Department of Biology, West Virginia University, Morgantown, USA.
Arthropod Struct Dev. 2011 Sep;40(5):395-408. doi: 10.1016/j.asd.2010.10.004. Epub 2011 Feb 19.
Subpopulations of Kenyon cells, the intrinsic neurons of the insect mushroom bodies, are typically sequentially generated by dedicated neuroblasts that begin proliferating during embryogenesis. When present, Class III Kenyon cells are thought to be the first born population of neurons by virtue of the location of their cell somata, farthest from the position of the mushroom body neuroblasts. In the adult tobacco hornworm moth Manduca sexta, the axons of Class III Kenyon cells form a separate Y tract and dorsal and ventral lobelet; surprisingly, these distinctive structures are absent from the larval Manduca mushroom bodies. BrdU labeling and immunohistochemical staining reveal that Class III Kenyon cells are in fact born in the mid-larval through adult stages. The peripheral position of their cell bodies is due to their genesis from two previously undescribed protocerebral neuroblasts distinct from the mushroom body neuroblasts that generate the other Kenyon cell types. These findings challenge the notion that all Kenyon cells are produced solely by the mushroom body neuroblasts, and may explain why Class III Kenyon cells are found sporadically across the insects, suggesting that when present, they may arise through de novo recruitment of neuroblasts outside of the mushroom bodies. In addition, lifelong neurogenesis by both the Class III neuroblasts and the mushroom body neuroblasts was observed, raising the possibility that adult neurogenesis may play a role in mushroom body function in Manduca.
昆虫蘑菇体的内在神经元——肯扬细胞的亚群通常是由专门的神经母细胞依次产生的,这些神经母细胞在胚胎发生期间开始增殖。当存在时,III 类肯扬细胞被认为是最早产生的神经元群体,因为它们的细胞体位于离蘑菇体神经母细胞位置最远的地方。在成年烟草天蛾 Manduca sexta 中,III 类肯扬细胞的轴突形成一个单独的 Y 形道和背侧和腹侧小叶;令人惊讶的是,这些独特的结构在幼虫 Manduca 蘑菇体中不存在。BrdU 标记和免疫组织化学染色显示,III 类肯扬细胞实际上是从中期幼虫到成虫阶段产生的。它们细胞体的外周位置是由于它们是由两个以前未描述的原脑神经母细胞产生的,与产生其他肯扬细胞类型的蘑菇体神经母细胞不同。这些发现挑战了所有肯扬细胞仅由蘑菇体神经母细胞产生的观点,并且可能解释了为什么 III 类肯扬细胞在昆虫中偶尔出现,这表明当它们存在时,它们可能是通过蘑菇体之外的神经母细胞的从头招募产生的。此外,观察到 III 类神经母细胞和蘑菇体神经母细胞的终生神经发生,这增加了成年神经发生可能在 Manduca 的蘑菇体功能中发挥作用的可能性。