Development as adaptation: a paradigm for gravitational and space biology.

Jeffrey R Alberts, April E Ronca
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引用次数: 7

Abstract

Adaptation is a central precept of biology; it provides a framework for identifying functional significance. We equate mammalian development with adaptation, by viewing the developmental sequence as a series of adaptations to a stereotyped sequence of habitats. In this way development is adaptation. The Norway rat is used as a mammalian model, and the sequence of habitats that is used to define its adaptive-developmental sequence is (a) the uterus, (b) the mother's body, (c) the huddle, and (d) the coterie of pups as they gain independence. Then, within this framework and in relation to each of the habitats, we consider problems of organismal responses to altered gravitational forces (micro-g to hyper-g), especially those encountered during space flight and centrifugation. This approach enables a clearer identification of simple "effects" and active "responses" with respect to gravity. It focuses our attention on functional systems and brings to the fore the manner in which experience shapes somatic adaptation. We argue that this basic developmental approach is not only central to basic issues in gravitational biology, but that it provides a natural tool for understanding the underlying processes that are vital to astronaut health and well-being during long duration flights that will involve adaptation to space flight conditions and eventual re-adaptation to Earth's gravity.

发展即适应:引力与空间生物学的范例。
适应是生物学的核心原则;它为识别功能意义提供了一个框架。我们把哺乳动物的发育与适应等同起来,把发育序列看作是对固定生境序列的一系列适应。这样,发展就是适应。挪威鼠被用作哺乳动物模型,用来定义其适应发育序列的栖息地顺序是(a)子宫,(b)母亲身体,(c)窝群,(d)幼鼠获得独立时的小圈子。然后,在这个框架内,并与每个栖息地有关,我们考虑了生物对重力变化(微重力到超重力)的反应问题,特别是在太空飞行和离心过程中遇到的问题。这种方法能够更清楚地识别相对于重力的简单“效应”和主动“响应”。它将我们的注意力集中在功能系统上,并突出了经验塑造躯体适应的方式。我们认为,这种基本的发展方法不仅是重力生物学基本问题的核心,而且它为理解长期飞行期间对宇航员健康和福祉至关重要的潜在过程提供了自然工具,这些过程将涉及对太空飞行条件的适应和最终对地球重力的重新适应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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