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果蝇黑腹果蝇飞行起始的个体发育:对巨纤维系统的启示。

Ontogeny of flight initiation in the fly Drosophila melanogaster: implications for the giant fibre system.

作者信息

Hammond Sarah, O'Shea Michael

机构信息

Sussex Centre for Neuroscience, University of Sussex, Brighton, BN1 9QG, UK.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2007 Nov;193(11):1125-37. doi: 10.1007/s00359-007-0265-3. Epub 2007 Sep 13.

Abstract

There are two modes of flight initiation in Drosophila melanogaster-escape and voluntary. Although the circuitry underlying escape is accounted for by the Giant fibre (GF) system, the system underlying voluntary flight initiation is unknown. The GF system is functionally complete before the adult fly ecloses, but immature adults initially fail to react to a stimulus known to reliably evoke escape in mature adults. This suggests that escape in early adulthood, approximately 2-h post-eclosion, is not automatically triggered by the hard-wired GF system. Indeed, we reveal that escape behaviour displays a staged emergence during the first hour post-eclosion, suggesting that the GF system is subject to declining levels of suppression. Voluntary flight initiations are not observed at all during the period when the GF system is released from its suppression, nor indeed for some time after. We addressed the question whether voluntary flight initiation requires the GF system by observing take-off in Shak-B ( 2 ) mutant flies, in which the GF system is defunct. While the escape response is severely impaired in these mutants, they displayed normal voluntary flight initiation. Thus, the escape mechanism is subject to developmental modulation following eclosion and the GF system does not underlie voluntary flight.

摘要

黑腹果蝇有两种飞行起始模式——逃避和自主飞行。虽然逃避行为的神经回路由巨纤维(GF)系统负责,但自主飞行起始的系统尚不清楚。GF系统在成年果蝇羽化前功能就已完备,但未成熟的成虫最初对已知能可靠引发成熟成虫逃避反应的刺激没有反应。这表明羽化后约2小时的成年早期,逃避行为并非由硬连线的GF系统自动触发。事实上,我们发现逃避行为在羽化后的第一小时内呈现出阶段性出现,这表明GF系统受到的抑制水平在下降。在GF系统从抑制中释放的这段时间内,完全观察不到自主飞行起始,之后的一段时间内也确实观察不到。我们通过观察Shak-B(2)突变果蝇的起飞情况来探讨自主飞行起始是否需要GF系统,在这种突变果蝇中GF系统已失去功能。虽然这些突变体的逃避反应严重受损,但它们表现出正常的自主飞行起始。因此,羽化后逃避机制会受到发育调节,且GF系统并非自主飞行的基础。

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