Stark W S, Frayer K L, Johnson M A
Department of Psychology, Johns Hopkins University, Baltimore, MD 21218, USA.
Biophys Struct Mech. 1979;5(2-3):197-209. doi: 10.1007/BF00535448.
A review of the spectral sensitivity and the rhodopsin and metarhodopsin characteristics in three compound eye receptor types (R1-6, R7, and R8) and ocellar receptors is presented (Fig. 1). Photopigment properties were determined from measures of conversion efficiency. The photopigments of R1-6 were studied using in vivo microspectrophotometry in the deep pseudopupil of white-eyed flies. These studies yielded a refined estimate of the R1-6 metarhodopsin spectrum (Fig. 2). The quantum efficiency relative to the spectral sensitivity estimate of the rhodopsin spectrum was factored out. The quantum efficiency of rhodopsin is about 1.75 times that of metarhodopsin. The peak absorbance of metarhodopsin was estimated to be about 2.6 times that of rhodopsin. The mechanism of the two-peaked R1-6 spectral sensitivity and metarhodopsin spectrum is discussed in terms of evidence that there is only one rhodopsin in R1-6 and that vitamin A deprivation preferentially lowers ultraviolet sensitivity. The prolonged depolarizing afterpotential is reviewed from the standpoint of the internal transmitter hypothesis of visual excitation. A careful comparison of the intensity-responsivity for photopigment conversion and its adaptional consequences is made (Fig. 3).
本文介绍了对三种复眼受体类型(R1 - 6、R7和R8)以及单眼受体的光谱敏感性、视紫红质和变视紫红质特性的综述(图1)。光色素特性由转换效率的测量确定。使用白眼果蝇深伪瞳孔中的体内显微分光光度法研究了R1 - 6的光色素。这些研究得出了R1 - 6变视紫红质光谱的精确估计(图2)。相对于视紫红质光谱的光谱敏感性估计,量子效率被排除在外。视紫红质的量子效率约为变视紫红质的1.75倍。变视紫红质的峰值吸光度估计约为视紫红质的2.6倍。根据R1 - 6中只有一种视紫红质以及维生素A缺乏优先降低紫外线敏感性的证据,讨论了R1 - 6双峰光谱敏感性和变视紫红质光谱的机制。从视觉兴奋的内源性递质假说的角度综述了延长的去极化后电位。对光色素转换的强度反应性及其适应性后果进行了仔细比较(图3)。