• Title/Summary/Keyword: Cross-cultivation

검색결과 147건 처리시간 0.034초

A New Spray Chrysanthemum Cultivar 'Yes Arang' with Single Type and Yellow Color (황색 홑꽃형 스프레이국화 'Yes Arang' 육성)

  • Pak, Ha-Seung;Choi, Taeg-Yong;Won, Mi-Kyoung;Choi, Won-Chun;An, Jong-Beom;In, Min-Sik
    • FLOWER RESEARCH JOURNAL
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    • 제17권1호
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    • pp.48-51
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    • 2009
  • A new spray chrysanthemum(Dendranthema grandiflorum Ramat.) cultivar 'Yes Arang' was originated from a cross between 'NOA' and 'SP03-05-04'. This cultivar was tested on the characteristics from 2005 to 2007 for the evaluation and selection including shading and retarding culture. The natural flowering time of 'Yes Arang' is late October. This cultivar was yellow in color, single in flower type for the spray type cut-flower. The diameters of flower and flower center were 4.3 cm and 1.2 cm, respectively. Year round production was possible by shading or lighting treatment. Its number of flowers was 15.1 per plant. In natural and forcing cultivation, the days to flowering was 7 weeks after short day treatment. It has resistance to white rust and the vase life was about 17.2 days in autumn season.

Genomics-based Sensitive and Specific Novel Primers for Simultaneous Detection of Burkholderia glumae and Burkholderia gladioli in Rice Seeds

  • Lee, Chaeyeong;Lee, Hyun-Hee;Mannaa, Mohamed;Kim, Namgyu;Park, Jungwook;Kim, Juyun;Seo, Young-Su
    • The Plant Pathology Journal
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    • 제34권6호
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    • pp.490-498
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    • 2018
  • Panicle blight and seed rot disease caused mainly by Burkholderia glumae and Burkholderia gladioli is threatening rice cultivation worldwide. The bacteria have been reported as seed-borne pathogens from rice. Accurate detection of both pathogens on the seeds is very important for limiting the disease dissemination. Novel primer pairs targeting specific molecular markers were developed for the robust detection of B. glumae and B. gladioli. The designed primers were specific in detecting the target species with no apparent cross-reactions with other related Burkholderia species at the expected product size. Both primer pairs displayed a high degree of sensitivity for detection of B. glumae and B. gladioli separately in monoplex PCR or simultaneously in duplex PCR from both extracted gDNA and directly preheated bacterial cell suspensions. Limit of detection was as low as 0.1 ng of gDNA of both species and $3.86{\times}10^2cells$ for B. glumae and $5.85{\times}10^2cells$ for B. gladioli. On inoculated rice seeds, the designed primers could separately or simultaneously detect B. glumae and B. gladioli with a detection limit as low as $1.86{\times}10^3cells$ per rice seed for B. glumae and $1.04{\times}10^4cells$ per rice seed of B. gladioli. The novel primers maybe valuable as a more sensitive, specific, and robust tool for the efficient simultaneous detection of B. glumae and B. gladioli on rice seeds, which is important in combating rice panicle blight and seed rot by early detection and confirmation of the dissemination of pathogen-free rice seeds.

A Study on Internal Morphology and Physicochemical Patterns of Salvia miltiorrhiza Bunge Root According to Cultivation Regions in China (중국 재배지역별 단삼의 내부형태 및 이화학적 패턴 연구)

  • Goo, Bup-Seoug;Yoo, Ji-Hyun;Kil, Ki-Jung
    • The Korea Journal of Herbology
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    • 제34권1호
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    • pp.33-42
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    • 2019
  • Objectives : This study aimed to be used as basic data for obtaining excellent quality of Salvia miltiorrhiza (SM) root. Methods : SM cultivated in Anhui Bozou, Henan, Shandong, Henan Wenxian, Zhejiang, Hebei, Liaoning, Shanxi, Shaanxi Shangluo, Sichuan Zhongjiang, Sichuan Minyang and Jiangsu in China were gathered and its internal morphology and physicochemical patterns were analyzed. Results : Cross-section of sang plants according to cultivated regions in China showed that cork layers consisted of cells with four to six layers, cortex width was wide, and phloem was semilunar-shaped. Although there are forms layers, yet boundary was vague. It was observed that eight to ten vascular bundles were arranged in wooden parts in all directions and as a single line of vascular was distributed nearby form layers as it nears to the center. Tanshinon IIA identified a spot in the same location with standard product near by Rf 0.9 in the test identifying TLC of SM according to cultivated areas in China. The largest amount was 0.535% identified in Shandong and the lowest amount of 0.05% in Hebei. Salvianolic acid B identified a spot in the same location with standard product near by Rf 0.7 in the test identifying TLC of SM according to cultivated areas in China. The largest amount was 2.72% identified in Liaoning and the lowest amount of 0.825% in Jiangsu. Conclusions : The results are assumed to be used as basic data for obtaining excellent quality of SM oriental medical hers and distinguishing authentic or fake herbs.

Breeding for Inprovement of Fatty Acid Composition in Rapeseed, Brassica napus L. Ⅶ. Studies on Classification of Spring Nature Grade of Double Zero Rapeseed Varieties (유채 지방산조성 개량육종에 관한 연구 제15보 양질유ㆍ양박 유채 육성계통들의 춘파성 정도 분류)

  • Lee, J.I.;Kwon, B.S.;Kim, S.K.;Bang, J.K.
    • KOREAN JOURNAL OF CROP SCIENCE
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    • 제28권2호
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    • pp.233-239
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    • 1983
  • In order to obtain basic date for the cultivation and the breeding of double zero varieties of rapeseed, spring nature grade were investigated. Spring nature grade could be classified to 8 classes by the method of material maturity. The double zero varieties, Ⅶ group of spring adaptability has been developed from the cross "Oro" and "Midas" classified as summer type. A significant negative correlation was found between the spring adaptability and seed yield. On the other hand, a highly significant negative correlation was found between maturation and spring adaptability, cold resistnce and spring adaptability, plant from and spring adaptability. Ⅵ and Ⅶ group close to summer type showed spring growing adaptability, and 0, I and II group were appeared as winter type, autumn growing adaptability with cold tolerance.with cold tolerance.

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Domestic development situation of precision nutrition healthcare (PNH) system based on direct-to-consumer (DTC) obese genes (소비자대상 직접 (DTC) 비만유전자 기반 정밀영양 (PNH)의 국내 현황)

  • Oh Yoen Kim;Myoungsook Lee;Jounghee Lee;Cheongmin Sohn;Mi Ock Yoon
    • Journal of Nutrition and Health
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    • 제55권6호
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    • pp.601-616
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    • 2022
  • In the era of the fourth industrial revolution technology, the inclusion of personalized nutrition for healthcare (PNH), when establishing a healthcare platform to prevent chronic diseases such as obesity, diabetes, cerebrovascular and cardiovascular disease, pulmonary disease, and inflammatory diseases, enhances the national competitiveness of global healthcare markets. Furthermore, since the government experienced COVID-19 and the population dead cross in 2020, as well as numerous health problems due to an increasing super-aged Korean society, there is an urgent need to secure, develop, and utilize PNH-related technologies. Three conditions are essential for the development of PNH technologies. These include the establishment of causality between obesity genome (genotype) and prevalence (phenotype) in Koreans, validation of clinical intervention research, and securing PNH-utilization technology (i.e., algorithm development, artificial intelligence-based platform, direct-to-customer [DTC]-based PNH, etc.). Therefore, a national control tower is required to establish appropriate PNH infrastructure (basic and clinical research, cultivation of PNH-related experts, etc.). The post-corona era will be aggressive in sharing data knowledge and developing related technologies, and Korea needs to actively participate in the large-scale global healthcare markets. This review provides the importance of scientific evidence based on a huge dataset, which is the primary prerequisite for the DTC obesity gene-based PNH technologies to be competitive in the healthcare market. Furthermore, based on comparing domestic and internationally approved DTC obese genes and the current status of Korean obesity genome-based PNH research, we intend to provide a direction to PNH planners (individuals and industries) for establishing scientific PNH guidelines for the prevention of obesity.

Breeding of New Ever-bearing Strawberry "Doha" Variety

  • Jong Nam Lee;Jong Taek Suh;Su Jeong Kim;Hwang Bae Sohn;Do Yeon Kim;Jung Hwan Nam
    • Korean Journal of Plant Resources
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    • 제35권6호
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    • pp.825-830
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    • 2022
  • "Doha" is a new strawberry (Fragaria x ananassa Duch.) variety, which was released by the Highland Agriculture Research Institute in 2021. The "Doha" variety originates from a 2014 cross between "Saebong No. 3" and "Yeolha," both of which exhibited excellent ever-bearing characteristics, including continuous flowering and large fruits under long-day and high temperature conditions. This new cultivar was initially named "Saebong No. 13" after examining its characteristics and productivity during summer cultivation between 2015 and 2018. After regional adaptability tests, "Doha" was selected from "Saebong No. 13" as an elite cultivar. The general characteristics of "Doha" include spreading, elliptic leaves, and strong growth. The fruits are long and conical and of a red color. The plant height of "Doha" was similar to that of "Goha," but the number of leaves was lower. The number of flower clusters of "Doha" was 8.6, which was 2.8 fewer than that of the control variety, "Goha," with 11.4. The average fruit weight of "Doha" was 13.9 g, which was 4.9 g heavier than that of "Goha." The fruit hardness of "Doha" was 35.5 g·mm-2, which was 9.4 g·mm-2 harder than that of "Goha." The marketable yield of "Doha" was 26,971 kg·ha-1, 125% more than that of "Goha" with 21,479 kg·ha-1. The findings of this study suggest that "Doha" is a hard fruit and high-yielding variety of ever-bearing strawberries that could increase farming income when distributing to farmers.

Development and Application of Speed Vernalization System for Practical Speed Breeding in Wheat (Triticum aestivum L.)

  • Jin-Kyung Cha;Hyunjin Park;Youngho Kwon;So-Myeong Lee;Dongjin Shin;Jong-Hee Lee
    • Proceedings of the Korean Society of Crop Science Conference
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.20-20
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    • 2022
  • A traditional wheat breeding program needs more than 12-13 years to develop a new cultivar. In recent years, 'Speed breeding (SB)' system, which uses extremely extended photoperiod (22 h), enabled up to 4-6 generations of spring wheat per year. However, since almost 70% of wheat cultivars are winter type, and over 95% of total cultivation area is for winter wheat in Korea, optimized vernalization treatment was essential for improving the SB system. Several vernalization temperatures and durations were tested with various genotypes, and the 4 weeks of 8-10 ℃ vernalization treatment was the most effective to develop 4 generations per year, for both spring and winter type wheat cultivars. This 'Speed vernalization (SV)' system followed by SB, allowed developing a new F6 recombinant inbred lines (RILs) within 2 years. Among the 184 RILs, which derived from a cross between Jokoyung and Joongmo2008, two outstanding lines were selected for yield trial test, and then named Milyang52 and Milyang53. Compared to the traditional wheat breeding program, over 60% of the time was saved to develop these two lines. Marker-assisted selection and backcross were also combined with the SV system. YW3215-2B-1 (Jokoyung*3/Gamet), which has similar agronomic traits with Jokyoung and the same Glu-B1 allele with Garnet, was developed within 2.5 years. Thus, the SV system combined with molecular breeding technology would help breeders to make a new cultivar with less time and high efficiency.

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Development of Late Bolting and New Deep Red Leaf with Wrinkled Lettuce 'Chunpungjeokchukmyeon' (추대가 늦고 색깔이 진한 새로운 잎상추 '춘풍적축면' 육성)

  • Jang, Suk-Woo;Hur, Youn-Young;Choi, Mi-Ja;Kwon, Young-Seok;Kim, Jeom-Sun;Lee, Jong-Nam;Lee, Eung-Ho;Seo, Myeong-Hun;Park, Jae-Ho;Jang, Ik;Jang, Mi-Hyang;Hwang, Hae-June;Ko, Sun-Bo
    • Korean Journal of Breeding Science
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    • 제42권6호
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    • pp.627-631
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    • 2010
  • A new cultivar of lettuce (Lactuca sativa L.) with wrinkled traverse elliptic and deep red leaf, 'Chunpungjeokchukmyeon' which has late bolting and deep red expression leaf color was developed from a cross between 'Pojabijeokchukmyeon' (red leaf color and late bolting) and 'Meokchima' (Deep red and low yield). The cross and selection for advanced lines had been done by the pedigree method during 2000-2007. The advanced lines were evaluated for yield and adaptability at several locations in Korea (Gangwon-do, Gyeonggi-do, Chungcheongbuk-do, Jeollabuk-do, Gyeongnam-do, and Jeju-do) from 2008 to 2009. The 'Chunpungjeokchukmyeon' has gray seed color and traverse elliptic leaves. The type of matured stage is medium shape between 'chukmyeon' and 'chima' leaf lettuce. Compared to 'Dukseomjeokchukmyeon', marketable yield of 'Chunpungjeokchukmyeon' was higher by 6% (at 372 g per plant) and 'Chunpungjeokchukmyeon' has particularly improved expression of deep red leaf color in high temperature cultivation in the field. The shelf-life of 'Chunpungjeokchukmyeon' was three weeks longer than 'Dukseomjeokchukmyeon' at 4$^{\circ}C$. The anthocyanin content of 'Chunpungjeokchukmyeon' was higher than that of 'Dukseomjeokchukmyeon' with 17.5 mg/100g. The BSL (latucin+8-deoxylactucin+lactucopicrin) content of 'Chunpungjeokchukmyeon' is lower than that of 'Dukseomjeokchukmyeon'. Furthermore, its taste is better, more crispy, and sweeter than those of 'Dukseomjeokchukmyeon'. So we recommend that new cultivar 'Chunpungjeokchukmyeon' can be suitable for cultivation in spring season than summer season.

Bacterial Blight-Resistant Medium Maturing Rice Cultivar 'Haepum' with High Grain Quality (벼흰잎마름병 저항성 고품질 중생 벼 '해품')

  • Nam, Jeong-Kwon;Park, Hyun-Su;Baek, Man-Kee;Cho, Young-Chan;Kim, Woo-Jae;Kim, Jeong-Ju;Kim, Bo-Kyeong;Kim, Ki-Young;Shin, Woon-Chul;Ko, Jong-Cheol;Lee, Gun-Mi;Park, Seul-Gi;Lee, Chang-Min;Kim, Choon-Song;Suh, Jung-Pil;Lee, Jeom-Ho
    • Korean Journal of Breeding Science
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    • 제51권3호
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    • pp.222-233
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    • 2019
  • 'Haepum' is a bacterial blight-resistant, medium maturing rice cultivar with high grain quality. It was derived from a cross between 'Iksan493' (cultivar name 'Jinbaek') and the F1 cross between 'Iksan495' ('Dacheong') and 'Iksan496' ('Jungmo1005'). Of these three cultivars, 'Jinbaek' is a bacterial blight-resistant mid-late maturing rice cultivar with high grain quality, 'Dacheong' is a mid-late maturing rice cultivar with multiple resistance to disease and insects, and 'Jungmo1005' is a mid-late maturing rice cultivar with lodging tolerance. To develop fixed lines, the anther culture method was applied to F1 plants. The cultivar 'Haepum' was selected using the pedigree method, yield trials, and local adaptability tests. The heading date of 'Haepum' was August 11th, three days earlier than that of 'Nampyeong' cultivar. Haepum' is a cultivar tolerant to lodging and it has short culms. Due to its low rate of viviparous germination, 'Haepum' could be useful for preventing pre-harvest sprouting in cultivation of medium maturing rice in the southern plain area of Korea. 'Haepum' carries two bacterial blight resistance genes (Xa3 and xa5), and in our study, it exhibited high-level and broad-spectrum resistance against bacterial blight, including K3a, the most virulent race in Korea. 'Haepum' is also resistant to the rice stripe virus and moderately resistant to rice blast. The yield of 'Haepum' was similar to that of 'Nampyeong'. 'Haepum' showed excellent grain appearance and good taste of cooked rice, and therefore it could contribute to the development of bacterial blight-resistant rice cultivars of improved quality. 'Haepum' would be suitable for cultivation in the southern plain area of Korea as well as in bacterial blight-prone areas. (Registration No. 6068)

Development of Early Maturing Rice Stripe Virus Disease-Resistant 'Haedamssal' through Marker-Assisted Selection (MAS를 이용한 줄무늬잎마름병 저항성 조생종 벼 '해담쌀' 개발)

  • Lee, Jong-Hee;Cho, Jun-Hyeon;Lee, Ji-Yoon;Oh, Seong-Hwan;Kim, Choon-Song;Park, No-Bong;Hwang, Un-Hwa;Song, You-Chun;Park, Dong-Soo;Yeo, Un-Sang
    • Korean Journal of Breeding Science
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    • 제51권4호
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    • pp.448-453
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    • 2019
  • 'Haedamssal' is an early maturing and rice stripe virus disease-resistant cultivar adaptable for early-transplanting cultivation that was developed by the rice breeding team of the Department of Southern Crop, NICS, RDA, in 2014. This cultivar was derived from the cross YR25869 (YR21247-B-B-B-49-1/Sasanishiki BL4//Koshihikari) and YR25868 (Unkwang//YR21247-B-B-B-49-1/Sasanishiki BL4) made in the 2005/2006 winter season and was advanced to the F5 generation by a bulk breeding method using rapid generation advance. To incorporate rice stripe virus resistance, marker-assisted selection on the RSV gene was conducted in 3-way and 6-way cross F1 generation using the tightly linked marker RM6897. From testing in the replicated yield trial in 2011, a promising line YR26258-B-B-B-33-3 was selected and it was designated as 'Milyang276'. A local adaptability test of 'Milyang276' was performed at three locations from 2012 to 2014 and it was named as 'Haedamssal', which was a good eating quality variety. The culm length was 67 cm in yield trials, which was 4 cm shorter than 'Jopyeong'. The number of spikelets per panicle was lower than 'Jopyeong', whereas the number of tillers per hill was higher. This variety was resistant to RSV disease, bacterial blight, and leaf blast disease. The milled rice yield of 'Haedamssal' was 5.48 MT per ha at the early transplanting in the local adaptability test. 'Haedamssal' is well adapted to early transplanting cultivation in the southern plain area (Registration No. 6811).