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对新生物学和生物革命的批判性分析:它们的影响——从医学到进化。

A critical analysis of the new biology and the biological revolution: their impact - from medicine to evolution.

作者信息

Dev Sukhendu B

机构信息

Wellcome Unit for the History of Medicine, Oxford University, Oxford OX2 6PE.

出版信息

Riv Biol. 2010 May-Dec;103(2-3):237-68.

Abstract

In this article, I critically analyze the impact of the new biology and the biological revolution. I argue that indiscriminate use of the words such as 'interdisciplinary,' 'integrative,' and 'revolution' has caused only confusion when applied to biology. The recent debate, especially after the exploding field of systems biology, has brought back the controversy whether molecular biology is reductionist or holistic. I look at the issues involved critically. I discuss the problem of defining the word 'gene' and argue that recent attempts to redefine the central dogma of molecular biology about the information flow from DNA to RNA to protein are not justified. I support my view with comments from the scientist who discovered RNA splicing. Several aspects of evo-devo, a new branch of biology, are discussed. I give examples from this evolution-developmental biology to show how some of Darwin's inspired guesses have had resounding victory when it was found that specific genes during embryonic development of the Galapagos finches decided the size and shape of their beaks. I discuss the recent publications which show that the conditions in the island, such as wet to dry to wet season, can bring about evolutionary changes from year to year. Thus it is essential to monitor both short and long-term evolutionary changes to get the full picture of evolution.

摘要

在本文中,我批判性地分析了新生物学和生物学革命的影响。我认为,不加区分地使用“跨学科”“整合”和“革命”等词汇应用于生物学时只会造成混乱。最近的争论,尤其是在系统生物学领域蓬勃发展之后,引发了关于分子生物学是还原论还是整体论的争议。我批判性地审视了其中涉及的问题。我讨论了定义“基因”一词的问题,并认为最近试图重新定义分子生物学中关于从DNA到RNA再到蛋白质的信息流的中心法则是不合理的。我引用了发现RNA剪接的科学家的评论来支持我的观点。本文还讨论了进化发育生物学(evo-devo)这一生物学新分支的几个方面。我从这一进化发育生物学中举例说明,当发现加拉帕戈斯雀胚胎发育过程中的特定基因决定了它们喙的大小和形状时,达尔文的一些启发性猜测是如何取得巨大成功的。我还讨论了最近的一些出版物,这些出版物表明岛屿环境条件,如从湿季到干季再到湿季的变化,每年都可能引发进化变化。因此,监测短期和长期的进化变化对于全面了解进化至关重要。

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