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达尔文对遗传学的贡献。

Darwin's contributions to genetics.

作者信息

Liu Y-S, Zhou X-M, Zhi M-X, Li X-J, Wang Q-L

机构信息

Henan Institute of Science and Technology, Xinxiang, China.

出版信息

J Appl Genet. 2009;50(3):177-84. doi: 10.1007/BF03195671.

Abstract

Darwin's contributions to evolutionary biology are well known, but his contributions to genetics are much less known. His main contribution was the collection of a tremendous amount of genetic data, and an attempt to provide a theoretical framework for its interpretation. Darwin clearly described almost all genetic phenomena of fundamental importance, such as prepotency (Mendelian inheritance), bud variation (mutation), heterosis, reversion (atavism), graft hybridization (Michurinian inheritance), sex-limited inheritance, the direct action of the male element on the female (xenia and telegony), the effect of use and disuse, the inheritance of acquired characters (Lamarckian inheritance), and many other observations pertaining to variation, heredity and development. To explain all these observations, Darwin formulated a developmental theory of heredity - Pangenesis - which not only greatly influenced many subsequent theories, but also is supported by recent evidence.

摘要

达尔文对进化生物学的贡献广为人知,但其对遗传学的贡献却鲜为人知。他的主要贡献是收集了大量的遗传数据,并试图为其解释提供一个理论框架。达尔文清晰地描述了几乎所有具有根本重要性的遗传现象,如优势遗传(孟德尔遗传)、芽变(突变)、杂种优势、返祖现象(隔代遗传)、嫁接杂交(米丘林遗传)、限性遗传、雄性因素对雌性的直接作用(异粉性和先父遗传)、用进废退的影响、获得性性状的遗传(拉马克遗传),以及许多其他与变异、遗传和发育相关的观察结果。为了解释所有这些观察结果,达尔文提出了一种遗传发育理论——泛生论——它不仅极大地影响了许多后续理论,而且也得到了近期证据的支持。

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