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在湿木白蚁 Hodotermopsis sjostedti 中特定于等级的神经元发育过程中的基因表达变化。

Gene expression changes during caste-specific neuronal development in the damp-wood termite Hodotermopsis sjostedti.

机构信息

Laboratory of Ecological Genetics, Graduate School of Environmental Science, Hokkaido University, Sapporo, Hokkaido, 060-0810, Japan.

出版信息

BMC Genomics. 2010 May 20;11:314. doi: 10.1186/1471-2164-11-314.

Abstract

BACKGROUND

One of the key characters of social insects is the division of labor, in which different tasks are allocated to various castes. In termites, one of the representative groups of social insects, morphological differences as well as behavioral differences can be recognized among castes. However, very little is known about the neuronal and molecular bases of caste differentiation and caste-specific behavior. In almost all termite species, soldiers play defensive roles in their colonies, and their morphology and behavior are largely different from workers (or pseudergates). Therefore, we predicted that some genes linked to defensive behavior and/or those required for neuronal changes are differentially expressed between workers and soldiers, or during the soldier differentiation, respectively.

RESULTS

Using the brain and suboesophageal ganglion (SOG) of the damp-wood termite Hodotermopsis sjostedti, we first screened genes specifically expressed in soldiers or during soldier differentiation by the differential display method, followed by quantitative real-time polymerase chain reaction. No distinctive differences in expression patterns were detected between pseudergates and soldiers. In the course of soldier differentiation, however, five genes were found to be up-regulated in brain and/or SOG: 14-3-3 epsilon, fibrillin2, beta-tubulin, ciboulot, and a hypothetical protein containing a SAP motif. Some of these genes are thought to be associated with cytoskeletal structure or motor-associated proteins in neuronal tissues.

CONCLUSION

The identified five genes could be involved in soldier-specific neuronal modifications, resulting in defensive behaviors in termite soldiers. The temporal expression patterns of these genes were consistent with the neuronal changes during soldier differentiation, suggesting that molecular machineries, in which the identified factors would participate, play important roles in behavioral differentiation of termite soldiers.

摘要

背景

社会性昆虫的一个关键特征是分工,其中不同的任务分配给不同的等级。在白蚁中,作为代表性的社会性昆虫群体之一,可以识别出不同等级之间的形态差异和行为差异。然而,对于等级分化和特定等级行为的神经元和分子基础知之甚少。在几乎所有的白蚁物种中,兵蚁在其群体中扮演着防御的角色,它们的形态和行为与工蚁(或拟工蚁)有很大的不同。因此,我们预测,一些与防御行为相关的基因,或者那些与神经元变化相关的基因,在工蚁和兵蚁之间或在兵蚁分化过程中分别存在差异表达。

结果

我们使用湿木白蚁 Hodotermopsis sjostedti 的大脑和食管下神经节(SOG),首先通过差异显示方法筛选出特异性表达在兵蚁或兵蚁分化过程中的基因,然后进行定量实时聚合酶链反应。在拟工蚁和兵蚁之间,没有检测到表达模式的显著差异。然而,在兵蚁分化过程中,发现五个基因在大脑和/或 SOG 中上调:14-3-3 epsilon、纤维连接蛋白 2、β-微管蛋白、ciboulot 和一个含有 SAP 基序的假定蛋白。这些基因中的一些被认为与神经元组织中的细胞骨架结构或运动相关蛋白有关。

结论

鉴定出的五个基因可能参与兵蚁特有的神经元修饰,从而导致白蚁兵蚁的防御行为。这些基因的时间表达模式与兵蚁分化过程中的神经元变化一致,表明在白蚁兵蚁的行为分化中,所鉴定的因素参与的分子机制发挥着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a35/2887416/e0e655f66848/1471-2164-11-314-1.jpg

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