• Title/Summary/Keyword: plant disease resistance

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A New Short Stem, Disease Resistance and High Yielding Peanut "Pungsan" (단경 내병 다수성 땅콩 품종 "풍산")

  • Pae, Suk-Bok;Cheong, Young-Keun;Park, Chang-Hwan;Lee, Myung-Hee;Hwang, Chung-Dong;Shim, Kang-Bo;Jung, Chan-Sik;Jung, Churl-Whan;Park, Keum-Yong;Park, Chung-Beam;Choi, Gyu-Hwan;Lee, Jae-Chul;Kim, In-Jae;Kim, Je-Kyu
    • Korean Journal of Breeding Science
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    • v.40 no.2
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    • pp.173-177
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    • 2008
  • A new peanut variety "Pungsan" (Arachis hypogaea ssp. hypogaea L.) was developed at the Yeongnam Agricultural Research Institute, NICS, in Milyang in 2007. It was derived from a cross between a short stem cultivar "Satonoka" and a high-yielding local cultivar "Yecheon". "Pungsan" is the Virginia plant type. It has 18 branches per plant and 40 cm of main stem height. Each pod with long-ellipse shaped large kernel has two grains with light-brown testa and 100 seed weight was 95g in the regional yield trials (RYT). "Pungsan" showed more resistant to web blotch compared with check variety. In the regional yield trials "Pungsan" was outyielded in grain yield to the check variety by 16% with 4.45 MT/ha for grain.

Effect of Seed Parents on Varietal Performance in Strawberry (딸기 교잡육종 시 품종적 성능에 미치는 자방친의 효과)

  • Rho, Il Rae;Cho, Yong Seop;Cheong, Jae Wan;Jeong, Ho Jeong
    • Korean Journal of Breeding Science
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    • v.42 no.4
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    • pp.374-380
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    • 2010
  • In order to select excellent cross parents in strawberry breeding, 11 varieties were self-pollinated and tested their progenies. Among the 11 varieties, 'Akihime', 'Maehyang' and 'Seolhyang' showed superior in plant vigor, disease resistance and yield. Combining ability was tested using 15 progenies obtained from crosses between 3 selected varieties as seed parents and 5 varieties as pollen parents. Plant vigor was the strongest when 'Akihime' was used as a seed parent while ripening time tended to the fastest when 'Seolhyang' as a seed parent. Average fruit weight of the crosses 'Seolhyang' ${\times}$ 'Tochiotome', 'Seolhyang' ${\times}$ 'Geumhyang', 'Seolhyang' ${\times}$ 'Wongyo 3111' and 'Akihime' ${\times}$ 'Wongyo 3111' were above 18 g for marketable fruits. Fruit hardness was superior at crosses of 'Maehyang' as a seed parents to other crosses combinations, especially 'Maehyang' ${\times}$ 'Tochiotome'. Soluble solid contents (SSC) was not significantly different among cross combinations. The best cross combination for marketable yield was 'Akihime' ${\times}$ 'Wongyo 3111', followed by 'Seolhyang' ${\times}$ 'Geumhyang', 'Maehyang' ${\times}$ 'Geumhyang', 'Akihime' ${\times}$ 'Tochiotome', in order.

Plus Tree Selection of Black Locust (Robinia pseudoacacia L.) for Tree Improvement of Timber Characteristics (국내 아까시나무의 용재 특성 향상을 위한 우량개체 선발)

  • Tae-Lim Kim;Hyemin Lim;Kyungmi Lee;Changyoung Oh;Il Hwan Lee;Hwan Su Hwang
    • Korean Journal of Plant Resources
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    • v.36 no.1
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    • pp.91-99
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    • 2023
  • Plus tree selection is the essential first step in a tree improvement program. This study was carried out to select plus trees of black locust (Robinia pseudoacacia L.) for tree improvement in Korea. The candidate plus trees of black locust were selected from twenty-one places in the four provinces (Gangwon, Gyeonggi, Chungcheong and Gyeongsang) following comparison selection. The trees were examined for qualitative and quantitative traits of economic interest like tree height (H), diameter at breast height (DBH), clear bole height (CBH), stem straightness (SS), crown size (CS) and disease resistance. The 64 selected trees showed higher quality in growth characteristics than control trees. Average of height, DBH, CBH, SS and CS were 20.5 m, 31.1 cm, 10.1 m, 1.2 and 5.2 m respectively. In particular, it was shown that the growth characteristics were higher in Chungcheong population. The superiority percentage of selected candidate plus trees of black locust over their respective check trees ranged from 7.3% to 18.9% in height, 20.0% to 40.6% in DBH, 32.8% to 73.5% in CBH, 42.9% to 55.2% in SS and -11.1% to 9.4% in CS, respectively. The selected black locust will be useful in future tree breeding programs based on their clonal and progeny performance.

Adaptability Test on Low Organic Soil and Selection of Varieties of Soybean Cultivars

  • Sung-Hyun Yun;Ju-young Choi;Young-Hwan Ju;Min-Young Park;Soo-Jeong Kwon ;Probir Kumar Mittra;Sang-Do Lee ;Tae-Young Hwang ;Sun-Hee Woo
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2022.10a
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    • pp.78-78
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    • 2022
  • Food productivity in North Korea is about 50% lower than in South Korea. In order to increase the productivity of major crops, it is necessary to develop early maturing, disease resistance, and high-yielding varieties and apply them early. Since the late 1990s, North Korea has been actively developing potatoes, rice and com as major food crops, and soybeans are considered important as a protein-supplying crop. Domestic cultivated varieties, which are expected to be most adaptable eco-climatologically, are mainly selected from soil with high nutrient soil. It is necessary to test separately for adaptability in low organic soil. So it is very necessary to apply technology to improve soil improvement through rotational crop selection in the middle and long-term. Therefore, this study was conducted to test the adaptability to low organic soils of domestic cultivars and to select varieties. In 2021 there are twenty two (22) varieties of soybeans were grown in low organic soil at the field of Chungbuk National University. This year twenty two (22) varieties of soybeans were also grown in low organic soil at the field of Chungbuk National University. Sowing was done on June 10, the planting distance was 70cm × 15cm, after opening the cotyledons fully, the soybeans were thinned and leaving two plants per hole. In addition, various types of growth characteristics and quantitative components were investigated to evaluate the adaptability to low organic soil of domestic varieties. This study was conducted to investigate the growth characteristics and quantitative components of soybean varieties grown in low organic soil. The flowering period of 22 varieties of soybeans was about 14 days from July 22 to August 4. The flowers of the beans were white, purple, light purple and the pubescence color was gray and brown where most of them were gray. The highest plant height was up to 130.4 cm and lowest was 20.3 cm, highest stem length was up to 119.5 cm and lowest was 15.3 cm. Highest first pod height (FPH) was up to 34.0 cm and lowest was 3.0 cm. Highest stem diameter was up to 15.76mm and lowest was 1.76 mm. Number of main stem nodes was up to 19 and at least 1. Number of branch was up to 10 and at least 0. The number of pod per plant was up to 121. Bacterial pustule has been spread in soybean field.

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Breeding of 'Daemani' Cultivar of Gomchwi with Big Leaf and Resistance of Powdery Mildew Disease (흰가루병 저항성이면서 잎이 큰 곰취 '대마니' 품종 육성)

  • Jong Taek Suh;Ki Deog Kim;Jong Nam Lee
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2021.04a
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    • pp.17-17
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    • 2021
  • 곰취는 주로 쌈용, 장아찌, 나물용 등으로 이용되고 있으며 주로 자생 곰취의 일종인 '곤달비' 라고 하는 종이 많이 재배되고 있다. 일반 곰취에 비해 곤달비는 향이 진하지 않고 씁쓸한 맛이 적어 인기가 많은 종이다. 또한 농가에서는 엽수가 많아 수량이 높기 때문에 재배를 선호하게 된 종이기도 하다. 그러나 곤달비는 수확후 여름을 지나면서 고온건조기에 흰가루병과 식물체가 위축되는 로젯현상으로 잎이 작고 진록색으로 되거나 고사하여 다음해의 수량을 저하시키는 원인이 되고 있다. 이렇게 2~3년 재배를 하면 연작장애와 더불어 결주가 생기기 시작하고 수량이 급격히 감소하는 문제가 발생되는 실정이다. 이러한 문제점을 해결하기 위하여 흰가루병에 저항성이면서 세력이 우수한 한대리곰취와 일반곰취를 교배하여 흰가루병에 강하고 수량성이 뛰어난 계통을 선발하여 그 동안 '쌈마니', '다목이', '곰마니', '수마니', '그린베어' 등 5품종을 육성한 바 있다. 이번에는 용도 다양화를 위하여 잎이 매우 커서 김밥처럼 곰취 밥말 이용을 선발하여 품종을 만들고자 하였다. '대마니' 품종은 2007년 7월에서 9월까지 인공교배를 하여 종자를 얻었으며 2008년 3월에 파종하여 육묘후 포장에 정식하여 생육관리를 하였다. 2013년 생육 및 수량특성 조사에서 일반적으로 많이 재배되는 '곤달비' 종보다 우수한 7033-1번 개체를 선발하였다. 선발된 7033-1번 개체는 2014년부터 2020년까지 노지포장에서 증식되면서 고농G-7호로 계통화 되었으며 2019년부터 2년간의 생육특성 검정을 통하여 최종 선발하였다. 그리고 2020년 농작물직무육성 품종선정위원회에서 신품종으로 선정되어 '대마니(Daemani)'로 명명되었다. '대마니' 품종의 특성은 엽병귀의 색이 연녹색을 띠고 엽병에 털이 있으며 잎 뒷면에 털은 없으나 광택이 없고. 엽맥밀도는 보통이다. 쌈용, 데침쌈용, 묵나물용으로 이용이 가능하다. 특히 엽장과 엽폭이 39cm와 49cm로 '잎이 커서 밥말이용으로 적당하다. 주당 엽수는 54개로 '쌈마니' 품종보다 매우 적다. 주당 수량은 4,961g 으로 '쌈마니' 1,362g 보다 3배 정도 많았다. 추대시는 8월 28일, 개화시는 9월 16일로 '쌈마니' 품종보다 약 6일 정도 늦었다. 흰가루병 저항성 정도는 '쌈마니' 품종의 중도 저항성에 비하여 전혀 병에 감염되지 않는 강한 저항성을 보였다. 이와 같은 특성의 흰가루병 저항성 품종이고 잎이 큰 '대마니' 품종이 농가에 보급되어 출하된다면 밥말이용 등 용도다양화를 통한 새로운 소비창출이 가능할 것으로 기대된다.

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Response to Fungicides of Colletotrichum Species Isolated from Infected Tissues of Several Crops (다양한 작물로부터 분리한 탄저병균(Colletotrichum spp.)의 살균제에 대한 반응)

  • Kim Joon-Tae;Min Ji-Young;Kim Heung-Tae
    • Research in Plant Disease
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    • v.12 no.1
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    • pp.32-39
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    • 2006
  • This study has been conducted to investigate the responses of various isolates of four Colletotrichum species such as C. gloeosporioides, C acutatum, C. coccodes, and C. dematium isolated from infected tissues of several crops to fungicides such as carbendazim, carbendazim+diethofencarb, four protective fungicides, and three ergosterol biosynthesis-inhibiting (EBI) fungicides. All the isolates of C. acutatum showed $EC_{50}$ values in a range of 0.001-3.040 ${\mu}g/ml$ against carbandazim, a benzimidazole fungicide. As for the response to carbendazim, the isolates of C. gloeosporioides obtained from pepper, apple, and strawberry were clearly divided into two groups, resistant or sensitive isolates. All the resistant isolates showed $EC_{50}$ values above 1000 ${\mu}g/ml$, whereas the sensitive isolates had lower $EC_{50}$ values than 0.550 ${\mu}g/ml$. The isolates of C. gloeosporioides exhibited a negative cross resistance between carbendazim and diethofencarb (a N-phenylcarbamate fungicide), but isolates of C. acutatum did not. Toward carbendazim, C. coccodes and C. dematium isolates showed a similar response to C. acutatum isolates and the sensitive isolates of C. gioeosporioides, respectively. As for response of Protective fungicides, all the isolates of C. acutatum showed a more resistant reaction than all the isolates of C. gloeosporioides. However, there was no difference among 4 species of Colletotrichum against EBI fungicides.

A New Mid-late Maturing Rice Cultivar with High-Quality and Multiple Resistance to Diseases and Insects, 'Dacheong' (벼 중만생 고품질 복합내병충성 신품종 '다청')

  • Kim, Woo-Jae;Ko, Jae-Kwon;Ko, Jong-Cheol;Nam, Jeong-Kwon;Ha, Ki-Yong;Shin, Mun-Sik;Kim, Yeong-Do;Kim, Bo-Kyeong;Kang, Hyun-Jung;Kim, Ki-Young;Baek, Man-Gee;Park, Hyun-Su;Baek, So-Hyeon;Shin, Woon-Chul;Kim, Kyeong-Hun;Choung, Jin-Il;Goo, Hwang-Hung;Kim, Jung-Gon
    • Korean Journal of Breeding Science
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    • v.42 no.6
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    • pp.649-653
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    • 2010
  • 'Dacheong', a new japonica rice variety developed from a cross between Iksan450 having a good eating-quality and multi-disease resistance, and YR21258-GH3 having insect resistance, was developed by the rice breeding team of Department of Rice and Winter Cereal Crop, NICS, RDA in 2008. This variety has about 125 days growth duration from transplanting to harvesting in west-southern coast, Honam and Youngnam plain of Korea. It has 87 cm culm length and tolerance to lodging. In reaction to biotic and abiotic stresses, it shows resistance to blast, bacterial blight pathogen races from $K_1\;to\;K_3$, stripe virus and brown plant hopper. The milled rice of 'Dacheong' exhibits translucent, relatively clear non-glutinous endosperm and medium short grain. It has slightly lower amylose content of 18.8% and lower protein content of 5.7%, and good palatability of cooked rice compared with Nampyeongbyeo. The milled rice yield performance of this variety is about 5.91 MT/ha in local adaptability test for three years. 'Dacheong' would be adaptable to west-southern coast, Honam and Youngnam plain of Korea.

Research status of the development of genetically modified papaya (Carica papaya L.) and its biosafety assessment (GM 파파야 개발 및 생물안전성 평가 연구 동향)

  • Kim, Ho Bang;Lee, Yi;Kim, Chang-Gi
    • Journal of Plant Biotechnology
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    • v.45 no.3
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    • pp.171-182
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    • 2018
  • Papaya (Carica papaya L.) is one of the crops widely planted in tropical and subtropical areas. The papaya fruit has low calories and are plentiful in vitamins A and C and in minerals. A major problem in papaya production is a plant disease caused by the papaya ringspot virus (PRSV). The first PRSV-resistant GM papaya expressing a PRSV coat protein gene was developed by USA scientists in 1992. The first commercial GM papaya cultivars derived from the event was approved by the US government in 1997. Development of transgenic papayas has been focused on vaccine production and limited agricultural traits, including insect and pathogen resistance, long shelf life, and aluminum and herbicide tolerance. Approximately 17 countries, including the USA and China, produced transgenic papayas and/or commercialized them, which provoked studies on biosafety assessment and development of GM-detection technologies. For the biosafety assessment of potential effects on human health, effects of long-term feeding to model animals have been studied in terms of toxicity and allergenicity. Studies on environmental safety assessment include influence on soil-microbial biodiversity and transfer to soil bacteria of GM selection markers. Many countries, such as Korea, the European Union, and Japan, that have strict regulations for GM crops have serious concerns about unintended introduction of GM cultivars and food commodities using unauthorized GM crops. Transgene- and/or GM event-specific molecular markers and technologies for genomics-based detection of unauthorized GM papaya have been developed and have resulted in the robust detection of GM papayas.

Evaluation of Potato Genetic Resources and Development of Potato Varieties with Diverse colors (감자 유전자원 평가 및 다양한 컬러 감자 품종 개발)

  • 임학태;이규화;구동만;양덕춘;전익조
    • Korean Journal of Plant Resources
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    • v.16 no.3
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    • pp.264-274
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    • 2003
  • Many potato genetic resources have been collected and improved for their diverse traits over the years using breeding program in KPGR. To select potential varieties for table and processing in Korea, 58 elite potato breeding lines and several 'Valley' varieties were cultivated and harvested at Korea Alpine area in 2001. The cultivated lines and varieties were evaluated using their cultural adaptability in the environment and tuber characteristics, such as the depth of tuber eye, tuber shape, skin color, flesh color, scab resistance, yield, and the resistance of hollow heart and internal brown spot disease. Additionally, in the selection of potential processing varieties, reducing sugar content (sum of glucose and fructose concentration) of tubers is critically considered, because it mainly influence on the chip color of processing potato tuber. For table stock varieties with white skin color, 'Early Valley', 'Summer Valley', 'Winter Valley', and 'Taebok Valley' were selected. In the aspect of diverse potato tuber color, several varieties were selected such as 'Golden Valley' for its yellow fresh and skin color, 'Gogu Valley', 'Juice Valley', and 'Rose Valley' for their red skin color, and 'Purple Valley' for its purple skin. Compared with world wide known processing cultivar 'Atlantic', 24 lines (or varieties) were selected for the potential potato processing industry due to their low reducing sugar contents (below 0.3%), high yield (above 4.0 ton/ha), and unique chip colors. Selected white chipping varieties were 'Taedong Valley', 'Kangshim Valley', and 'Kangwon Valley', which have 0.23%, 0.27%, and 0.29% of reducing sugar contents, respectively. 'Bora Valley', having deep purple color in both skin and fresh, was selected for purple chip variety and has 0.26% of reducing sugar content. Light yellow chip varieties (lines) were 'Rose Valley' and Valley 54, having 0.19% and 0.269% of reducing sugar content, respectively. For French frying potatoes, 'Stick Valley' of 0.22% and Valley 72 of 0.151% in reducing sugars were selected. All of these selected lines and 'Valley' varieties can be used as parents to improve potato genetic resources and to develop better varieties with unique traits and colors.

Stable Inheritance of an Integrated Transgene and Its Expression in Phenylethylisothiocyanate-Enriched Transgenic Chinese cabbage (Phenylethylisothiocyanate 함량이 증진된 형질전환 배추에서의 도입유전자의 후대 유전 및 발현 안정성 검정)

  • Park, Ji-Hyun;Kim, Hyoung-Seok;Lee, Gi-Ho;Yu, Jae-Gyung;Park, Young-Doo
    • Horticultural Science & Technology
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    • v.34 no.1
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    • pp.112-121
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    • 2016
  • Development of genetically-modified (GM) crops enables the introduction of new traits to the plant to confer characteristics such as disease resistance, herbicide resistance and human health-promoting bioactivity. Successful commercialization of newly developed GM crops requires stable inheritance of integrated T-DNA and newly introduced traits through the multiple generations. This study was carried out to confirm the stable inheritance of the integrated T-DNA in $T_1$ and $T_2$ transgenic Chinese cabbage (Brassica rapa ssp. pekinensis) that was genetically modified to increase concentrations of phenylethylisothiocyanate (PEITC), which is a potential anti-carcinogenic phytochemical. For this purpose, the IGA 1-3 ($T_1$ generation) and IGA 1-3-5 ($T_2$ generation) lines were selected by PCR and a IGA 1-3 transgenic plant ($T_1$ generation) was analyzed to confirm the T-DNA insertion site in the Chinese cabbage genome by VA-TAIL PCR. The results of this study showed that the introduced T-DNA in IGA 1 line was stably inherited to the next generations without any variations in terms of the structure of the transgenes, and this line also showed the expected transgene function that resulted in increased concentration of PEITC through the multiple generations. Finally, we confirmed the increased QR activity in IGA 1 $T_1$ and $T_2$ transgenic lines, which indicates an enhanced potential anti-carcinogenic bioactivity and its stable inheritance in IGA1 $T_1$ and $T_2$ transgenic lines.