Rivera-Pastrana D, Yahia E, González-Aguilar G (2010). "Phenolic and carotenoid profiles of papaya fruit (Carica papaya L.) and their contents under low-temperature storage". J Sci Food Agric. 90 (14): 2358–65. Bibcode:2010JSFA...90.2358R. doi:10.1002/jsfa.4092. PMID20632382.
Rossetto M, Oliveira do Nascimento J, Purgatto E, et al. (2008). "Benzylglucosinolate, benzyl isothiocyanate, and myrosinase activity in papaya fruit during development and ripening". J Agric Food Chem. 56 (20): 9592–9. Bibcode:2008JAFC...56.9592R. doi:10.1021/jf801934x. PMID18826320.
Sivinski J, Calkins CO, Baranowski R, et al. (April 1996). "Suppression of a Caribbean Fruit Fly (Anastrepha suspensa(Loew) Diptera: Tephritidae) Population through Augmented Releases of the ParasitoidDiachasmimorpha longicaudata(Ashmead) (Hymenoptera: Braconidae)". Biological Control. 6 (2): 177–185. Bibcode:1996BiolC...6..177S. doi:10.1006/bcon.1996.0022. ISSN1049-9644.
Siar SV, Beligan GA, Sajise AJ, et al. (2011). "Papaya ringspot virus resistance in Carica papaya via introgression from Vasconcellea quercifolia". Euphytica. 181 (2). SpringerLink: 159–168. doi:10.1007/s10681-011-0388-z. S2CID40741527.
Mishra R, Gaur RK, Patil BL (2016). "Current Knowledge of Viruses Infecting Papaya and Their Transgenic Management". Plant Viruses: Evolution and Management. pp. 189–203. doi:10.1007/978-981-10-1406-2_11. ISBN978-981-10-1405-5.
National Academies of Sciences, Engineering, and Medicine, Health and Medicine Division, Food and Nutrition Board, et al. (2019). "Chapter 4: Potassium: Dietary Reference Intakes for Adequacy". In Oria M, Harrison M, Stallings VA (eds.). Dietary Reference Intakes for Sodium and Potassium. The National Academies Collection: Reports funded by National Institutes of Health. Washington, DC: National Academies Press (US). pp. 120–121. doi:10.17226/25353. ISBN978-0-309-48834-1. PMID30844154. Retrieved 2024-12-05.
"The green papaya in Filipino cuisine". Glossary of Filipino Food ...and essays on the world's "original fusion cuisine" too. Retrieved 15 December 2018.
Rivera-Pastrana D, Yahia E, González-Aguilar G (2010). "Phenolic and carotenoid profiles of papaya fruit (Carica papaya L.) and their contents under low-temperature storage". J Sci Food Agric. 90 (14): 2358–65. Bibcode:2010JSFA...90.2358R. doi:10.1002/jsfa.4092. PMID20632382.
Rossetto M, Oliveira do Nascimento J, Purgatto E, et al. (2008). "Benzylglucosinolate, benzyl isothiocyanate, and myrosinase activity in papaya fruit during development and ripening". J Agric Food Chem. 56 (20): 9592–9. Bibcode:2008JAFC...56.9592R. doi:10.1021/jf801934x. PMID18826320.
Sivinski J, Calkins CO, Baranowski R, et al. (April 1996). "Suppression of a Caribbean Fruit Fly (Anastrepha suspensa(Loew) Diptera: Tephritidae) Population through Augmented Releases of the ParasitoidDiachasmimorpha longicaudata(Ashmead) (Hymenoptera: Braconidae)". Biological Control. 6 (2): 177–185. Bibcode:1996BiolC...6..177S. doi:10.1006/bcon.1996.0022. ISSN1049-9644.
hawaii.edu
ctahr.hawaii.edu
Chia CL, Manshardt RM (October 2001). "Why Some Papaya Plants Fail to Fruit"(PDF). Fruits and Nuts. College of Tropical Agriculture and Human Resources, University of Hawaii at Manoa: 1–2. Retrieved 1 April 2015.
National Academies of Sciences, Engineering, and Medicine, Health and Medicine Division, Food and Nutrition Board, et al. (2019). "Chapter 4: Potassium: Dietary Reference Intakes for Adequacy". In Oria M, Harrison M, Stallings VA (eds.). Dietary Reference Intakes for Sodium and Potassium. The National Academies Collection: Reports funded by National Institutes of Health. Washington, DC: National Academies Press (US). pp. 120–121. doi:10.17226/25353. ISBN978-0-309-48834-1. PMID30844154. Retrieved 2024-12-05.
Rivera-Pastrana D, Yahia E, González-Aguilar G (2010). "Phenolic and carotenoid profiles of papaya fruit (Carica papaya L.) and their contents under low-temperature storage". J Sci Food Agric. 90 (14): 2358–65. Bibcode:2010JSFA...90.2358R. doi:10.1002/jsfa.4092. PMID20632382.
Rossetto M, Oliveira do Nascimento J, Purgatto E, et al. (2008). "Benzylglucosinolate, benzyl isothiocyanate, and myrosinase activity in papaya fruit during development and ripening". J Agric Food Chem. 56 (20): 9592–9. Bibcode:2008JAFC...56.9592R. doi:10.1021/jf801934x. PMID18826320.
National Academies of Sciences, Engineering, and Medicine, Health and Medicine Division, Food and Nutrition Board, et al. (2019). "Chapter 4: Potassium: Dietary Reference Intakes for Adequacy". In Oria M, Harrison M, Stallings VA (eds.). Dietary Reference Intakes for Sodium and Potassium. The National Academies Collection: Reports funded by National Institutes of Health. Washington, DC: National Academies Press (US). pp. 120–121. doi:10.17226/25353. ISBN978-0-309-48834-1. PMID30844154. Retrieved 2024-12-05.
Morton JF (1987). "Papaya; In: Fruits of Warm Climates". Purdue University Center for New Crops and Plant Products. pp. 336–346. Retrieved 27 October 2023.
regionalconservation.org
Ward D (2011). "Papaya"(PDF). The Palmetto. Retrieved 1 January 2022.
sbs.com.au
"Achara". SBS TV. 4 December 2014. Retrieved 15 December 2018.
semanticscholar.org
api.semanticscholar.org
Siar SV, Beligan GA, Sajise AJ, et al. (2011). "Papaya ringspot virus resistance in Carica papaya via introgression from Vasconcellea quercifolia". Euphytica. 181 (2). SpringerLink: 159–168. doi:10.1007/s10681-011-0388-z. S2CID40741527.
ucdavis.edu
wifss.ucdavis.edu
"Papayas"(PDF). Western Institute for Food Safety & Security, University of California at Davis. 2016. Retrieved 10 September 2017.
Sivinski J, Calkins CO, Baranowski R, et al. (April 1996). "Suppression of a Caribbean Fruit Fly (Anastrepha suspensa(Loew) Diptera: Tephritidae) Population through Augmented Releases of the ParasitoidDiachasmimorpha longicaudata(Ashmead) (Hymenoptera: Braconidae)". Biological Control. 6 (2): 177–185. Bibcode:1996BiolC...6..177S. doi:10.1006/bcon.1996.0022. ISSN1049-9644.
worldfloraonline.org
"Carica L."World Flora Online. World Flora Consortium. 2022. Retrieved 17 November 2022.