首页> 外文期刊>Archives of Insect Biochemistry and Physiology >Disruption of Pupariation and Eclosion Behavior in the Flesh Fly,Sarcophaga bullata Parker(Diptera:Sarcophagidae),by Venom From the Ectoparasitic Wasp Nasonia vitripennis(Walker)(Hymenoptera:Pteromalidae)
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Disruption of Pupariation and Eclosion Behavior in the Flesh Fly,Sarcophaga bullata Parker(Diptera:Sarcophagidae),by Venom From the Ectoparasitic Wasp Nasonia vitripennis(Walker)(Hymenoptera:Pteromalidae)

机译:寄生蜂黄蜂Nasonia vitripennis(Walker)毒液对肉蝇中食蝇和拟蝇行为的破坏,双翅目:Sarcophagidae)

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摘要

The action of venom from the ectoparasitic wasp,Hasonia vitripennis,was monitored by examining alterations in patterned muscular movements characteristic of pupariation and eclosion behavior in the flesh fly,Sarcophaga bullata.Venom injected into larvae prior to pupariation caused a dose-dependent delay in pupariation.Eventually,such larvae did pupariate,but puparia were abnormally formed.Barographic records revealed that all elements of pupariation behavior were present in venom-injected larvae,but pupariation behavior was not well synchronized with tanning,thus implying that the venom caused disruption in the temporal organization of central motor programs.When larvae were ligated and injected with venom posterior to the ligature,no response was evident in the posterior region,suggesting that the venom does not directly stimulate muscles or neuromuscular junctions.Injection of exogenous ecdysteroid into venom-injected larvae restored some elements of pupariation behavior,consistent with ecdysone's role in stimulating the release of anterior retraction factor and puparium tanning factor,two factors that are released from the CNS to regulate pupariation.When the venom was injected into newly emerged imagoes,the duration of extrication behavior was shortened,whereas all phases of post-eclosion behavior were lengthened.These observations imply that the venom affects CNS centers that regulate the muscular systems engaged in extrication and post-eclosion behavior.
机译:通过检查pattern蝇Sa的果蝇成虫和羽化行为的特征性肌肉运动的变化来监测来自外寄生性黄蜂(Hasonia vitripennis)的毒液的作用。在成虫前向幼虫中注入毒液导致了成虫的剂量依赖性延迟最终,这种幼虫确实发生了up化,但p却异常地形成。地理记录表明,注入毒液的幼虫中存在着所有的par化行为要素,但是ning化行为与晒黑并没有很好地同步,这表明该毒液引起了the虫的破坏。结扎幼虫并在结扎后注射毒液时,后部无明显反应,表明该毒液不直接刺激肌肉或神经肌肉接头。外源蜕皮类固醇注射入毒液幼虫恢复了一些小行为,保持一致蜕皮激素在刺激前回缩因子和and鞣质因子释放中的作用是从中枢神经系统释放的两个调节regulate分裂的因子。当将毒液注入新出现的伊马鱼中时,拔除行为的持续时间缩短了,观察结果表明,毒液会影响中枢神经系统中枢,中枢神经系统中枢调节参与解脱和后中枢行为的肌肉系统。

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