首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Flightin maintains myofilament lattice organization required for optimal flight power and courtship song quality in Drosophila
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Flightin maintains myofilament lattice organization required for optimal flight power and courtship song quality in Drosophila

机译:Flightin维持果蝇最佳肌力和求爱歌曲质量所需的肌丝晶格组织

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摘要

The indirect flight muscles (IFMs) of Drosophila and other insects with asynchronous flight muscles are characterized by a crystalline myofilament lattice structure. The high-order lattice regularity is considered an adaptation for enhanced power output, but supporting evidence for this claim is lacking. We show that IFMs from transgenic flies expressing flightin with a deletion of its poorly conserved N-terminal domain (flnΔN62) have reduced inter-thick filament spacing and a less regular lattice. This resulted in a decrease in flight ability by 33% and in skinned fibre oscillatory power output by 57%, but had no effect on wingbeat frequency or frequency of maximum power output, suggesting that the underlying actomyosin kinetics is not affected and that the flight impairment arises from deficits in force transmission. Moreover, we show that flnΔN62 males produced an abnormal courtship song characterized by a higher sine song frequency and a pulse song with longer pulses and longer inter-pulse intervals (IPIs), the latter implicated in male reproductive success. When presented with a choice, wild-type females chose control males over mutant males in 92% of the competition events. These results demonstrate that flightin N-terminal domain is required for optimal myofilament lattice regularity and IFM activity, enabling powered flight and courtship song production. As the courtship song is subject to female choice, we propose that the low amino acid sequence conservation of the N-terminal domain reflects its role in fine-tuning species-specific courtship songs.
机译:果蝇和其他具有异步飞行肌肉的昆虫的间接飞行肌肉(IFM)的特征是结晶性肌丝晶格结构。高阶晶格规则性被认为是对增强功率输出的一种适应,但是缺乏支持该主张的证据。我们表明,转基因果蝇表达飞行状态与缺失其保守性差的N末端域(fln ΔN62)的IFMs减少了粗细间距和较少规则的晶格。这导致飞行能力降低了33%,蒙皮纤维振荡功率输出降低了57%,但对机翼频率或最大功率输出频率没有影响,表明基本的肌动球蛋白动力学没有受到影响,并且飞行损害是由于力传递不足造成的。此外,我们显示fln ΔN62男性产生异常的求爱歌曲,其特征是较高的正弦歌曲频率和具有较长脉冲和较长脉冲间间隔(IPI)的脉冲歌曲,后者与男性生殖有关成功。如果有选择,在92%的比赛中,野生型雌性会选择对照雄性而不是突变雄性。这些结果表明,在N末端域内飞行是最佳的肌丝晶格规律性和IFM活动所必需的,从而能够进行动力飞行和求爱歌曲的制作。由于求爱歌曲受女性选择,我们建议N末端结构域的低氨基酸序列保守性反映了它在微调特定物种的求爱歌曲中的作用。

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