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表观遗传选择:一种模式形成的替代机制。

Epigenetic selection: an alternative mechanism of pattern formation.

作者信息

Sachs T

机构信息

Department of Botany, Hebrew University, Jerusalem, Israel.

出版信息

J Theor Biol. 1988 Oct 21;134(4):547-59. doi: 10.1016/s0022-5193(88)80056-0.

Abstract

It is commonly assumed that patterned development is specified by pre-patterns or programs, actual development being a necessary consequence of previous conditions. However, the variability of normal development and its regenerative capacities are evidence for additional patterning processes. Predictable mature structures could result from continued "epigenetic selection" of the most appropriate developmental events. This selection would occur from an excess of possibilities that are genetically equivalent. The final balanced state would be specified by the genes, and the developmental system could gravitate towards this state without a detailed program. Selection could result from competition between cells and tissues for limiting developmental signals. The success or continuation of events that could start randomly would depend on feedback relationships with complementary developmental events. Specialized processes could be gradually localized if differentiation itself consumed limiting signals and if this consumption increased as differentiation proceeded. Spatial patterns could be formed if the movement of signals was gradually facilitated along the axes where it were initiated by diffusion. For example, induced facilitated transport could be the basis of an advantage of multicellular centers over scattered cells that have specialized in the same way. If epigenetic selection has a developmental role it requires a revision of common views concerning the cellular traits and the gene functions necessary for patterned development. An example of these traits is that cells should be expected to respond to changes in signal availability, not necessarily to signal concentration at any given time.

摘要

人们通常认为,模式化发育是由预先模式或程序所规定的,实际发育是先前条件的必然结果。然而,正常发育的变异性及其再生能力是存在额外模式化过程的证据。可预测的成熟结构可能源于对最合适发育事件的持续“表观遗传选择”。这种选择将从大量基因上等效的可能性中产生。最终的平衡状态将由基因决定,发育系统可以在没有详细程序的情况下趋向于这种状态。选择可能源于细胞和组织之间对有限发育信号的竞争。随机启动的事件的成功或延续将取决于与互补发育事件的反馈关系。如果分化本身消耗有限信号,并且随着分化进行这种消耗增加,那么专门过程可能会逐渐局部化。如果信号的移动沿着由扩散启动的轴逐渐得到促进,就可以形成空间模式。例如,诱导促进运输可能是多细胞中心相对于以相同方式特化的分散细胞具有优势的基础。如果表观遗传选择具有发育作用,那么就需要修正关于模式化发育所需的细胞特征和基因功能的普遍观点。这些特征的一个例子是,应该预期细胞会对信号可用性的变化做出反应,而不一定是对任何给定时间的信号浓度做出反应。

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