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Erschienen in: Gesunde Pflanzen 3/2023

29.08.2022 | Original Article / Originalbeitrag

Effect Of Tomato Interspecific Hybrid (F1) Rootstocks On Yield And Fruit Quality Traits

verfasst von: Aylin Kabas, Huseyin Kucukaydin

Erschienen in: Journal of Crop Health | Ausgabe 3/2023

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Abstract

Biotic and abiotic stresses are serious problem for tomato production, which is the most produced vegetable both in Turkey and in the world. Rootstocks confer resistance to these biotic and abiotic stresses and are the most economical and environmentally friendly solution for sustainable tomato production. This study aimed to determine the effects of different interspecific rootstock candidates developed from crosses between the wild tomato species (S. habrochaites and S. penelli) and S. lycopersicum on yield and fruit quality. To achieve this aim, newly developed and control (Beaufort F1, Arazi F1, Amaron F1, Kingkong F1) rootstocks were grafted with Torry F1 variety using tube grafting method. Grafted rootstocks were grown in a randomized block design with 3 replications and 20 plants in each replication. In this study, yield, plant and fruit characteristics, and grafting traits such as rootstock length (cm), rootstock thickness (cm), scion length (cm), scion thickness (cm), and number of leaves (number) were analyzed. Beaufort F1 and Amaron F1 cultivars had the highest yield with 6.95 and 6.61 kg plant−1, while rootstocks developed in the present study (R19B-005 and R19B-015) yielded value of 6.24 and 6.22 kg plant−1, respectively. Similar results were determined in terms of fruit weight, but there was no significant difference between fruit color values. In addition, disease resistance genes such as Frl, Mi, I‑2, Ty‑1, Ty‑3 and Sw‑5 were screened in the study. As result, rootstock candidates had the Frl, I2 and Mi genes. Recently developed interspecific hybrids can be used as rootstocks in tomato production.

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Literatur
Zurück zum Zitat Agrios GN (1988) Plant pathology, 3rd edn. Academic Press, New York, p 803 Agrios GN (1988) Plant pathology, 3rd edn. Academic Press, New York, p 803
Zurück zum Zitat Ashita E (1927) Grafting of watermelons (in Japanese). Korea (Chosun) Agr Uwsl 1:9 Ashita E (1927) Grafting of watermelons (in Japanese). Korea (Chosun) Agr Uwsl 1:9
Zurück zum Zitat Bletsos F, Thanassoulopoulos C, Roupakias D (2003) Effect of grafting on growth, yield, and Verticillium wilt of eggplant. HortScience 38(2):183–186CrossRef Bletsos F, Thanassoulopoulos C, Roupakias D (2003) Effect of grafting on growth, yield, and Verticillium wilt of eggplant. HortScience 38(2):183–186CrossRef
Zurück zum Zitat Bletsos FA (2006) Grafting and calcium cyanamide as alternatives to methyl bromide for greenhouse eggplant production. Sci Hortic 107(4):325–331CrossRef Bletsos FA (2006) Grafting and calcium cyanamide as alternatives to methyl bromide for greenhouse eggplant production. Sci Hortic 107(4):325–331CrossRef
Zurück zum Zitat Dianese EC, de Fonseca ME, Kormelink RG, Inoue-Nagata AK, Resende RO, Boiteux LS (2010) Development of a locus-specific, co-dominant SCAR marker for assisted-selection of the Sw‑5 (Tospovirus resistance) gene cluster in a wide range of tomato accessions. Mol Breed 25:133–142CrossRef Dianese EC, de Fonseca ME, Kormelink RG, Inoue-Nagata AK, Resende RO, Boiteux LS (2010) Development of a locus-specific, co-dominant SCAR marker for assisted-selection of the Sw‑5 (Tospovirus resistance) gene cluster in a wide range of tomato accessions. Mol Breed 25:133–142CrossRef
Zurück zum Zitat Doyle JJ, Doyle JL (1990) Isolation of plant DNA from fresh tissue. Focus 12:13–15 Doyle JJ, Doyle JL (1990) Isolation of plant DNA from fresh tissue. Focus 12:13–15
Zurück zum Zitat Edelstein M, Ben-Hur M, Cohen R, Burger Y, Ravina I (2005) Boron and salinity effects on grafted and non-grafted melon plants. Plant Soil 269(1):273–284CrossRef Edelstein M, Ben-Hur M, Cohen R, Burger Y, Ravina I (2005) Boron and salinity effects on grafted and non-grafted melon plants. Plant Soil 269(1):273–284CrossRef
Zurück zum Zitat El Mehrach K, Mejía L, Gharsallah-Couchane S, Salus MS, Martin CT, Hatimi A, Vidavski F, Williamson V, Maxwell DP (2005) PCR-based methods for tagging the Mi‑1 locus for resistance to root-knot nematode in begomovirus-resistant tomato germplasm. Acta Hortic 695:263–270CrossRef El Mehrach K, Mejía L, Gharsallah-Couchane S, Salus MS, Martin CT, Hatimi A, Vidavski F, Williamson V, Maxwell DP (2005) PCR-based methods for tagging the Mi‑1 locus for resistance to root-knot nematode in begomovirus-resistant tomato germplasm. Acta Hortic 695:263–270CrossRef
Zurück zum Zitat FAO (2020) Statistics of food and agriculture organization of the united nations FAO (2020) Statistics of food and agriculture organization of the united nations
Zurück zum Zitat Gioia FD, Serio F, Buttaro D, Ayala O, Santamaria P (2010) Influence of rootstock on vegetative growth, fruit yield and quality in ‘Cuore di Bue’, an heirloom tomato. J Hortic Sci Biotechnol 85(6):477–482CrossRef Gioia FD, Serio F, Buttaro D, Ayala O, Santamaria P (2010) Influence of rootstock on vegetative growth, fruit yield and quality in ‘Cuore di Bue’, an heirloom tomato. J Hortic Sci Biotechnol 85(6):477–482CrossRef
Zurück zum Zitat Hasna MK, Ögren E, Persson P, Mårtensson A, Rämert B (2009) Management of corky root disease of tomato in participation with organic tomato growers. Crop Prot 28(2):155–161CrossRef Hasna MK, Ögren E, Persson P, Mårtensson A, Rämert B (2009) Management of corky root disease of tomato in participation with organic tomato growers. Crop Prot 28(2):155–161CrossRef
Zurück zum Zitat Jenkins JA (1948) The origin of the cultivated tomato. Econ Bot 2(4):379–392CrossRef Jenkins JA (1948) The origin of the cultivated tomato. Econ Bot 2(4):379–392CrossRef
Zurück zum Zitat Ji Y, Schuster DJ, Scott JW (2007) Ty‑3, a begomovirus resistance locus near the Tomato yellow leaf curl virus resistance locus Ty‑1 on chromosome 6 of tomato. Mol Breed 20:271–284CrossRef Ji Y, Schuster DJ, Scott JW (2007) Ty‑3, a begomovirus resistance locus near the Tomato yellow leaf curl virus resistance locus Ty‑1 on chromosome 6 of tomato. Mol Breed 20:271–284CrossRef
Zurück zum Zitat Jones JB, Jones JP, Stall RE, Zitter TA (1991) Compendium of tomato diseases. American Phytopathological Society, St. Paul Jones JB, Jones JP, Stall RE, Zitter TA (1991) Compendium of tomato diseases. American Phytopathological Society, St. Paul
Zurück zum Zitat Kabas A, Celik I (2021) Effect of newly developed interspecific hybrid rootstocks on mineral nutrient composition and fruit quality in tomato (Solanum lycopersicum L.). Acta Aliment 50(3):383–392CrossRef Kabas A, Celik I (2021) Effect of newly developed interspecific hybrid rootstocks on mineral nutrient composition and fruit quality in tomato (Solanum lycopersicum L.). Acta Aliment 50(3):383–392CrossRef
Zurück zum Zitat Kell K, Jacksch T (1998) Comparision of stocksintomato. Gemuse München 34(12):700–704 Kell K, Jacksch T (1998) Comparision of stocksintomato. Gemuse München 34(12):700–704
Zurück zum Zitat Khah EM, Kakava E, Mavromatis A, Chachalis D, Goulas C (2006) Effect of grafting on growth and yield of tomato (Lycopersicon esculentum Mill.) in greenhouse and open-field. J Appl Hortic 8(1):3–7CrossRef Khah EM, Kakava E, Mavromatis A, Chachalis D, Goulas C (2006) Effect of grafting on growth and yield of tomato (Lycopersicon esculentum Mill.) in greenhouse and open-field. J Appl Hortic 8(1):3–7CrossRef
Zurück zum Zitat King SR, Davis AR, Zhang X, Crosby K (2010) Genetics, breeding and selection of rootstocks for Solanaceae and Cucurbitaceae. Sci Hortic 127:106–111CrossRef King SR, Davis AR, Zhang X, Crosby K (2010) Genetics, breeding and selection of rootstocks for Solanaceae and Cucurbitaceae. Sci Hortic 127:106–111CrossRef
Zurück zum Zitat Kuniyasu K, Yamakawa K (1983) Control of Fusarium wilt of tomato caused by Fusarium oxysporum f. sp. lycopersici race J3 by grafting to KNVF and KVF, rootstocks of the interspecific hybrids between Lycopersicon esculentum× L. hirsutum. Jpn J Phytopathol 49(5):581–586CrossRef Kuniyasu K, Yamakawa K (1983) Control of Fusarium wilt of tomato caused by Fusarium oxysporum f. sp. lycopersici race J3 by grafting to KNVF and KVF, rootstocks of the interspecific hybrids between Lycopersicon esculentum× L. hirsutum. Jpn J Phytopathol 49(5):581–586CrossRef
Zurück zum Zitat Kurata K (1994) Transplant production robot in japan. In: Transplant production system. Kluwer, Dordrecht, pp 313–329 Kurata K (1994) Transplant production robot in japan. In: Transplant production system. Kluwer, Dordrecht, pp 313–329
Zurück zum Zitat Lee JM, Oda M (2003) Grafting of herbaeous vegetable and ornamental crops. Hortic Rev 28:61–124 Lee JM, Oda M (2003) Grafting of herbaeous vegetable and ornamental crops. Hortic Rev 28:61–124
Zurück zum Zitat Leonardi C, Giuffrida F (2006) Variation of plant growth and macronutrient uptake in grafted tomatoes and eggplants on three different rootstocks. Eur J Hortic Sci 71(3):97 Leonardi C, Giuffrida F (2006) Variation of plant growth and macronutrient uptake in grafted tomatoes and eggplants on three different rootstocks. Eur J Hortic Sci 71(3):97
Zurück zum Zitat Lopez-Perez JA, Le Strange M, Kaloshian I, Ploeg AT (2006) Differential response of Mi gene-resistant tomato rootstocks to root-knot nematodes (Meloidogyne incognita). Crop Prot 25(4):382–388CrossRef Lopez-Perez JA, Le Strange M, Kaloshian I, Ploeg AT (2006) Differential response of Mi gene-resistant tomato rootstocks to root-knot nematodes (Meloidogyne incognita). Crop Prot 25(4):382–388CrossRef
Zurück zum Zitat Louws FJ, Rivard CL, Kubota C (2010) Grafting fruiting vegetable stoman-age soil borne pathogens, foliar pathogens, arthropods and weeds. Sci Hortic 127:127–146CrossRef Louws FJ, Rivard CL, Kubota C (2010) Grafting fruiting vegetable stoman-age soil borne pathogens, foliar pathogens, arthropods and weeds. Sci Hortic 127:127–146CrossRef
Zurück zum Zitat Maync A (1999) Tomato cultivation in the unheated plastic tunnel-planting date, density, varieties. Gemuse München 35(2):113–115 Maync A (1999) Tomato cultivation in the unheated plastic tunnel-planting date, density, varieties. Gemuse München 35(2):113–115
Zurück zum Zitat Mutlu N, Demirelli A, Ilbi H, Ikten C (2015) Development of co-dominant SCAR markers linked to resistant gene against the Fusarium oxysporum f. sp. radicis-lycopersici. Theor Appl Genet 128(9):1791–1798PubMedCrossRef Mutlu N, Demirelli A, Ilbi H, Ikten C (2015) Development of co-dominant SCAR markers linked to resistant gene against the Fusarium oxysporum f. sp. radicis-lycopersici. Theor Appl Genet 128(9):1791–1798PubMedCrossRef
Zurück zum Zitat Oda M (1995) New grafting methods for fruit-bearing vegetables in Japan Oda M (1995) New grafting methods for fruit-bearing vegetables in Japan
Zurück zum Zitat Oda M, Nagata M, Tsuji K, Sasaki H (1996) Effect of Scarlet eggplant rootstock on growth, yield, and sugar content of grafted tomato fruits. J Jpn Soc Hortic Sci 65(3):531–536CrossRef Oda M, Nagata M, Tsuji K, Sasaki H (1996) Effect of Scarlet eggplant rootstock on growth, yield, and sugar content of grafted tomato fruits. J Jpn Soc Hortic Sci 65(3):531–536CrossRef
Zurück zum Zitat Oztekin GB, Tuzel Y, Tuzel IH (2013) Does mycorrhiza improve salinity tolerance in grafted plants. Sci Hortic 149:55–60CrossRef Oztekin GB, Tuzel Y, Tuzel IH (2013) Does mycorrhiza improve salinity tolerance in grafted plants. Sci Hortic 149:55–60CrossRef
Zurück zum Zitat Peralta IE, Spooner DM (2005) Morphological characterization and relationships of wild tomatoes. (Solanum L. section Lycopersicon). Monogr Syst Bot Mo Bot Gard 104:227–257 Peralta IE, Spooner DM (2005) Morphological characterization and relationships of wild tomatoes. (Solanum L. section Lycopersicon). Monogr Syst Bot Mo Bot Gard 104:227–257
Zurück zum Zitat Pérez de Castro A, Blanca JM, Díez MJ, Nuez Viñals F (2007) Identification of a CAPS marker tightly linked to the Tomato yellow leaf curl disease resistance gene Ty‑1 in tomato. European Journal of Plant Pathology 117(4):347–356CrossRef Pérez de Castro A, Blanca JM, Díez MJ, Nuez Viñals F (2007) Identification of a CAPS marker tightly linked to the Tomato yellow leaf curl disease resistance gene Ty‑1 in tomato. European Journal of Plant Pathology 117(4):347–356CrossRef
Zurück zum Zitat Pogonyi A, Pék Z, Helyes L, Lugasi A (2005) Effect of grafting on the tomato’s yield, quality and main fruit components in spring forcing. Acta Aliment 34(4):453–462CrossRef Pogonyi A, Pék Z, Helyes L, Lugasi A (2005) Effect of grafting on the tomato’s yield, quality and main fruit components in spring forcing. Acta Aliment 34(4):453–462CrossRef
Zurück zum Zitat Rivard CL (2006) Grafting tomato to manage soilborne diseases and improve yield in organic production Systems, Faculty of North Carolina StateUniversity, Master of Science Rivard CL (2006) Grafting tomato to manage soilborne diseases and improve yield in organic production Systems, Faculty of North Carolina StateUniversity, Master of Science
Zurück zum Zitat Romano D, Paratore A (2000) Effects of grafting on tomato and eggplant. In: V International Symposium on Protected Cultivation in Mild Winter Climates: Current Trends for Suistainable Technologies, vol 559, pp 149–154 Romano D, Paratore A (2000) Effects of grafting on tomato and eggplant. In: V International Symposium on Protected Cultivation in Mild Winter Climates: Current Trends for Suistainable Technologies, vol 559, pp 149–154
Zurück zum Zitat Singh H, Kumar P, Chaudhari S, Edelstein M (2017) Tomato grafting: a global perspective. HortScience 52(10):1328–1336CrossRef Singh H, Kumar P, Chaudhari S, Edelstein M (2017) Tomato grafting: a global perspective. HortScience 52(10):1328–1336CrossRef
Zurück zum Zitat Staniaszek M, Kozik EU, Marczewski W (2007) A CAPS marker TAO1902 diagnostic for the I‑2 gene conferring resistance to Fusarium oxysporum f. sp. lycopersici race 2 in tomato. Plant Breed 126(3):331–333CrossRef Staniaszek M, Kozik EU, Marczewski W (2007) A CAPS marker TAO1902 diagnostic for the I‑2 gene conferring resistance to Fusarium oxysporum f. sp. lycopersici race 2 in tomato. Plant Breed 126(3):331–333CrossRef
Zurück zum Zitat Topçu T, Aktaş H (2020) Domateste kullanılan farklı anaçların bitki büyümesi, verim ve meyve kalitesi üzerine etkilerinin belirlenmesi. SSU J Fac Agric 15(1):27–40 Topçu T, Aktaş H (2020) Domateste kullanılan farklı anaçların bitki büyümesi, verim ve meyve kalitesi üzerine etkilerinin belirlenmesi. SSU J Fac Agric 15(1):27–40
Zurück zum Zitat Turhan A, Ozmen N, Serbeci MS, Seniz V (2011) Effects of grafting on different rootstocks on tomato fruit yield and quality. Hort Sci (Prague) 38(4):142–149CrossRef Turhan A, Ozmen N, Serbeci MS, Seniz V (2011) Effects of grafting on different rootstocks on tomato fruit yield and quality. Hort Sci (Prague) 38(4):142–149CrossRef
Zurück zum Zitat Verdejo-Lucas S, Sorribas FJ (2008) Resistance response of the tomato rootstock SC 6301 to Meloidogyne javanica in a plastic house. Eur J Plant Pathol 121(1):103–107CrossRef Verdejo-Lucas S, Sorribas FJ (2008) Resistance response of the tomato rootstock SC 6301 to Meloidogyne javanica in a plastic house. Eur J Plant Pathol 121(1):103–107CrossRef
Zurück zum Zitat Yamakawa B (1983) Grafting. In: Nishi (ed) Vegetable Handbook (in Japanese). Yokenda Book, Tokyo, pp 141–153 Yamakawa B (1983) Grafting. In: Nishi (ed) Vegetable Handbook (in Japanese). Yokenda Book, Tokyo, pp 141–153
Zurück zum Zitat Yarşi G, Rad S (2004) Effects of grafted seedling on yield, quality and plant growth of faselisfi eggplant cultivar growing in greenhouse. Alatarım 3(1):16–22 Yarşi G, Rad S (2004) Effects of grafted seedling on yield, quality and plant growth of faselisfi eggplant cultivar growing in greenhouse. Alatarım 3(1):16–22
Zurück zum Zitat Yetişir H, Yarşi G, Sarı N (2004) Sebzelerde aşılama. Bahçe 33(1):27–37 Yetişir H, Yarşi G, Sarı N (2004) Sebzelerde aşılama. Bahçe 33(1):27–37
Metadaten
Titel
Effect Of Tomato Interspecific Hybrid (F1) Rootstocks On Yield And Fruit Quality Traits
verfasst von
Aylin Kabas
Huseyin Kucukaydin
Publikationsdatum
29.08.2022
Verlag
Springer Berlin Heidelberg
Erschienen in
Journal of Crop Health / Ausgabe 3/2023
Print ISSN: 2948-264X
Elektronische ISSN: 2948-2658
DOI
https://doi.org/10.1007/s10343-022-00725-z

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