The reproduction performance of catching Planiliza subviridis (Teleostei: Mugilidae) in different moon periods from Jepara Coast, Central Java, Indonesia

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ERVIA YUDIATI
TRISTIANA YUNIARTI
AGUS TRIANTO
ZAENAL ARIFIN
LISA RULIATY
M. SOLEH
AGUSTIEN NARYANINGSIH
SURYATI

Abstract

Abstract. Yudiati E, Yuniarti T, Trianto A, Arifin Z, Ruliaty L, Soleh M, Naryaningsih A, Suryati. 2024. The reproduction performance of catching Planiliza subviridis (Teleostei: Mugilidae) in different moon periods from Jepara Coast, Central Java, Indonesia. Biodiversitas 25: 1823-1830. Mullets (Planiliza subviridis Valenciennes 1836) are highly promising species for aquaculture development. Information on the reproductive performance of wild-caught fish is crucial for enhancing mullet production. This study aimed to assess the gonadal maturity level of female mullets captured during full and new moon phases. Sampling using lift nets was conducted from June to July 2023, comprising 104 individuals, 51 during the new moon and 53 during a full moon. Fish caught during different moon phases were measured for gonad maturation level (GML) and morphometric parameters (body weight, total length, head length, body width, and head width), assessed for gonad somatic index (GSI), fecundity, and egg diameter. Over 50% of individuals were at GML III during dark moon phases, while during bright moon phases, only 10-15% were at GML III; GSI ranged from 0.6-15%. The fecundity of GML I and II females was higher during the full moon (220,212-395,000 eggs per individual) compared to the new moon, while GML III females during dark moon phases ranged from 225,000-250,000 eggs. Mullets exhibit increased reproductive output during the new moon phase and engage in synchronous spawning during moonlight cycles. Therefore, prospects for mullet culture appear promising, with cultivation and domestication suggested during new moon periods.

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References
Abdel-Tawwab M, Abdel-Latif HMR, Basuini MFE. El-Nokrashy AM, Khaled AA, Kord M, Soliman AA, Zaki, M, Nour A-E, Labib EMH, Khalil HS. 2023. Effects of exogenous bile acids (BAs) on growth, lipid profile, digestive enzymes, and immune responses of thinlip mullet, Liza ramada. Sci Rep 13: 22875. DOI: 10.1038/s41598-023-49788-6.
Abou-Gabal AAA, Abbas EM, Mohamed HM, El-Baramawi N, Khaled AA, El Deeb SI. 2018. Molecular Identification of grey mullet species in the Mediterranean Sea of Egypt. Egypt J Aquat Biol Fish 22: 125-139. DOI: 10.21608/ejabf.2018.13263.
Albieri R, Araújo F. 2010. Reproductive biology of the mullet Mugil liza (Teleostei: Mugilidae) in a tropical Brazilian Bay. Zoologia 27: 331-340. DOI: 10.1590/S1984-46702010000300003.
Andrade-Gómez L, de León GP-P. 2024. Parasaturnius maurepasi n. gen. et n. comb. (Digena: Bunocotylidae) from the stomach of the silver mullet, Mugil curema (Perciformes: Mugilidae) in coastal lagoons of northern Yucatán, Mexico. Syst Parasitol 101: 16. DOI: 10.1007/s11230-023-10142-z.
Bhakta D, Das BK, Kambleb SP, Solankib S, Solankib JK, Sahooa AK, Samantaa S. 2024. Reproductive biology of estuarine migrants Mugil cephalus from Narmada estuary, west coast of India. Reg Stud Mar Sci 70: 103371. DOI: 10.1016/j.rsma.2024.103371.
Bonauli M, Helmi M, Pranowo WS. 2016. Analisis karakteristik arus harmonik akibat pasang surut di Perairan Teluk Awur Kabupaten Jepara. J Oceanogr 5: 1-10. [Indonesian]
Çilo?lu E, Akgümü? ?. 2019. Age, growth and gonado-somatic index of the red mullet (Mullus barbatus ponticus Essipov, 1927) in the Eastern Black Sea coast of Turkey. Turk J Agric-Food Sci Technol 7: 186-191. DOI: 10.24925/turjaf.v7i2.186-191.2016.
Effendie M. 2012. Biologi Perikanan, Yayasan Pustaka Nusatama, Yogyakarta. [Indonesian]
El-Hawarry W. 2018. Effect of nursery age (stunting) and density on polyculture performance of mullet species; Mugil capito and Mugil cephalus. Alexandria J Vet Sci 57 (2): 87-94. DOI: 10.5455/ajvs.301007.
Freitas V, Santos D, Silva DM, Cunha J, Rodrigues SM, Neves V, Rocha E, Martinho F, Ramos S. 2024. Spatial and temporal patterns of gonadal maturation and spawning in European flounder Platichthys flesus at its southern continental edge. Fish Res 269: 106864. DOI: 10.1016/j.fishres.2023.106864.
Ghiffary GAAD, Rahardjo MF, Zahid A, Simanjuntak CPH, Asriansyah A, Aditriawan RM. 2018. Diet composition and niche breadth of mullet Chelon subviridis (Valenciennes, 1836) and Moolgarda engeli (Bleeker, 1858) in Pabean Bay, Indramayu Subdistrict, West Java Province. Jurnal Iktiologi Indonesia 18: 41-56. DOI: 10.32491/jii.v18i1.373. [Indonesian]
Golmoradizadeh A, Noori A, Amiri BM. 2021. Physiological effects of the lunar cycle on the spawning of a coral reef fish, Abudefduf vaigiensis: in vivo and in vitro trait. Coral Reefs 40: 1757-1767. DOI: 10.1007/s00338-021-02183-x.
Hasan V, Andraini NE, Isroni W, Sari LA, Nafisyah AL, Dewi NN, Putri DNA, Prasasti TAB, Ramadhani AA, Daniel K, South J, Vieira LO, Ottoni FP, Maftuch, Faqih AR, Wirabuana PYAP, Tamam MB, Valen FS. 2023. Fish diversity of the Bengawan Solo River estuary, East Java, Indonesia. Biodiversitas 24 (4): 2207-2216. DOI: 10.13057/biodiv/d240433.
Hubená P, Horký P, Grabic R, Grabicov´a K, Douda K, Slavik O, Rand´ak T. 2023. Aggression repeatability in stressed fish in response to an environmental concentration of sertraline and lunar cycle as evidenced by brain metabolomics. Aquat Toxicol 264: 106707. DOI: 10.1016/j.aquatox.2023.106707.
Ibañez A, Colín A. 2014. Reproductive biology of Mugil curema and Mugil cephalus from western Gulf of Mexico waters. Bull Mar Sci 90 (4): 941-952. DOI: 10.5343/bms.2014.1004.
Ihsan, Jamal M, Asbar, Kaf AT. 2021. Dimensi teknis trap net dan sebaran ukuran hasil tangkapan berdasarkan fase bulan di perairan Kecamatan Sigeri Kabupaten Pangkep. Prosiding Seminar Nasional Politeknik Pertanian Negeri Pangkajene Kepulauan 2: 199-215. DOI: 10.51978/proppnp.v3i1.264. [Indonesian]
Ikegami T, Motohashi E, Doi H, Hattori A, Ando H. 2014. Impacts of moonlight on fish reproduction. Mar Genom 14: 59-66. DOI: 10.1016/j.margen.2013.11.007.
Kurma RR, Babu KR. 2016. Reproductive biology of the flathead grey mullet, Mugil cephalus (Linnaeus, 1758) from Krishna Estuarine region, East coast of Andhra Pradesh, India. Intl J Fish Aquat Stud 4: 483-488.
Lee MA, Mondal S, Teng SY, Nguyen M-L, Lin P, Wu J-H, Mondal BK. 2023. Fishery-based adaption to climate change: the case of migratory species flathead grey mullet (Mugil cephalus L.) in Taiwan Strait, Northwestern Pacific. PeerJ 11: e15788. DOI: 10.7717/peerj.15788.
Lopes ACC, de Mattos BO, Marcon JL, Vera LM, L´opez-OPR, lmeda JF, S´anchez-V´azquez FJ, Carvalho TB. 2023. Does exposure to moonlight affect day/night changes in melatonin and metabolic parameters in Amazonian fish?. Comp Biochem Physiol A Mol Integr Physiol 284: 111489. DOI: 10.1016/j.cbpa.2023.111489.
Lubzens EG, Young G, Bobe J, Cerdà J. 2010. Oogenesis in teleosts: how eggs are formed. Gen Comp Endocrinol 165: 367-89. DOI: 10.1016/j.ygcen.2009.05.022.
Mousa MA, Kora MF, Khalil NA. 2018. Evaluation of the effectiveness and cost of different hormones in stimulating the spawning of thin lipped grey mullet, Liza ramada. Egypt J Histol 41: 275-284. DOI: 10.21608/EJH.2019.25410.
Pereira E, Jorge A, Quintella B, da Silva MG, Almeida PR, Lança MJ. 2024. Do catadromous thinlip grey mullet benefit from shifting to freshwater? A perspective from fatty acid signature analysis. Fish Physiol Biochem 1-16. DOI: 10.1007/s10695-024-01322-9.
Ramos-Júdez S, Chauvigné F, González-López WA, Rosenfeld H, Cerdà J, Giménez I, Duncan N. 2021. Providing recombinant gonadotropin-based therapies that induce oogenesis from previtellogenic oocytes to produce viable larvae in a teleost, the flathead grey mullet (Mugil cephalus). Aquaculture 536: 736418. DOI: 10.1016/j.aquaculture.2021.736418.
Ratnaningsih S, Sulistiono, Kamal MM, Wildan DM, Ervinia A. 2022. Biologi reproduksi ikan belanak (Planiliza subviridis) yang tertangkap di Perairan Pantai Karangsong, Indramayu, Jawa Barat. Jurnal Teknologi Perikanan dan Kelautan 12: 61-72. DOI: 10.24319/jtpk.12.61-72. [Indonesian]
Rofi’i MR, Mustakim M, Rafii A. 2022. Long relationship of weight and condition factors of belanak fish (Mugil cephalus) in Sanipah Samboja Kutai Kartanegara Regency East Kalimantan. J Trop Aquat Sci 1: 76-82. DOI: 10.30872/tas.v1i1.476. [Indonesian]
Saygin S. 2024. Otolith shape analysis of red mullet, Mullus barbatus (Mullidae) in Turkish Waters of the Aegean, Black, and Mediterranean Seas. J Ichtiol 1-11. DOI: 10.1134/S0032945224020127.
Stewart J, Hegarty AM, Gladstone W. 2021. The influence of climatic and lunar drivers on landings cycles of the temperate Australian sciaenid (Atractoscion atelodus) at two temporal scales: A working hypothesis for future management of this resource. Mar Environ Res 171: 105456. DOI: 10.1016/j.marenvres.2021.105456.
Whitfield AK, Durand JD. 2023. An overview of grey mullet (Mugilidae) global occurrence and species-rich ecoregions, with indications of possible past dispersal routes within the family. J Fish Biol 103: 202-219. DOI: 10.1111/jfb.15450.
Wigati KN, Syafei LS. 2013. Biologi reproduksi ikan belanak (Moolgarda Engeli, Bleeker 1858) di Pantai Mayangan, Jawa Barat. Jurnal Iktiologi Indonesia 13: 125-132. [Indonesian]
Yulianto D, Indra I, Batubara AS, Fadli N. 2020. Morphometrics and genetics variations of mullets (Pisces: Mugillidae) from Aceh waters. Indonesia. Biodiversitas 21 (8): 3422-3430. DOI: 10.13057/biodiv/d210802.

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