References
- Aanyu M., Betancor M.B., Monroig O. (2018). Effects of dietary limonene and thymol on the growth and nutritional physiology of Nile tilapia (Oreochromis niloticus). Aquaculture, 488: 217–226.
- Abaho I., Akoll P., Jones C.L.W., Masembe C. (2022 a). Dietary inclusion of pine pollen alters sex ratio and promotes growth of Nile tilapia (Oreochromis niloticus, L. 1758). Aquac. Rep., 27: 101407.
- Abaho I., Masembe C., Akoll P., Jones C.L.W. (2022 b). The use of plant extracts to control tilapia reproduction: Status and future perspectives. J. World Aquac. Soc., 53: 593–619.
- Abaho I., Gabriel N.N., Izaara A.A. (2023). Use of plant extracts to control reproduction in tilapia production systems: An emerging eco-friendly innovation. In: Emerging Sustainable Aquaculture Innovations in Africa, Gabriel N.N., Omoregie E., Abasubong K.P. (eds). Springer Nature Singapore, Singapore, pp. 167–196.
- Abbas H.H., Abbas W.T. (2011). Assessment study on the use of pawpaw; Carica papaya seeds to control Oreochromis niloticus breeding. Pak. J. Biol. Sci., 14: 1117.
- Abdel-Latif H.M.R., Shukry M., Saad M.F., Mohamed N.A., Nowosad J., Kucharczyk D. (2021). Effects of GnRHa and hCG with or without dopamine receptor antagonists on the spawning efficiency of African catfish (Clarias gariepinus) reared in hatchery conditions. Anim. Reprod. Sci., 231: 106798.
- Abdel-Latif H.M.R., Citarasu T., Turgay E., Yilmaz E., Yousefi M., Shekarabi P.H., Ahmadifar E., Nowosad J., Kucharczyk D., Yilmaz S. (2024). Control of yersiniosis in rainbow trout, Oncorhynchus mykiss: innovative non-antibiotic feed-based strategies. Ann. Anim. Sci., https://doi.org/10.2478/aoas-2024-0087
- Abdelhak M., Madkour F., Ibrahim M., Sharaf M., Sharaf M., Mohammed D. (2013). Effects of pawpaw, Carica papaya seeds meal on the productive performance and histological characters of gonads in Nile tilapia, Oreochromis niloticus. Int. J. Adv. Res., 3: 34–37.
- Adenigba I., Tumbokon B.L.M., Serrano A. (2017). Androgenic and anabolic effects of Pinus tabulaeformis Carr. pollen in Clarias gariepinus. Israeli J. Aquacult. –Bamidgeh, 69: 1–8.
- Adeparusi E.O., Dada A.A., Alale O.V. (2010). The effects of medicinal plant (Kigelia africana) on sperm quality of African catfish Clarias gariepinus (Burchell, 1822) broodstock. J. Agricult. Sci., 2: 193–199.
- Ampofo-Yeboah A. (2013). Effect of phytogenic feed additives on gonadal development in Mozambique tilapia. Stellenbosch: Stellenbosch University.
- Aziz M.A., Mostary M.M., Sume I.J., Uddin M.H., Khan M.G.Q., Alam M.S., Islam M.S. (2022). The efficacy of using pine (Pinus massoniana) pollen as an alternative to synthetic steroids in producing monosex male Nile tilapia (Oreochromis niloticus, L.). Aquacult. Fish Fisher., 2: 375–383.
- Balam F.H., Ahmadi Z.S., Ghorbani A. (2020). Inhibitory effect of chrysin on estrogen biosynthesis by suppression of enzyme aromatase (CYP19): A systematic review. Heliyon, 6: e03557.
- Bennetau-Pelissero C., Breton B.B., Bennetau B., Corraze G., Le Menn F., Davail-Cuisset B., Helou C., Kaushik S.J. (2001). Effect of genistein-enriched diets on the endocrine process of gametogenesis and on reproduction efficiency of the rainbow trout Oncorhynchus mykiss. Gen. Comp. Endocrinol., 121: 173–187.
- Cek S., Turan F., Atik E. (2007 a). The effects of gokshura, Tribulus terrestris on sex reversal of guppy, Poecilia reticulata. Pak. J. Biol. Sci., 10: 718–725.
- Cek S., Turan F., Atik E. (2007 b). Masculinization of convict cichlid (Cichlasoma nigrofasciatum) by immersion in Tribulus terrestris extract. Aquac. Int., 15: 109–119.
- Celik I., Guner Y., CelIk P. (2011). Effect of orally administered 17α-methyltestosterone at different doses on the sex reversal of the Nile tilapia (Oreochromis niloticus, Linneaus 1758). J. Anim. Vet. Adv., 10: 853–857.
- Chakraborty S.B., Hancz C. (2011). Application of phytochemicals as immunostimulant, antipathogenic and antistress agents in finfish culture. Rev. Aquac., 3: 103–119.
- Chakraborty S.B., Horn P., Hancz C. (2014). Application of phyto-chemicals as growth-promoters and endocrine modulators in fish culture. Rev. Aquac., 6: 1–19.
- Chandran D. (2021). Veterinary phytomedicine in India: A review. Int. J. Sci. Res. Sci. Tech., 8: 598–605.
- Cheshenko K., Pakdel F., Segner H., Kah O., Eggen R.I.L. (2008). Interference of endocrine disrupting chemicals with aromatase CYP19 expression or activity, and consequences for reproduction of teleost fish. Gen. Comp. Endocrinol., 155: 31–62.
- Christianson-Heiska I., Smeds P., Granholm N., Bergelin E., Isomaa B. (2007). Endocrine modulating actions of a phytosterol mixture and its oxidation products in zebrafish (Danio rerio). Comp. Biochem. Physiol. C Toxicol. Pharmacol., 145: 518–527.
- Citarasu T. (2010). Herbal biomedicines: a new opportunity for aqua-culture industry. Aquac. Int., 18: 403–414.
- Cook D.L., LaFleur L., Parrish A., Jones J., Hoy D. (1997). Characterization of plant sterols from 22 US pulp and paper mills. Water Sci. Technol., 35: 297–303.
- Dada A., Ajilore V. (2009). Use of ethanol extracts of Garcinia kola as fertility enhancer in female catfish Clarias gariepinus broodstock. Int. J. Fish. Aquacult., 1: 5–10.
- El-Kady M., Hussein M., Abd-Elghany M., Mabrouk M. (2022). Effect of adding Tribulus terrestris extract to the diets of Nile tilapia Oreochromis niloticus larvae on sex ratio and growth performance. Al-Azhar J. Agricult. Res., 47: 123–132.
- El-Sayed A.-F.M., Abdel-Aziz E.-S.H., Abdel-Ghani H.M. (2012). Effects of phytoestrogens on sex reversal of Nile tilapia (Oreochromis niloticus) larvae fed diets treated with 17α-methyltestosterone. Aquaculture, 360–361: 58–63.
- Enayat Gholampour T., Fadaei Raieni R., Pouladi M., Larijani M., Pagano M., Faggio C. (2020). The dietary effect of Vitex agnuscastus hydroalcoholic extract on growth performance, blood biochemical parameters, carcass quality, sex ratio and gonad histology in zebrafish (Danio rerio). Appl. Sci., 10.
- Eng E.T., Williams D., Mandava U., Kirma N., Tekmal R.R., Chen S. (2001). Suppression of aromatase (estrogen synthetase) by red wine phytochemicals. Breast Cancer Res. Treat., 67: 133–146.
- Fajkowska M., Adamek-Urbańska D., Ostaszewska T., Szczepkowski M., Rzepkowska M., (2021). Effect of genistein, daidzein and coumestrol on sex-related genes expression in Russian sturgeon (Acipenser gueldenstaedtii). Aquaculture, 530: 735872.
- Flinders C.A., Streblow W.R., Philbeck R.E., Cook D.L., Camp- bell D.E., Brown-Peterson N.J., Gross T.S. (2014). Fathead minnow response to broad-range exposure of β-sitosterol concentrations during life-cycle testing. Environ. Toxicol. Chem., 33: 458–467.
- Francis G., Levavi-Sivan B., Avitan A., Becker K. (2002). Effects of long-term feeding of Quillaja saponins on sex ratio, muscle and serum cholesterol and LH levels in Nile tilapia (Oreochromis niloticus (L.)). Comp. Biochem. Physiol. C Toxicol. Pharmacol., 133: 593–603.
- Francis R.C. (1992). Sexual lability in teleosts: developmental factors. Quarter. Rev. Biol., 67: 1–18.
- Gabriel N.N. (2019). Review on the progress in the role of herbal extracts in tilapia culture. Cogent Food Agricult., 5: 1619651.
- Gabriel N.N., Qiang J., Kpundeh M.D., Xu P. (2015). Use of herbal extracts for controlling reproduction in tilapia culture: trends and prospects –a review. Israeli J. Aquacult. –Bamidgeh, 67.
- Gabriel N.N., Qiang J., Ma X.Y., He J., Xu P., Omoregie E. (2017). Sex-reversal effect of dietary Aloe vera (Liliaceae) on genetically improved farmed Nile tilapia fry. North Am. J. Aquacult., 79: 100–105.
- Gauthaman K., Ganesan A.P. (2008). The hormonal effects of Tribulus terrestris and its role in the management of male erectile dysfunction –an evaluation using primates, rabbit and rat. Phytomedicine,15: 44–54.
- Ghosal I., Chakraborty S.B. (2020). Production of monosex all-male Nile tilapia using ethanol extract of Tribulus terrestris seeds. Proc. Zool. Soc., 73: 188–191.
- Ghosal I., Mukherjee D., Hancz C., Chakraborty S.B. (2015). Efficacy of Basella alba and Tribulus terrestris extracts for production of monosex Nile tilapia, Oreochromis niloticus. J. Appl. Pharmaceut. Sci., 5: 152–158.
- Ghosal I., Mukherjee D., Chakraborty S.B. (2021). The effects of four plant extracts on growth, sex reversal, immunological and haemato-biochemical parameters in Nile tilapia, Oreochromis niloticus (Linnaeus, 1758). Aquacult. Res., 52: 559–576.
- Gilman C.I., Leusch F.D.L., Carl Breckenridge W., MacLatchy D.L. (2003). Effects of a phytosterol mixture on male fish plasma lipo-protein fractions and testis P450scc activity. Gen. Comp. Endocrinol., 130: 172–184.
- Golan M., Avitan A., Qutob M., Dweik H., Abu-Lafi S., Focken U., Francis G., Becker K., Kerem Z., Levavi-Sivan B. (2008). Quillaja saponins inhibit tilapia aromatase activity in vitro. Cybium, 32: 80–82.
- Green C.C., Kelly A.M. (2009). Effects of the estrogen mimic genistein as a dietary component on sex differentiation and ethoxyresorufin-O-deethylase (EROD) activity in channel catfish (Ictalurus punctatus). Fish Physiol. Biochem., 35: 377–384.
- Guiguen Y., Fostier A., Piferrer F., Chang C.-F. (2010). Ovarian aromatase and estrogens: A pivotal role for gonadal sex differentiation and sex change in fish. Gen. Comp. Endocrinol., 165: 352–366.
- Hewitt L.M., Kovacs T.G., Dubé M.G., MacLatchy D.L., Martel P.H., McMaster M.E., Paice M.G., Parrott J.L., van den Heuvel M.R., van der Kraak G.J. (2008). Altered reproduction in fish exposed to pulp and paper mill effluents: Roles of individual compounds and mill operating conditions. Environ. Toxicol. Chem., 27: 682–697.
- Ikpesu T.O., Tongo I., Ariyo A. (2014). Restorative prospective of powdered seeds extract of Garcinia kola in Chrysichthys furcatus induced with glyphosate formulation. Chin. J. Biol., 1: 854157.
- Inaba H., Iwata Y., Suzuki T., Horiuchi M., Surugaya R., Ijiri S., Uchiyama A., Takano R., Hara S., Yazawa T., Kitano T. (2023). Soy isoflavones induce feminization of Japanese eel (Anguilla japonica). Int. J. Mol. Sci., 24.
- İnanan B.E., Acar Ü. (2019). Evaluation of sugar beet leave extracts in goldfish (Carassius auratus) diets: Effects on blood and semen parameters. Acta Aquat. Turcica, 15: 458–468.
- Kavitha P., Subramanian P. (2011). Effect of Tribulus terrestris on monosex production in Poecilia latipinna. Current Sci., 100–104.
- Khumpirapang N., Sassa-deepaeng T., Suknuntha K., Anuchapreeda S., Okonogi S. (2021). Masculinizing effects of chrysin-loaded poloxamer micelles on Siamese fighting fish. Vet. Sci., 8.
- Kiriyakit A. (2014). Efficacy of Red Kwao Krua (Butea superb Roxb.) crude extract for all male production of Nile tilapia (Oreochromis niloticus).J. Agricult. Technol., 10: 391–398.
- Lee A., Bensaada S., Lamothe V., Lacoste M., Bennetau-Pelissero C. (2022). Endocrine disruptors on and in fruits and vegetables: Estimation of the potential exposure of the French population. Food Chem., 373: 131513.
- Low B.-S., Das P.K., Chan K.-L. (2013). Standardized quassinoid-rich Eurycoma longifolia extract improved spermatogenesis and fertility in male rats via the hypothalamic–pituitary–gonadal axis. J. Ethnopharmacol., 145: 706–714.
- Maclatchy D.L., Vanderkraak G.J. (1995). The phytoestrogen β-sitosterol alters the reproductive endocrine status of goldfish. Toxicol. Appl. Pharmacol., 134: 305–312.
- Mansour A.T., Alsaqufi A.S., Omar E.A., El-Beltagi H.S., Srour T.M., Yousef M.I. (2022). Ginseng, Tribulus extracts and pollen grains supplementation improves sexual state, testes redox status, and testicular histology in Nile tilapia males. Antioxidants, 11.
- Miyahara M., Ishibashi H., Inudo M., Nishijima H., Iguchi T., Guillette Jr L.J., Arizono K. (2003). Estrogenic activity of a diet to estrogen receptors -a and -b in an experimental animal. J. Health Sci., 49: 481–491.
- Naiel M.A.E., El-Kholy A.I., Negm S.S., Ghazanfar S., Shukry M., Zhang Z., Ahmadifar E., Abdel-Latif H.M.R. (2023). A mini-review on plant-derived phenolic compounds with particular emphasis on their possible applications and beneficial uses in aqua-culture. Ann. Anim. Sci., 23: 971–977.
- Nattagh-Eshtivani E., Barghchi H., Pahlavani N., Barati M., Amiri Y., Fadel A., Khosravi M., Talebi S., Arzhang P., Ziaei R., Ghavami A. (2022). Biological and pharmacological effects and nutritional impact of phytosterols: A comprehensive review. Phytother. Res., 36: 299–322.
- Nian C.T., Tumbokon B.L.M., Serrano A.E. (2017). Pinus tabulaeformis pollen as replacement for 17-alpha-methyltestosterone in the diet of Oreochromis niloticus larvae for sex reversal and growth. Israeli J. Aquacult. –Bamidgeh, 69: 1–10.
- Nieves P.M. (2017). On-farm trials of phytoandrogen for sex inversion of tilapia. Kuroshio Sci., 11: 8–13.
- Nuzaiba P.M., Varghese T., Gupta S., Sahu N.P., Banani M., Srivastava P.P., Krishna G. (2020). Dietary genistein disrupts sex steroid and vitellogenic response in female common carp, Cyprinus carpio L. Aquaculture, 522: 735062.
- Nyadjeu P., Angoun J., Ndasi N.P., Tabi-Tomedi M.E. (2019). Effect of Garcinia kola seeds supplemented diet on growth performance and gonadal development of Oreochromis niloticus juveniles breed in ponds. Fish. Aquat. Sci., 22: 20.
- Omar E.A., Yousef M.I., Srour T.M., Mansour A.T.-E. (2014). Effect of dietary natural phytochemicals on sex-reversal, growth performance, feed utilization and body composition of Nile tilapia (Oreochromis niloticus) fry. J. Adv. Agricult. Res., 19: 428–441.
- Omeje V.O., Lambrechts H., Brink D. (2018). Effect of pawpaw (Carica papaya) seed meal on sex determination, growth, and survival, of Oreochromis mossambicus fry. Israeli J. Aquacult. –Bamidgeh, 70.
- Orrego R., Guchardi J., Krause R., Holdway D. (2010). Estrogenic and anti-estrogenic effects of wood extractives present in pulp and paper mill effluents on rainbow trout. Aquat. Toxicol., 99: 160–167.
- Panche A.N., Diwan A.D., Chandra S.R. (2016). Flavonoids: an overview. J. Nutr. Sci., 5: e47.
- Pandian T.J., Kirankumar S. (2003). Recent advances in hormonal induction of sex-reversal in fish. J. Appl. Aquacult., 13: 205–230.
- Pandian T.J., Sheela S.G. (1995). Hormonal induction of sex reversal in fish. Aquaculture, 138: 1–22.
- Phelps R.P., Popma T.J. (2000). Sex reversal of tilapia. In: Tilapia aquaculture in the Americas, Costa-Pierce B.A., Rakocy J.E. (eds). World Aquaculture Society, Baton Rouge, Louisiana, 2: 34–59.
- Piironen V., Lindsay D.G., Miettinen T.A., Toivo J., Lampi A.-M. (2000). Plant sterols: biosynthesis, biological function and their importance to human nutrition. J. Sci. Food Agricult., 80: 939–966.
- Raissy M., Ahmadi Kabootarkhani M., Sanisales K., Mohammadi M., Rashidian G. (2022). The synergistic effects of combined use of Mentha longifolia, Thymus carmanicus, and Trachyspermum copticum on growth performance, feed utilization, and expression of key immune genes in rainbow trout (Oncorhynchus mykiss). Front. Vet. Sci., 8.
- Ramesh P., Jagadeesan R., Sekaran S., Dhanasekaran A., Vimalraj S. (2021). Flavonoids: classification, function, and molecular mechanisms involved in bone remodelling. Front. Endocrinol., 12.
- Rempel M.A., Schlenk D. (2008). Effects of environmental estrogens and antiandrogens on endocrine function, gene regulation, and health in fish, in: International Review of Cell and Molecular Biology. Academic Press, pp. 207–252.
- Reverter M., Bontemps N., Lecchini D., Banaigs B., Sasal P. (2014). Use of plant extracts in fish aquaculture as an alternative to chemotherapy: Current status and future perspectives. Aquaculture, 433: 50–61.
- Reverter M., Tapissier-Bontemps N., Sasal P., Saulnier D. (2017). Use of medicinal plants in aquaculture, in: Diagnosis and Control of Diseases of Fish and Shellfish. pp. 223–261.
- Rinaldi R., Zairin-Jr M., Soelistyowati, D.T. (2017). Masculinization of tilapia Oreochromis niloticus using extract of pasak bumi plant Eurycoma longifolia through larval immersion. Int. J. Fish. Aquat. Stud., 5: 248–252.
- Salehi B., Quispe C., Sharifi-Rad J., Cruz-Martins N., Nigam M., Mishra A.P., Konovalov D.A., Orobinskaya V., Abu-Reidah I.M., Zam W., Sharopov F., Venneri T., Capasso R., Kukula-Koch W., Wawruszak A., Koch W. (2021). Phytosterols: From preclinical evidence to potential clinical applications. Front. Pharmacol., 11.
- Sanderson J.T., Hordijk J., Denison M.S., Springsteel M.F., Nantz M.H., Van Den Berg M. (2004). Induction and inhibition of aromatase (CYP19) activity by natural and synthetic flavonoid compounds in H295R human adrenocortical carcinoma cells. Toxicol. Sci., 82: 70–79.
- Sarasquete C., Úbeda-Manzanaro M., Ortiz-Delgado J.B. (2020). Soya isoflavones, genistein and daidzein, induce differential transcriptional modulation in the ovary and testis of zebrafish Danio rerio. Aquat. Biol., 29: 79–91.
- Shen N., Wang T., Gan Q., Liu S., Wang L., Jin B. (2022). Plant flavonoids: Classification, distribution, biosynthesis, and antioxidant activity. Food Chem., 383: 132531.
- Shohreh P., Mohammadzadeh S., Mood S.M., Ahmadifar E., Naiel M.A.E., Chandran D. (2024 a). The potentials of phytoestrogen compounds in aquaculture –A review. Ann. Anim. Sci., 24: 695–705.
- Shohreh P., Ahmadifar E., Chandran D., Yousefi M., Yilmaz S., Yilmaz E., Sheikhzadeh N., Harikrishnan R., Abdel-Latif H.M.R. (2024b). The anti-vibrio potential of medicinal plants and their roles in enhancing resistance against vibrio infections in fish –a mini review. Ann. Anim. Sci., 25: 405–415.
- Snake M., Maluwa A., Zidana H., Chigwechokha P., Simwaka M. (2020). Production of a predominantly male tilapia progeny using two Malawian tilapias, Oreochromis shiranus and Oreochromis karongae. Aquac. Rep., 16: 100274.
- Soumokil A., Lumamuly J., Laimeheriwa B. (2020). Masculinization of betta fish (Betta splendens) through natural honey immersion with different concentration, IOP Conference Series: Earth and Environmental Science. IOP Publishing, p. 012050.
- Sulem-Yong N.N., Sandjoh R., Angoun J., Nzoko A., Mounjouenpou P., Agbor K.E., Yong-Sulem S. (2018). Effect of varied dietary bitter kola (Garcinia kola) seeds levels on spawning of Nile tilapia (Oreochromis niloticus L.). Int. J. Fish. Aquat. Stud., 6: 507–510.
- Tremblay L., Van Der Kraak G. (1999). Comparison between the effects of the phytosterol β-sitosterol and pulp and paper mill effluents on sexually immature rainbow trout. Environ. Toxicol. Chem., 18: 329–336.
- Turan F., Akyurt I. (2005). Effects of androstenedione, a phytoandrogen, on growth and body composition in the African catfish Clarias gariepinus. Israeli J. Aquacult. –Bamidgeh, 57: 62–66.
- Turan F., Cek S. (2007). Masculinization of African catfish (Clarias gariepinus) treated with gokshura (Tribulus terrestris). Israeli J. Aquacult. –Bamidgeh, 59: 224–229.
- Turan F., Akyurt I., Çek-Yalnız Ş. (2022). Effect of red clover extract on sex reversal and gonadal development in the African catfish, Clarias gariepinus (Burchell, 1822). Pakistan J. Zool., 54: 543–549.
- Velasco R., Dollente D., Natividad L., Abella T. (2018). Benguet pine pollen (Pinus kesiya) as natural source of phytoandrogen. J. Biol. Pharm. Allied Sci., 7: 1121–1132.
- Waweru J., Raburu P., Odhiambo E. (2019). Gonad histology, proximate composition and growth efficiency of Nile tilapia fed with pawpaw (Carica papaya) seed powder. Asian J. Fish. Aquat. Res., 3: 1–9.
- Yusuf N.S., Andayani S., Risjani Y., Faqih A.R. (2019). Feed enriched with methanol extract of tongkat ali Eurycoma longifolia jack root for masculinization of Nile tilapia Oreochromis niloticus. Aqua-cult. Aquar. Conserv. Legis., 12: 1481–1490.
- Zakaria S.N.F., Syafriedhan M., Ching F.F. (2020). The effects of long jack, Eurycoma longifolia on sperm quality and quantity of African catfish, Clarias gariepinus. Int. J. Res. Innov. Manage., 6: 77–88.