Grozinger Christina M, Robinson Gene E
Department of Entomology, W.M. Keck Center for Behavioral Biology, North Carolina State University, 2315 Gardner Hall, P.O. Box 7613, Raleigh, NC 27695, USA.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2007 Apr;193(4):461-70. doi: 10.1007/s00359-006-0202-x. Epub 2006 Dec 28.
Pheromones cause dramatic changes in behavior and physiology, and are critical for honey bee colony organization. Queen mandibular pheromone (QMP) regulates multiple behaviors in worker bees (Slessor et al. in J Chem Ecol 31(11):2731-2745, 2005). We also identified genes whose brain expression levels were altered by exposure to QMP (Grozinger et al. in Proc Natl Acad Sci USA 100(Suppl 2):14519-14525, 2003). Krüppel-homolog 1 (Kr-h1) RNA levels were significantly downregulated by QMP, and were higher in foragers than in nurses (Whitfield et al. in Science 302(5643):296-299, 2003). Here we report on results of behavioral and pharmacological experiments that characterize factors regulating expression of Kr-h1. Foragers have higher brain levels of Kr-h1 than in-hive bees, regardless of age and pheromone exposure. Furthermore, forager Kr-h1 levels were not affected by QMP. Since the onset of foraging is caused, in part, by increasing juvenile hormone blood titers and brain octopamine levels, we investigated the effects of octopamine and methoprene (a juvenile hormone analog) on Kr-h1 expression. Methoprene produced a marginal (not significant) increase in Kr-h1 expression, but Kr-h1 brain levels in methoprene-treated bees were no longer downregulated by QMP. Octopamine did not modulate Kr-h1 expression. Our results demonstrate that the gene expression response to QMP is not hard-wired in the brain but is instead dependent on worker behavioral state.
信息素会引起行为和生理上的显著变化,对蜜蜂群体组织至关重要。蜂王下颚信息素(QMP)调节工蜂的多种行为(Slessor等人,《化学生态学杂志》,2005年,第31卷第11期:2731 - 2745页)。我们还鉴定出了一些基因,其大脑表达水平会因接触QMP而改变(Grozinger等人,《美国国家科学院院刊》,2003年,第100卷增刊2:14519 - 14525页)。Krüppel同源蛋白1(Kr - h1)的RNA水平被QMP显著下调,且在采集蜂中高于保育蜂(Whitfield等人,《科学》,2003年,第302卷第5643期:296 - 299页)。在此,我们报告行为学和药理学实验的结果,这些实验确定了调节Kr - h1表达的因素。无论年龄和信息素暴露情况如何,采集蜂大脑中的Kr - h1水平都高于蜂巢内的蜜蜂。此外,采集蜂的Kr - h1水平不受QMP影响。由于采集行为的开始部分是由血淋巴中保幼激素滴度和大脑章鱼胺水平的升高引起的,我们研究了章鱼胺和烯虫酯(一种保幼激素类似物)对Kr - h1表达的影响。烯虫酯使Kr - h1表达有轻微(不显著)增加,但用烯虫酯处理的蜜蜂大脑中Kr - h1水平不再被QMP下调。章鱼胺不调节Kr - h1表达。我们的结果表明,对QMP的基因表达反应并非在大脑中固定不变,而是取决于工蜂的行为状态。