• Title/Summary/Keyword: Resistant Cultivar

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Gui Valley: A High Yielding Potential and Good Processing Potato Cultivar

  • Lim, Hak-Tae;Dhital, Shambhu Prasad;Khu, Don-Man;Li, Kui-Hwa;Choi, Seon-Phil;Kang, Chang-Won;Kim, Tae-Joo;Mo, Hwang-Sung;Hwang, Won-Nam;Lee, Woo-Jong
    • Korean Journal of Plant Resources
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    • v.22 no.6
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    • pp.483-488
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    • 2009
  • The main objective of this breeding program is to develop high yielding, disease resistance and good processing potato cultivar. 'Gui Valley' is a clonal selection resulting from a cross between 'ND2471-8' and 'Cona'. It has medium plant height and light green foliage. 'Gui Valley' has medium flowering habit and light pink flowers. 'Gui Valley' is a medium maturing potato cultivar and tubers are smooth, yellow skin, light yellow flesh, long-oval tuber shape, distinct red eyes with medium depth and medium dormancy. It has high level of tuber uniformity and good keeping quality. 'Gui Valley' demonstrates resistance to potato virus Y (PVY), soft rot, but moderately susceptible to late blight and common scab. It is also resistant to most of the internal and external physiological disorders particularly dehiscence, hollow heart and internal brown spot. The specific gravity of 'Gui Valley' is significantly higher (1.097) than that of 'Shepody' (1.078). 'Gui Valley' has suitable for processing mainly French fries and chips. This cultivar has high level of tuber uniformity and capable of yielding 37.6 $t{\cdot}ha^{-1}$, which is 18.2% higher than the control potato cultivar 'Shepody' under optimum agronomical practices.

A Early Maturity, High Grain Quality and Cold Tolerance Rice Cultivar "Sinunbong 1" (벼 조생 고품질 내냉성 품종 "신운봉1호")

  • Kim, Ki Young;Nam, Jeong Kwon;Choung, Jin Il;Ko, Jae Kwon;Kim, Bo Kyeong;Shin, Mun Sik;Ha, Ki Yong;Ko, Jong Cheol;Baek, Man Kee;Kim, Young Doo;Noh, Gwang Il;Kim, Woo Jae;Park, Hyun Su;Kang, Hyun Jung;Kim, Chung Kon
    • Korean Journal of Breeding Science
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    • v.40 no.2
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    • pp.192-195
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    • 2008
  • 'Sinunbong 1' is a japonica rice cultivar developed from the cross between "Sangjubyeo", high yield cultivar and 'Unbong 17', cold tolerance at Honam Agricultural Research Institute (HARI), NICS, RDA, in 2005. This cultivar has a short grain shape and about 111 days growth duration from transplanting to harvesting in Korean climate condition. This cultivar shows high resistant reaction to the blast, but susceptible to bacterial blight and strip virus. This variety has cold tolerance, compared to Odaebyeo. The milled kernels of 'Sinunbong 1' are translucent with non-glutinous endosperm. It has about 19.2% of amylose content and better palatability of cooked rice compared with 'Odaebyeo'. The milled rice yield of 'Sinunbong 1' is about 5.46 MT/ha under the standard fertilizer level of the ordinary transplanting cultivation. 'Sinunbong 1' would be adaptable to the northern plain, mid-mountainous, southern mountainous of Korea.

Judgement of Resistant Cultivar by Screening method for Resistance of Oyster Mushroom to Trichoderma disease in vitro (푸른곰팡이균의 저항성 품종 검정방법에 의한 느타리버섯 균주의 저항성 판별)

  • Jhune, Chang-Sung;Leem, Hoon-Tae;Lee, Chan-Jung;Kong, Won-Sik;Jang, Kab-Yeul;Sung, Gi-Ho
    • Journal of Mushroom
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    • v.9 no.4
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    • pp.170-179
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    • 2011
  • In coculturing with strains of Trichoderma and oyster mushroom, we could detect the difference in the resistance of oyster mushroom against Trichoderma with the phenomena of barrage reaction, overgrowth and lysis. We selected the isolates ASI 2183, ASI2504 and ASI 2477 as varieties that showed the resistance. The isolates ASI 2240, ASI 2479 and ASI 2181 were the best in their resistance against Trichoderma in the method using culture filtrate. In common, the isolates ASI 2479 and ASI 2240 were selected in both methods. In post-inoculation method, the isolates ASI 2479, ASI 2333 and ASI 2181 were selected and ASI 2302 was susceptible. For the same isolate of Trichoderma, the resistance varied depending on the isolates of oyster mushroom used in the experiments. Because we could detect the interactions between Trichoderma and oyster mushroom, it is possible to detect the level of the resistance that differs in the varieties. However, there were the cases of detecting the level of the resistance in repetitions with the same isolate, which may be caused by the vitality of isolates of Trichoderma and oyster mushroom. It is efficient to test the resistance with the resistant isolate of Pleurotus salmoneostramine and the susceptible isolate of ASI 2302.

Breeding of a Multi-flowering and Early-flowering White Calla Lily Cultivar 'White Cutie' Resistant to Soft Rot Disease (절화수량이 우수한 무름병 저항성 조생 백색칼라 'White Cutie' 육성)

  • Joung, Hyang Young;Cho, Hae Ryong;Rhee, Ju Hee;Shin, Hak Ki;Park, Sang Kun
    • Horticultural Science & Technology
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    • v.33 no.4
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    • pp.618-623
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    • 2015
  • The new white calla lily (Zantedeschia aethiopica) cultivar 'White Cutie' was bred at the National Institute of Horticultural & Herbal Science (NIHHS) in 2011. 'Childsiana' showing the multi-flowering characteristic and 'Wedding March' resistant to soft rot disease were artificially crossed in 2004. Of the progeny, 'White Cutie' was selected specifically for use in cut flower production after investigation over seven years (2005 to 2011) of genetic and phenotypic characteristics, resistance against soft rot, and customer preference regarding the culture vigor and post-harvest quality. 'White Cutie' was early flowering (85.6 days to flowering) with white flowers (RHS W155C), although it had a mid-sized flower in which spathe height and width were 8.6 cm and 8.7 cm, respectively. It was multi-flowering (6.2 flowers per plant) and produced a very high number of cormels (13.4 per plant). Furthermore, it was resistant to soft rot disease.

Scab (Venturia nashicola) Resistant Pear, "Wonkyo Na-heukseong 2" (배 검은별무늬병 저항성 "원교 나-흑성 2호")

  • Shin, Il-Sheob;Hwang, Hae-Sung;Shin, Yong-Uk;Heo, Seong;Kim, Ki-Hong;Kang, Sam-Seok;Kim, Yoon-Kyeong
    • Korean Journal of Breeding Science
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    • v.41 no.3
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    • pp.354-357
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    • 2009
  • "Wonkyo Na-heukseong 2" was selected from a cross between "Kiyomaro", late season European cultivar with highly resistance and "Mansoo", late season Asian cultivar with long storability, large size and low susceptibility to pear scab made in 1997 at the National Institute of Horticultural & Herbal Science of Rural Development Administration in Korea. "Kiyomaro", released cross between "Taiheiyo" and "Bartlett" with scab resistance caused by Venturia nashicola in Japan, with no visual symptoms on any leaves was used as scab resistant source after field investigation and artificial inoculation test during 1997~1999. "Wonkyo Na-heukseong 2" blooms 1 day earlier than "Mansoo" and 3 days later than "Kiyomaro" in 2008. It is strong in tree vigor and upright-spreading in tree habit. It is classified as highly resistant to pear scab as "Kiyomaro" and "Bartlett", and cross-compatible with parental variety and Korean major pear varieties such as "Niitaka" and "Wonwhang". The average optimum harvest time of "Wonkyo Na-heukseong 2" was approximately 180 days after full bloom and it matured about 20 days shorter than parental varieties. The fruit is spindle in shape and yellowish greenish brown in skin color. Average fruit weight was 484 g and soluble solids content was $13.2^{\circ}Brix$. The flesh had medium to high juice and negligible grit. Its fruit was crisp like Asian pear.

Breeding of a Mid-Late Maturing Watermelon Cultivar, 'Hanbit' with Resistant to Anthracnose Race 3 (수박 탄저병 Race 3 저항성 중만생종 수박 '한빛' 육성)

  • Huh, Yun-Chan;Hong, Kue-Hyon;Ko, Ho-Cheol;Park, Kyoung-Sub;Park, Dong-Kum;Lee, Joong-Sup;Cho, Myeoung-Cheoul;Lee, Sok-Young;Ko, Kwan-Dal;Lee, Woo-Moon
    • Korean Journal of Breeding Science
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    • v.42 no.6
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    • pp.699-702
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    • 2010
  • Anthracnose is a major limiting factor of the watermelon production in Korea. A mid-late maturing watermelon line, 'Hanbit' with resistance to anthracnose (Colletotrichum orbiculare) race 1 and 3, was developed by the cross between anthracnose resistant cultivar 'AU-Producer' and high quality inbred line '920533' at the National Institute of Horticultural and Herbal Science, Rural Development Administration (RDA). 'Hanbit' produces 5.4 to 9.5 kg of red flesh fruits with clear stripes on skin. Average soluble solid contents are ranged from 10.4 to 11.2$^{\circ}$Bx. The yield and quality of 'Hanbit' was comparable to or better than those harvested from the popular commercial cultivars. 'Hanbit' can be cultivated in open fields and under the protected green house condition. In addition to the commercial production, it can be used as a resistant material in $F_1$ hybrid breeding program.

Resistant spectrum of major genes including Pi-9 carried against Korean rice blast fungus. (oral)

  • Kim, Byung-Ryun;Han, Seong-Sook;Hwan, Roh-Jae;Park, Seong-Ho;Ryu, Jae-Dang
    • Proceedings of the Korean Society of Plant Pathology Conference
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    • 2003.10a
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    • pp.64.2-64
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    • 2003
  • Twenty-seven monogenic rice lines harboring major resistant gene for blast were screened to analyze their resistance spectrum to Korean blast fungus population using 190 isolates collected from 1985 to 2002. Especially, the monogenic line containing Pi-9 gene was screened using 320 isolates. Based on the monogenic lines-blast isolate interactions, the 27 rice lines were classified into 9 groups. The chinese rice cultivar LTH showed susceptible to all the tested isolates. Those lines IRBLz-Fu, ERBL5-M and IRBL9-W harboring Pi-z, Pi-5, and Pi-9, respectively showed broader spectrum of resistance than those rice lines having Pi-19, Pi-7 etc. Interestingly, the Pi-9 gene(IRBL9-W) showed resistance to most isolates collected before 2000, but it showed susceptible reactions to 5% and 20% of blast fungus population in 2001 and 2002, respectively. Population of virulent isolates to Pi-ta, Pi-b, and Pi-7 also were increased in 2002 compared to those before 2000.

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Induction of RNA-mediated Resistance to Papaya Ringspot Virus Type W

  • Krubphachaya, Pongrit;Juricek, Mila;Kertbundit, Sunee
    • BMB Reports
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    • v.40 no.3
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    • pp.404-411
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    • 2007
  • Transformation of cantaloupes with the coat protein (cp) gene of papaya ringspot virus type W (PRSV-W), Thai isolate, was used to introduce virus resistance. Binary vectors containing either the full length coat protein coding region under control of the 35S CaMV promoter(pSA1175), or the inverted-repeat of a coat protein coding region (pSA1304), were constructed and used for Agrobacteriummediated transformation of cotyledonary explants of the cantaloupe cultivar Sun Lady. Four independent transgenic lines were obtained using pSA1304 and one using pSA1175. Integration of the PRSV-W cp gene into the genome of these transgenic lines was verified by PCR amplification, GUS assays and Southern blot hybridization. In vitro inoculation of these lines with PRSV-W revealed that whereas the line containing pSA1175 remained sensitive, the four lines containing pSA1304 were resistant. The presence of small RNA species, presumably siRNA, corresponding to regions of the viral cp gene in transgenic lines resistant to PRSV-W supports the involvement of post-transcriptional gene silencing in the establishment of resistance.

Rapid Screening of Apple mosaic virus in Cultivated Apples by RT-PCR

  • Ryu, Ki-Hyun;Park, Sun-Hee
    • The Plant Pathology Journal
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    • v.19 no.3
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    • pp.159-161
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    • 2003
  • The coat protein (CP) gene of Apple mosaic virus (ApMV), a member of the genus Ilarvirus, was selected for the design of virus-specific primers for amplification and molecular detection of the virus in cultivated apple. A combined assay of reverse transcription and polymerase chain reaction (RT-PCR) was performed with a single pair of ApMV-specific primers and crude nucleic acid extracts from virus-infected apple for rapid detection of the virus. The PCR product was verified by restriction mapping analysis and by sequence determination. The lowest concentration of template viral RNA required for detection was 100 fg. This indicates that the RT-PCR for detection of the virus is a 10$^3$times more sensitive, reproducible and time-saving method than the enzyme-linked immunosorbent assay. The specificity of the primers was verified using other unrelated viral RNAs. No PCR product was observed when Cucumber mosaic virus (Cucumovirus) or a crude extract of healthy apple was used as a template in RT-PCR with the same primers. The PCR product (669 bp) of the CP gene of the virus was cloned into the plasmid vector and result-ant recombinant (pAPCP1) was selected for molecule of apple transformation to breed virus-resistant transgenic apple plants as the next step. This method can be useful for early stage screening of in vitro plantlet and genetic resources of resistant cultivar of apple plants.

In Vivo Screening for Biocontrol Agents (BCAs) against Streptomyces scabiei Causing Potato Common Scab

  • Lee, Hyang-Burm;Cho, Jong-Wun;Park, Dong-Jin;Li, Chang-Tian;Ko, Young-Hwan;Song, Jeong-Heub;Koh, Jeong-Sam;Kim, Bum-Joon;Kim, Chang-Jin
    • The Plant Pathology Journal
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    • v.20 no.2
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    • pp.110-114
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    • 2004
  • Through in vitro screening for biocontrol agents (BCAs) against Streptomyces scabiei causing potato (Solanum tuberosum) common scab, 19 streptomycete and 17 fungal isolates with antagonistic activity were selected as BCA candidates. For the selection of BCA candidates which are highly resistant to 10 kinds of antibiotics or pesticides, chemical susceptibility testing was initially performed in vitro. A remarkable degree of variation in susceptibility to antibiotics or pesticides was observed among the isolates tested. Streptomycete A020645 isolate was highly resistant to all the tested chemicals except neomycin up to 5,000 ppm. On the other hand, out of 36 antagonistic microbes subjected to in vivo pot tests using cultivar Daejima, four streptomycete isolates namely, A020645, A010321, A010564, and A020973, showed high antagonistic activity with >60% and 55% control value, respectively, and high chemical resistance to 10 kinds of chemicals. Therefore, these isolates were selected as potential BCAs for the control of potato common scab.