Bowmaker James K, Wagner Hans-Joachim
Division of Visual Science, Institute of Ophthalmology, University College London, EC1V 9EL, UK.
J Exp Biol. 2004 Jun;207(Pt 14):2379-87. doi: 10.1242/jeb.01033.
We have examined the morphology and photopigments of the pineal organs from a number of mesopelagic fish, including representatives of the hatchet fish (Sternoptychidae), scaly dragon-fish (Chauliodontidae) and bristlemouths (Gonostomidae). Although these fish were caught at depths of between 500 and 1000 m, the morphological organisation of their pineal organs is remarkably similar to that of surface-dwelling fish. Photoreceptor inner and outer segments protrude into the lumen of the pineal vesicle, and the outer segment is composed of a stack of up to 20 curved disks that form a cap-like cover over the inner segment. In all species, the pineal photopigment was spectrally distinct from the retinal rod pigment, with lambdamax displaced to longer wavelengths, between approximately 485 and 503 nm. We also investigated the pineal organ of the deep demersal eel, Synaphobranchus kaupi, caught at depths below 2000 m, which possesses a rod visual pigment with lambdamax at 478 nm, but the pineal pigment has lambdamax at approximately 515 nm. In one species of hatchet fish, Argyropelecus affinis, two spectral classes of pinealocyte were identified, both spectrally distinct from the retinal rod photopigment.
我们研究了多种中层鱼类松果体器官的形态和光色素,这些鱼类包括斧鱼(星光鱼科)、栉鳞蜥鱼(巨口鱼科)和锯颌鱼(裸蜥鱼科)的代表物种。尽管这些鱼是在500至1000米的深度捕获的,但它们松果体器官的形态结构与表层鱼类的非常相似。光感受器的内段和外段伸入松果体泡的腔内,外段由多达20个弯曲的盘状结构堆叠而成,形成一个帽状覆盖在内段上方。在所有物种中,松果体光色素在光谱上与视网膜视杆色素不同,其最大吸收波长(λmax)向更长波长移动,介于约485至503纳米之间。我们还研究了在2000米以下深度捕获的深海底栖鳗鱼——考氏合鳃鳗的松果体器官,该鳗鱼的视杆视觉色素的λmax为478纳米,但其松果体色素的λmax约为515纳米。在一种斧鱼——银斧鱼中,鉴定出了两类光谱不同的松果体细胞,它们在光谱上也都与视网膜视杆光色素不同。