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Apple Cultivation in Nontraditional Areas: Novel Perspectives and Advances A review

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11 dic 2024
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Abdel-Sattar M., Kotb H.R.M. 2021. Nutritional status and productivity of Anna apple trees in the year following autumn irrigation determent. Agricultural Water Management 252(10); 106882. DOI: 10.1016/j.agwat.2021.106882. Search in Google Scholar

Abo Ogiela H.M., El-Shoraky F.S. 2020. Efficacy of some chemical structure of pesticides on yield, fruit quality and infection with some diseases of “Anna” apple trees. Journal of Plant Production 11(4): 369–376. DOI: 10.21608/jpp.2020.95640. Search in Google Scholar

Admasu S., Desta H., Yeshitela K., Argaw M. 2022. Analysis of land suitability for apple-based agroforestry farming in Dire and Legedadi watersheds of Ethiopia: Implication for ecosystem services. Heliyon 8(11); e11217; 9 p. DOI: 10.1016/j.heliyon.2022.e11217. Search in Google Scholar

Ahmed Z.F.R., Kaur N., Maqsood S., Schmeda-Hirsch-mann G. 2022. Preharvest applications of chitosan, salicylic acid, and calcium chloride have a synergistic effect on quality and storability of date palm fruit (Phoenix dactylifera L.). HortScience 57(3): 422–430. DOI: 10.21273/hortsci16416-21. Search in Google Scholar

Aly M.A., Ezz T.M., Harhash M.M., Abd El-Megeed N.A., El-Demerdash H.E. 2018. Fruit yield, quality and shelf life of “Anna” apple trees as affected by soil mulching and foliar application of natural materials. Journal of the Advances in Agricultural Researches 23(3): 466–483. Search in Google Scholar

Amra H., Mohemad T.A., Tolba K.H. 2009. Patulin in apple fruits: I. Survey of patulin in different Egyptian apple varieties. Journal of Food and Dairy Sciences 34(6): 6359–6364. DOI: 10.21608/jfds.2009.115313. Search in Google Scholar

Andersen P.C., Shahid M.A., Folta K. 2022. Low-chill apple cultivars for north Florida and north central Florida. UF/IFAS Extension, University of Florida, USA, 9 p. DOI: 10.32473/edis-mg368-2022. Search in Google Scholar

Anonymous 2018. Horticultural Statistics at a Glance 2018. https://agriwelfare.gov.in/Documents/Horticulture%20Statistics%20at%20a%20Glance-2018.pdf [accessed 18.10.2022] Search in Google Scholar

Anonymous 2022. High Density Apple Plantation. Package of Practices. https://hds.hp.gov.in/UploadedImages/TenderDocument/20240514English.pdf [accessed 18.10.2022] Search in Google Scholar

Antal G., Szabó S., Szarvas P., Holb I.J. 2024. Yield and cost–benefit analyses for apple scab sanitation practices in integrated and organic apple management systems. Plants, People, Planet 6(2): 470–489. DOI: 10.1002/ppp3.10460. Search in Google Scholar

Argenta L.C., do Amarante C.V.T., de Freitas S.T., Brancher T.L., Nesi C.N., Mattheis J.P. 2022. Fruit quality of ‘Gala’ and ‘Fuji’ apples cultivated under different environmental conditions. Scientia Horticulturae 303; 111195; 11 p. DOI: 10.1016/j.scienta.2022.111195. Search in Google Scholar

Bederski K.A. 1988. Apple growing in the coastal areas of Peru. Acta Horticulturae 232: 51–55. DOI: 10.17660/actahortic.1988.232.5. Search in Google Scholar

Bekele-Tesemma A. 2007. Useful Trees and Shrubs for Ethiopia: Identification, Propagation and Management for 17 Agroclimatic Zones. RELMA, ICRAF, Kenya, 552 p. Search in Google Scholar

Bensaci O.A., Aliat T., Berdja R., Popkova A.V., Kucher D.E., Gurina R.R., Rebouh N.Y. 2022. The use of mycoendophyte-based bioformulations to control apple diseases: Toward an organic apple production system in the Aurès (Algeria). Plants 11(23); 3405; 12 p. DOI: 10.3390/plants11233405. Search in Google Scholar

Biasi F., Astegiano M., Maina M., Leonarduzzi G., Poli G. 2011. Polyphenol supplementation as a complementary medicinal approach to treating inflammatory bowel disease. Current Medicinal Chemistry 18(31): 4851–4865. DOI: 10.2174/092986711797535263. Search in Google Scholar

Botero Garcés N., Morales Soto G. 2000. Apple (Malus sp. cv Anna) yield improvement with honey bees, Apis mellifera L. (Hymenoptera: Apidae) in Western Antioquia, Colombia. Revista Facultad Nacional de Agronomía Medellín 53(1): 849–862. [in Spanish with English abstract] Search in Google Scholar

Bramlage W.J., Drake M., Lord W.J. 1980. The influence of mineral nutrition on the quality and storage performance of pome fruits grown in North America. Acta Horticulturae 92: 29–40. DOI: 10.17660/actahortic.1980.92.4. Search in Google Scholar

Casierra-Posada F. 2012. Manzano y peral (Malus domestica Borkh. y Pyrus communis L.). In: Fischer G. (Ed.), Manual para el cultivo de frutales en el trópico. Produmedios, pp. 657–681. [in Spanish] Search in Google Scholar

Castro D.C., Álvarez N., Gabriel P., Micheloud N., Buyatti M., Gariglio N. 2015. Crop loading studies on ‘Caricia’ and ‘Eva’ apples grown in a mild winter area. Scientia Agricola 72(3): 237–244. DOI: 10.1590/0103-9016-2014-0267. Search in Google Scholar

Castro D.C., Cerino M.C., Gariglio N., Radice S. 2016. Study of reproductive behaviour in low-chill apples in warmer zones of Argentina. Scientia Horticulturae 199: 124–132. DOI: 10.1016/j.scienta.2015.12.018. Search in Google Scholar

Chitkara D., Nikalaje S.K., Mittal A., Chand M., Kumar N. 2012. Development of quercetin nanoformulation and in vivo evaluation using streptozotocin induced diabetic rat model. Drug Delivery and Translational Research 2: 112–123. DOI: 10.1007/s13346-012-0063-5. Search in Google Scholar

Cripps J.E.L., Richards L.A., Mairata A.M. 1993. ‘Pink Lady’ apple. HortScience 28(10): 1057. DOI: 10.21273/hortsci.28.10.1057. Search in Google Scholar

Denardi F., Kvitschal M.V., Argenta L.C., Couto M., Araújo L. 2023. SCS443 Isadora: late ripening apple cultivar with very high fruit storage ability. Re-vista Brasileira de Fruticultura 45; e-161; 12 p. DOI: 10.1590/0100-29452023161. Search in Google Scholar

Dennis F.G. Jr. 1979. Factors affecting yield in apple, with emphasis on ‘Delicious’. Horticultural Reviews 1: 395–422. DOI: 10.1002/9781118060742.ch10. Search in Google Scholar

Dennis F. Jr. 2003. Flowering, pollination and fruit set and development. In: Ferree D.C., Warrington I.J. (Eds.), Apples: Botany, production and uses. CABI, pp. 153–166. DOI: 10.1079/9780851995922.0153. Search in Google Scholar

Díaz M.D. 1993. Calidad de fruto, indices de corte y manejo de postcosecha de la manzana. I Simposio Internacional Sobre el Manzano. Colombia, pp. 130–136. [in Spanish] Search in Google Scholar

Ehrenkranz J.R.L., Lewis N.G., Kahn C.R., Roth J. 2005. Phlorizin: a review. Diabetes/Metabolism Research and Reviews 21(1): 31–38. DOI: 10.1002/dmrr.532. Search in Google Scholar

El-Agamy S.Z., Mohamed A.K.A., Mostafa F.M.A., Abdallah A.Y. 2001a. Chilling and heat requirements for budbreak and fruiting of “Anna” and “Dorsett Golden” apple cultivars under warm climatic conditions. Acta Horticulturae 565: 103–108. DOI: 10.17660/actahortic.2001.565.16. Search in Google Scholar

El-Agamy S.Z., Mohamed A.K.A., Mostafa F.M.A., Abdallah A.Y. 2001b. Effect of GA3, hydrogen cyanamid and decapitation on budbreak and flowering of two apple cultivars under the warm climate of Southern Egypt. Acta Horticulturae 565: 109–114. DOI: 10.17660/actahortic.2001.565.17. Search in Google Scholar

El-Yazal M.A.S., Rady M.M. 2012. Changes in nitrogen and polyamines during breaking bud dormancy in “Anna” apple trees with foliar application of some compounds. Scientia Horticulturae 136: 75–80. DOI: 10.1016/j.scienta.2012.01.001. Search in Google Scholar

Erez A. 2000. Bud dormancy; phenomenon, problems and solutions in the tropics and subtropics. In: Erez A. (Eds.), Temperate fruit crops in warm climates. Springer, pp. 17–48. DOI: 10.1007/978-94-017-3215-4_2. Search in Google Scholar

FAO 2020. Statistical Database. FAOSTAT, Food and Agricultural Organization of the United Nations. https://www.fao.org/faostat/en/#data Search in Google Scholar

Fernandez L.N., Alaniz S., Derita M.G., Lutz A., Gariglio N.F., Mondino P.E., Favaro M.A. 2022. Characterization of Colletotrichum siamense the causal agent of bitter rot and leaf spot in low-chill apple cultivars in central Argentina. International Journal of Pest Management 68(4): 295–310. DOI: 10.1080/09670874.2022.2116659. Search in Google Scholar

Ferretti G., Turco I., Bacchetti T. 2014. Apple as a source of dietary phytonutrients: Bioavailability and evidence of protective effects against human cardiovascular disease. Food and Nutrition Sciences 5(13): 1234–1246. DOI: 10.4236/fns.2014.513134. Search in Google Scholar

Finetto G.A., Ward H. 1990. Apples and peaches in the highlands of the Yemen Arab Republic. Acta Horticulturae 279: 109–124. DOI: 10.17660/acta-hortic.1990.279.14. Search in Google Scholar

Foster T.M., McAtee P.A., Waite C.N., Boldingh H.L., McGhie T.K. 2017. Apple dwarfing rootstocks exhibit an imbalance in carbohydrate allocation and reduced cell growth and metabolism. Horticulture Research 4; 17009; 13 p. DOI: 10.1038/hortres.2017.9. Search in Google Scholar

Fotirić Akšić M., Mutić J., Tešić Ž., Meland M. 2020. Evaluation of fruit mineral contents of two apple cultivars grown in organic and integrated production systems. Acta Horticulturae 1281: 59–66. DOI: 10.17660/actahortic.2020.1281.10. Search in Google Scholar

Fotirić Akšić M., Dabić Zagorac D., Gašić U., Tosti T., Natić M., Meland M. 2022. Analysis of apple fruit (Malus × domestica Borkh.) quality attributes obtained from organic and integrated production systems. Sustainability 14(9); 5300; 17 p. DOI: 10.3390/su14095300. Search in Google Scholar

Funke K., Blanke M. 2021. Spatial and temporal enhancement of colour development in apples subjected to reflective material in the southern hemisphere. Horticulturae 7(1); 2; 16 p. DOI: 10.3390/horticulturae7010002. Search in Google Scholar

Golian J., Anyszka Z., Kwiatkowska J. 2023. Multifunctional living mulches for weeds control in organic apple orchards. Acta Scientiarum Polonorum, Hortorum Cultus 22(2): 73–84. DOI: 10.24326/asphc.2023.4473. Search in Google Scholar

Gonzalez L., Torres E., Àvila G., Bonany J., Alegre S., Carbó J. et al. 2020. Evaluation of chemical fruit thinning efficiency using Brevis® (metamitron) on apple trees (‘Gala’) under Spanish conditions. Scientia Horticulturae 261; 109003; 8 p. DOI: 10.1016/j.scienta.2019.109003. Search in Google Scholar

Guadie D., Bekele T., Disasa T., Feyissa T. 2016. Micro-propagation of two varieties of apple (Malus domestica Borkh) using shoot explants. SINET – Ethiopian Journal of Science 39(2): 76–85. Search in Google Scholar

Guerra M., Sanz M.Á., Rodríguez-González Á., Casquero P.A. 2021. Summer pruning, an eco-friendly approach to controlling bitter pit and preserving sensory quality in highly vigorous apple cv. ‘Reinette du Canada’. Agriculture 11(11); 1081; 11 p. DOI: 10.3390/agriculture11111081. Search in Google Scholar

Guevara H. 1992. Comparative study of natural and artificial pollination of apple cv. ‘Anna’ in a high region of Costa Rica. Acta Horticulturae 310: 127–134. DOI: 10.17660/actahortic.1992.310.16. Search in Google Scholar

Gustavsson J., Cederberg C., Sonesson U., van Otterdijk R., Meybeck A. 2011. Global Food Losses and Food Waste: Extent, Causes and Prevention. FAO, Italy. Search in Google Scholar

Hatton R.G. 1917. Paradise apple stocks. Journal of the Royal Horticultural Society 42(2–3): 361–399. Search in Google Scholar

Hauagge R. 2010. ‘IPR Julieta’, a new early low chill requirement apple cultivar. Acta Horticulturae 872: 193–196. DOI: 10.17660/actahortic.2010.872.25. Search in Google Scholar

Hauagge R., Cummins J.N. 1991. Genetics of length of dormancy period in Malus vegetative buds. Journal of the American Society for Horticultural Science 116(1): 121–126. DOI: 10.21273/jashs.116.1.121. Search in Google Scholar

Hauagge R., Cummins J.N. 2000. Pome fruit genetic pool for production in warm climates. In: Erez A. (Eds.), Temperate fruit crops in warm climates. Springer, pp. 267–303. DOI: 10.1007/978-94-017-3215-4_10. Search in Google Scholar

Hawerroth F.J., Herter F.G., Petri J.L., Marafon A.C., Leonetti J.F. 2013. Evaluation of winter temperatures on apple budbreak using grafted twigs. Revista Brasileira de Fruticultura 35(): 713–721. DOI: 10.1590/s0100-294520130003030007. Search in Google Scholar

Hyson D.A. 2011. A comprehensive review of apples and apple components and their relationship to human health. Advances in Nutrition 2(5): 408–420. DOI: 10.3945/an.111.000513. Search in Google Scholar

IPCC 2014. Climate Change 2014. Synthesis Report. Switzerland, 151 p. DOI: 10.48350/71642. Search in Google Scholar

Jung S.-K., Choi H.-S. 2010. Light penetration, growth, and fruit productivity in ‘Fuji’ apple trees trained to four growing systems. Scientia Horticulturae 125(4): 672–678. DOI: 10.1016/j.scienta.2010.05.027. Search in Google Scholar

Kaufmann H., Blanke M.M. 2019. Chilling requirements of Mediterranean fruit crops in a changing climate. Acta Horticulturae 1242: 275–280. DOI: 10.17660/actahortic.2019.1242.38. Search in Google Scholar

Khadiri M., Boubaker H., Laasli S.-E., Farhaoui A., Ezrari S., Radouane N. et al. 2024. Unlocking nature’s secrets: Molecular insights into postharvest pathogens impacting Moroccan apples and innovations in the assessment of storage conditions. Plants 13(4); 553; 20 p. DOI: 10.3390/plants13040553. Search in Google Scholar

Khan M.M., Ahmad A., Ishrat T., Khuwaja G., Srivastawa P., Khan M.B. et al. 2009. Rutin protects the neural damage induced by transient focal ischemia in rats. Brain Research 1292: 123–135. DOI: 10.1016/j.brainres.2009.07.026. Search in Google Scholar

Klein J.D., Lurie S. 1990. Prestorage heat treatment as a means of improving poststorage quality of apples. Journal of the American Society for Horticultural Science 115(2): 265–269. DOI: 10.21273/jashs.115.2.265. Search in Google Scholar

Kraus E.J., Ralston G.S. 1916. The pollination of the pomaceous fruits. III. Gross vascular anatomy of the apple. Oregon Agricultural College, Experiment Station, Division of Horticulture. Station bulletin 138. Search in Google Scholar

Labuschagné I.F., Louw J.H., Schmidt K., Sadie A. 2002. Genetic variation in chilling requirement in apple progeny. Journal of the American Society for Horticultural Science 127(4): 663–672. DOI: 10.21273/jashs.127.4.663. Search in Google Scholar

Legave J.-M., Guédon Y., Malagi G., El Yaacoubi A., Bonhomme M. 2015. Differentiated responses of apple tree floral phenology to global warming in contrasting climatic regions. Frontiers in Plant Science 6; 1054; 13 p. DOI: 10.3389/fpls.2015.01054. Search in Google Scholar

Lin J.-P., Yang J.-S., Lin J.-J., Lai K.-C., Lu H.-F., Ma C.-Y. et al. 2012. Rutin inhibits human leukemia tumor growth in a murine xenograft model in vivo. Environmental Toxicology 27(8): 480–484. DOI: 10.1002/tox.20662. Search in Google Scholar

Marchioretto L. De R., De Rossi A., Michelon M.F., Orlandi J.C., do Amaral L.O. 2018. Ammonium thiosulfate as blossom thinner in ‘Maxi Gala’ apple trees. Pesquisa Agropecuária Brasileira 53(10): 1132–1139. DOI: 10.1590/s0100-204x2018001000006. Search in Google Scholar

Mditshwa A., Fawole O.A., Vries F., Van Der Merwe K., Crouch E., Opara U.L. 2016. Classification of ‘Granny Smith’ apples with different levels of superficial scald severity based on targeted metabolites and discriminant analysis. Journal of Applied Botany and Food Quality 89: 49–55. DOI: 10.5073/jabfq.2016.089.006. Search in Google Scholar

Miller E.P., Baker L.H. 1982. An evaluation of apple cultivars for central and north Florida. Proceedings of the Florida State Horticultural Society 95: 88–90. Search in Google Scholar

Miller E.P., Sherman W.B. 1980. Origin and description of ‘Dorsett Golden’ apple. Proceedings of the Florida State Horticultural Society 93: 108–109. Search in Google Scholar

Mitropoulos D., Lambrinos G. 2000. Dehydration of “Delicious Pilafa” and Granny Smith apple during storage. Proceedings of the Second Agricultural Engineering National Congress 1: 433–440. Search in Google Scholar

Mohamed A.K.A. 2008. The effect of chilling, defoliation and hydrogen cyanamide on dormancy release, bud break and fruiting of Anna apple cultivar. Scientia Horticulturae 118(1): 25–32. DOI: 10.1016/j.scienta.2008.05.015. Search in Google Scholar

Moretti A., Sarrocco S. 2016. Fungi. In: Caballero B., Finglas P.M., Toldrá F. (Eds.), Encyclopedia of Food and Health. Academic Press, pp. 162–168. DOI: 10.1016/b978-0-12-384947-2.00341-x. Search in Google Scholar

Moser M., Asquini E., Miolli G.V., Weigl K., Hanke M.-V., Flachowsky H., Si-Ammour A. 2020. The MADS-box gene MdDAM1 controls growth cessation and bud dormancy in apple. Frontiers in Plant Science 11; 1003; 13 p. DOI: 10.3389/fpls.2020.01003. Search in Google Scholar

Nagy N.M.N. 2018. Prolonging storage and shelf life of “Anna” apple fruits by using chitosan and some natural antioxcidants. Zagazig Journal of Agricultural Research 45(6): 1963–1988. DOI: 10.21608/zjar.2018.47737. Search in Google Scholar

Nautiyal P., Bhaskar R., Papnai G., Joshi N., Supyal V. 2020. Impact of climate change on apple phenology and adaptability of Anna variety (low chilling cultivar) in lower hills of Uttarakhand. International Journal of Current Microbiology and Applied Sciences 9(9): 453–460. DOI: 10.20546/ijcmas.2020.909.057. Search in Google Scholar

Navarro M., Moreira I., Arnaez E., Quesada S., Azofeifa G., Vargas F. et al. 2018. Polyphenolic characterization and antioxidant activity of Malus domestica and Prunus domestica cultivars from Costa Rica. Foods 7(2); 15; 19 p. DOI: 10.3390/foods7020015. Search in Google Scholar

Neilsen D., Neilsen G.H., Hall J.W. 2000. Fruit mineral concentration and quality of ‘Gala’ apples as affected by rate and timing of fertigated N. Acta Horticulturae 512: 159–168. DOI: 10.17660/actahortic.2000.512.16. Search in Google Scholar

Nieoczym D., Socała K., Raszewski G., Wlaź P. 2014. Effect of quercetin and rutin in some acute seizure models in mice. Progress in Neuro-Psychopharmacology and Biological Psychiatry 54: 50–58. DOI: 10.1016/j.pnpbp.2014.05.007. Search in Google Scholar

Paul V., Pandey R. 2014. Role of internal atmosphere on fruit ripening and storability – a review. Journal of Food Science and Technology 51(7): 1223–1250. DOI: 10.1007/s13197-011-0583-x. Search in Google Scholar

Pesis E., Feygenberg O., Sabban-Amin R., Ebeler S.E., Mitcham E.J., Ben-Arie R. 2014. Low oxygen pre-storage treatment is effective in reducing chilling injuries of deciduous fruit. International Journal of Postharvest Technology and Innovation 4(1): 23–32. DOI: 10.1504/ijpti.2014.064139. Search in Google Scholar

Petri J.L. 1993. Fisiología pre y postcosecha del manzano. I Simposio Internacional Sobre el Manzano. Colombia, pp. 114–124. [in Spanish] Search in Google Scholar

Petri J.L., Hawerroth F.J., Fazio G., Francescatto P., Leite G.B. 2019. Advances in fruit crop propagation in Brazil and worldwide – apple trees. Revista Brasileira de Fruticultura 41(3); e-004; 14 p. DOI: 10.1590/0100-29452019004. Search in Google Scholar

Petri J.L., Stuker H. 1988. Effect of temperature and length of cold storage of nursery plants on the subsequent development of young apple trees. Acta Horticulturae 232: 119–126. DOI: 10.17660/actahortic.1988.232.17. Search in Google Scholar

Ping MH. 2020. Hyperin controls the development and therapy of gastric cancer via regulating Wnt/β-catenin signaling. Cancer Management and Research 12: 11773–11782. DOI: 10.2147/cmar.s270544. Search in Google Scholar

Pommer C.V., Barbosa W. 2009. The impact of breeding on fruit production in warm climates of Brazil. Re-vista Brasileira de Fruticultura 31(2): 612–634. DOI: 10.1590/s0100-29452009000200043. Search in Google Scholar

Populin F., Vittani L., Zanella, A., Stuerz S., Folie I., Khomenko I. et al. 2023. Transcriptome and metabolic survey disclose the mode of action of static and dynamic low oxygen postharvest storage strategies to prevent the onset of superficial scald disorder in fruit of ‘Granny Smith’ apple cultivar. Post-harvest Biology and Technology 205(8); 112492; 13 p. DOI: 10.1016/j.postharvbio.2023.112492. Search in Google Scholar

Prabhakar P., Ahmed A.B.A., Chidambaram S.B. 2020. The role of phloridzin and its possible potential therapeutic effect on Parkinson’s disease. International Journal of Nutrition, Pharmacology, Neurological Diseases 10(2): 69–74. DOI: 10.4103/ijnpnd.ijnpnd_80_19. Search in Google Scholar

Pramanick K.K., Shukla A.K., Watpade S., Kumar J. 2017. Rootstocks and their exploitation in improving productivity and quality of apple crops. International Journal of Tropical Agriculture 35(3): 721–729. Search in Google Scholar

Raj Y., Kumar A., Das S., Srivatsan V., Kumar D., Kumar R. 2021. A comparative analysis of compositional and phytochemical attributes in fruits of low chilling apple varieties cultivated in the eastern and western Himalaya. Scientia Horticulturae 286; 110221; 11 p. DOI: 10.1016/j.scienta.2021.110221. Search in Google Scholar

Ramírez F., Davenport T.L. 2013. Apple pollination: a review. Scientia Horticulturae 162: 188–203. DOI: 10.1016/j.scienta.2013.08.007. Search in Google Scholar

Rani A., Lohan S., Srivastava A., Kaushik N.K., Noorani Md.S., Walia Y., Dhir S. 2022. First report of Apple stem grooving virus and Apple scar skin viroid infecting low‐chilling apple varieties in India. New Disease Reports 45(2); e12077; 4 p. DOI: 10.1002/ndr2.12077. Search in Google Scholar

Rieger M. 2006. Introduction to Fruit Crops, 1st ed. CRC Press, USA, 520 p. DOI: 10.1201/9780367807801. Search in Google Scholar

Rodríguez-Arzuaga M., Ríos G., Piagentini A.M. 2019. Mild heat treatments before minimal processing reduce browning susceptibility and increase total phenolic content of low‐chill apple cultivars. Journal of Food Processing and Preservation 43(11); e14209; 10 p. DOI: 10.1111/jfpp.14209. Search in Google Scholar

Sadamori S., Murakami H., Suzuki H., Ishizuka S. 1955. New breeding hybrids of apple. Bulletin of the Tohoku National Agricultural Experiment Station 4: 125–128. [in Japanese with English abstract] Search in Google Scholar

Salehi B., Machin L., Monzote L., Sharifi-Rad J., Ezzat S.M., Salem M.A. et al. 2020. Therapeutic potential of quercetin: New insights and perspectives for human health. ACS Omega 5(20): 11849–11872. DOI: 10.1021/acsomega.0c01818. Search in Google Scholar

Santana-Gálvez J., Cisneros-Zevallos L., Jacobo-Velázquez D.A. 2017. Chlorogenic acid: Recent advances on its dual role as a food additive and a nutraceutical against metabolic syndrome. Molecules 22(3); 358; 21 p. DOI: 10.3390/molecules22030358. Search in Google Scholar

Sarkhosh A., Crocker T.E., Sherman W.B., Williamson J.G., Popenoe J. 2019. The apple (Malus domestica, Rosaceae). Publication HS14, UF/IFAS Extension, University of Florida, USA, 4 p. DOI: 10.32473/edis-mg073-2019. Search in Google Scholar

Schwarz H. 1994. Propagación – especies y variedades. In: Sarmiento A.S., Naranjo C.O. (Eds.), Frutales caducifolios: manzana, peral, durazno, ciruelo. ICA, Colombia, pp. 41–54. [in Spanish] Search in Google Scholar

Sharma G., Chua G.D., Sharma O.C. 2004. Studies on evaluation and variability parameters in low chilling apples (Malus × domestica Borkh.). Acta Horticulturae 662: 157–162. DOI: 10.17660/actahortic.2004.662.19. Search in Google Scholar

Siboza X.I., Kotze W.P., Cook N.C., Steyn W.J. 2020. Evaluation of apple rootstocks planted in different locations in South Africa. Acta Horticulturae 1281: 145–152. DOI: 10.17660/actahortic.2020.1281.21. Search in Google Scholar

Stander J.H., Muller M., Joubert E., Labuschagné I.F., De Beer D. 2021. Potential of low-chill requiring and pink-fleshed apple cultivars for cloudy juice production. Journal of Food Composition and Analysis 103; 104089. DOI: 10.1016/j.jfca.2021.104089. Search in Google Scholar

Sun L., Sun J., Thavaraj P., Yang X., Guo Y. 2017. Effects of thinned young apple polyphenols on the quality of grass carp (Ctenopharyngodon idellus) surimi during cold storage. Food Chemistry 224: 372–381. DOI: 10.1016/j.foodchem.2016.12.097. Search in Google Scholar

Tanaka F., Hayakawa F., Tatsuki M. 2020. Flavor and texture characteristics of ‘Fuji’ and related apple (Malus domestica L.) cultivars, focusing on the rich watercore. Molecules 25(5); 1114; 13 p. DOI: 10.3390/molecules25051114. Search in Google Scholar

Vero S., Garmendia G., González M.B., Bentancur O., Wisniewski M. 2013. Evaluation of yeasts obtained from Antarctic soil samples as biocontrol agents for the management of postharvest diseases of apple (Malus× domestica). FEMS Yeast Research 13(2): 189–199. DOI: 10.1111/1567-1364.12021. Search in Google Scholar

Vittani L., Populin F., Stuerz S., Buehlmann A., Khomenko I., Biasioli F. et al. 2023. Comparative transcriptome and metabolite survey reveal key pathways involved in the control of the chilling injury disorder superficial scald in two apple cultivars, ‘Granny Smith’ and ‘Ladina’. Frontiers in Plant Science 14; 1150046; 19 p. DOI: 10.3389/fpls.2023.1150046. Search in Google Scholar

Wagner M.R., Atuahene S.K.N., Cobbinah J.R. 1991. Defoliating insects. Forest entomology in West Tropical Africa: Forest insects of Ghana. Entomologica 47: 23–43. DOI: 10.1007/978-94-015-7936-0_2. Search in Google Scholar

Walia Y., Dhir S., Zaidi A.A., Hallan V. 2015. Apple scar skin viroid naked RNA is actively transmitted by the white-fly Trialeurodes vaporariorum. RNA Biology 12(10): 1131–1138. DOI: 10.1080/15476286.2015.1086863. Search in Google Scholar

Wang S.Y., Faust M. 1994. Changes in the antioxidant system associated with budbreak in ‘Anna’ apple (Malus domestica Borkh.) buds. Journal of the American Society for Horticultural Science 119(4): 735–741. DOI: 10.21273/jashs.119.4.735. Search in Google Scholar

Westwood M.N. 1993. Temperate-zone pomology: physiology and culture, 3rd ed. Timber Press, USA, 523 p. Search in Google Scholar

Wicklund T., Guyot S., Le Quéré, J.-M. 2021. Chemical composition of apples cultivated in Norway. Crops 1(1): 8–19. DOI: 10.3390/crops1010003. Search in Google Scholar

Williams J., Day K.J., Isbell R.F., Reddy S.J. 1985. Soils and climate. In: Muchow R.C. (Ed.), Agro-research for the Semi-Arid Tropics: North-West Australia. University of Queensland Press, Brisbane, Australia, pp. 31–92. Search in Google Scholar

Xing Y.-W., Lei G.-T., Wu Q.-H., Jiang Y., Huang M.-X. 2019. Procyanidin B2 protects against diet-induced obesity and non-alcoholic fatty liver disease via the modulation of the gut microbiota in rabbits. World Journal of Gastroenterology 25(8): 955–966. DOI: 10.3748/wjg.v25.i8.955. Search in Google Scholar

Yirgu A., Gezahgne A., Alemu T., Havenga M., Mostert L. 2021. First report of Didymosphaeria rubi-ulmifolii associated with canker and dieback of apple trees in southern Ethiopia. Phytopathologia Mediterranea 60(2): 229–236. DOI: 10.36253/phyto-12400. Search in Google Scholar

Yuan R. 2007. Effects of temperature on fruit thinning with ethephon in ‘Golden Delicious’ apples. Scientia Horticulturae 113(1): 8–12. DOI: 10.1016/j.scienta.2007.01.005. Search in Google Scholar

Lingua:
Inglese
Frequenza di pubblicazione:
2 volte all'anno
Argomenti della rivista:
Scienze biologiche, Biotecnologia, Botanica, Ecologia, Scienze della vita, altro