Domínguez-Castanedo Omar, Valdesalici Stefano, Rosales-Torres Ana María
Programa de Doctorado en Ciencias Biológicas y de la Salud, Universidad Autónoma Metropolitana, Coyoacán, D.F. México.
Associazione Italiana Killifish, Viano (RE), Italy.
Dev Dyn. 2017 Nov;246(11):802-806. doi: 10.1002/dvdy.24519. Epub 2017 Jun 1.
Populations of annual killifishes persist in temporary water bodies over the dry season through the expression of diapause in their drought-resistant embryos. Environmental cues may influence expression of the diapause phenotype during embryonic incubation. Millerichthys robustus is the only annual killifish distributed in North America. The aim of this review is to analyze the ecology of M. robustus development and contrast this with that of annual killifishes in austral locations. The temporary water bodies inhabited by M. robustus present the following environmental conditions: flood, drought, and humidity. During the flooding period, the environment presents the lowest temperatures, shortest photoperiod, and highest precipitation, and embryos were found in diapause I. The drought period features the highest temperatures and lowest precipitation, and embryos were found in diapause II. In contrast, during the humid period at the beginning of the rainy season, embryos were found in diapause I, II, and III, associated with the longer photoperiod and high temperatures. These dynamics of the diapause phenotypes can be explained by a combination of the strategies of phenotypic plasticity during flood and drought periods, and bet-hedging during the humid period. Moreover, the microenvironmental conditions in which embryos were buried could influence developmental trajectories. Developmental Dynamics 246:802-806, 2017. © 2017 Wiley Periodicals, Inc.
一年生鳉鱼种群通过其抗旱胚胎进入滞育状态,在旱季期间在临时性水体中存活下来。环境线索可能会影响胚胎孵化期间滞育表型的表达。粗壮米勒鳉是唯一分布于北美的一年生鳉鱼。本综述的目的是分析粗壮米勒鳉的发育生态学,并将其与南半球一年生鳉鱼的发育生态学进行对比。粗壮米勒鳉栖息的临时性水体呈现出以下环境条件:洪水、干旱和湿度。在洪水期,环境温度最低、光照周期最短且降水量最高,此时胚胎处于滞育I期。干旱期的特点是温度最高且降水量最低,此时胚胎处于滞育II期。相比之下,在雨季开始时的湿润期,胚胎处于滞育I期、II期和III期,这与较长的光照周期和高温有关。滞育表型的这些动态变化可以通过洪水期和干旱期的表型可塑性策略以及湿润期的风险分摊策略的组合来解释。此外,胚胎所处的微环境条件可能会影响发育轨迹。《发育动力学》246:802 - 806,2017年。© 2017威利期刊公司。