Feeding activity rhythm in Japanese sea catfish Plotosus japonicus
To examine the feeding activity characteristics of Japanese sea catfish Plotosus japonicus, access to feed box (feeding activity) and the number of food pellets consumed (food intake) were recorded under laboratory conditions. When fed ad libitum under a 12:12 h light-dark (LD) cycle, all fish exhib...
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Published in | Fisheries science Vol. 75; no. 5; pp. 1125 - 1132 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Japan
Springer Japan
01.09.2009
Springer Nature B.V |
Subjects | |
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Abstract | To examine the feeding activity characteristics of Japanese sea catfish Plotosus japonicus, access to feed box (feeding activity) and the number of food pellets consumed (food intake) were recorded under laboratory conditions. When fed ad libitum under a 12:12 h light-dark (LD) cycle, all fish exhibited feeding activity and consumed food during the dark period. Feeding activity increased in the presence of food, and this increased activity level continued for several days after food removal. During restricted food availability within the light period of the LD cycle, seven of nine fish exhibited food-anticipatory activity (FAA) both before and after the 12:00 food-restricted time. This FAA persisted under constant light conditions (in nine of nine fish). The average circadian free-running period was 24 h. These results suggest that P. japonicus exhibits a nocturnal feeding activity rhythm, which may be synchronized by a food-restricted time. |
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AbstractList | To examine the feeding activity characteristics of Japanese sea catfish Plotosus japonicus, access to feed box (feeding activity) and the number of food pellets consumed (food intake) were recorded under laboratory conditions. When fed ad libitum under a 12:12 h light-dark (LD) cycle, all fish exhibited feeding activity and consumed food during the dark period. Feeding activity increased in the presence of food, and this increased activity level continued for several days after food removal. During restricted food availability within the light period of the LD cycle, seven of nine fish exhibited food-anticipatory activity (FAA) both before and after the 12:00 food-restricted time. This FAA persisted under constant light conditions (in nine of nine fish). The average circadian free-running period was 24 h. These results suggest that P. japonicus exhibits a nocturnal feeding activity rhythm, which may be synchronized by a food-restricted time. To examine the feeding activity characteristics of Japanese sea catfish Plotosus japonicus , access to feed box (feeding activity) and the number of food pellets consumed (food intake) were recorded under laboratory conditions. When fed ad libitum under a 12:12 h light–dark (LD) cycle, all fish exhibited feeding activity and consumed food during the dark period. Feeding activity increased in the presence of food, and this increased activity level continued for several days after food removal. During restricted food availability within the light period of the LD cycle, seven of nine fish exhibited food-anticipatory activity (FAA) both before and after the 12:00 food-restricted time. This FAA persisted under constant light conditions (in nine of nine fish). The average circadian free-running period was 24 h. These results suggest that P. japonicus exhibits a nocturnal feeding activity rhythm, which may be synchronized by a food-restricted time. To examine the feeding activity characteristics of Japanese sea catfish Plotosus japonicus, access to feed box (feeding activity) and the number of food pellets consumed (food intake) were recorded under laboratory conditions. When fed ad libitum under a 12:12 h light-dark (LD) cycle, all fish exhibited feeding activity and consumed food during the dark period. Feeding activity increased in the presence of food, and this increased activity level continued for several days after food removal. During restricted food availability within the light period of the LD cycle, seven of nine fish exhibited food-anticipatory activity (FAA) both before and after the 12:00 food-restricted time. This FAA persisted under constant light conditions (in nine of nine fish). The average circadian free-running period was 24 h. These results suggest that P. japonicus exhibits a nocturnal feeding activity rhythm, which may be synchronized by a food-restricted time.[PUBLICATION ABSTRACT] |
Author | Kasai, M.(Kagoshima Univ. (Japan)) Yamamoto, T Kitasako, K Kiyohara, S |
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CitedBy_id | crossref_primary_10_3109_07420528_2010_530728 crossref_primary_10_1007_s00359_010_0572_y crossref_primary_10_1007_s10228_023_00944_y crossref_primary_10_2108_zsj_28_545 |
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Keywords | Feeding activity Food-anticipatory activity Restricted feeding |
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SubjectTerms | ALIMENTACION RACIONADA ALIMENTATION RATIONNEE BIOLOGICAL RHYTHMS Biomedical and Life Sciences COMPORTEMENT ALIMENTAIRE Feeding Feeding activity FEEDING HABITS Fish & Wildlife Biology & Management Food Food availability Food Science Food-anticipatory activity Freshwater & Marine Ecology HABITOS ALIMENTARIOS Life Sciences Original Article PLOTOSIDAE Plotosus Plotosus japonicus RESTRICTED FEEDING RITMOS BIOLOGICOS Rodents RYTHME BIOLOGIQUE Termites |
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