Citrus crop performance and fruit quality in response to different scion-rootstock combinations

  • Rafaelly C. MARTINS São Paulo State University (UNESP), College of Agriculture Sciences (FCA), Dept. of Horticulture. Av. Universitária 3780, Botucatu, SP, 18610-034 Brazil. https://orcid.org/0000-0002-6179-5404
  • Sarita LEONEL São Paulo State University (UNESP), College of Agriculture Sciences (FCA), Dept. of Horticulture. Av. Universitária 3780, Botucatu, SP, 18610-034 Brazil. https://orcid.org/0000-0003-2258-1355
  • Jackson M. A. SOUZA Viçosa Federal University (UFV), Dept. of Agronomy. Av. Peter Henry Rolfs s/n, Viçosa, MG, 36570-900 Brazil https://orcid.org/0000-0003-2350-7114
  • Magali LEONEL São Paulo State University (UNESP), Tropical Root and Starches Center. Av. Universitária 3780, Botucatu, SP, 18610-034 Brazil https://orcid.org/0000-0001-7896-2398
  • Fernando F. PUTTI São Paulo State University (UNESP), School of Sciences and Engineering. Rua Domingos da Costa Lopes 780. Tupã, SP, 17602-496 Brazil https://orcid.org/0000-0002-0555-9271
  • Patrícia G. U. ZÜGE São Paulo State University (UNESP), College of Agriculture Sciences (FCA), Dept. of Horticulture. Av. Universitária 3780, Botucatu, SP, 18610-034 Brazil https://orcid.org/0000-0002-3607-1447
  • Rafael B. FERREIRA São Paulo State University (UNESP), College of Agriculture Sciences (FCA), Dept. of Horticulture. Av. Universitária 3780, Botucatu, SP, 18610-034 Brazil https://orcid.org/0000-0003-2749-1797
  • Marcelo S. SILVA Faculty of Higher Education and Integral Training (FAEF), Rodovia Comandante João Ribeiro de Barros Km 420, Garça, SP, 17400-000 Brazi https://orcid.org/0000-0003-2607-1838
  • Jaime DUARTE FILHO Regional Development Coordination, Dept. of Agriculture and Supply, Rua Ranimiro Lotufo 202. Botucatu, SP, 18607-050 Brazil. https://orcid.org/0000-0002-0613-7564
Keywords: orange, degree-days, drought tolerance, phenology, ascorbic acid

Abstract

Aim of study: To address diversification of citrus cultivars to increase the variety and profitability of orchards to adapt them to environmental changes.

Area of study: State of São Paulo, a subtropical region of southeastern Brazil.

Material and methods: The study evaluated the phenological intervals, thermal sum, vegetative and productive performance, and fruit quality of the sweet orange cultivars ‘Rubi’ (R), ‘Lue Gin Gong’ (LGG) and ‘Valencia Delta Seedless’ (VDS) grafted onto 'Rangpur' lime (RL) and 'Swingle' citrumelo (SC). The field experiment was conducted over consecutive growing seasons 2018-2021.

Main results: The duration of the phenological intervals was little influenced by the rootstocks. The harvest time was approximately 245 days after anthesis (DAA) for R, 402 DAA for LGG, and 407 DAA for VDS, regardless of rootstock. Scion cultivars grafted onto RL showed larger canopy volumes and greater weight, length, and diameter of fruits than those of SC trees, and the combinations with SC were more productively efficient than RL due to lower canopy volume. The R scion cultivar presented superior yield performance and fruit colouration than LGG and VDS. The physicochemical quality of the fruits showed improved results with the combinations of LGG/RL, LGG/SC, VDS/RL, and VDS/SC.

Research highlights: These results may be useful when planning the diversification of scion/rootstock combinations for new orchards, identifying dual-market orange cultivars for industrial processing and natural consumption, and determining the combinations that are better adapted to undesirable climatic conditions.

Downloads

Download data is not yet available.

References

Agusti M, Zaragoza S, Bleiholder H, Buhr L, Hack H, Lose R, Staub R, 1995. Escala BBCH para la descripición de los estádios fenológicos del desarollo de los agrios (Gén. Citrus). Levante Agrícola 3: 189-199.

Anjum MA, Akram H, Zaidi M, Ali S, 2020. Effect of gum arabic and Aloe vera gel based edible coatings in combination with plant extracts on postharvest quality and storability of 'Gola' guava fruits. Sci Hortic 271: 109506. https://doi.org/10.1016/j.scienta.2020.109506

AOAC, 2019. Official methods of analysis. Method Nº. 967.21. Association of Official Analytical Chemists, Washington, 21st ed. https://www.aoac.org/official-methods-of-analysis-21st-edition-2019/

Arenas-Arenas FJ, González-Chimeno AB, Romero-Rodríguez E, Casado G, Bordas M, Torrents J, Hervalejo A, 2016. Adaptation of two citrus cultivars grafted on Forner Alcaide Nº 517 to super high-density system and evaluation of mechanized harvesting. Citrus R&T 37(2): 122-131. https://doi.org/10.4322/crt.ICC021

Bacar EL, Neves CSVJ, Leite Junior RP, Yada IFU, Tazima ZH, 2017. 'Jaffa' sweet orange plants grafted onto five rootstocks. Rev Bras Frutic 39(5): 1-9. https://doi.org/10.1590/0100-29452017200

Balfagón D, Rambla JL, Granell A, Arbona V, Gómez-Cadenas A, 2022. Grafting improves tolerance to combined drought and heat stresses by modifying metabolism in citrus scion. Environ Exp Bot 195: 104793. https://doi.org/10.1016/j.envexpbot.2022.104793

Barbasso DV, Pedro Júnior MJ, Pio RM, 2005. Caracterização fenológica de variedades do tipo Murcott em três porta-enxertos. Rev Bras Frutic 27(3): 399-403. https://doi.org/10.1590/S0100-29452005000300015

Bowman KD, Joubert J, 2020. Citrus rootstocks. In: The genus Citrus; Talon M, Caruso M, Gmitter Jr FG (Eds). Elsevier. Amsterdam. pp. 105-127. https://doi.org/10.1016/B978-0-12-812163-4.00006-1

Carvalho LM, Carvalho HWL, Barros I, Martins CR, Soares Filho WS, Girard EA, Passos OS, 2019. New scion-rootstock combinations for diversification of sweet orange orchards in tropical hardsetting soils. Sci Hortic 243: 169-176. https://doi.org/10.1016/j.scienta.2018.07.032

Carvalho EV, Cifuentes-Arenas JC, Raiol-Junior LL, Stuchi ES, Girardi EA, Lopes SA, 2021. Modeling seasonal flushing and shoot growth on different citrus scion-rootstock combinations. Sci Hortic 288: 110358. https://doi.org/10.1016/j.scienta.2021.110358

Castillo-Velarde ER, 2019. Vitamin C in health and disease. Rev Fac Med Hum 19(4): 95-100. https://doi.org/10.25176/RFMH.v19i4.2351

Castle WS, 2010. A career perspective on Citrus rootstocks, their development, and commercialization. HortScience 45(1): 11-15. https://doi.org/10.21273/HORTSCI.45.1.11

Cataldo EC, Salvi LS, Paoli FP, Fucile GM, Masciandaro GM, Manzi DM, et al., 2021. Effects of natural clinoptilolite on physiology, water stress, sugar and anthocyanin content in Sanforte (Vitis vinifera L.) young vineyard. J Agric Sci 159: 488-499. https://doi.org/10.1017/S0021859621000915

CEAGESP, 2011. Normas de classificação de citros de mesa. Companhia de Entrepostos e Armazéns Gerais, São Paulo. https://ceagesp.gov.br/wp-content/uploads/2015/07/citros.pdf

Cruz MA, Neves CSVJ, Carvalho DU, Colombo RC, Leite Junior RP, Tazima ZH, 2019. 'Navelina' sweet orange trees on five rootstocks in Northern Parana state, Brazil. Rev Bras Frutic 41(3): 1-9. https://doi.org/10.1590/0100-29452019006

Cunha AR, Martins D, 2009. Classificação climática para os municípios de Botucatu e São Manuel, SP. Irriga 14(1): 1-11. https://doi.org/10.15809/irriga.2009v14n1p1-11

Curk F, Olitrautt F, Garcia-Lor A, Luro F, Navarro L, Ollitraut P, 2016. Phylogenetic origin of limes and lemons revealed by cytoplasmic and nuclear markers. Ann Bot 117(4): 1-19. https://doi.org/10.1093/aob/mcw005

Di Giorgi F, Ide BY, Dib K, Marchi RJ, Trioni HR, Wagner RL, et al., 1990. Contribuição ao estudo do comportamento de algumas variedades de citros e suas implicações agroindustriais. Laranja 11(2): 567-612.

Domingues AR, Marcolini CDM, Gonçalves CHS, Gonçalves LSA, Roberto SR, Carlos EF, 2021. Fruit ripening development of 'Valência' Orange trees grafted on different 'Trifoliata' hybrid rootstocks. Hortic 7(3): 1-19. https://doi.org/10.3390/horticulturae7010003

Fadel AL, Mourão Filho FAA, Stuchi ES, Wulff NA, Couto HTZ, 2018. Citrus sudden death-associated vírus (CSDaV) and citrus tristeza vírus (CTV) in eleven rootstocks for 'Valência' sweet orange. Rev Bras Frutic 40(4): e-788. https://doi.org/10.1590/0100-29452018788

Fonfria MA, Caorrejos CM, Valor CJ, 2020. Citricultura. Mundi-Prensa, Madrid. 506 pp.

Forner-Giner MA, Rodriguez-Gamir J, Martinez-Alcantara B, Quinones A, Iglesias DJ, Primo-Millo E, Forner, J, 2014. Performance of Navel orange trees grafted onto two new dwarfing rootstocks. Sci Hortic 179: 376-387. https://doi.org/10.1016/j.scienta.2014.07.032

França NO, Amorim MS, Girardi EA, Passos OS, Soares Filho WS, 2016. Performance of 'Tuxpan Valência' sweet Orange grafted onto 14 rootstocks in northern Bahia, Brazil. Rev Bras Frutic 38(4): e-684. https://doi.org/10.1590/0100-29452016684

Hu Z, Wang F, Yu H, Zhang M, Jiang D, Huang T, et al., 2022. Effects of scion-rootstock interaction on citrus fruit quality related to differentially expressed small RNAs. Sci Hortic 298: 110974. https://doi.org/10.1016/j.scienta.2022.110974

Jomori MLL, Sasaki FFC, Berno ND, Gimenes LC, Kluge RA, 2014. Desverdecimento e armazenamento refrigerado de tangor 'Murcott' em função de concentração e tempo de exposição ao etileno. Semin Cienc Agrar 35(2): 825-834. https://doi.org/10.5433/1679-0359.2014v35n2p825

Kistner EJ, Amrich R, Castillo M, Strode V, Hoddle MS, 2016. Phenology of Asian citrus psyllid (Hemiptera: Liviidae), with special reference to biological control by Tamarixia radiata, in the residencial landscape of Southern California. J Econ Entomol 109(3): 1047-1057. https://doi.org/10.1093/jee/tow021

Lee SK, Kader AA, 2020. Preharvest and postharvest factors influencing vitamin C content of horticultural crops. Postharvest Biol Technol 20(3): 207-220. https://doi.org/10.1016/S0925-5214(00)00133-2

Légua P, Bellver R, Forner J, Forner-Giner MA, 2011. Plant growth, yield and fruit quality of 'Lane Late' navel orange on four citrus rootstocks. Span J Agric Res 9(1): 271-279. https://doi.org/10.5424/sjar/20110901-172-10

Loannidi E, Kalamaki MS, Enginner C, Pateraki I, Alexandrou D, Mellidou I, et al., 2009. Expression profiling of ascorbic acid-related genes during tomato fruit development and ripening and in response to stress conditions. J Exp Bot 60(2): 663-678. https://doi.org/10.1093/jxb/ern322

Marks D, 2022. Why leaf flush affects citrus quality and yield, and how to manage it better. Levity Crop Science, Rural Business Center, Myerscough College, Preston, UK. https://levitycropscience.com/why-leaf-flush-affects-citrus-quality-and-yield-and-how-to-manage-it-better/

Nascimento FSS, Ribeiro VG, Bastos DC, Ferreira de Sá JF, Nascimento PHD, 2018. Thermal requirements of citrus fruits grafted onto rootstocks in the low-middle region of the São Francisco river basin. Caatinga 31(2): 336-343. https://doi.org/10.1590/1983-21252018v31n209rc

Neves CG, Amaral DOJ do, Paula MFB de, Nascimento LS de, Constantino G, Passos OS, et al., 2018. Characterization of tropical mandarin collection: implications for breeding related to fruit quality. Sci Hortic 239: 289-299. https://doi.org/10.1016/j.scienta.2018.05.022

OECD, 2010. International standards for fruit and vegetables: Citrus fruit. Organisation for Economic Co-operation and Development, Paris. https://www.oecd.org/publications/citrus-fruits-9789264083745-en-fr.htm

Oliveira CRM, Mello-Farias PC, Oliveira DSC, Chaves ALS, Herter FG, 2017. Water availability effect on gas exchanges and on phenology of 'Cabula' orange. Acta Hortic 1150: 133-138. https://doi.org/10.17660/ActaHortic.2017.1150.19

Oliveira RP, Scivitaro WB, 2008. Lue Gim Gong: laranja tipo Valência mais tardia e tolerante ao frio e cancro cítrico. Embrapa Clima Temperado, Pelotas (RS). http://www.infoteca.cnptia.embrapa.br/infoteca/handle/doc/746632.

Oliveira RP, Scivitaro WB, Gomes da Rocha OS, 2008. Cultivares de laranjeira resistentes ao cancro cítrico. Embrapa Clima Temperado, Pelotas (RS). https://www.infoteca.cnptia.embrapa.br/bitstream/doc/746885/1/documento249.pdf

Ometto JC, 1981. Bioclimatologia vegetal. Ceres, São Paulo. 440 p.

Pathare, PB, Opara, UL, Al-Said, FA, 2013. Colour measurement and analysis in fresh and processed foods: A review. Food Bioproc Tech 6: 36-60. https://doi.org/10.1007/s11947-012-0867-9

Petry HB, Reis B, Silva RR, Gonzatto MP, Schwarz SF, 2015. Porta-enxertos influenciam o desempenho produtivo de laranjeiras-de-umbigo submetidas a poda drástica. Pesqu Agropec Tropic 45(4): 449-455. https://doi.org/10.1590/1983-40632015v4537005

Pio RM, Figueiredo JO, Stuchi ES, Cardoso SAB, 2005. Variedade de Copas. In: Citros; Mattos Júnior D, et al. (Eds). Instituto Agronômico e Fundag, Campinas. 929 pp.

Pompeu Júnior J, Blumer S, 2011. Citrumelos como porta-enxertos para a laranjeira 'Valência'. Pesqu Agropec Bras 46(1): 105-107. https://doi.org/10.1590/S0100-204X2011000100014

Prieto I, Armas C, Pugnaire FI, 2012. Water release through plant roots: new insights into its consequences at the plant and ecosystem level. New Phytol 193: 830-841. https://doi.org/10.1111/j.1469-8137.2011.04039.x

Rasool A, Mansoor S, Bhat KM, Hassan GI, Baba TR, Alyemeni MN, et al., 2020. Mechanisms underlying graft union formation and rootstock scion interaction in horticultural plants. Front Plant Sci 11: 1778. https://doi.org/10.3389/fpls.2020.590847

Rencher AC, Christensen WF, 2012. Methods of multivariate analysis, 3th ed. Wiley, New York. 758 pp. https://doi.org/10.1002/9781118391686

Ribeiro LR, Leonel S, Souza JMA, Garcia EL, Leonel M, Monteiro LNH, et al., 2020. Improving nutritional value and extending shelf life of red guava by adding calcium chloride. LWT-Food Sci Technol 130(14): 109655. https://doi.org/10.1016/j.lwt.2020.109655

Ribeiro RV, Núñez EE, Pompeu Júnior J, Mourão Filho FAA, 2014. Citrus rootstocks for improving the horticultural performance and physiological responses under constraining environments. In: Improvement of crops in the era of climatic changes; Ahmad P et al. (eds). Springer, New York. pp: 1-37. https://doi.org/10.1007/978-1-4614-8830-9_1

Rivadeneira MF, 2012. Grados dias acumulados em naranjas sobre pie trifólio em la zona de Concordia (Entre Rios). Hortic Argent 31(74): 1-27.

Rodrigues MJS, Araújo Neto SE, Andrade Neto RC, Soares Filho WS, Girardi EA, Lessa LS, et al., 2019. Agronomic performance of the 'Pera' orange grafted onto nine rootstocks under the conditions of Rio Branco, Acre, Brazil. Rev Bras Cienc Agr 14(4): 1-8. https://doi.org/10.5039/agraria.v14i4a6642

Saini RK, Ranjit A, Sharma K, Prassad P, Shang X, Gowda KGM, Keum YS, 2022. Bioactive compound of Citrus fruits: a review of composition and health benefits of carontenoids, flavonoids, limonoids, and terpenes. Antioxidants 11(2): 239. https://doi.org/10.3390/antiox11020239

Santos HG dos, Jacomine PKT, Anjos LHC dos, Oliveira VA de, Lumbreras JF, Coelho MR, et al., 2013. Sistema brasileiro de classificação de solos, 3rd. ed. Embrapa, Brasília. 353 pp. https://www.embrapa.br/solos/sibcs

Șekerli L, Tuzco Ö, 2020. Fruit quality of 'Valencia' orange trees grafted on Volkameriana and Sour Orange rootstocks grown in two different regions in Northern Cyprus. Pak J Bot 52(5): 1803-1808. https://doi.org/10.30848/PJB2020-5(12)

Soil Survey Staff, 1999. Soil taxonomy: a basic system of soil classification for making and interpreting soil surveys, 2nd ed. USDA, NRCS, Washington. https://www.nrcs.usda.gov/wps/portal/nrcs/main/soils/survey/class/taxonomy/

Teodoro AV, Carvalho HWL, Barros I, Carvalho LM, Martins CR, Soares Filho WS, et al., 2020. Performance of "Jaffa' sweet orange on different rootstocks for orchards on the Brazilian northeast. Pesqu Agropec Bras 55(8): e01665. https://doi.org/10.1590/s1678-3921.pab2020.v55.01665

Thornthwaite CW, Mather JR, 1995. The water balance. Drexel Institute of Technology, Laboratory of Climatology, Centerton, NJ, USA. 104 pp.

Tietel Z, Srivastava S, Fait A, Tel-Zur N, Carmi N, Raveh E, 2020. Impact of scion/rootstock reciprocal effects on metabolomics of fruit juice and phloem sap in grafted Citrus reticulata. Plos One 15: e0227192. https://doi.org/10.1371/journal.pone.0227192

Van der Berg MA, 1986. Effects of citrus cultivars and reduced irrigation on availability of new growth for Citrus psylla breeding. Fruits 41(10): 597-604. file:///C:/Users/User/Downloads/CIRADjournals,+399888.pdf (Accessed 08 July 2022).

Vincent C, Morillon R, Arbona V, Gómez-Cadenas A, 2020. Citrus in changing environment. The Genus Citrus. Elsevier Inc., pp. 271-289. https://doi.org/10.1016/B978-0-12-812163-4.00013-9

Volpe CA, Schöffer ER, Barbosa JC, 2002. Influência da soma térmica e da chuva durante o desenvolvimento de laranjas 'Valência' e 'Natal' na relação entre sólidos solúveis e acidez e no índice tecnológico do suco. Rev Bras Frutic 24(2): 436-441. https://doi.org/10.1590/S0100-29452002000200031

Zekri M, 2000. Citrus rootstocks affect scion nutrition, fruity quality, growth, yield and economical return. Fruits 55(4): 231-239.

Published
2023-05-12
How to Cite
MARTINS, R. C., LEONEL, S., SOUZA, J. M. A., LEONEL, M., PUTTI, F. F., ZÜGE, P. G. U., FERREIRA, R. B., SILVA, M. S., & DUARTE FILHO, J. (2023). Citrus crop performance and fruit quality in response to different scion-rootstock combinations. Spanish Journal of Agricultural Research, 21(2), e0903. https://doi.org/10.5424/sjar/2023212-19923
Section
Plant production (Field and horticultural crops)