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首页> 外文期刊>BioEssays: news and reviews in molecular, cellular and developmental biology >Missing link in firefly bioluminescence revealed: NO regulation of photocyte respiration.
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Missing link in firefly bioluminescence revealed: NO regulation of photocyte respiration.

机译:揭示了萤火虫生物发光中缺失的环节:光母细胞呼吸的NO调节。

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Sexual communication in most species of fireflies is a male-female dialogue of precisely timed flashes of bioluminescent light. The biochemical reactions underlying firefly bioluminescence have been known for 30 years and are now exploited in biomedical assays and other commercial applications. Several aspects of flash regulation are also understood: flash rhythm is controlled by a central pattern generator, and individual flashes are neurally triggered, with octopamine serving as the transmitter. The molecular oxygen needed by the biochemical reactants is delivered by a network of tracheal arborizations extending throughout the light organ (lantern). However, the actual means by which oxygen quickly reaches the reactants packaged within specialized photocytes and the specific event(s) triggered by neural action have not been identified; termination of axons away from the photocytes has exacerbated the latter problem. A recent paper by a consortium of cell and evolutionary biologists, however, reports that nitric oxide (NO), manufactured and released in response to neuronal discharge, is the missing link by which neural action in the firefly lantern yields a sudden flash of light.
机译:大多数萤火虫物种的流是雄性与雌性的对话,由生物发光光的精确定时闪光组成。萤火虫生物发光背后的生化反应已经为人所知 30 年,现在被用于生物医学测定和其他商业应用。还了解闪光调节的几个方面:闪光节律由中央模式发生器控制,单个闪光由神经触发,章鱼胺充当发射器。生化反应物所需的分子氧由延伸到整个光器官(灯笼)的气管树化网络提供。然而,氧气快速到达包装在特化光母细胞中的反应物以及由神经作用触发的特定事件的实际方式尚未确定;轴突远离光细胞的终止加剧了后一个问题。然而,细胞和进化生物学家联盟最近的一篇论文报告说,一氧化氮(NO)是响应神经元放电而制造和释放的一氧化氮(NO),是萤火虫灯笼中神经动作产生突然闪光的缺失环节。

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