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首页> 外文期刊>The Journal of Experimental Biology >The effect of elevated hydrostatic pressure on the spectral absorption of deep-sea fish visual pigments
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The effect of elevated hydrostatic pressure on the spectral absorption of deep-sea fish visual pigments

机译:静水压力升高对深海鱼视觉色素光谱吸收的影响

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The effect of hydrostatic pressure (0.1-54 MPa, equivalent to pressures experienced by fish from the ocean's surface to depths of ca. 5400 m) on visual pigment absorption spectra was investigated for rod visual pigments extracted from the retinae of 12 species of deep-sea fish of diverse phylogeny and habitat. The wavelength of peak absorption (lambda(max)) was shifted to longer wavelengths by an average of 1.35 nm at 40 MPa (a pressure approximately equivalent to average ocean depth) relative to measurements made at one atmosphere (ca. 0.1 MPa), but with little evidence of a change in absorbance at the lambda(max) We conclude that previous lambda(max) measurements of deep-sea fish visual pigments, made at a pressure close to 0.1 MPa, provide a good indication of lambda(max). values at higher pressures when considering the ecology of vision in the deep-sea. Although not affecting the spectral sensitivity of the animal to any important degree, the observed shift in lambda(max) may be of interest in the context of understanding opsin-chromophore interaction and spectral tuning of visual pigments.
机译:研究了从12种深海鱼类的视网膜中提取的杆状视觉色素的静水压力(0.1-54 MPa,相当于鱼从海洋表面到大约5400 m深度所经历的压力)对视觉色素吸收光谱的影响。系统发育和栖息地多样的海鱼。相对于在一个大气层(约0.1 MPa)下进行的测量,在40 MPa(压力等于平均海洋深度的压力)下,峰值吸收波长(λ(maxb))平均移至更长的波长1.35 nm。几乎没有证据表明λ(max)处的吸光度发生变化我们得出结论,以前在压力接近0.1 MPa的情况下对深海鱼目视色素进行的λ(max)测量可以很好地指示λ。考虑深海视觉生态时,在较高压力下的压力值较高。尽管不会在任何重要程度上影响动物的光谱敏感性,但在理解视蛋白-发色团相互作用和视觉色素光谱调节的背景下,观察到的λ(max)的变化可能是有意义的。

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