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热休克蛋白90(Hsp90)电容器、发育重塑与进化:基因网络的稳健性及变态发育的奇特进化能力

The Hsp90 capacitor, developmental remodeling, and evolution: the robustness of gene networks and the curious evolvability of metamorphosis.

作者信息

Rutherford Suzannah, Hirate Yoshikazu, Swalla Billie J

机构信息

Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, Washington 98109-1024, USA.

出版信息

Crit Rev Biochem Mol Biol. 2007 Sep-Oct;42(5):355-72. doi: 10.1080/10409230701597782.

Abstract

Genetic capacitors moderate expression of heritable variation and provide a novel mechanism for rapid evolution. The prototypic genetic capacitor, Hsp90, interfaces stress responses, developmental networks, trait thresholds and expression of wide-ranging morphological changes in Drosophila and other organisms. The Hsp90 capacitor hypothesis, that stress-sensitive storage and release of genetic variation through Hsp90 facilitates adaptive evolution in unpredictable environments, has been challenged by the belief that Hsp90-buffered variation is unconditionally deleterious. Here we review recent results supporting the Hsp90 capacitor hypothesis, highlighting the heritability, selectability, and potential evolvability of Hsp90-buffered traits. Despite a surprising bias toward morphological novelty and typically invariable quantitative traits, Hsp90-buffered changes are remarkably modular, and can be selected to high frequency independent of the expected negative side-effects or obvious correlated changes in other, unselected traits. Recent dissection of cryptic signal transduction variation involved in one Hsp90-buffered trait reveals potentially dozens of normally silent polymorphisms embedded in cell cycle, differentiation and growth control networks. Reduced function of Hsp90 substrates during environmental stress would destabilize robust developmental processes, relieve developmental constraints and plausibly enables genetic network remodeling by abundant cryptic alleles. We speculate that morphological transitions controlled by Hsp90 may fuel the incredible evolutionary lability of metazoan life-cycles.

摘要

遗传缓冲器调节可遗传变异的表达,并为快速进化提供了一种新机制。典型的遗传缓冲器热休克蛋白90(Hsp90)连接着应激反应、发育网络、性状阈值以及果蝇和其他生物体中广泛形态变化的表达。Hsp90缓冲器假说认为,通过Hsp90对应激敏感的遗传变异的储存和释放促进了在不可预测环境中的适应性进化,但这一假说受到了一种观点的挑战,即认为Hsp90缓冲的变异是无条件有害的。在这里,我们回顾了支持Hsp90缓冲器假说的最新研究结果,强调了Hsp90缓冲性状的遗传性、可选择性和潜在的可进化性。尽管对形态新奇性和通常不变的数量性状存在惊人的偏向,但Hsp90缓冲的变化具有显著的模块性,并且可以被选择到高频,而与预期的负面副作用或其他未选择性状的明显相关变化无关。最近对一个Hsp90缓冲性状中涉及的隐秘信号转导变异的剖析揭示,在细胞周期、分化和生长控制网络中潜在地存在数十个通常沉默的多态性。在环境应激期间Hsp90底物功能的降低会破坏稳健的发育过程,缓解发育限制,并可能通过丰富的隐秘等位基因实现遗传网络重塑。我们推测,由Hsp90控制的形态转变可能推动了后生动物生命周期令人难以置信的进化易变性。

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