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Inheritance of the narrow leaf mutation in traditional Japanese evergreen azaleas

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Abstract

Morphological mutations have been admired and preserved in the classical cultivars of the Japanese evergreen azalea since the Edo era (1603–1867). One such mutation is the presence of narrow leaves and petals. In this study, we investigated the characteristics and inheritance patterns of the narrow leaf-type mutational form of Rhododendron macrosepalum ‘Seigaiha’, R. kaempferi ‘Kin-kujyaku’, and R. kiusianum Yanagi-ba mutant. The leaves of all cultivars showed weak development in the transverse plane and thickened margins. Subsequently, based on this qualitative character, the inheritance of the narrow leaf mutation was investigated. F1 seedlings of cross combinations between normal and narrow leaf-type plants had normal leaf-type. All F1 progenies of cross combinations between narrow leaf-type plants had narrow leaves like their parents. In addition, seedlings obtained from backcross and sib-cross tests using narrow leaf mutants segregated into normal and narrow leaf-types at a 1:1 and 3:1 ratio, respectively. These results indicate that the narrow leaf trait of three different azalea cultivars, ‘Seigaiha’, ‘Kin-kujyaku’, and R. kiusianum Yanagi-ba mutant, is probably a recessive mutation caused by a single, common gene.

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  • 26 March 2018

    This article has been published with an erroneous version of Table 2. Please find the correct Table 2 in this document.

References

  • De Riek JD, Dendauw J, Mertens M, De Loose MD, Heursel J, Van Blockstaele E (1999) Validation of criteria for the selection of AFLP markers to assess the genetic variation of a breeders’ collection of evergreen azaleas. Theor Appl Genet 99:1155–1165

    Article  Google Scholar 

  • Galle FC (1987) AZALEA. Revised and enlarged Ed. Timber Press, Portland, pp 37–38

    Google Scholar 

  • Heursel J (1975) Inheritance of the flavonols azaleatin and quercetin in Rhododendron simsii Planch. and Rh. obtusum Planch. Z Pflanzenzüchtg 74:62–70

    CAS  Google Scholar 

  • Heursel J (1976) Die Vererbung des Merkmals `hose in hose’ (Doppelkronigkeit) bei Azaleen. Gartenwelt 76:111–113 (In German)

    Google Scholar 

  • Heursel J, Garretsen F (1989) Inheritance of corolla size, number of stamens and percentage of plants with petaloid stamens in evergreen azaleas (Rhododendron Subsect. obtusa). Plant Breed 103:304–309

    Article  Google Scholar 

  • Heursel J, Horn W (1977) A hypothesis on the inheritance of flower colours and flavonoids in Rhododendron simsii PLANCH. Z Pflanzenzüchtg 79:238–249

    CAS  Google Scholar 

  • Imai Y (1925) Genetic behavior of the willow leaf in the Japanese morning glory. J Genet 16:77–99

    Article  Google Scholar 

  • Imai Y (1930) Description of the genes found in Pharbitis nil. Genetica 12:297–318

    Article  Google Scholar 

  • Ito I, Creech JL (1984) A brocade pillow: Azaleas of old Japan. John Weatherhill, Inc., New York

    Google Scholar 

  • Kajita Y, Nishino E (2009a) Morphology and anatomy of leaves and flowers of wild-type and pleiotropic maple-willow mutants in Japanese morning glory (Ipomea nil). J Jpn Soc Hortic Sci 78:369–380

    Article  Google Scholar 

  • Kajita Y, Nishino E (2009b) Development of leaves and flowers in the wild type and pleiotropic maple-willow mutant of Japanese morning glory (Ipomea nil). J Japan Soc Hortic Sci 78:469–477

    Article  Google Scholar 

  • Kobayashi N (2013) Evaluation and application of evergreen azalea resources of Japan. Acta Hortic 990:213–219

    Article  Google Scholar 

  • Kobayashi N, Ishihara M, Ohtani M, Nakatsuka A, Cheon KS, Mizuta D, Tasaki K (2010) Evaluation and application of the long-lasting flower trait (Misome-Sho) of azalea cultivars. Acta Hortic 855:165–168

    Article  Google Scholar 

  • Kunishige M, Kobayashi Y (1980) Chromatographic identification of Japanese azalea species and their hybrids. In: Luteyn JL, O’brien ME (eds) Contribution toward a classification of Rhododendron. New York Botanical Garden, New York, pp 277–287

    Google Scholar 

  • Kurashige Y, Kobayashi N (2008) Evergreen azalea cultivars and breeding trends in the Taisho era inferred by discovered “azalea research notes” of Kanagawa agricultural research station. Hortic Res (Jpn) 7:323–328 (In Japanese with English abstract)

    Article  Google Scholar 

  • Michishita A, Ureshino K, Miyajima I, Sakai K, Ozaki Y (2003) Capsule set, seed productivity and germination in interspecific crosses among evergreen Azaleas. J Fac Agric Kyushu Univ 47(2):283–288

    Google Scholar 

  • Tasaki K, Nakatsuka A, Kobayashi N (2012a) Morphological analysis of narrow-petaled cultivars of Rhododendron macrosepalum Maxim. J Jpn Soc Hortic Sci 81:72–79

    Article  Google Scholar 

  • Tasaki K, Nakatsuka A, Cheon KS, Koga M, Kobayashi N (2012b) Morphological and expression analyses of MADS genes in Japanese traditional narrow- and or staminoid-petaled cultivars of Rhododendron kaempferi Planch. Sci Hortic 134:191–199

    Article  CAS  Google Scholar 

  • Tasaki K, Nakatsuka A, Cheon KS, Kobayashi N (2014) Expression of MADS-box genes in narrow-petaled cultivars of Rhododendron macrosepalum Maxim. J Jpn Soc Hortic Sci 83:52–58

    Article  CAS  Google Scholar 

  • Wilson EH, Rehder A (1921) A monograph of azaleas. Rhododendron subgenus Anthodendron. Publications of the Arnold Arboretum, The University Press, Cambridge. no. 9

  • Yamazaki T (1993) Rhododendron. In: Iwatsuki K, Yamazaki T, Boufford DE, Ohba H (eds) Flora of Japan, vol 3a. KODANSHA, Tokyo, pp 16–44

    Google Scholar 

  • Yamazaki T (1996) A revision of the genus Rhododendron in Japan, Taiwan, Korea, and Sakhalin. Tsumura Laboratory, Tokyo

    Google Scholar 

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Acknowledgments

This study was supported by Grant-in-Aid for Scientific Research (KAKENHI Nos. 23241076 and 26292017) from Japan Society for the Promotion of Science (JSPS).

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Correspondence to Nobuo Kobayashi.

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A correction to this article is available online at https://doi.org/10.1007/s10681-018-2130-6.

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Tasaki, K., Nakatsuka, A., Cheon, KS. et al. Inheritance of the narrow leaf mutation in traditional Japanese evergreen azaleas. Euphytica 206, 649–656 (2015). https://doi.org/10.1007/s10681-015-1479-z

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  • DOI: https://doi.org/10.1007/s10681-015-1479-z

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