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雄性和雌性蝗虫生殖器前体节中类似产卵的中枢模式发生器。

Oviposition-like central pattern generators in pregenital segments of male and female grasshoppers.

作者信息

Thompson Karen J

机构信息

Department of Biology, Agnes Scott College, 141 E College Ave., Decatur, 30030, GA, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2018 Apr;204(4):419-433. doi: 10.1007/s00359-018-1249-1. Epub 2018 Feb 8.

Abstract

Grasshoppers produce an extraordinary oviposition behavior that is associated with multiple specializations of the skeletal and neuromuscular systems in the posterior abdomen, including a central pattern generator (CPG) in the female's terminal abdominal ganglion. Two pairs of shovel-shaped appendages, the ovipositor valves on the abdomen tip, excavate the soil for deposition of eggs. By contrast, the sexually monomorphic pregenital region of the abdomen is without appendages. Morphological homologues of ovipositor muscles and efferent neurons in the eighth abdominal segment are nevertheless present in pregenital segments of males and females. In both sexes, a robust rhythmic motor program was induced in pregenital segments by the same experimental methods used to elicit oviposition digging. The activity, recorded extracellularly, was oviposition-like in burst period (5-6 s) and homologous muscle phase relationships, and it persisted after sensory inputs were removed, indicating the presence of pregenital CPGs. The abdomen exhibited posterior-going waves of activity with an intersegmental phase delay of approximately 1 s. These results indicate that serially homologous motor systems, including functional CPGs, provided the foundation for the evolution of oviposition behavior.

摘要

蚱蜢会产生一种非凡的产卵行为,这种行为与腹部后部骨骼和神经肌肉系统的多种特化有关,包括雌性终腹神经节中的中央模式发生器(CPG)。腹部末端的两对铲状附肢,即产卵瓣,会挖掘土壤以产卵。相比之下,腹部的两性异形生殖前区域没有附肢。然而,第八腹节产卵器肌肉和传出神经元的形态同源物在雄性和雌性的生殖前节段中都存在。在两性中,通过用于引发产卵挖掘的相同实验方法,在生殖前节段中诱导出了强大的节律性运动程序。细胞外记录的活动在爆发期(5-6秒)和同源肌肉相位关系上类似产卵行为,并且在去除感觉输入后仍持续存在,表明存在生殖前CPG。腹部表现出向后传播的活动波,节间相位延迟约为1秒。这些结果表明,包括功能性CPG在内的一系列同源运动系统为产卵行为的进化提供了基础。

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