechanism for his Theory of Evolution. Seven years later Mendel published his findings on pea plant heredity in an obscure Austrian/German journal but it took a long time before the two theories got together. The 20th century was a heady time for genetic research, competition between scientists reached an all time high as everyone searched for the correct molecular structure of DNA. Watson, having lived through those days, knew all those players in a professional, and sometimes personal, way. But when big business and the government got into the fray, things changed. With giant chemical companies investing millions into R&D, and expecting substantial profits in return, the days of free "exchange of knowledge" were over. Some scientists saw big business as an opportunity for unlimited research funding and for personal profit as well. Now the chemical companies, and some scientists, were seeking copyright patients on their discoveries so that anyone wishing to do additional research or even related research would have to pay-up first. Nowadays anything related to "genetics" is, for good or bad, in the public eye. Things like cloning, growth enhancement, GMO's in food and medicine are highly controversial for everyone; health care professionals, consumers, politicians and scientists as well. But no matter where you stand on these issues, you need to be well informed on the science involved and this book is a good starting point to that end. But there's more to genetics that the controversial issues mentioned above and Watson gives the reader an in depth look at the many different facets of this important science. Some of the topics covered are: the origin and evolution of life; medical research on human disease, genetic and otherwise; genetics in forensic law enforcement (like CSI); human evolution, how and when we came "out of Africa" and the Nature vs Nurture debate. Watson's writing is clear and informative, not to mention entertaining, and he gives a good overview of the history and workings of genetic research. You may not agree with everything the good professor has to say but after reading this book you'll have a clearer understanding of the issues. Filled with cutting edge science of the day DNA: The Secret of Life was scientifically up to date in 2003 but, like any science, a lot has changed since then. New findings and theories not withstanding this book is still as relevant and controversial as it was a decade ago. For the layperson reader DNA:SOL is a good jumping off place to newer publications and different authors in molecular biology and genetic research. I highly recommend this book to anyone who has a open, but skeptical, mind with some experience in reading science. I had no technical or formatting problems with this Kindle edition and, as far as I could tell, all the illustrations, charts and photos are included.
Last Ranger
- 5 out of 5 starsVerified Purchase
Great book on the story of the discovery of DNA
Reviewed in the United States on March 27, 2017Format: HardcoverGreat book on the story of the discovery of DNA, from Crick and Watson (the inside word as per Watson) including great background information to the genome project and how DNA is used today and its potential effects on society. Watson may be opinionated but gives a fair and balance overlook of the material. If you are looking for a college textbook description, this is not the book for you, but if you want to see the story behind one of the greatest discoveries in the 20th century (or maybe history), this is a great book.
And thank you to the 3rd party bookseller Aberg books - the book is out of print but was in perfect new condition.
- 4 out of 5 starsVerified Purchase
Watson Provides an Excellent Summary with his characteristic wit and sometimes polarizing approach
Reviewed in the United States on April 10, 2014Format: PaperbackI assigned this book to the students of an honors class I recently taught at Lake Superior State University, entitled "DNA: The Secret of Life". Not only was the name of this course the same as the book, but I closely matched the order of topics presented in the class to those found in the book. Because there are only 13 short chapters, this allowed for reading assignments of approximately one chapter per week to fill out a 14 week semester. The book not only covers some of the early history that led to the discovery of DNA as the genetic material, but it also examines the complex issues brought about by having an increased knowledge of the hereditary molecule. In addition to reading the book, our class also watched several episodes of the companion PBS documentary of the same name, thus enhancing the reading experience.
I found Watson's writing style easily approachable and targeted to the advanced high school or college educated reader. The interjection of personal stories and encounters that Watson had with various researchers provided insights that only one of the discoverers of the structure of this molecule could provide. Watson has often been viewed as a polarizing figure, and his writing pulls no punches on certain topics such as the ethical nature of genetic testing, evolution of humans, the race to describe the human genome, and genetically modified organisms (GMOs). While making clear his own views on these topics, he provides enough information that the critical reader is left with a feeling that many of the dilemmas presented by the DNA molecule are complex and have no "right" answer.
- 5 out of 5 starsVerified Purchase
Great book for anyone who wants a primer for learning about DNA.
Reviewed in the United States on July 20, 2021Format: HardcoverI am a scientist, but not of the biological discipline. This book is perfect for anyone who wants to learn about the evolution of DNA research! You may stop liking the DOW chemical company after reading this.. Maybe...
- 5 out of 5 starsVerified Purchase
Thought provoking and informative, especially during COVID
Reviewed in the United States on September 15, 2021Format: KindleWatson is An excellent writer and couple that with his unparalleled experience, you have a good and informative read. Fun to read it so many years after it was printed and during a time when all the research and testing has produced rDNA vaccines for Covid.
- 5 out of 5 starsVerified Purchase
Great book. I already had this book but i ...
Reviewed in the United States on January 8, 2017Great book. I already had this book but i lost it when i went to the hospital for a chemo round. Didnt finish the book so i had to buy it to add to my library. Great book about how the discovery wemt about and technologies that came with it. You learn alot from this book.
- 5 out of 5 starsVerified Purchase
Learn about your DNA.
Reviewed in the United States on December 15, 2014I have just received this and a review of the chapter topics and illustrations makes me know it is what I need. I have had my DNA analyzed and I want to better understand the results. A number of other persons are putting questions on the chat page, asking the same questions about their results and I want to be able to explain more to them. (Not everyone will study a book like this, but I can't wait!)
- 3 out of 5 starsVerified Purchase
Not accurate on Neanderthals info
Reviewed in the United States on July 20, 2019Format: HardcoverThis book was published in 2003 and does NOT have the most recent data regarding Neanderthals and their relationship to "modern humans". What else in it is incorrect I have no idea but now I can't trust it.
Top reviews from other countries
The Ebertz5 out of 5 starsVerified PurchaseLove this book
Reviewed in Canada on March 15, 2018Format: HardcoverI've read it before but in Portuguese.
Left my copy back home so git this one.
Recommend it's a nixe book if you are a biogist/scientist or a science lover.
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Gustavo5 out of 5 starsVerified PurchaseLivro em perfeito estado
Reviewed in Brazil on November 30, 2024Format: HardcoverPra um livro de 2003 está muito bem conservado, só com as folhas levemente amareladas e poucas marcas leves na capa
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駒崎回路研5 out of 5 starsVerified Purchaseさすがワトソンさんの本である。
Reviewed in Japan on April 23, 2013遺伝子を発見、寿命等人間の状態を書いた本である。
初心者等遺伝子に関係のない人も一読の価値がある。
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Surbhi Gupta5 out of 5 starsVerified PurchaseBrilliant book
Reviewed in India on March 2, 2018First of all amazon service is great.Got on low rates.
Now on book: I think it's the first thing happens to me that make me proud on myself for choosing biology for higher education.Brilliant book with ability to make u fall in love with biology even more.
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TK5 out of 5 starsVerified PurchaseGreat overview of DNA.
Reviewed in the United Kingdom on May 16, 2013Absolutely fascinating! Though sometimes quite difficult to understand, I often have to re-read passages to get the full meaning (I have an A a gcse biology). It is suitable for someone with a minimal biological background, although it does assume some knowledge. As a previous reviewer mentions, a glossary would be very useful for quick reference!
In conclusion, If DNA is something you are interested by, where better to start that a Nobel Prize winners overview?
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