Rootstock Breeding Tolerant to Verticillium in Olive (Olea europaea)


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Authors

DOI:

https://doi.org/10.5281/zenodo.7933848

Keywords:

Olea europaea, olive, rootstock, Verticillium

Abstract

Olive is one of the indispensable elements of all world cuisines, especially in countries with a coast to the Mediterranean. An average of 17 million tons of olives and 3 million tons of olive oil are produced from approximately 900 million olive trees each year. This production yield increases the popularity of olives day by day. Due to the effects of changing living conditions on diet, the increase in demand for olive oil has a very important role in this. This situation further increases the strategic importance of olives and olive oil. Due to this importance, the different problems in the supply of olive oil have serious effects on the market. The disruptions in olive oil supply are mostly due to seasonal climatic conditions. However, it is useful to know that there are disruptions that may adversely affect olive and olive oil production in the medium and long term. Due to global climate changes, factors such as drought, flood, and disease have started to be experienced frequently in olive production areas recently. This situation needs to be taken into consideration more in olive breeding studies. Keeping olives away from biotic and abiotic stresses can be possible with appropriate cultivation techniques and breeding studies. One of the most important biotic problems of olive is Verticillium disease. This disease has begun to spread to very large areas in parallel with climate change and mechanization in agriculture. Since there are serious studies on plant health, rootstock breeding studies appear as one of the most important solutions in breeding studies. The Eastern Mediterranean Region the homeland of olives, has an abundant olive genetic plantation. This abundance can be a solution for the prevention of Verticillium disease in olives by making olive rootstock breeding studies.

References

Acar, N.K., 2021. Zeytin ve zeytinyağı piyasa fiyatı oluşumunda etkili olan faktörlerin belirlenmesi: Muğla örneği. Yüksek Lisans Tezi, Akdeniz Üniversitesi Fen Bilimleri Enstitüsü, Antalya.

Akseki, U., 2012. Dünya fındık piyasasında fiyat oluşumu ve Türkiye için alternatif politikaların belirlenmesi. Doktora Tezi, Ege Üniversitesi, Fen Bilimleri Enstitüsü İzmir.

Al-Ahmad, M. A., Mosli, M.N. 1993. “Verticillium Wild of Syria”, Bulletin OEEP/EPPO Bulletin, 23:521-529.

Anaç, H., 2005. Balıkesir ili Edremit ilçesi yağlık zeytin üreten işletmelerin ekonomik analizi. Yüksek Lisans Tezi, Ankara Üniversitesi, Fen Bilimleri Enstitüsü, Ankara.

Andrews, P.K., C.S. Marquez. 1993. Graft incompatibility, Horticultural Reviews, 15:183-232.

Başaran, B., 2011. Zeytin ve zeytinyağı üreten küçük ve orta ölçekli işletmelerin sorunları ve bu sorunların çözümüne yönelik alternatif öneriler. Doktora Tezi. Namık Kemal Üniversitesi, Fen Bilimleri Enstitüsü, Tekirdağ.

Benlioğlu, S., Demirtaş, M., Uysal, H., 2001. Aydın ilinde zeytin ağaçlarında Verticillium solgunluğu”, Tekirdağ, Türkiye 4. Fitopatoloji Kongresi, 3-8 Eylül 2001, Bildiriler: 307-316.

Bennett, R., Wallsgrove, R.M., 1994. Secondary metabolites in plant defense mechanisms. New Phytologist, 127:617-633.

Cooman, L.D., Everaert, E., Curir, P., Dolci, M. 1996. The possible role of phenolics in incompatibility expression in Eucalyptus gunnii micro grafts, Phytochemical Analysis, 7:92-96.

Darikova, J.A., Savva, Y.V., Vaganov, E.A., Grachev, A.M., Kuznetsova, G.V., 2011. Grafts of woody plants and the problem of incompatibility between scion and rootstocks (a review)”, Journal of Siberian Federal University Biology, 4:54–63.

Davis, A.R., Perkins-Veazie, P., 2008. “Grafting effects on vegetable quality”, Hortscience 4(6):1670-1672.

Dogra, K., Kour, K., Kumar, R., Bkshi, P., Kumar, V. 2018. Graft-incompatibility in horticultural crops, International Journal of Current Microbiology and Applied Sciences, 7(2):1805-1820.

Errea, P. Gutmann, M., Feucht, W., 2000. Physiological implications of flavan-3-ols in apricot-rootstock combinations, Advances in Horticultural Science, 14:126-134.

Errea, P., Felipe, A., Herrero, M. 1994. “Graft establishment between compatible and incompatible Prunus spp.”, Journal of Experimental Botany, 45(3):393-401.

Feucht, W., Treutter, D., 1991. Phenol gradients in opposing cells of Prunus heterografts, Advances in Horticultural Science, 5:107-111.

Feucht, W., Treutter, D., Schmidt, P.P.S. 1988. ”Inhibition of growth and xylogenesis and promotion of vacuolation in Prunus callus by the flavone prunin”, Plant Cell Reports, 7:189-192

Gaspar, T.H., Penel, C.L., Thorpe, T., Grappin, H. 1982. Chemistry and Biochemistry of Peroxidases. University of Geneve, pp. 10-60.

Gecer, K. 2020. “Biochemical content in fruits of peach and nectarine cultivars”, Turkish Journal of Agriculture and Forestry 44: 500- 505.

Grattan, S.R., Grieve, C.M. 1999. Salinity-nutrient relations in horticultural crops, Scientia Horticulturae, 78:(1-4):127-157.

Gündoğdu, M. 2019. Effect of rootstocks on phytochemical properties of apricot fruit, Turkish Journal of Agriculture and Forestry 43:1-10.

Hartmann, H.T., Kester, D.E., Davies, F.T., Geneve, R.L., 2002. Plant propagation. Principles and practices”, New Jersey Upper Saddle River: Prentice-Hall, 411-460.

Hernández, F., Pinochet, J., Moreno, M.A., Martinez, J.J., Legua, P., 2010. Performance of Prunus rootstocks for apricot in Mediterranean conditions. Scientia Horticulturae, 124:354–359.

Herrero, J., 1951. Studies of compatible and incompatible graft combinations with special reference to hardy fruit trees, Journal of Horticulturae Science, 26:186-237.

Jiménez, S., Pinochet, J., Abadı´a, A., Moreno, M.A., Gogorcena, Y. 2018a. Tolerance response to iron chlorosis of Prunus selections as rootstocks. Horticulture Science, 43:304-309.

Kaplan, M., Karaöz Arıhan, S., 2011. Antik çağdan günümüze şifa kaynağı: zeytin ve zeytinyağının halk tıbbında kullanımı”, VIII. Milletlerarası Türk Halk Kültürü Kongresi, s.1-15.

Lee, J.M., Kubota, C., Tsao, S.J., Bie, Z., Echevarria, P.H., Morra, L., Oda, M., 2010. Current status of vegetable grafting: diffusion, grafting techniques, automation. Scientia Horticulturae, 127:93-105.

Magalhães-Filho, J.R., Amaral, L.R., Machado, D.F.S.P., Medina, C.L., Machado, E.C., 2008. Deficiência hídrica, trocas gasosas e crescimento de raízes em laranjeira ‘valência’ sobre dois tipos de porta-enxerto. Bragantia, 67:75-82.

Mahajan, S., Tuteja, N. 2005. Cold, salinity and drought stresses: An overview”, Archives of Biochemistry and Biophysics, 444(2):139-158.

Mehdi-Tounsi, H., Chelli-Chaabouni, A., Mahjoub-Boujnah, D., Boukhris, M. 2017. Long-term field response of pistachio to irrigation water salinity, Agricultural Water Management, 185:1-12.

Melo, E.T., Pio, R., Balbi, R.V., Ferreira, C.A., Mori, F.A. 2017. Anatomic compatibility of pear and quince trees grafted on Pyrus calleryana and Chaenomeles sinensis rootstocks. Pesquisa Agropecuaria Brasileira, 52(10):877-886.

Mng’omba, S.A., Du Toit, E.S., Akinnifesi, F.K., 2008. The relationship between graft incompatibility and phenols in Uapacakirkiana Muell Arg., Scientia Horticulturae, 117:212-218.

Mosse, B. 1962.” Graft incompatibility in fruit trees”, Horticultural Plant Crops, 28:1-36.

Musacchi, S., Pagliuca, G., Kindt, M., Piretti, M.V., Sansavini, S. 2000. Flavonoids as markers for pear-quince graft incompatibility. Journal of Applied Botany, 74:206-211.

Nawaz, M.A., Imtiaz, M., Kong, Q., Cheng, F., Ahmed, W., Huang, Y., Bie, Z. 2016. “Grafting: A technique to modify ıon accumulation in horticultural crops. Frontiers in Plant Science, 7:1457.

Nimbolkar, P.K., Banoth, S., Amarjeet, K.R. 2016. Rootstock breeding for abiotic stress tolerance in fruit crops. International Journal of Agriculture, Environment and Biotechnology, 9(3): 375-380.

Oktay, D. 2010. Ege Bölgesinde zeytinyağı tüketiminin arttırılmasında arz zinciri yönetiminin olası katkıları üzerine bir araştırma. Doktora Tezi, Ege Üniversitesi, Fen Bilimleri Enstitüsü, İzmir.

Özçağıran, R., 1982. Bazı armut çeşitlerinin ayva anacı ile uyuşma durumları üzerinde bir çalışma. Ege Üniversitesi, Ziraat Fakültesi Dergisi, 19(2): 77-83.

Pina, A., Errea, P., Martens, H.J. 2017. Graft union formation and cell-to-cell communication via plasmodesmata in compatible and incompatible stem unions of Prunus spp., Scientia Horticulturae, 143: 144-150.

Pina, A., Errea, P., Schulz, A., Martens, H.J. 2009. Cell-to-cell transport through plasmodesmata in tree callus cultures. Tree Physiology, 29: 809-818.

Ramirez-Gil, J.G., Ramelli, E.G., Osorio, J.G.M. 2017. Economic impact of the avocado (cv. Hass) wilt disease complex in Antioquia, Colombia, crops under different technological management levels, Crop Protection, 101: 103-115.

Rodrigez Juradao, D., Blanco-Lopez, H. F., Rapoport, H., Jimenez-Diaz, R.M. 1993. Present status of Verticillium wilt olive in andalucia”. Bulletin OEEP/EPPO Bulletin, 23: 513- 516.

Saydam, G., Copçu, M. 1972. Verticillium wild of olive in Turkey. Journal of Phitopatology, 1: 45-49

Seçer, A. 2012. Doğu Akdeniz Bölgesi’nde zeytin ve zeytinyağı üretimi, pazarlaması ve bölgede zeytinciliği geliştirme olanakları. Doktora Tezi, Çukurova Üniversitesi, Fen Bilimleri Enstitüsü, Adana.

Serrhini, M.N., Zehrolu, A., 1995. Verticillium Wilt in olive in Moracco”, Oliveae, 58: 58-61.

Simard, M.H., Olivier, G., 1999. Julior-Ferdor et variétés d’abricotier, L’Arboriculture Fruitière, 523:39-42.

Taaren, M.J. Abbasi, A.N., Rahman, H. 2016. Tree vigor, nutrients uptake efficiency and yield of ‘Flordaking’ peach cultivar as affected by different rootstocks, Proceedings of Pakistan Society for Horticultural Science, 134-143.

Thanassoulopoulos, C.C., Bris, D.A., Tjamos, E.C. 1979. Survey of Verticillium Wilt of Olive Trees in Greece, Plant Disease Reporter, 63: 936-940.

Toplu Yılmaz, Ö., 2013. Türkiye’de ve Avrupa Birliği’nde Zeytinyağı Politikaları ve Türkiye’nin Avrupa Birliği Zeytinyağı Politikasına Uyumu. Tarım Ekonomisi Dergisi, 19: 35-44

Tosi, L., Zazzerini, A. 1998. Investigations on the epidemiology of Verticillium wilt in olive in central Italy. Olivae, (71):50-55.

Tunalıoğlu, R. 2010. Türkiye zeytinciliğinde tarihsel ve ekonomik gelişmeler, Zeytin Bilimi, 1(1): 15-22.

Uğur, R. 2022. Prunus microcarpa: a potential rootstock for apricots”, Turkish Journal of Agriculture and Forestry 46(1):49-58.

Uğur, R., Altun, O., Özatar, H.O. 2022. Investigation seedling development of some apricot varieties after planting grafted on Prunus microcarpa”, I.International Agricultural Science Congress. S: 388.

Unal, A. 1984. An investigatıon on compatibility of some pear cultivars on quince rootstock”, Aegean University Journal of the Faculty of Agriculture, 21(3): 141-155.

Verma, S.K., Singh, S.K., Krishna, H., 2010. The effect of certain rootstocks on the grape cultivar ‘Pusa Urvashi’ (Vitis vinifera L.)”, International Journal of Fruit Science, 10(1):16-28.

Vigouroux, A. 1975. Verticillium dahliae, agent d’un deperissement deı’olivier en france“, Ann. Phytopahol. 737-744

Webster, A.D., 1995. Temperate fruit tree rootstock propagation”, New Zealand Journal of Crop and Horticultural Science 23(4): 355-372.

Yahmed, B.J., Ghrab, M., Benmousa, H., Mimoun, B.M., 2020. Nutritional status of stone fruit trees on dwarfing and vigorous rootstocks under warm Mediterranean conditions, Acta Horticulture, 1281.

Yang, Y., Wang, L., Tian, J., Li, J., Sun, J., He, L., Guo, S. Tezuka, T. 2012. Proteomic study participating the enhancement of growth and salt tolerance of bottle gourd rootstock-grafted watermelon seedlings, Plant Physiology and Biochemistry, 58:54- 65.

Yılmaz, C.H., Uğur, R., Sümbül, M.R., Özelçi, D. 2021. Performance of some Prunus rootstocks to transmit micronutrients to leaves. International Journal of Agriculture, Environment and Food Sciences, 5 (4): 656-665.

Yin, H., B. Yan, J. Sun, P. Jia, Z. Zhang, X. Yan, et al. 2012. Graft-union development: a delicate process that involves cell–cell communication between scion and stock for local auxin accumulation. Journal of Experimental Botany, 63: 4219-4232

Zarrouk, O., Testillano, P.S., Risueño, M.C., Moreno, M.Á., Gogorcena, Y., 2010. Changes in Cell/Tissue organization and peroxidase activity as markers for early detection of graft incompatibility in peach/plum combinations. Journal of American Society Horticultural Science, 135(1): 9-17.

Zhou, K., Jerszurki, D., Sadka, A., Shlizerman, L., Rachmilevitch, S., Ephrath, J., 2018. Effects of photo selective netting on root growth and development of young grafted orange trees under semi-arid climate. Scientia Horticulturae, 238: 272-280

Published

2023-06-05

How to Cite

UĞUR, R., & GÜNDEŞLİ, M. A. (2023). Rootstock Breeding Tolerant to Verticillium in Olive (Olea europaea). MAS Journal of Applied Sciences, 8(2), 265–273. https://doi.org/10.5281/zenodo.7933848

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