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萤火虫在远高于或远低于正常温度时发出的光。

Light from a firefly at temperatures considerably higher and lower than normal.

机构信息

Department of Physics, Pandit Deendayal Upadhyaya Adarsha Mahavidyalaya, Behali, 784184, India.

Department of Physics, Gauhati University, Guwahati, 781014, India.

出版信息

Sci Rep. 2021 Jun 14;11(1):12498. doi: 10.1038/s41598-021-91839-3.

Abstract

Bioluminescence emissions from a few species of fireflies have been studied at different temperatures. Variations in the flash-duration have been observed and interesting conclusions drawn in those studies. Here we investigate steady-state and pulsed emissions from male specimens of the Indian species Sclerotia substriata at temperatures considerably higher and lower than the ones at which they normally flash. When the temperature is raised to 34 °C, the peak wavelength gets red-shifted and the emitted pulses become the narrowest which broaden considerably thereafter for small increases in temperature; this probably indicates denaturation of the enzyme luciferase catalyzing the light-producing reaction. When the temperature is decreased to the region of 10.5-9 °C, the peak gets blue-shifted and the flash-duration increased abnormally with large fluctuation; this possibly implies cold denaturation of the luciferase. We conclude that the first or hot effect is very likely to be the reason of the species being dark-active on hot days, and the second or cold one is the probable reason for its disappearance at the onset of the winter. Our study makes the inference that these two happenings determine the temperature-tolerance, which plays a major role in the selection of the habitat for the firefly.

摘要

几种萤火虫的生物发光发射已在不同温度下进行了研究。在这些研究中观察到了闪光持续时间的变化,并得出了有趣的结论。在这里,我们研究了印度物种 Sclerotia substriata 雄性标本在远高于和低于其正常闪光温度下的稳态和脉冲发射。当温度升高到 34°C 时,峰值波长发生红移,发射的脉冲变得最窄,此后随着温度的微小升高而大大变宽;这可能表明催化发光反应的酶荧光素酶发生变性。当温度降低到 10.5-9°C 区域时,峰值发生蓝移,闪光持续时间异常增加且波动很大;这可能意味着荧光素酶的冷变性。我们得出的结论是,第一种或热效应很可能是该物种在炎热天气下黑暗活动的原因,第二种或冷效应很可能是其在冬季开始时消失的原因。我们的研究推断,这两个事件决定了温度耐受性,这在萤火虫栖息地的选择中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cc8/8203691/0a490451d12d/41598_2021_91839_Fig1_HTML.jpg

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