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This latest book by Elof Carlson (The Unfit) is a first history of classical genetics, the era in which the chromosome theory of heredity was proposed and developed. Highly illustrated and based heavily on early 20th century original sources, the book traces the roots of genetics in breeding analysis and studies of cytology, evolution, and reproductive biology that began in Europe but were synthesized in the United States through new Ph.D. programs and expanded academic funding. Carlson argues that, influenced largely by new technologies and instrumentation, the life sciences progressed though incremental change rather than paradigm shifts, and he describes how molecular biology emerged from the key ideas and model systems of classical genetics. Readable and original, this narrative will interest historians and science educators as well as today's practitioners of genetics.
Gregor Mendel, the founder of genetics, is renowned as one of the world’s most ingenious and influential scientists. Nonetheless, he remains misunderstood and enigmatic, his history shrouded in controversy and myth. Escaping poverty, he joined a scholarly community of Augustinian friars in a monastery and studied at the University of Vienna under some of Europe’s most accomplished scientists. He returned to a tumultuous milieu at the monastery as he and his fellow friars suffered a harrowing investigation accusing them of secularism and pantheistic philosophy. Against this backdrop, Mendel initiated an epic set of experiments with the common garden pea that would lead him to reveal the mystery of inheritance. The article he published would become a classic in the history of science. Darwin’s Origin of Species shook the world in 1859. Its impact eclipsed Mendel’s discovery, presented just a few years after Darwin’s pivotal book. Unlike Darwin, who witnessed his work attain immediate worldwide fame (and infamy), Mendel would never know how powerfully his discoveries would impact science and humanity; his achievements languished in obscurity until well beyond his death. “The laws governing inheritance are quite unknown,” Darwin lamented just a few pages into the Origin of Species. Mendel had discovered and presented those laws, which ultimately would bridge the most gaping chasm in Darwin’s theory. In 1900, at the dawn of the twentieth century, several influential scientists independently rediscovered Mendel’s theory, elevating it to the highest echelon of scientific triumph. The new science, christened genetics, immediately generated controversies, some of which continue to the present. Throughout modern history, proponents and detractors alike have coopted Mendel’s theory to buttress their worldviews, fueling the flames of disputes and prolonging political battles. Unquestionably, however, it has served as the foundation for some history’s greatest scientific advances. This book commemorates Mendel’s life and legacy at the bicentennial of his birth. It interweaves traditional accounts of his history with newly discovered evidence to reveal an extraordinary teacher, a resolute priest and abbot, and a complex and guileless scientist whose momentous discoveries have remained essentially unchanged for more than a century and a half.
How genetics, and the technologies that arise from it, will affect the way we live in the twenty-first centuryIn the mid-nineteenth century, a Moravian friar made a discovery that was to shape not only the future of science but also that of the human race. With his deceptively simple experiments on peas in a monastery garden in Brno, Gregor Mendel was the first to establish the basic laws of heredity, laws from which the principles of modern genetics can be drawn. In this fascinating account, acclaimed science writer Colin Tudge traces the influence on science of Mendel's extraordinary ideas, from the 1850s to the present day, and goes on to ask what might happen in the coming century and beyond.A comprehensive and entertaining work that combines scientific history with a compelling discussion on the future trends of genetic technologies, "The Impact of the Gene" examines how the ideas that underpin the spectrum of all genetic issues are interrelated, and proposes that with a basic understanding of Gregor Mendel's theories and discoveries, all modern genetics falls easily into place. From a monastery garden to the laboratories of the twenty-first century, "The Impact of the Gene" provides a vital overview of the science of genetics, at once "enjoyable and informative . . . readable and entertaining" ("The New York Times Book Review").
Gregor Johann Mendel is known as the father of modern genetics. He used cross-breeding to develop different kinds of peas. This allowed him to make predictions about the outcomes. These are now called Mendel's Laws of Heredity. They explain how traits are passed from generation to generation. Mendel also discovered dominant and recessive genes.
Experiments in Plant Hybridisation by Gregor Mendel Pdf
Experiments which in previous years were made with ornamental plants have already afforded evidence that the hybrids, as a rule, are not exactly intermediate between the parental species. With some of the more striking characters, those, for instance, which relate to the form and size of the leaves, the pubescence of the several parts, etc., the intermediate, indeed, is nearly always to be seen; in other cases, however, one of the two parental characters is so preponderant that it is difficult, or quite impossible, to detect the other in the hybrid. from 4. The Forms of the Hybrid One of the most influential and important scientific works ever written, the 1865 paper Experiments in Plant Hybridisation was all but ignored in its day, and its author, Austrian priest and scientist GREGOR JOHANN MENDEL (18221884), died before seeing the dramatic long-term impact of his work, which was rediscovered at the turn of the 20th century and is now considered foundational to modern genetics. A simple, eloquent description of his 18561863 study of the inheritance of traits in pea plantsMendel analyzed 29,000 of themthis is essential reading for biology students and readers of science history. Cosimo presents this compact edition from the 1909 translation by British geneticist WILLIAM BATESON (18611926).
The history of Science is replete with untold stories and this book is one of these accounts. The author shares a narrative of heredity, an active topic of inquiry long before Gregor Mendel – the father of genetics – planted his peas. One such interlude unfolded in Mendel’s home city and involved the sheep breeder, Imre Festetics. He sought to improve wool and proposed important rules of heredity. Unfortunately, aspects of wool quality, now known to be polygenic, complicate interpretations of the work of Festetics and explain why it is neglected. The forebearers of Mendel never get the credit they deserve. Heredity Before Mendel resurrects Festetics, the grandfather of heredity. Key Features 1) Documents a vibrant community of scholars interested in heredity before Mendel 2) Highlights the work of Imre Festetics, the forgotten grandfather of genetics 3) Desribes political repression which stifled the nascent foundation of heredity research 4) Emphasizes the role sheep and wool played as the first model system of genetics 5) Challenges19th century taboos in Moravia leading to malicious rumors about the inbred royal House of Austria (Habsburgs).
Gregor Mendel: Planting the Seeds of Genetics by Simon Mawer Pdf
Gregor Mendel's discoveries were so far in advance of their day that it wasn't until 50 years had passed that their importance was recognised by the scientific community. Providing an account of scientific history, this work presents the narrative through the work of the life-scientists who built their own research on Mendel's discoveries.
The Best American Science and Nature Writing 2013 by Siddhartha Mukherjee,Tim Folger Pdf
Twenty-seven of America’s best science and nature essays of 2013, selected by the author of The Emperor of All Maladies and the #1 New York Times bestseller, The Gene. Pulitzer Prize–winning author Siddhartha Mukherjee, a leading cancer physician and researcher, selects the year’s top science and nature writing from journalists who dive into their fields with curiosity and passion, delivering must-read articles from a wide array of fields. The Best American Science & Nature Writing 2013 includes: “The T-Cell Army” by Jerome Groopman “The Artificial Leaf” by David Owen “The Life of Pi, and Other Infinities” by Natalie Angier “Altered States” by Oliver Sacks “Recall of the Wild” by Elizabeth Kolbert “Super Humanity” by Robert M. Sapolsky “Can a Jellyfish Unlock the Secret of Immortality?” by Nathaniel Rich Contributors also include: J. B. Mackinnon · Benjamin Hale · Tim Zimmermann · David Deutsch and Artur Ekert · Michael Moyer · Sylvia A. Earle · John Pavlus · Michelle Nijhuis · Rick Bass · Michael Specter · Alan Lightman · David Quammen · Keith Gessen · Steven Weinberg · Gareth Cook · Katherine Harmon · Stephen Marche · Mark Bowden · Kevin Dutton
Mendel's Principles of Heredity by William Bateson,Gregor Mendel Pdf
Mendel's principles of heredity: A defence, has been considered important throughout human history. In an effort to ensure that this work is never lost, we have taken steps to secure its preservation by republishing this book in a modern format for both current and future generations. This complete book has been retyped, redesigned, and reformatted. Since these books are not scans of the authors' original publications, the text is readable and clear.
Continuities and Discontinuities of the Habsburg Legacy in East-Central European Discourses since 1918 by Magdalena Baran-Szołtys,Jagoda Wierzejska Pdf
In 1918 the Danube Monarchy ceased to exist and its provinces became parts of the Monarchy's successor states, which increasingly assumed the character of nation-states. The regimes of these countries were usually oblivious and/or hostile to remnants of the erstwhile Austrian rule due to ideological reasons: they treated them as traces of a superimposed imperial power and an alien – democratic, pluralistic, liberal – tradition. Notwithstanding that fact, erasing the Habsburg Empire from maps of Europe did not entail the entire cancelation of its legacy on the former Habsburg territories. Although officially neglected or suppressed, this legacy made itself felt, overtly or tacitly, in discourses present in the public sphere of the countries that superseded the Monarchy.
This acclaimed biography of 19th century scientist Gregor Mendel is “a fascinating tale of the strange twists and ironies of scientific progress” (Publishers Weekly). A National Book Critics Circle Award finalist In The Monk in the Garden, award-winning author Robin Marantz Henig vividly chronicles the birth of genetics, a field that continues to challenge the way we think about life itself. Tending to his pea plants in a monastery garden, the Moravian monk Gregor Mendel discovered the foundational principles of genetic inheritance. But Mendel’s work was ignored during his lifetime, even though it answered the most pressing questions raised by Charles Darwin's revolutionary book, On the Origin of Species. Thirty-five years after his death, Mendel’s work was saved from obscurity when three scientists from three different countries nearly simultaneously dusted off his groundbreaking paper and finally recognized its profound significance. From the perplexing silence that greeted his discovery to his ultimate canonization as the father of genetics, Henig presents a tale filled with intrigue, jealousy, and a healthy dose of bad timing. Though little is known about Mendel’s life, she "has done a remarkable job of fleshing out the myth with what few facts there are" (Washington Post Book World).
2019 PEN/E.O. Wilson Literary Science Writing Award Finalist "Science book of the year"—The Guardian One of New York Times 100 Notable Books for 2018 One of Publishers Weekly's Top Ten Books of 2018 One of Kirkus's Best Books of 2018 One of Mental Floss's Best Books of 2018 One of Science Friday's Best Science Books of 2018 “Extraordinary”—New York Times Book Review "Magisterial"—The Atlantic "Engrossing"—Wired "Leading contender as the most outstanding nonfiction work of the year"—Minneapolis Star-Tribune Celebrated New York Times columnist and science writer Carl Zimmer presents a profoundly original perspective on what we pass along from generation to generation. Charles Darwin played a crucial part in turning heredity into a scientific question, and yet he failed spectacularly to answer it. The birth of genetics in the early 1900s seemed to do precisely that. Gradually, people translated their old notions about heredity into a language of genes. As the technology for studying genes became cheaper, millions of people ordered genetic tests to link themselves to missing parents, to distant ancestors, to ethnic identities... But, Zimmer writes, “Each of us carries an amalgam of fragments of DNA, stitched together from some of our many ancestors. Each piece has its own ancestry, traveling a different path back through human history. A particular fragment may sometimes be cause for worry, but most of our DNA influences who we are—our appearance, our height, our penchants—in inconceivably subtle ways.” Heredity isn’t just about genes that pass from parent to child. Heredity continues within our own bodies, as a single cell gives rise to trillions of cells that make up our bodies. We say we inherit genes from our ancestors—using a word that once referred to kingdoms and estates—but we inherit other things that matter as much or more to our lives, from microbes to technologies we use to make life more comfortable. We need a new definition of what heredity is and, through Carl Zimmer’s lucid exposition and storytelling, this resounding tour de force delivers it. Weaving historical and current scientific research, his own experience with his two daughters, and the kind of original reporting expected of one of the world’s best science journalists, Zimmer ultimately unpacks urgent bioethical quandaries arising from new biomedical technologies, but also long-standing presumptions about who we really are and what we can pass on to future generations.
Mendel's Theatre offers a new way of thinking about early twentieth-century American drama by uncovering the rich convergence of heredity theory, the American eugenics movement, and innovative modern drama from the 1890s to 1930.
Philip Kitcher is one of the leading figures in the philosophy of science today. Here he collects, for the first time, many of his published articles on the philosophy of biology, spanning from the mid-1980's to the present.The book's title refers to Gregor Mendel, an Augustinian monk who was one of the first scientists to develop a theory of heredity. Mendel's work has been deeply influential to our understanding of our selves and our world, just as the study of genetics today will have a profound and long-term impact on future scientific research. Kitcher's articles cover a broad range of topics with similar philosophical and social significance: sociobiology, evolutionary psychology, species, race, altruism, genetic determinism, and the rebirth of creationism in Intelligent Design.Kitcher's work on the intersection of biology and the philosophy of science is both unprecedented and wide-ranging, and will appeal not only to philosophers of science, but to scholars and students across disciplines.