Philosophy of Genetics– A Study on its Genesis through the Ages
DOI:
https://doi.org/10.24906/isc/2021/v35/i1/208407Keywords:
Genetics, Heredity, Philosophy, Sexual Reproduction, Prehistoric, Greek era, Christian era, Hindu Philosophy, Karma, Myths, Facts.Abstract
The basic philosophy of Genetics, the science of heredity had originated from the process of sexual reproduction. Prehistoric man was unaware that heredity affects the quality of output of the process of sex and reproduction and that the latter two were intimately associated. This knowledge came when man started to domesticate animals. This article aims to cover the aspects of changes in the philosophy of genetics throughout history.Downloads
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L Gonick & M Wheelis, The Cartoon Guide to Genetics, Harper Perennial, 1991.
H Stubbe, History of Genetics: From Prehistoric Times to the Rediscovery of Mendel’s Laws,https://repository.library.georgetown.edu/ handle/10822/549017, 1972. Accessed on 23rd July 2020.
N Kingsbury, Hybrid: The History and Science of Plant Breeding, University of Chicago Press, 2009.
Selective Breeding, Encyclopedia.com, https:// www.encyclopedia.com/plants-and-animals/ agriculture-and-horticulture/agriculture-animals/ selective-breeding, 2020. Accessed on 21st July 2020.
D Tave, Selective Breeding Programmes for Medium-Sized Fish Farms, FAO Fisheries Technical Paper, Vol 352, 1995.
P Collins, Trees and Gender in Assyrian Art, Iraq, Vol 68, pages 99 – 107, 2006.
M Giovino, The Assyrian Sacred Tree: A History of Interpretations, Vol 230, Saint Paul, 2007.
M Karlsson, Early Neo-Assyrian State Ideology: Relations of Power in the Inscriptions and Iconography of Ashurnasirpal II (883–859) and Shalmaneser III (858–824), PhD Thesis, Institutionen för lingvistikochfilologi, 2013.
B N Porter, Trees, Kings, and Politics: Studies in Assyrian Iconography, Vol 197, Saint-Paul, 2003.
Bible Gateway Passage: Genesis 30:25-31:16, New International Version, Bible Gateway, https://www.biblegateway.com/passage/?search=Genesis%20 30%3A25-31%3A16&version=NIV, 2020. Accessed on 24th July 2020
Waltzing Mouse, Encyclopædia Britannica, Wikisource, Vol 28, 1911. Accessed on 21st July 2020
Charak Samhita, http://www.carakasamhitaonline.com/mediawiki1.32.1/index.php?title=Main_Page, 2020. Accessed on 12th Feb 2020.
The Father of the Theory of Evolution, https:// gulfnews.com/general/the-father-of-the-theory-ofevolution1.1079209, 2020. Accessed on 23rdJuly 2020
S S Amr & A Tbakhi, Abu Al Qasim Al Zahrawi (Albucasis): Pioneer of Modern Surgery, Annals of Saudi Medicine, Vol 27, No 3, page 47 -50, 2007.
L Vega, Fundamentals of Genetics, Scientific e-Resources, 2019.
1C: Pasteur and Spontaneous Generation Biology, LibreTexts https://bio.libretexts.org/Bookshelves/Microbiology/Book%3A_Microbiology_(Boundless)/1%3A_IntIntroduct_to_Microbiology/1.1%3A_Introduction_to_Microbiology/1.1C%3A_Pasteur_and_SpontanSpon_Generation, May 06, 2017. Accessed on 16th May 2020
Francesco Redi, Wikipedia, https:// en.wikipedia.org/w/index.php?title=Francesco_Redi&oldid=958878030, 2020. Accessed on 23rd July 2020.
Antonie van Leeuwenhoek, Wikipedia, https:// en.wikipedia.org/w/index.php?title=Antonie_van_Leeuwenhoek&oldid=964339564, 2020. Accessed on 23rd July 2020.
Homunculus, Wikipedia, https://en.wikipedia.org/w/index.php?title=Homunculus&oldid=964046163, 2020. Accessed on 23rd July 2020.
Homunculus, The Embryo Project Encyclopedia, https://embryo.asu.edu/pages/homunculus, 2020. Accessed on 23rd July 2020.
William Harvey (1578-1657), The Embryo Project Encyclopedia, https://embryo.asu.edu/pages/ william-harvey-1578-1657,2020. Accessed on 23rd July 2020.
K E von Baer, De ovimammalium et hominis genesi, Vossil, 1827.
K Brind’Amour& B Garcia, Wilhelm August Oscar Hertwig (1849-1922), https://embryo.asu.edu/ pages/wilhelm-august-oscar-hertwig-1849-1922, 2019. Accessed on 22nd July 2020.
Rudolf Jakob Camerarius, Wikipedia, https:// en.wikipedia.org/w/index.php?title=Rudolf_Jakob_Camerarius&oldid=867634630, 2018. Accessed on 21st July 2020.
Edelson, E, Gregor Mendel: And the Roots of Genetics, Oxford University Press, Vol 30, No 4, 2001.
D J Fairbanks & S Abott, Darwin’s Influence on Mendel: Evidence from a New Translation of Mendel’s paper, Genetics, Vol 204, No 2, pages 401 – 405, 2016.
V Wunderlich, JMM—Past and Present, Journal of Molecular Medicine, Vol 80, No 9, pages 545 – 548, 2002.
D P Snustad & M J Simmons, Principles of Genetics, John Wiley & Sons, 2015.
M Keynes & T M Cox, William Bateson, The Rediscoverer of Mendel, Journal of the Royal Society of Medicine, Vol 101, No 3, pages 104 – 104, 2008.
A Boujemaa, S Sabah, K Salah-Eddine & Z Moncef, Didatic Implicaions of using Historical Approach in Teaching the Concept of Gene, European Scientific Journal, Vol 11, No 33, Article 33, 2015.
The Fly Room, http://theflyroom.com/theroom, 2020. Accessed on 23rd July 2020.
A W Downie, Pneumococcal Transformation-A Backward View Fourth Griffith Memorial Lecture, Microbiology, Vol 73, No 1, pages 1-11, 1972.
J Lederberg, The Transformation of Genetics by DNA: An Anniversary Celebration of Avery, MacLeod and McCarty (1944), Genetics, Vol 136, No 2, page 423 – 423, 1994.
C O’Connor, Isolating Hereditary Material: Frederick Griffith, Oswald Avery, Alfred Hershey, and Martha Chase, Nature Education, Vol 1, No 1, page 105, 2008.
E F Keller, A Feeling for the Organism, 10th Anniversary Edition: The Life and Work of Barbara McClintock, Macmillan, 1984.
D R Forsdyke & J R Mortimer, Chargaff’s Legacy, Gene, Vol 261, No 1, pages 127 – 137, 2000.
J P Russel, iGenetics, Perason Education Inc. Publishing as Benjamin Cummings, 2002.
Systems biology, Wikipedia, https:// en.wikipedia.org/w/index.php?title=Systems_biology&oldid=958567987. Accessed on 23rd July 2020.
M Meselson & F W Stahl, The Replication of DNA, Cold Spring Harbor Symposia on Quantitative Biology, Vol 23, pages 9 – 12, 1958.
C McHenry & A Kronberg, DNA Polymerase III Holoenzyme of Escherichia coli. Purification and Resolution into Subunits, Journal of Biological Chemistry, Vol 252, No 18, pages 6478 – 6484, 1977.
A B Pardee, F Jacob & J Monod, The Genetic Control and Cytoplasmic Expression of “inducibility†in the Synthesis of β-galactosidase by E. coli, Journal of Molecular Biology, Vol 1, No 2, pages 165 – 178, 1959.
Human Genome Project, Wikipedia, https:// en.wikipedia.org/w/index.php?title=Human_Genome_Project&oldid=966272762, 2020. Accessed on 23rd July 2020.
S K Baniwal, K Bharati, K Y Chan, M Fauth, A Ganguli, S Kotak, S K Mishra, L Nover, M Port & K D Scharf, Heat Stress Response in Plants: A Complex Game with Chaperones and more than Twenty Heat Stress Transcription Factors, Journal of Biosciences, Vol 29, No 4, page 471–487, 2004.
S Kotak, M Port, A Ganguli, F Bicker & P von Koskull During, Characterization of C-terminal Domains of Arabidopsis Heat Stress Transcription Factors (Hsfs) and Identification of a New Signature Combination of Plant Class A Hsfs with AHA and NES Motifs Essential for Activator Function and Intracellular Localization, The Plant Journal, Vol 39, No 1, pages 98 – 112, 2004.
F Schramm, A Ganguli, E Kiehlmann, G Englich, D Walch & P von Koskull-Döring, The Heat Stress Transcription Factor HsfA2 serves as a Regulatory Amplifier of a Subset of Genes in the Heat Stress Response in Arabidopsis, Plant Molecular Biology, Vol 60, No 5, pages 759 – 772, 2006.
F Schramm, J Larkindale, E Kiehlmann, A Ganguli, G Englich, E Vierling & P von KoskullDöring, A cascade of transcription factor DREB2A and Heat Stress Transcription Factor HsfA3 regulates the Heat Stress Response of Arabidopsis, The Plant Journal, Vol 53, No 2, pages 264 -274, 2008.
R Trivers & R Dawkins, The Selfish Gene, Oxford University Press, 1976.
D Noble, The Music of Life: Biology beyond Genes, Oxford University Press, 2008.