Open Access
Issue |
OCL
Volume 27, 2020
|
|
---|---|---|
Article Number | 52 | |
Number of page(s) | 12 | |
Section | Agronomy | |
DOI | https://doi.org/10.1051/ocl/2020046 | |
Published online | 19 October 2020 |
- Abigor DR, Opute FI, Opoku AR, Osagie AU. 1985. Partial-purification and some properties of the lipase present in oil palm (Elaeis guineensis) mesocarp. J Sci Food Agric 36: 599–606. [Google Scholar]
- Afnor. 1981a. NF T60-204 Détermination de l’indice d’acide. In : Afnor, ed. Recueil de normes françaises des corps gras graines oléagineuses produits dérivés, 2nd ed. Paris (France), pp. 119–123. [Google Scholar]
- Afnor. 1981b. NF T 60-233 Préparation des esters méthyliques d’acides gras. In : Afnor, ed. Recueil de normes françaises des corps gras graines oléagineuses produits dérivés, 2nd ed. Paris (France), pp. 73–79. [Google Scholar]
- Afnor. 1981c. NF T 60-220 Détermination de l’indice de peroxyde. In : Afnor, ed. Recueil de normes françaises des corps gras graines oléagineuses produits dérivés, 2nd ed. Paris (France), pp. 126–128. [Google Scholar]
- Alasnier C, Meynier A, Viau M, Gandemer G. 2000. Hydrolytic and oxidative changes in the lipids of chicken breast and thigh muscles during refrigerated storage. J Food Sci 65: 9–14. [Google Scholar]
- Alford JA, Pierce DA. 1961. Lipolytic activity of microorganisms at low and intermediate temperatures. 3. Activity of microbial lipases at temperatures below 0 degree C. J Food Sci 26: 518–524. [Google Scholar]
- Balls AK, Tucker IW. 1938. Activity of lipase at low temperature. Ind Eng Chem 30: 415–16. [Google Scholar]
- Basyuni M, Amri N, Putri L, Arifiyanto D, Syahputra I. 2017. Characteristics of fresh fruit bunch yield and the physicochemical qualities of palm oil during storage in North Sumatra, Indonesia. Indonesian J Chem 17: 182–90. [CrossRef] [Google Scholar]
- Cadena T, Prada F, Perea A, Romero HM. 2013. Lipase activity, mesocarp oil content, and iodine value in oil palm fruits of Elaeis guineensis, Elaeis oleifera, and the interspecific hybrid o × g (E. Oleifera × E. Guineensis). J Sci Food Agric 93: 674–80. [CrossRef] [PubMed] [Google Scholar]
- Cassiday L. 2017. Red palm oil. INFORM Int News Fats Oils Related Mater 28: 6–10. [CrossRef] [Google Scholar]
- Cheyns E, Rafflegeau, S. 2005. Family agriculture and the sustainable development issue: Possible approaches from the African oil palm sector: The example of Ivory Coast and Cameroon. OCL 12: 111–120. [CrossRef] [EDP Sciences] [Google Scholar]
- Cheyns E, Lamine C, Bricas N. 2006. L’huile de palme rouge au Cameroun et en Côte d’Ivoire. Etude de cas. In: Coordination et qualité dans les filières agricoles du sud. Montpellier (France) : Cahier de recherche UMR MOISA, AgroM, CIHEAM-IAMM, CIRAD, INRA, IRD, pp. 69–88. [Google Scholar]
- Choe E, Min DB. 2006 Mechanisms and factors for edible oil oxidation. Compr Rev Food Sci Food Saf 5(4): 169–186. [Google Scholar]
- Chong CL, Sambanthamurthi R. 1993. Effects of mesocarp bruising on the rate of free fatty-acid release in oil palm fruits. Int Biodeterior Biodegr 31: 65–70. [CrossRef] [Google Scholar]
- Cochard B, Adon B, Kouame RK, Durand-Gasselin T, Amblard P. 2001. Advantages of improved commercial palm oil (Elaeis guinensis jacq.) seeds. OCL 8: 654–58. [CrossRef] [EDP Sciences] [Google Scholar]
- Corley RHV, Tinker PBH. 2016. The Oil palm, 5th ed. Wiley-Blackwell. ISBN: 978-1-405-18939-2. https://doi.org/10.1002/9781118953297. [Google Scholar]
- De Leonardis A, Cuomo F, Macciola V, Lopez F. 2016 Influence of free fatty acid content on the oxidative stability of red palm oil. RSC Adv 6(103): 101098–101104. https://doi.org/10.1039/c6ra16953h. [Google Scholar]
- Domonhedo H, Cros D, Nodichao L, Billotte N, Ahanhanzo C. 2018. Reduction of acidity in mature oil palm (Elaeis guineensis jacq.) fruits: Stakes and oil quality improvement. A review. Biotechnol Agron Soc Environ 22: 54–66. [Google Scholar]
- Dong SN, Xia H, Wang F, Sun GJ. 2017. The effect of red palm oil on vitamin A deficiency: a meta-analysis of randomized controlled trials. Nutrients 9: 15. https://doi.org/10.3390/nu9121281. [Google Scholar]
- Eggins HOW, Coursey DG. 1968. Industrial significance of biodeterioration of oilseeds. Int Biodeterior Bull 4: 29–38. [Google Scholar]
- Fogang AR, Kansci G, Viau M, et al. 2017. Lipid and amino acid profiles support the potential of Rhynchophorus phoenicis larvae for human nutrition. J Food Compos Anal 60: 64–73. [CrossRef] [Google Scholar]
- Gee PT. 2007 Analytical characteristic of crude and refined palm oil and fractions. Eur J Lipid Sci Technol 109: 373–379. https://doi.org/10.1002/ejlt.200600264. [Google Scholar]
- Genot C. 2000. Congélation et qualité de la viande. Paris (France) : INRA Ed, 98 p. ISBN: 2-7380-0931-X ; ISSN:1-1150-3912. [Google Scholar]
- Gibon V, De Greyt W, Kellens M. 2007. Palm oil refining. Eur J Lipid Sci Technol 109: 315–35. [Google Scholar]
- Hayes KC, Khosla P. 2007. The complex interplay of palm oil fatty acids on blood lipids. Eur J Lipid Sci Technol 109: 453–64. [Google Scholar]
- Henderson J, Osborne DJ. 1991. Lipase activity in ripening and mature fruit of the oil palm – Stability in vivo and in vitro. Phytochemistry 30: 1073–78. [Google Scholar]
- Hiol A, Jonzo MD, Rugani N, Druet D, Sarda L, Comeau LC. 2000. Purification and characterization of an extracellular lipase from a thermophilic Rhizopus oryzae strain isolated from palm fruit. Enzyme Microb Technol 26: 421–30. [CrossRef] [PubMed] [Google Scholar]
- ISO. 2006. Animal and vegetable fats and oils. Determination of anisidine value. International Standard ISO 6885, 7 p. [Google Scholar]
- Kabri TH, Meynier A, Bontemps D, et al. 2013. Formulation of sub-micron emulsions containing docosahexaenoic acid esterified in triacylglycerols or phospholipids. Eur J Lipid Sci Technol 115: 1294–308. [Google Scholar]
- Kansci G, Genot C, Kamdem AM, et al. 2003. Composition and oxidation level of some vegetable oils consumed in Cameroon, determined by classical and mid infrared spectroscopic methods. Sciences des Aliments 23: 425–41. [Google Scholar]
- Lai O-M, Tan CP, Akoh CC. 2012. Palm oil: Production, processing, characterization, and uses. Urbana, IL: AOCS Press. [Google Scholar]
- Loganathan R, Subramaniam KM, Radhakrishnan AK, Choo YM, Teng KT. 2017. Health-promoting effects of red palm oil: Evidence from animal and human studies. Nutr Rev 75: 98–113. [CrossRef] [PubMed] [Google Scholar]
- May CY, Nesaretnam K. 2014. Research advancements in palm oil nutrition. Eur J Lipid Sci Technol 116: 1301–15. [CrossRef] [PubMed] [Google Scholar]
- Mba ARF, Kansci G, Viau M, et al. 2018. Growing conditions and morphotypes of african palm weevil (Rhynchophorus phoenicis) larvae influence their lipophilic nutrient but not their amino acid compositions. J Food Compos Anal 69: 87–97. [CrossRef] [Google Scholar]
- Mohan TCK, Mohankumar C. 2004. Biochemical changes in the cell wall of oil palm fruit mesocarp (Elaeis guineensis jacq) during development and post-harvest storage. J Food Sci Technol-Mysore 41: 191–93. [Google Scholar]
- Mohankumar C, Arumughan C, Raj RK. 1990. Histological localization of oil palm fruit lipase. J Am Oil Chem Soc 67: 665–69. [Google Scholar]
- Monde AA, Michel F, Carbonneau M-A, et al. 2009 Comparative study of fatty acid composition, vitamin E and carotenoid contents of palm oils from four varieties of oil palm from Côte d’Ivoire. J Sci Food Agric 89: 2535–2540. https://doi.org/10.1002/jsfa.3740. [Google Scholar]
- Montoya C, Cochard B, Flori A, et al. 2014. Genetic architecture of palm oil fatty acid composition in cultivated oil palm (Elaeis guineensis jacq.) compared to its wild relative e. Oleifera (H.B.K.) cortés. Plos One 9(6): 13.e101628. https://doi.org/10.1371/journal.pone.0101628. [Google Scholar]
- Morcillo F, Cros D, Billotte N, et al. 2013. Improving palm oil quality through identification and mapping of the lipase gene causing oil deterioration. Nat Commun 4: 2160. https://doi.org/10.1038/ncomms3160. [CrossRef] [PubMed] [Google Scholar]
- Morrison WR, Smith LM. 1964. Preparation of fatty acid methyl esters and dimethylacetals from lipids with boron fluoride-methanol. J Lipid Res 5: 600–08. [CrossRef] [PubMed] [Google Scholar]
- Ngando Ebongue GF, Dhouib R, Carriere F, Zollo PHA, Arondel V. 2006. Assaying lipase activity from oil palm fruit (Elaeis guineensis jacq.) mesocarp. Plant Physiol Biochem 44: 611–17. [CrossRef] [PubMed] [Google Scholar]
- Ngando Ebongue GF, Koona P, Nouy B, et al. 2008. Identification of oil palm breeding lines producing oils with low acid values. Eur J Lipid Sci Technol 110: 505–09. [Google Scholar]
- Ngando Ebongue GF, Mpondo Mpondo EA, Dikotto Ekwe EL, Koona P. 2011. Assessment of the quality of crude palm oil from smallholders in Cameroon. J Stored Prod Postharv Res 52–58. [Google Scholar]
- Noh A, Rajanaidu N, Kushairi A, et al. 2002. Variability in fatty acid composition, iodine value and carotene content in the MPOB oil palm germplasm collection from Angola. J Oil Palm Res 14: 18–23. [Google Scholar]
- Oguntibeju OO, Esterhuyse AJ, Truter EJ. 2009. Red palm oil: Nutritional, physiological and therapeutic roles in improving human wellbeing and quality of life. Br J Biomed Sci 66: 216–22. [PubMed] [Google Scholar]
- Oil world. 2018. Statistics. Hamburg, G: ISTA Mielke Gmbh. Available from https://www.oilworld.biz/t/publications/data-base (last consult: 2018/06/15). [PubMed] [Google Scholar]
- Olalusi PAP, Oni PIO, Ajewole PO. 2017. Effect of some processing parameters on quality of palm oil. Int J Innov Sci Eng Technol 4: 146–153. ISSN (Online) 2348-7968. [Google Scholar]
- Ordway EM, Naylor RL, Nkongho RN, Lambin EF. 2017. Oil palm expansion in Cameroon: Insights into sustainability opportunities and challenges in Africa. Global Environ Change-Human Policy Dimensions 47: 190–200. [CrossRef] [Google Scholar]
- Ordway EM, Naylor RL, Nkongho RN, Lambin EF. 2019. Oil palm expansion and deforestation in Southwest Cameroon associated with proliferation of informal mills. Nat Commun 10: 114. https://doi.org/10.1038/s41467-018-07915-2. [CrossRef] [PubMed] [Google Scholar]
- Park YW. 1987. Effect of freezing, thawing, drying, and cooking on carotene retention in carrots, broccoli and spinach. J Food Sci 52: 1022–25. [Google Scholar]
- Poku K. 2002. Small-scale palm oil processing in Africa. Roma, I: FAO Agricultural Services Bulletin. [Google Scholar]
- Rafflegeau S, Michel-Dounias I, Tailliez B, Ndigui B, Papy F. 2010. Unexpected N and K nutrition diagnosis in oil palm smallholdings using references of high-yielding industrial plantations. Agron Sustain Develop 30: 777–87. [CrossRef] [EDP Sciences] [Google Scholar]
- Rafflegeau S, Nanda D, Genot C. 2018. Artisanal mills and local production of palm oil by smallholders. In: Rival A, ed. Achieving sustainable cultivation of oil palm. Volume 2: Diseases, pests, quality and sustainability. Cambridge (UK): Burleigh Dodds Science Publ., 29 p. http://dx.doi.org/10.19103/AS.2017.0018.36. [Google Scholar]
- Rébéna A, Rafflegeau S, Kansci G, Nanda D, Genot C. 2019. Enquêtes sur la consommation, la perception et les utilisations de l’huile de palme rouge chez les ménagères et restauratrices de Yaoundé, Cameroun. Cahiers d’Agriculture 28: 27–33. https://doi.org/10.1051/cagri/2019027. [CrossRef] [Google Scholar]
- Ribeiro JAA, Almeida ES, Neto BAD, Abdelnur PV, Monteiro S. 2018. Identification of carotenoid isomers in crude and bleached palm oils by mass spectrometry. LWT – Food Sci Technol 89: 631–637. [CrossRef] [Google Scholar]
- Sambanthamurthi R, Let CC, Cheang OK, Huat YK, Rajan P. 1991. Chilling-induced lipid hydrolysis in the oil palm (Elaeis guineensis) mesocarp. J Experiment Bot 42: 1199–205. [CrossRef] [Google Scholar]
- Schroeder MT, Becker EM, Skibsted LH. 2006. Molecular mechanism of antioxidant synergism of tocotrienols and carotenoids in palm oil. J Agric Food Chem 54: 3445–3453. [CrossRef] [PubMed] [Google Scholar]
- Sisla RV, Erickso MC, Shewfell R. 1997. Quality deterioration in frozen foods associated with hydrolytic enzyme activities. In: Erickson M, Hung Y-C, eds. Quality in frozen food. Dordrecht (Germany): Springer Science & Business Media, pp. 101–110. [Google Scholar]
- Tagoe SMA, Dickinson MJ, Apetorbor M. 2012. Factors influencing quality of palm oil produced at the cottage industry level in Ghana. Int Food Res J 19: 271–78. [Google Scholar]
- Tang MM, Xia QY, Holland BJ, Wang H, Zhang YF, Li R, Cao HX. 2017. Effects of different pretreatments to fresh fruit on chemical and thermal characteristics of crude palm oil. J Food Sci 82: 2857–2863. [CrossRef] [PubMed] [Google Scholar]
- Viau M, Genot C, Ribourg L, Meynier A. 2016. Amounts of the reactive aldehydes, malonaldehyde, 4-hydroxy-2-hexenal, and 4-hydroxy-2-nonenal in fresh and oxidized edible oils do not necessary reflect their peroxide and anisidine values. Eur J Lipid Sci Technol 118: 435–444. https://doi.org/10.1002/ejlt.201500103. [Google Scholar]
- Waraho T, McClements DJ, Decker EA. 2011 Impact of free fatty acid concentration and structure on lipid oxidation in oil-in-water emulsions. Food Chem 129: 854–859. [PubMed] [Google Scholar]
- Zou Y, Jiang Y, Yang T, Hu P, Xu X. 2012. Minor constituents of palm oil: characterization, processing, and application. In: Lai O-M, Tan C-P, Akoh CC, eds. Palm Oil production, processing characterization, and uses. Urbana, IL (USA): AOCS Press, Chap. 16, pp. 471–526. [Google Scholar]
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