植物育种与遗传学的起源。

IF 6.9 2区 生物学 Q1 CELL BIOLOGY
Nils Roll-Hansen
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引用次数: 0

摘要

本文认为,现代科学形成时期 1900 年之前的遗传学史学研究过于狭窄。它缺乏对植物育种的关注。也许这种疏忽也缩小了目前对基因型/表型区别和基因概念等基本思想的理解?教科书和周年纪念时仍在讲述一个神话故事:随着 1900 年孟德尔定律的重新发现,现代遗传学拉开了序幕,生物计量学家和孟德尔学派就遗传的连续或不连续变异展开了一场致命的争论。不连续变异对达尔文的自然选择进化论构成了威胁。直到 20 世纪 20 年代,建立在遗传染色体理论基础上的群体遗传学理论才解决了这一问题。1 然而,在 1900 年之前的植物育种领域,遗传和进化的思想是紧密联系在一起的,将不连续遗传与达尔文连续进化论相结合是一个显而易见的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plant Breeding and the Origins of Genetics.

This paper argues that the historiography of genetics ∼1900, the formation period of modern science, is too narrow. It lacks attention to plant breeding. Perhaps this omission also narrows the present understanding of fundamental ideas like the genotype/phenotype distinction and the gene concept? There is a mythical story still told in textbooks and at anniversaries: As modern genetics started with the rediscovery of Mendel's laws in 1900, a fateful controversy over continuous or discontinuous variation of heredity between biometricians and Mendelians. Discontinuity appeared as a threat to the Darwinian theory of evolution by natural selection. Only by the 1920s was the problem solved by a theory of population genetics founded on the chromosome theory of heredity.1 However, in plant breeding ∼1900 ideas of heredity and evolution were closely intertwined, and the combination of discontinuous heredity with continuous Darwinian evolution was an obvious option.

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来源期刊
CiteScore
15.00
自引率
1.40%
发文量
56
审稿时长
3-8 weeks
期刊介绍: Cold Spring Harbor Perspectives in Biology offers a comprehensive platform in the molecular life sciences, featuring reviews that span molecular, cell, and developmental biology, genetics, neuroscience, immunology, cancer biology, and molecular pathology. This online publication provides in-depth insights into various topics, making it a valuable resource for those engaged in diverse aspects of biological research.
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