Abstract
The visual pigment of
Nephrops norvegicus
(L.), the Norway lobster, was measured microspectrophotometrically in isolated rhabdoms, and found to have a λ
max
at 498 nm. On exposure to light this pigment changed into a long-lived photoproduct of λ
max
484 nm (and higher maximal extinction) which broke down slowly in the dark. The bleaching process affected the structural stability of the rhabdoms, resulting in their progressive degeneration. These
in vitro
effects were found to occur also
in vivo
by exposing lobsters, caught and maintained in darkness, to low-level illumination from a single fluorescent tube. Exposure of only 2.5 h duration was enough to cause complete degeneration of the rhabdoms within 24 h even though the animals were thereafter kept in darkness. It is suggested that this effect of light is a consequence of the rapid build-up of photoproduct in a species having a low regeneration rate of the visual pigment. When the major part of the visual pigment is in the thermally less-stable, bleached state, the structural integrity of the photoreceptor is affected, leading to degeneration. This type of degeneration might be induced in other ‘dim light’ species (e. g. deep-sea fishes) that may also have low rates of pigment regeneration.
Reference4 articles.
1. Comparative properties of vertebrate and invertebrate photoreceptors
2. Arechiga H . & Atkinson R . J . A. 1976 The eye and some effects of light on locomotor activity in Nephrops norvegicus (L.) (in preparation).
3. B aum ann Ch. 1972 The regeneration and renewal of visual pigm ents in vertebrates. The handbook of sensory B erlin : Springer-Verlag.
4. physiology vol. v n (1) (ed. H . J . A. D artnall) pp. 395-416.
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