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滞育决策作为蝴蝶体质量适应性发育可塑性的级联开关。

The diapause decision as a cascade switch for adaptive developmental plasticity in body mass in a butterfly.

机构信息

Department of Zoology, Stockholm University, Stockholm, Sweden.

出版信息

J Evol Biol. 2010 Jun 1;23(6):1129-37. doi: 10.1111/j.1420-9101.2010.01994.x. Epub 2010 Apr 23.

Abstract

Switch-induced developmental plasticity, such as the diapause decision in insects, is a major form of adaptation to variable environments. As individuals that follow alternative developmental pathways will experience different selective environments the diapause decision may evolve to a cascade switch that induces additional adaptive developmental differences downstream of the diapause decision. Here, we show that individuals following alternative developmental pathways in a Swedish population of the butterfly, Pararge aegeria, display differential optimization of adult body mass as a likely response to predictable differences in thermal conditions during reproduction. In a more northern population where this type of selection is absent no similar difference in adult mass among pathways was found. We conclude that the diapause decision in the southern population appears to act as a cascade switch, coordinating development downstream of the diapause decision, to produce adult phenotypes adapted to the typical thermal conditions of their expected reproductive period.

摘要

诱导发育可塑性的开关,如昆虫的滞育决策,是适应多变环境的主要形式。由于选择不同发育途径的个体将经历不同的选择环境,滞育决策可能进化为级联开关,从而在滞育决策下游诱导额外的适应性发育差异。在这里,我们表明,在瑞典蝴蝶 Pararge aegeria 种群中,选择不同发育途径的个体表现出成年体重的差异优化,这可能是对繁殖期间可预测热条件差异的一种反应。在一个不存在这种选择的更北部种群中,没有发现途径之间的成年体重存在类似差异。我们的结论是,南部种群的滞育决策似乎充当了级联开关,协调滞育决策下游的发育,产生适应预期繁殖期典型热条件的成年表型。

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