首页> 外文期刊>Perspectives in Biology and Medicine >Origins of the classical gene concept, 1900-1950: Genetics, Mechanistic, Philosophy, And the capitalization of agriculture
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Origins of the classical gene concept, 1900-1950: Genetics, Mechanistic, Philosophy, And the capitalization of agriculture

机译:1900-1950年经典基因概念的起源:遗传学,机械学,哲学和农业资本化

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摘要

In the period of “classical genetics” (roughly 1915-1950), the common view of the gene was mechanistic—that is, genes were seen as individual, atomistic units, as material components of the chromosomes. Although it was recognized early on that genes could interact and influence each other’s expression, they were still regarded as individually functioning units, much like the chemists’ atoms or molecules. Although geneticists in particular knew the story was more complex, the atomistic gene remained the central view for a variety of reasons. It fit the growing philosophy of mechanistic materialism in the life sciences, as biologists tried to make their field more quantitative, rigorous, and predictive, like physics and chemistry. Conceptually and pedagogically, it provided a simple way to depict genes (as beads on a string) that fit with the exciting new work on chromosomal mapping. The atomistic gene also fit well with the increasing drive to move capital into agriculture, both for potential patenting purposes and for ease of experimental manipulation and prediction. It is the latter point that the present essay explores most thoroughly. The rise of agriculture as an industrialized process provided a context and material support that fueled much of the rapid growth of genetics in the first half of the 20th century.
机译:在“经典遗传学”时期(大约1915-1950年),该基因的普遍观点是机械的-即,基因被视为个体的原子单位,是染色体的物质组成部分。尽管人们很早就认识到基因可以相互作用并影响彼此的表达,但它们仍被视为具有独立功能的单元,就像化学家的原子或分子一样。尽管特别是遗传学家知道这个故事更复杂,但是出于各种原因,原子基因仍然是中心观点。随着生物学家试图使他们的领域变得更加定量,严格和更具预测性,例如物理学和化学,它符合生命科学中不断发展的机械唯物主义哲学。从概念上和教学上,它提供了一种简单的方法来描绘与令人兴奋的染色体作图新作品相吻合的基因(作为字符串上的珠子)。原子性基因也很适合将资本转移到农业中的日益增长的动力,这既可以用于潜在的专利目的,又可以简化实验操作和预测。这是本文进行最深入探讨的重点。农业作为一种工业化过程的兴起提供了背景和物质支持,在很大程度上促进了20世纪上半叶遗传学的迅速发展。

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