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独居蜜蜂(膜翅目:切叶蜂科)表型可塑性的营养调控

Nutritional Regulation of Phenotypic Plasticity in a Solitary Bee (Hymenoptera: Megachilidae).

作者信息

Fischman Brielle J, Pitts-Singer Theresa L, Robinson Gene E

机构信息

Program in Ecology, Evolution, and Conservation Biology, University of Illinois, Urbana, IL 61801.

Department of Biology, Hobart and William Smith Colleges, Geneva, NY 14456.

出版信息

Environ Entomol. 2017 Oct 1;46(5):1070-1079. doi: 10.1093/ee/nvx119.

Abstract

Phenotypic plasticity involves adaptive responses to predictable environmental fluctuations and may promote evolutionary change. We studied the regulation of phenotypic plasticity in an important agricultural pollinator, the solitary alfalfa leafcutting bee (Megachile rotundata F.). Specifically, we investigated how larval nutrition affects M. rotundata diapause plasticity and how diapause plasticity affects adult female reproductive behavior. Field surveys and laboratory manipulations of aspects of larval diet demonstrated nutritional regulation of M. rotundata diapause plasticity. Manipulation of larval diet quality through the addition of royal jelly, the caste-determining substance of the honey bee Apis mellifera L., increased the probability of diapause in M. rotundata. We also found that larval nutrition and diapause status affected M. rotundata adult female reproductive behavior. Nutritional effects on larval diapause that also impact adult fitness have intriguing implications for the evolution of developmental plasticity in bees. In particular, as the solitary lifestyle of M. rotundata is considered to be the ancestral condition in bees, nutritionally regulated plasticity may have been an ancestral condition in all bees that facilitated the evolution of other forms of phenotypic plasticity, such as the castes of social bees.

摘要

表型可塑性涉及对可预测环境波动的适应性反应,并可能促进进化变化。我们研究了一种重要的农业传粉昆虫——独居的苜蓿切叶蜂(Megachile rotundata F.)的表型可塑性调控。具体而言,我们调查了幼虫营养如何影响苜蓿切叶蜂的滞育可塑性,以及滞育可塑性如何影响成年雌蜂的生殖行为。对幼虫饮食方面的实地调查和实验室操作表明,苜蓿切叶蜂的滞育可塑性受营养调控。通过添加蜂王浆(蜜蜂Apis mellifera L.的级型决定物质)来操纵幼虫饮食质量,增加了苜蓿切叶蜂滞育的概率。我们还发现,幼虫营养和滞育状态影响苜蓿切叶蜂成年雌蜂的生殖行为。幼虫滞育的营养效应也影响成年个体的适合度,这对蜜蜂发育可塑性的进化具有有趣的意义。特别是,由于苜蓿切叶蜂的独居生活方式被认为是蜜蜂的原始状态,营养调控的可塑性可能是所有蜜蜂的原始状态,它促进了其他形式表型可塑性的进化,如社会性蜜蜂的级型。

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