Boyan G S, Williams J L D
Developmental Neurobiology Group, Department of Biology II, Ludwig-Maximilians-Universität, Luisenstrasse 14, 80333 Munich, Germany.
Arthropod Struct Dev. 2004 Oct;33(4):381-97. doi: 10.1016/j.asd.2004.03.001.
The establishment of the sensory nervous system of the antenna of the grasshopper Schistocerca gregaria was examined using immunocytochemical methods and in the light of the appendicular and articulated nature of this structure. The former is demonstrated first by the expression pattern of the segment polarity gene engrailed in the head neuromere innervating the antenna, the deutocerebrum. Engrailed expression is present in identified deutocerebral neuroblasts and, as elsewhere in the body, is continuous with cells of the posterior epithelium of the associated appendage, in this case the antenna. Second, early expression of the glial homeobox gene reversed polarity (repo) in the antenna is by a stereotypic pair of cells at the antenna base, a pattern we show is repeated metamerically for each thoracic appendage of the embryo. Subsequently, three regions of Repo expression (A1, A2, A3) are seen within the antenna, and may represent a preliminary form of articulation. Bromodeoxyuridine incorporation reveals that these regions are sites of intense cell differentiation. Neuron-specific horseradish peroxidase and Lazarillo expression confirm that the pioneers of the ventral and dorsal tracts of the antennal sensory nervous system are amongst these differentiating cells. Sets of pioneers appear simultaneously in several bands and project confluent axons towards the antennal base. We conclude that the sensory nervous system of the antenna is not pioneered from the tip of the antenna alone, but in a stepwise manner by cells from several zones. The early sensory nervous systems of antenna, maxilla and leg therefore follow a similar developmental program consistent with their serially homologous nature.
利用免疫细胞化学方法,并根据蝗虫触角的附肢和关节特性,研究了沙漠蝗触角感觉神经系统的建立。首先,通过在支配触角的头部神经节即中脑表达的节段极性基因 engrailed 的表达模式来证明前者。Engrailed 表达存在于已确定的中脑神经母细胞中,并且与身体其他部位一样,与相关附肢(在此为触角)后上皮的细胞连续。其次,触角中胶质同源盒基因反转极性(repo)的早期表达是由触角基部一对定型的细胞完成的,我们发现这种模式在胚胎的每个胸附肢中呈节段重复。随后,在触角内可见三个 Repo 表达区域(A1、A2、A3),可能代表关节的初步形式。溴脱氧尿苷掺入显示这些区域是强烈细胞分化的部位。神经元特异性辣根过氧化物酶和 Lazarillo 表达证实触角感觉神经系统腹侧和背侧束的先驱神经元就在这些分化细胞之中。几组先驱神经元同时出现在几条带中,并向触角基部投射汇合的轴突。我们得出结论,触角的感觉神经系统并非仅由触角尖端的细胞引导,而是由来自几个区域的细胞逐步引导。因此,触角、上颚和腿的早期感觉神经系统遵循相似的发育程序,这与其系列同源性相符。