International Journal of Agriculture and Earth Science (IJAES )
E- ISSN 2489-0081
P- ISSN 2695-1894
VOL. 10 NO. 10 2024
DOI: 10.56201/ijaes.v10.no10.2024.pg94.105
Okadi, D., Amachree, D. and Kingdom, T.
The diets of fishes are used to study trophic interactions in aquatic communities and are important tools for fisheries management. The diet of Parachelon grandisquamis from St. Nicholas River, Bayelsa State, Nigeria was studied for one year (November 2020 to October 2021) using the stomach contents. Fish were caught from the full stretch of the river and identified to species level using keys and descriptions. A total of two hundred and sixteen (216) P. grandisquamis stomachs were studied. Stomachs were excised, preserved and the contents analyzed using the numerical, frequency of occurrence methods as well as the index of food significance. The results showed that the food of P. grandisquamis as indicated by the stomach contents were plant parts > diatoms algae > crustaceans > fish parts > annelids; other items included sand grains and detritus. For % number of food items, plant parts (55.91%) showed the highest numbers followed by diatoms (20.57%), especially Fragillaris sp (n=439), algae (16.92%), crustaceans (3.45%), fish parts (2.02) and the least were annelids (1.13%). For % frequency of occurrence detritus (27.00%) was recorded as the most frequently occurred followed by sand (25.00%), plant parts (19.63%), crustaceans (9.88%), diatom (7.63%), algae (7.13%), fish parts (2.13) and annelids (1.63%). The result of the % index of significance showed that the primary food items (i.e., IFS ? 3%) of P. grandisquamis are plant parts (77.55%), followed by diatoms (11.095) and algae (8.52%). Crustaceans (2.41%), fish parts (0.30%) and annelids (0.13%) are secondary food items (i.e., IFS ? 0.1 to < 3 %). Others such as sand grains and detritus are regarded as incidental food items (i.e., IFS ? 0.1%). There was no seasonal variation in the type of the food items consumed however, the total number of food items consumed was greater in the dry season (3483) compared to the wet season (2457) with plant parts > diatoms > algae > cru
Food, Feeding, stomach content, numerical methods, frequency of occurrence.
Abdel-Aziz, N. and Gharib, S. (2007). Food and feeding habits of round sardinella
(Sardinella aurita) in El Mex Bay Alexandria, Egypt. Egyptian Journal of Aquatic
Research, 33: 202-221.
Agboola, J. I. and Denloye, A. B. (2011). Preliminary Assessment of Anthropogenic impact
on some ecological components of Abesan River, Lagos, Nigeria. Journal of Water
Resource and Protection, 3: 98-104.
Akani, G. C., Luiselli, L., Ogbeibu, A. E., Onwuteaka, J. N., Chuku, E., Osakwe, J. A.,
Bombi, P., Amuzie, C. C., Uwagbae, M. and Gijo, H. A. (2010). Aspects of species
richness and seasonality of amphibians and reptiles in the coastal barrier Island of Brass
(Nigeria). Revue d'Écologie (La Terre et La Vie). 65: 151-161.
Akuna, V. O and Amachree, D. (2019). Food of African butterfish, Schilbe intermedius
(Rüppel, 1832) from Agbura landing site, Bayelsa State, Nigeria. Global Scientific
Journal, 7 (3): 24-30.
Albaret J-J. and Legendre, M. (1985). Bioliogie et ecologie des Mugilidae en lagune Ébrié
(Côte d’Ivoire) Intérêt potentiel pour l’aquaculture lagunaire. Revenued’Hydrobiologie
Tropical, 18 (4): 281-304.
Albaret, J-J. (1992). Mugilidae. In: Lévêque, C., Paugy, D. and Teugels, G. G. (Eds). The
fresh and brackish water fishes of West Africa, Vol. 2. Paris: ORSTOM - MRAC. 432-449.
Albaret, J-J. (2003). Mugilidae. In: Lévêque, C., Paugy D. and Teugels, G.G. (eds.) Faune des
poissons d'eaux douce et saumâtres de l'Afrique de l'Ouest, Tome 2. Coll. Faune et Flore
tropicales 40. Musée Royal de l'Afrique Centrale, Tervuren, Belgique, Museum National
d'Histoire Naturalle, Paris, France and Institut de Recherche pour le Développement, Paris,
France. p. 601-611. Available online at:
https://www.fishbase.se/references/FBRefSummary.php?id=57400&speccode=1086
[Last accessed 25th November 2024].
Allison, M. E. and Sikoki, F. D (2013). Food and Feeding Habits of Parailia pellucida
(Boulenger, 1901) (Schilbeidae) in the Freshwater Reaches of the Nun River of the Niger
Delta, Nigeria. International Journal of Advanced Fisheries and Aquatic Science, 1(1):
1-14.
Ara, S. I., Azadi, M. A., Nasiruddin, M., Hossain, A. and Mustafa, M.G. (2019). Population
dynamics of the mullet fish Rhinomugil corsula (Hamilton, 1822), in the Sitakunda Coast
of the Bay of Bengal. Bangladesh Journal of Zoology, 47(2): 305-314.
Arrington, D.A., Winemiller, K. O., Loftus, W. F. and Akin, S. (2002). How often do fishes
“run on empty”?. Ecology, 83: 2145-2151.
Blaber, S., and Blaber, T. (1980). Factors affecting the distribution of juvenile estuarine and
inshore fish. Journal of Fish Biology, 17: 143-162.
Blaber, S. J. M. (2000). Tropical Estuarine Fishes: Ecology, Exploitation, and Conservation.
Fish
and
Fisheries
Series.
Blackwell
Science,
Oxford.
https://doi.org/10.1002/9780470694985.
Braga, R. R., Bornatowski, H and Vitule, J. R. S. (2012). Feeding ecology of fishes: An
overview of worldwide publications. Reviews in Fish Biology and Fisheries, 22 (4):
915-929.
Blay, J. (1995). Food and feeding habits of four species of juvenile mullets (Mugilidae) in a
tidal lagoon in Ghana. Journal of fish Biology, 46: 134-141.
Cardona L. (2016). Food and feeding of Mugilidae. In: Crosetti, D and Blaber, S. J. M.
(Eds.), Biology, Ecology and Culture of Grey Mullets (Mugilidae), CRC Press, Boca
Raton, FL, 165-195 pp.
Chea, R., Lek, S., Ngor, P. and Grenouillet, G. (2017). Large-scale patterns of fish diversity
and assemblage structure in the longest tropical river in Asia. Ecology of Freshwater Fish,
26 (4): 575-585.
De Silva, S. S. and Wijayaratne (1977). Studies on the biology of young mullet, Mugil
cephalus, L. II. Food and feeding. Aquaculture 12: 157-167.
Eggold B. T. and Motta P. J. (1992). Ontogenetic dietary shifts and morphological correlates
in Striped Mullet, Mugil cephalus. Environmental Biology of Fishes. 34 (2): 139–158.
FAO (2016). The State of World Fisheries and Aquaculture. Contributing to food security
and nutrition for all, Rome, 200pp.
Gisbert, E., Molas, S., Hernández, E., Carbó and Ruiz, A. (2024). Production of Flathead
Grey Mullet (Mugil cephalus) and Lettuce (Lactuca sativa) in a Coupled Aquaponic
System
under
Suboptimal
Water
Temperatures.
Fishes,
9
(6):
doi.org/10.3390/fishes9060189.
Górski, K., De Gruijter, C. and Tana, R. (2015). Variation in habitat use along the
freshwater-marine continuum by grey mullet Mugil cephalus at the southern limits of its
distribution. Journal of Fish Biology. 87(4):1059-1071.
Harrison, I. J., (2008). Mugilidae. In: Stiassny, M. L. J., Teugels G. G. and Hopkins, C.D.
(eds.). The fresh and brackish water fishes of Lower Guinea, West-Central Africa. Volume
II. Collection Faune et Flore tropicales 42. Institut de Recherche pour le Développement,
Paris, France, Muséum National d’Histoire Naturelle, Paris, France, and Musée Royal de
l’Afrique Centrale, Tervuren, Belgium. 450-471pp. Ref No [81659] Key No. [1693].
Available
online
at
https://www.fishbase.se/references/FBRefSummary.php?ID=81659&speccode=9918.
[Last accessed 25/11/2024].
Hyslop, E. J (1980). Stomach contents analysis-a review of methods and their application.
Journal of Fish Biology, 17: 411-429.
IUCN (2023). "The IUCN Red List of Threatened Species. Available online at.
https://www.iucnredlist.org/ [last accessed 25th November 2024).
Jamabo, N. A and Maduako, N. C. (2015). Food and feeding habits of Mugil cephalus
(Linnaeus 1758) in Elechi creek, Niger delta, Nigeria. International Journal of Fisheries
and Aquaculture. 7 (3): 25-29.
King R. P. (1988). New observations on the trophic ecology of Liza grandisquamis
(Valenciennes, 1836) (Pisces: Mugilidae) in the Bonny River, Niger Delta, Nigeria,
Cybium 12 (1): 23-36.
Lindstrøm, U., Haug, T and Nilssen, K. T. (1997). Diet studies based on contents from two
separate stomach compartments of northeast Atlantic minke whales Balaenoptera
acutorostrata. Sarsia, 82: 63-68.
Mohamed, A-R, M. and Abood, A. N. (2019). Food and trophic relationships of four mullet
fish (Mugilidae) in the Shatt Al-Arab River Iraq. Asian Journal of Applied Sciences.
7(1):19-26.
Omondi, R., Yasindi, A.W. and Magana, A.M. (2013). Food and feeding habits of three main
fish in Lake Baringo, Kenya. Journal of Ecology and Natural Environment. 5 (9): 224-230.
Payne A. L. (1976). The relative abundance and feeding habits of the grey mullet species
occurring in an estuary in Sierra Leone, West Africa. Marine Biology. 35: 277-286.
Rangely, J., de Barros, M. S. F., Albuquerque-Tenório, M. D., Madeiros, M., Ladle, R. J. and
Fabré, N. N. (2023). Assessing interspecific variation in life-history traits of three
sympatric tropical mullets using age, growth and otolith allometry. Journal of Fisheries
Research. 260. doi.org/10.1016/j.fishres.2022.106577.
Schneider, W. 1990. Field guide to the commercial marine resources of the Gulf of Guinea.
FAO species identification sheets for fishery purposes. Rome, FAO. 268 p.
Thomson, J. M. (1966). The grey mullets. Oceanography and Marine Biology - An Annual
Review. 4: 301-355.
Thomson, J. M., 1990. Mugilidae. In: Quero, J.C., Hureau, J. C., Karrer, C., Post, A and
Saldanha, L (eds.). Check-list of the fishes of the eastern tropical Atlantic (CLOFETA).
JNICT, Lisbon; SEI, Paris; and UNESCO, Paris. Vol. 2. (Ref. 7399), 855-859pp. Available
online
at
https://www.fishbase.se/summary/Parachelon-grandisquamis.html.
[Last
accessed 25th November 2024].
Ugwumba, A.A.A. and Ugwumba, O.A. (2007). Food and Feeding Ecology of Fishes in
Nigeria. Crystal Publishers, Lagos. 97pp.
Vallet, F., Berhaut, C., Leray, B., Bonnetand, and Pic, P. (1970). Preliminary experiments on
the artificial feeding of Mugilidae. Helgolander wiss Meeresunters. 20: 610-619.
Whitfield, A. K. and Elliot, M (2015). Fish as indi