• Title/Summary/Keyword: Freesia (Freesia hybrida)

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Cryopreservation of in vitro Grown Shoot Tips of Two Freesia hybrida Cultivars by Droplet-vitrification

  • Jinjoo Bae;Jae-Young Song;Ji-Won Han;Ho Cheol Ko;Sung-Hee Nam;Jung-Ro Lee;Ho-sun Lee
    • Korean Journal of Plant Resources
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    • v.36 no.6
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    • pp.562-570
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    • 2023
  • The droplet-vitrification technique for cryopreservation has proven successful across a diverse range of germplasm, ensuring safe and effective long term preservation. In this study, we investigate an effective cryopreservation protocol using the droplet-vitrification technique for shoot tips of Freesia hybrida cultivars 'Sunny Gold' and 'Sweet Lemon'. To determine optimal conditions for Freesia cryopreservation, we employed a carefully selected standard procedure along with additional treatments and alternative solutions. For 'Sunny Gold', the highest regrowth rate of 24% was achieved when shoot tips underwent dehydration with PVS3 solution for 120 minutes before direct immersion in liquid nitrogen (LN) for 1 hour, coupled with a standard protocol involving a two-step preculture with 0.3 M - 0.5 M sucrose, loading with C4 for 40 minutes, and unloading with 0.8 M sucrose for 40 minutes. In the case of 'Sweet Lemon,' regrowth of cryopreserved shoot tips was observed with dehydration treatments, including PVS2 (A3) for 60 minutes and PVS3 (B1) for 60 minutes, as well as longer exposure. The results reflect the distinct sensitivity of shoot tips to chemical toxicity and osmotic stress in these two genotypes. This study provides valuable evidence to consistently enhance the effectiveness of cryopreservation methods for the long-term conservation of Freesia germplasm.

In vitro Multiplication and Corm Production of Freesia hybrida 'Sunny Gold'

  • Jinjoo Bae;Jae-young Song;Woohyung Lee;Jung-ro Lee;Munsup Yoon
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2022.09a
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    • pp.62-62
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    • 2022
  • Freesia has been an important worldwide cut flower because of its fragrance, long vase life and the wide color range of the flower. The conventional propagation methods by seeds and corms have many disadvantages such as shorter inflorescences with fewer numbers of florets, a reduction in cut flower quality and the accumulation of plant viruses in corms by successive cultivation. Therefore, the conventional propagation systems in Freesia needs to be replaced with tissue cultures to overcome the disadvantages. This study explored an efficient multiplication protocol using the combination of plant growth regulators (PGRs) for developed cultivar 'Sunny Gold'. The combination between 6-benzylaminopurin (BA) and α-naphthalene acetic acid (NAA) did not produce new shoots but developed enlarged roots. BA only treatments and the combination between BA and kinetin treatments were effective on shoot multiplication. The highest average number of shoots was 5.3 in the presence of 3 mg/L BA and 0.5 mg/L kinetin. To produce corms and cormlets, proliferated shoots were subcultured on 1/2 Murashige and Skoog (MS) medium supplemented with 90 g/L sucrose, 1 g/L charcoal and 7 g/L plant agar and placed at 4℃ in the dark for 6 months. The small size of corms and comlets were produced. The average number of regenerated comlets was 2.75 per shoot. The results showed that shoot multiplication is more efficient than cormlet regeneration for in vitro freesia proliferation.

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Occurrence of Freesia Basal Rot Caused by Sclerotium sp. (Sclerotium sp.에 의한 프리지아 균핵병 발생)

  • Lee Sang-Yeob;Ryu Jae-Gee;Kim Yong-Ki
    • Research in Plant Disease
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    • v.12 no.2
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    • pp.69-74
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    • 2006
  • Basal rot of freesia caused by a Sclerotium sp. occurred at Incheon areas. Incidence of the disease reached up to 45% and averaged 17.0% in the fields. Typical symptoms consisted of sheath dry and leaf blight due to rots on basal leaves. The causal fungus was identified as Sclerotium sp. based on following mycological characteristics. The fungus formed sclerotia on cultural media and plant tissues, but did not produce asexual spores. On cultural medium, aerial mycelia of the fungus changed color from white to clay with cultural age and smelled musty odor. Numerous irregular and elliptical black microsclerotia of the fungus were formed on potato dextrose agar (PDA) after 5 days of incubation at $25^{\circ}C$ and sized $115{\sim}200{\times}95{\sim}150 (av. 145{\sim}126.5){\mu}m$. The fungus grew at $10{\sim}32^{\circ}C$ and $pH 4.0{\sim}8.5$. However, the optimal temperature and pH for mycelial growth of the fungus were $24^{\circ}C$ and 5.5 respectively. The isolate showed present pathogenicity to not only freesia but gladiolus in the pathogenicity test, and the symptoms were similar to those observed in the fields. Basal rot of freesia caused by Sclerotium sp. is firstly reported in Korea.

Relationship between Discoloration and Flower Pigment after Pressing in Yellow-Colored Flowers (황색 꽃의 압화 후 변색과 화색소와의 관련성)

  • Byun, Mi Soon;Cho, Eun Jeong;Kim, Kiu Weon
    • FLOWER RESEARCH JOURNAL
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    • v.16 no.1
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    • pp.76-84
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    • 2008
  • This study was conducted to find out the cause of discoloration after pressing yellow-colored flowers. Plant materials used were Lilium Asiatic Hybrids, Oncidium spp., Rosa hybrida, $Tulipa{\times}gesneriana$, Antirrhinum majus, Dianthus caryophyllus, Freesia hybrida, Zantedeschia elliottiana, Gerbera jamesonii, Helianthus annuus, and Ranunculus asiaticus. Thickness, ratio of length to width, and water content of petals did not considerably affect discoloration of pressed flowers. Expression of yellow color in petals was caused by carotenoids in Lilium Asiatic Hybrids, Oncidium spp., Rosa hybrida and $Tulipa{\times}gesneriana$, by flavonoids in Antirrhinum majus, Dianthus caryophyllus, Freesia hybrida and Zantedeschia elliottiana, and by coexistence of carotenoids and flavonoids in Gerbera jamesonii, Helianthus annuus and Ranunculus asiaticus. Carotenoids that expressed yellow color in petals affected significantly on discoloration in pressed flowers containing carotenoids alone or both carotenoids and flavonoids. However, discoloration was hardly ever found in yellow-colored species as affected by flavonoids. Dark treatment was effective for almost perfect preservation in color of pressed flowers, while light treatment resulted in severe discoloration.

A white double flowering freesia 'Shiny Bell' with high yielding for cut flower (흰색 겹꽃 다화성 절화용 프리지아 '샤이니벨' 육성)

  • Choi, Youn Jung;Jeong, Hyang Young;Goo, Dae Heo;Kang, Yun Im;Cho, Hae Ryong
    • Korean Journal of Agricultural Science
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    • v.41 no.4
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    • pp.299-302
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    • 2014
  • A freesia (Freesia hybrida Hort.) 'Shiny Bell' was developed for the cut flower in the National Institute of Horticultural Herbal Science in 2012. This hybrid was selected from a crossing between cn. 'Teresa' and 'Rossini', which is white semi-double flowering and red double flowering, respectively. in 2004. Morphological characteristics of the selected hybrid were investigated for 3 years from 2009 to 2011, and then it was named 'Shiny Bell'. 'Shiny Bell' had red color of RHS W155C, and double flower. The growth of the plant was vigorous and the average height was 109.3 cm. The average flower width was 5.8 mm, number of floret per stalk was 11.3, and stalk length was 8.5 cm. The average yield, 7.3 Branches per plant, was 3 stems per plant more than the control cultivar. The average days to first flowering of 'Shiny Bell', was 143.3 days, and it was approximately 7 days later than the control cultivar. The average yield of 'Shiny Bell' was 4.0 cormlets per plant.

Micropropagation from Corm Apical Meristems Culture of Freesia refrecta Hybrida (정단 분열 조직배양에 의한 후리지아의 미세번식)

  • 고정애;김명준;김현순;이진재;김영숙
    • Korean Journal of Plant Resources
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    • v.16 no.1
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    • pp.34-39
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    • 2003
  • Corm apical meristem cultures of thirteen glasshouse freesia cultivars were tested to investigate the possibility of micropropagation using MS basal medium supplemented with 2,4-D, NAA(0.1, 0.5, 1.0mg/L, respectively) and BA (0.5∼2.0mg/L). The majority of the tested cultivars could be induced callus and shoot buds in all culture condition. The combinations of NAA and BA appeared superior to that of 2,4-D and BA depending on cultivars for callus induction and shoot formation. Among the cultivars, 'Golden Yellow' showed the highest regeneration capacity on MS media with 0.5mg/L NAA and 1.0 mg/L BA. The highest percentage of regeneration and the greatest number of shoot from calli were obtained through successive subculture on MS medium supplimented with 0.5mg/L BA. In that condition, more than 60 % shoot regeneration and average of 25.1 shoots per explant was achieved. Transformed shoots on half-strength MS medium without plant growth regulators rooted easily.

Breeding of a scarlet single flowering freesia 'Dancing Flame' with early flowering and high yielding for cut flower (조생 다화성 절화용 프리지아 '댄싱플레임' 육성)

  • Cho, Hae Ryong;Rhee, Ju Hee;Lim, Jin Hee;Kim, Mi Sun;Park, Sang Kun;Shin, Hak Ki;Joung, Hyang Young;Choi, Youn Jung
    • Korean Journal of Agricultural Science
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    • v.40 no.4
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    • pp.305-309
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    • 2013
  • A freesia (Freesia hybrida Hort.) 'Dancing Flame' was developed for the cut flower in the National Institute of Horticultural Herbal Science in 2007. This hybrid was selected from a crossing between a seedling 'Vulcano' and 'Sailor', which is scarlet double flowering and purple single flowering, respectively, and 'Figaro' which is bright red color and semi-double flowering, in 2000. Morphological characteristics of the selected hybrid were investigated for 3 years from 2005 to 2007, and then it was named 'Dancing Flame'. 'Dancing Flame' had red color (RHS R44B) and single flower with yellow center color (RHS Y9A). The growth of the plant was vigorous and the average height was 93.3 cm. The average flower width was 60 mm, number of floret per stalk was 14.3, and stalk was 13.2 cm length. The average yield, 7.8 cuttings per plant, was 2.5 stems per plant more than the control cultivar. The average days to first flowering of 'Dancing Flame', 133 days, was approximately 5 days earlier than the control cultivar. And its average yield, 7.1 cormlet per plant, was also 2.5times more than the control cultivar.

A Double Freesia "Golden Amor" with Late Flowering and High Yielding for Cut Flower (황색 겹꽃 대형화 절화용 프리지아 신품종 "Golden Amor" 육성)

  • Cho, Hae Ryong;Lim, Jin Hee;Rhee, Hye Kyung;Kim, Mi Sun;Choi, Sung Ryul;Shin, Hak Ki
    • Korean Journal of Breeding Science
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    • v.41 no.3
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    • pp.346-348
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    • 2009
  • A golden double freesia (Freesia hybrida Hort.) "Golden Amor" was developed from a cross 'Golden Crown' and 'White Wing' followed by seedling and line selections at the National Horticultural Research Institute, Rural Development Administration (RDA) in 2005. Growth and flowering characteristic tests were conducted from 2000 to 2005. "Golden Amor" has large double type flower with bright golden color (RHS 12B). It have multiple florets, good flower shape, upright leaves and stalks. The average yield of "Golden Amor" was 6.0 cuttings per plant in greenhouse carried out from 2003 to 2005. It has good production of cormlets, vigorous growth and resistance to Fusarium and virus. "Golden Amor" would be cultured under greenhouse condition in Korea.

Effect of Substrates on the Growth and Flowering of Freesia hybrid 'Gold Rich' in Nutrient Culture (프리지아(Freesia hybrida) '골드리치'의 양액재배 시 인공배지별 생육 및 개화특성)

  • Lee, Jin-Jae
    • Horticultural Science & Technology
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    • v.35 no.1
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    • pp.30-37
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    • 2017
  • This study was conducted to determine the effects of various growth substrates on the growth and flowering of hydroponically grown Freesia hybrid 'Gold Rich'. Perlite, peat moss and a perlite: peat moss mixture (1 : 1 ratio, v / v) were used as the growing media. The greatest plant height before flower bud differentiation was attained using mixed medium compared to the others. The type of medium used did not influence leaf number, mineral content or SPAD value in leaves. Flowering began at 137 days after planting in mixed medium, which was 13 days earlier than in perlite medium. The whole plant fresh weight was 21.3 g heavier in mixed medium than in perlite medium (40.9 g). A similar result was obtained for shoot length, with the highest value (96.6 cm) obtained in mixed medium, i.e., 20 cm higher than in perlite medium (76.6 cm). Floret number per plant was also the highest in mixed medium (14.4), i.e., 1.7 - times higher than in perlite medium. Therefore, among the substrates tested in this experiment, we recommend using mixed perlite: peat moss medium (1 : 1 ratio, v / v) for hydroponic culture of freesia, as the use of this medium improved the physical properties of the plants, producing the best results in terms of plant growth and cut-flower quality.

Double Flower Freesia 'Sweet Lemon' with Strong Fragrance (향기가 강한 연노랑색 겹꽃 프리지아 '스윗레몬(Sweet Lemon)' 육성)

  • Choi, Youn Jung;Joung, Hyang Young;Goo, DaeHoe;Kang, Yun Im;Lee, Young Ran
    • FLOWER RESEARCH JOURNAL
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    • v.26 no.4
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    • pp.216-220
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    • 2018
  • Freesia (Freesia hybrida Hort.) 'Sweet Lemon' was developed for the cut flowers in National Institute of Horticultural Herbal Science, Rural Development Administration, Korea in 2015. This hybrid was crossed and selected from 'Teresa' and 'Yvonne' in 2007. Morphological characteristics of the selected freesia hybrid were investigated for 5 years from 2009 to 2014, and then it was named 'Sweet Lemon' in 2015. 'Sweet Lemon' has double and lemon petals (RHS color chart Y2B). The average flower diameter was 6.8 cm and the average yield is 6.7. The growth of the plant is vigorous and the average plant height is 99.0cm, which is 34.7cm higher than the standard cultivar 'Yvonne'. The average floret number per stalk of 'Sweet Lemon' was 10.7, and stalk length was 7.7 cm. The average days to first flowering of 'Sweet Lemon', 126 days, was approximately 20 days earlier than the control cultivar. It's average vase life and yield is 8.7 days and 5.6 cormlets per plant, respectively. Totally 58 of volatile compounds were identified using gas chromatography-mass spectrometry (GC-MS), the major components were linalool, alpha-terpineol, alpha-selinene, and limonene.