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Chemical Paradigm vs. Biological Paradigm in the Biological Clock Controversy

机译:化学范式与生物潮流争议中的生物范式

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摘要

Examples of biological rhythmicity mounted in the first half of the twentieth century, but the nature of biological rhythms - whether they were direct responses to rhythmic environmental stimuli or generated internally by biological clocks or oscillators - remained sharply disputed. When Frank A. Brown Jr. observed precise twenty-four-hour rhythms in the colour changes of fiddler crabs that were isolated from changes in environmental lighting that could synchronise them with the daily cycle, he rejected the internal clock as an explanation, owing to his belief that such a biological mechanism must operate chemically and consequently run faster at higher temperatures (Van't Hoff's rule), which was not borne out by his experiments. Colin Pittendrigh was committed to the idea that the rhythms were generated by unknown, temperature-compensated mechanisms, without offering any explanation for how this might be accomplished. At the core of their dispute, which was aired publicly from 1954 until Brown's death in 1983, was a difference in belief: Brown's fundamental reductionism, which required biological processes to conform to the laws of chemistry, vs. Pittendrigh's trust in the power of evolution to select for such a temperature compensated biological clock, for which no plausible chemical model then existed.
机译:在二十世纪上半叶安装的生物节律性的例子,但生物节奏的性质 - 无论是对节奏环境刺激还是通过生物钟或振荡器在内部产生的直接反应 - 仍然大力争议。当Frank A. Brown Jr.观察到精确的二十四小时节奏,在跳蟹的颜色变化中被隔离的环境照明的变化,可以将它们与日常周期同步,他拒绝了内部时钟作为解释,因为他认为这种生物学机制必须在化学上运行,从而在较高温度下更快地运行(Vace't Hoff的规则),这不是通过他的实验所承认的。 Colin PittendRigh致力于想到节奏由未知的温度补偿机制产生,而不为如何完成的任何解释提供任何解释。在争端的核心核心,从1954年公开播出,直到布朗于1983年的死亡,是一种信仰的差异:棕色的根本简化主义,这需要符合化学法律的生物学过程,与PittendRigh对进化权的信任。选择这种温度补偿的生物钟,没有任何合理的化学模型。

著录项

  • 来源
    《Ambix》 |2020年第4期|共23页
  • 作者

    Shackelford Jole;

  • 作者单位

    Univ Minnesota Hist Med St Paul MN 55108 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学史;
  • 关键词

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