4.2 Article

Effect of light exposure on circadian rhythm in theront excystment in Cryptocaryon irritans

Journal

PARASITOLOGY INTERNATIONAL
Volume 98, Issue -, Pages -

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.parint.2023.102812

Keywords

Cryptocaryon irritans; Theront excystment; Circadian rhythm entrainment; Light exposure

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This study examined the effects of light exposure on the theront excystment circadian rhythm in Cryptocaryon irritans. The results showed that light reception is essential for circadian rhythm entrainment and both light duration and temperature have an impact on the entrainment of circadian rhythm.
We examined the effects of light exposure on the theront excystment circadian rhythm in Cryptocaryon irritans using a newly invented apparatus, which enabled us to examine the excystment rhythms of theronts from tomonts with low labor. Using the apparatus, we examined the timings of theront excystment from tomonts exposed directly to light and from tomonts exposed to light-exposed seawater by counting the number of excysted theronts. We found that the theront excystment time changed only when tomonts were directly exposed to light, indicating that light reception is essential for circadian rhythm entrainment. When tomonts were exposed to light only once for 12 h, either on Day 1, Day 2, or Day 3 after leaving host and being encysted, the circadian rhythm was entrained according to the photoperiod given on tomonts. Tomonts exposed to a low light (1 lx) with 12L:12D photoperiod daily showed a circadian rhythm similar to that in tomonts exposed to an intense light (500 lx) under the same photoperiod. When tomonts were incubated at 22 degrees C, 25 degrees C, or 28 degrees C under the same photoperiod, almost the same circadian rhythm was developed, suggesting temperature has little effect on the circadian rhythm entrainment between the range, even though the date of excystment was delayed in lower temperatures. These results suggest the circadian rhythm of theront excystment can be entrained in tomonts on the seabed of inner bays where net-cage aquaculture is conducted, and be involved in the outbreaks of cryptocaryoniasis there.

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