Xie Gui-Ying, Zhao Xin-Cheng, Ma Bai-Wei, Guo Pei, Li Guo-Ping, Feng Hong-Qiang, Wu Guo-Liang
Department of Pesticide, College of Plant Protection, Henan Agricultural University, Zhengzhou, 450002, China.
Department of Entomology, College of Plant Protection, Henan Agricultural University, Zhengzhou, 450002, China.
PLoS One. 2016 Aug 1;11(8):e0160161. doi: 10.1371/journal.pone.0160161. eCollection 2016.
The mirid bug Apolygus lucorum (Meyer-Dür), a polyphagous pest, is dependent on olfactory cues to locate various host plant species and mates. In this study, we traced the projection pathway of the antennal sensory neurons and visualized their projection patterns in the central nervous system of A. lucorum through confocal microscopy and digital reconstructions. We also examined the glomerular organization of the primary olfactory center of the brain, the antennal lobe, and created a three-dimensional model of the glomeruli. We found that the axons of the sensory neurons project into the brain via the ipsilateral antennal nerve, and descend further into the gnathal ganglion, prothoracic ganglion, mesothoracic ganglion, and metathoracic ganglion, and reach as far as to the abdominal ganglion. Such a projection pattern indicates that antennal sensory neurons of A. lucorum may be potentially directly connected to motor neurons. The antennal lobe, however, is the major target area of antennal sensory neurons. The antennal lobe is composed of a large number of glomeruli, i.e. 70-80 glomeruli in one AL of A. lucorum. The results of this study which provide information about the basic anatomical arrangement of the brain olfactory center of A. lucorum, are important for further investigations of chemosensory encoding mechanisms of the mirid bug.
盲蝽蟓绿盲蝽(Meyer-Dür)是一种多食性害虫,依靠嗅觉线索来定位各种寄主植物种类和配偶。在本研究中,我们通过共聚焦显微镜和数字重建技术追踪了触角感觉神经元的投射路径,并在绿盲蝽的中枢神经系统中可视化了它们的投射模式。我们还研究了大脑初级嗅觉中心触角叶的小球组织,并创建了小球的三维模型。我们发现感觉神经元的轴突通过同侧触角神经投射到大脑,进一步向下延伸到颚神经节、前胸神经节、中胸神经节和后胸神经节,并一直延伸到腹神经节。这种投射模式表明绿盲蝽的触角感觉神经元可能潜在地直接与运动神经元相连。然而,触角叶是触角感觉神经元的主要目标区域。触角叶由大量的小球组成,即绿盲蝽一个触角叶中有70-80个小球。本研究结果提供了绿盲蝽大脑嗅觉中心基本解剖结构的信息,对进一步研究盲蝽蟓的化学感觉编码机制具有重要意义。