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伴侣蛋白、 canalization 和动物形态的演化。

Chaperones, Canalization, and Evolution of Animal Forms.

机构信息

Department of Biology, Ochanomizu University, 2-1-1 Otsuka, Bunkyo-ku, Tokyo 112-0012, Japan.

Marine Biological Association of the UK, The Laboratory, Plymouth PL1 2PB, UK.

出版信息

Int J Mol Sci. 2018 Oct 4;19(10):3029. doi: 10.3390/ijms19103029.

Abstract

Over half a century ago, British developmental biologist Conrad Hal Waddington proposed the idea of canalization, that is, homeostasis in development. Since the breakthrough that was made by Rutherford and Lindquist (1998), who proposed a role of Hsp90 in developmental buffering, chaperones have gained much attention in the study of canalization. However, recent studies have revealed that a number of other molecules are also potentially involved in canalization. Here, I introduce the emerging role of DnaJ chaperones in canalization. I also discuss how the expression levels of such buffering molecules can be altered, thereby altering organismal development. Since developmental robustness is maternally inherited in various organisms, I propose that dynamic bet hedging, an increase in within-clutch variation in offspring phenotypes that is caused by unpredictable environmental challenges to the mothers, plays a key role in altering the expression levels of buffering molecules. Investigating dynamic bet hedging at the molecular level and how it impacts upon morphological phenotypes will help our understanding of the molecular mechanisms of canalization and evolutionary processes.

摘要

半个多世纪以前,英国发育生物学家康拉德·哈尔·沃丁顿(Conrad Hal Waddington)提出了 canalization(即发育中的内稳态)的概念。自 1998 年提出 Hsp90 在发育缓冲中具有作用的突破性观点以来,伴侣蛋白在 canalization 的研究中受到了广泛关注。然而,最近的研究揭示了许多其他分子也可能参与 canalization。在这里,我将介绍 DnaJ 伴侣蛋白在 canalization 中的新兴作用。我还讨论了缓冲分子的表达水平如何发生改变,从而改变生物个体的发育。由于在各种生物体中,发育稳健性是母系遗传的,我提出,由于母亲面临不可预测的环境挑战,导致后代表型在窝内变异的动态赌注避险,在改变缓冲分子的表达水平方面起着关键作用。从分子水平上研究动态赌注避险及其对形态表型的影响,将有助于我们理解 canalization 的分子机制和进化过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efa5/6213012/0adffad3f089/ijms-19-03029-g001.jpg

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