Scharf Michael E, Buckspan Caitlin E, Grzymala Traci L, Zhou Xugou
Entomology and Nematology Department, University of Florida, Gainesville, FL 32611, USA.
J Exp Biol. 2007 Dec;210(Pt 24):4390-8. doi: 10.1242/jeb.010876.
Polyphenism is a key strategy used by solitary insects to adapt to changing environmental conditions and by eusocial insects for existing collaboratively in a social environment. In social insects, the morphogenetic juvenile hormone (JH) is often involved in directing the differentiation of polyphenic behavioral castes. The present study examines the effects of JH, environment and feeding on caste polyphenism in a eusocial insect, the termite Reticulitermes flavipes (Kollar). Our approach included a combination of model JH bioassays, SDS-PAGE and western blotting. Our findings revealed significant temperature-dependent effects on (1) JH-induced soldier caste differentiation, (2) abundance of soldier-inhibitory hexamerin proteins, and (3) JH-sequestration by hexamerin proteins. Additionally, though it appears to be dependent on a complex interaction of factors, feeding apparently plays a significant upstream role in enhancing hexamerin accumulation under normal colony conditions. These findings offer important new information on termite eusocial polyphenism by providing the first mechanistic evidence linking an intrinsic caste regulatory factor (hexamerin proteins) to an upstream extrinsic factor (environment) and a downstream response (caste differentiation). These observations are consistent with the hypothesis that the hexamerins serve as an environmentally and nutritionally responsive switching mechanism that regulates termite caste polyphenism.
多型现象是独居昆虫用来适应不断变化的环境条件的关键策略,也是群居昆虫在社会环境中协同生存的关键策略。在群居昆虫中,形态发生的保幼激素(JH)通常参与指导多型行为型的分化。本研究考察了JH、环境和取食对白蚁黄胸散白蚁(Kollar)的型多型现象的影响。我们的方法包括模型JH生物测定、SDS-PAGE和蛋白质印迹法的结合。我们的研究结果表明,温度对(1)JH诱导的兵蚁型分化、(2)兵蚁抑制性六聚体蛋白的丰度以及(3)六聚体蛋白对JH的螯合有显著的依赖性影响。此外,尽管这似乎取决于多种因素的复杂相互作用,但在正常蚁群条件下,取食显然在增强六聚体积累方面起着重要的上游作用。这些发现通过提供将内在的型调节因子(六聚体蛋白)与上游外在因子(环境)和下游反应(型分化)联系起来的首个机制证据,为白蚁群居型多型现象提供了重要的新信息。这些观察结果与六聚体作为一种调节白蚁型多型现象的环境和营养响应开关机制的假设一致。