EXPRESS: Reflection spectroscopy of bistable visual pigments in living butteries.

IF 2.2 3区 化学 Q2 INSTRUMENTS & INSTRUMENTATION
Primož Pirih
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引用次数: 0

Abstract

Invertebrate vision relies on bistable visual pigments flipping upon photon absorption between rhodopsin and metarhodopsin states. In living butterflies, the UV-VIS absorption spectra of rhodopsin and metarhodopsin, respectively with 11-cis and all-trans isomers of 3-hydroxy-retinal (A3) chromophore, can be conveniently recorded from the eyeshine, the light reflected from the compound eye after passing twice through the light-guiding rhabdoms. * Here, a comprehensive pipeline for the analysis of eyeshine reflection spectra is presented. A microscope coupled with a broadband LED source and a microspectrometer was used to record the photorelaxations. Fitting temporal exponential relaxations to log-reflectance arrays yielded transient and baseline spectra that are analogous to absorbance difference and sum, respectively. Both types of spectra were subjected to singular value decomposition and to fitting of templated visual pigment absorption spectra. * The compound eye of the high brown fritillary Fabriciana adippe (Nympahlidae) was exposed to a series of second-long broadband light pulses, causing photorelaxations with time constants between 40 and 120 ms that led to 80% metarhodopsin in equilibrium. The transient and baseline spectra were fitted with pigment templates, estimating the alpha peak wavelength 547-552 nm for rhodopsin and 496-501 nm for metarhodopsin. The metarhodopsin to rhodopsin alpha peak absorbance ratio 1.25-1.35 is consistent with the isosbestic wavelength at 530 nm. The second isosbestic wavelength indicates that rhodopsin beta (UV) peak absorbs more strongly than metarhodopsin below 405 nm. * Baseline spectra, which were not explicitly analysed in previous studies, enable concatenation of exposures, monitor long-term changes of pigment, and enhance the estimation of beta peak parameters. * The method can be directly used in many butterflies and could be adapted to other insects, particularly fruitflies, facilitating studies of the relation between the visual pigment spectra and the opsin sequences. Spectroscopic results can be complemented with physiologically measured photoreceptor spectral sensitivity datasets and analysed with the same global fitting procedure.

EXPRESS:活电池中双稳态视觉色素的反射光谱。
无脊椎动物的视觉依赖于双稳态视色素在视紫红质和后视紫红质状态之间的光子吸收。在活体蝴蝶中,从复眼经过两次导光横纹后反射的光,可以方便地记录具有3-羟基-视网膜(A3)发色团11-顺式和全反式异构体的视紫红质和后视紫红质的紫外-可见吸收光谱。本文给出了一套完整的人眼反射光谱分析方法。用带宽带LED光源的显微镜和微谱仪记录光弛豫。拟合时间指数弛豫对数反射阵列产生瞬态和基线光谱,分别类似于吸光度差和和。对两种光谱进行奇异值分解和模板化视觉色素吸收光谱拟合。*将高褐贝母fabiciana adippe (Nympahlidae)复眼暴露在一系列秒长的宽带光脉冲下,引起时间常数在40 ~ 120 ms之间的光松弛,导致80%的后视紫红质处于平衡状态。用色素模板拟合瞬时光谱和基线光谱,估计红紫质的α峰波长为547 ~ 552 nm,后紫紫质的α峰波长为496 ~ 501 nm。后视紫红质与α视紫红质的峰吸光度比为1.25 ~ 1.35,与等吸波长在530 nm处一致。第二个等吸波长表明,紫红质β (UV)峰在405 nm以下的吸收比后视紫红质更强。*基线光谱,在以前的研究中没有明确分析,可以串联暴露,监测色素的长期变化,并增强β峰参数的估计。*该方法可直接用于许多蝴蝶,并可适用于其他昆虫,特别是果蝇,促进了视觉色素光谱与视蛋白序列之间关系的研究。光谱结果可以与生理测量的光感受器光谱灵敏度数据集相补充,并使用相同的全局拟合程序进行分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied Spectroscopy
Applied Spectroscopy 工程技术-光谱学
CiteScore
6.60
自引率
5.70%
发文量
139
审稿时长
3.5 months
期刊介绍: Applied Spectroscopy is one of the world''s leading spectroscopy journals, publishing high-quality peer-reviewed articles, both fundamental and applied, covering all aspects of spectroscopy. Established in 1951, the journal is owned by the Society for Applied Spectroscopy and is published monthly. The journal is dedicated to fulfilling the mission of the Society to “…advance and disseminate knowledge and information concerning the art and science of spectroscopy and other allied sciences.”
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