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胚胎管道化及其限制——从温度角度看。

Embryonic canalization and its limits-A view from temperature.

机构信息

Department of Biological Sciences, University of Rhode Island, Kingston, Rhode Island.

出版信息

J Exp Zool B Mol Dev Evol. 2020 Mar;334(2):128-144. doi: 10.1002/jez.b.22930. Epub 2020 Feb 3.

Abstract

Many animals are able to produce similar offspring over a range of environmental conditions. This property of the developmental process has been termed canalization-the channeling of developmental pathways to generate a stable outcome despite varying conditions. Temperature is one environmental parameter that has fundamental effects on cell physiology and biochemistry, yet developmental programs generally result in a stable phenotype under a range of temperatures. On the other hand, there are typically upper and lower temperature limits beyond which the developmental program is unable to produce normal offspring. This review summarizes data on how development is affected by temperature, particularly high temperature, in various animal species. It also brings together information on potential cell biological and developmental genetic factors that may be responsible for developmental stability in varying temperatures, and likely critical mechanisms that break down at high temperature. Also reviewed are possible means for studying temperature effects on embryogenesis and how to determine which factors are most critical at the high-temperature limits for normal development. Increased knowledge of these critical factors will point to the targets of selection under climate change, and more generally, how developmental robustness in varying environments is maintained.

摘要

许多动物能够在一系列环境条件下产生相似的后代。这种发育过程的特性被称为“ canalization ”,即尽管条件不同,但发育途径会被引导产生稳定的结果。温度是对细胞生理学和生物化学有根本影响的环境参数之一,但发育程序通常会在一系列温度下产生稳定的表型。另一方面,通常存在上下温度限制,超出这些限制,发育程序就无法产生正常的后代。这篇综述总结了关于温度(特别是高温)如何影响各种动物物种发育的资料。它还汇集了有关可能负责在不同温度下保持发育稳定性的细胞生物学和发育遗传因素的信息,以及在高温下可能崩溃的关键机制。还回顾了研究温度对胚胎发生影响的可能方法,以及如何确定在正常发育的高温极限下哪些因素最为关键。对这些关键因素的更多了解将指向气候变化下选择的目标,更广泛地说,还将指向在不同环境中维持发育稳健性的目标。

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