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New Cultivar Developeds

백립계 내한 답리작 적응 국수용 밀( L.) ‘중모2015’
A Wheat Cultivar, “Joongmo2015” with Good Noodles Quality, White Grain Wheat, Higher Winter Hardiness and Adaptable Paddy Culture
Kyeong-Min Kim, Changhyun Choi, Jinhee Park, Go-Eun Lee, Han-Yong Jeong, Chuloh Cho, Yu-rim Kim, Myoung-Goo Choi, Mira Yoon, Sookjin Kim, Chon-Sik Kang
Korean. J. Breed. Sci. 2024;56(3):371-380.
Published online September 1, 2024
DOI: https://doi.org/10.9787/KJBS.2024.56.3.371

A new winter wheat (Triticum aestivum L.) cultivar “Joongmo2015” was developed by the NICS (National Institute of Crop Science), RDA (Rural Development Administration) in 2019. Its heading date was April 20 and its maturity date was June 1, which was similar to Keumkang. “Joongmo2015” had a longer culm length (80 cm), similar spike length (7.8 cm) and spikes per m2 (804), lower 1,000-grain weight (43.0 g) than “Keumkang” (78 cm, 7.8 cm, 804 g, 46.3 g, respectively). “Joongmo2015” was showed stronger to winter hardiness than “Keumkang”, and susceptible to fusarium head blight and powdery mildew. The average grain yield in the advanced yield trial (AYT) was 4.97 MT/ha, which were 26% more than “Keumkang” and in the regional yield trial (RYT) was 5.75 MT/ha in upland and 5.27 MT/ha in paddy field, which were 16% and 18% higher than those of “Keumkang” (4.95 MT/ha and 4.46 MT/ha, respectively). “Joongmo2015” showed lower protein content (11.7%), SDS-sedimentation volume (42.8 ml), gluten content (9.0%) and flour lightness(90.76) than “Keumkang” (13.6%, 61.8 ml, 11.4% and 91.50, respectively). “Joongmo2015” showed higher lightness (83.10) of noodle dough sheet than “Keumkang” (82.48). “Joongmo2015” exhibited higher hardness (3.92N) and similar springiness and cohesiveness of cooked noodles (0.94 and 0.60) compared to “Keumkang” (3.65N, 0.93, and 0.59, respectively). High molecular weight gluten subunits (HMW-GS) composition are Glu-D1d (5+10), granule-bound starch synthase (GBSS) composition are Wx-A1a, Wx-B1a, Wx-D1a and composition of puroindolines are Pina-D1a, Pinb-D1a (Registration No. 9790).

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Shuttle Breeding을 통한 벼 내냉성 유전자원 ‘중모1022’ 육성
Development of Cold Tolerance Genetic Resource ‘Jungmo1022’ through Shuttle Breeding in Rice
Jeong-Ju Kim, Eung-Gi Jeong, Jong-Min Jeong, Jeong-Heui Lee, Young-Chan Cho, O-Young Jeong, Dae-Ha Seo
Korean. J. Breed. Sci. 2020;52(2):206-211.   Published online June 1, 2020
DOI: https://doi.org/10.9787/KJBS.2020.52.2.206

‘Jungmo1022’, a japonica rice cultivar, was developed by a cross between ‘Jinbu31’ (IT212616) and ‘Gyodong23’ (IT213764) by the rice breeding team at the National Institute of Crop Science, Korea, in 2000. ‘Jinbu31’ is tolerant to cold, and ‘Gyodong23’ is early maturing with high yield potential. The growth period of ‘Jungmo1022’ in paddy fields was 116 days on the North-middle highland in Korea, shorter than that of ‘Jinbu’. The culm length of ‘Jungmo1022’ was 67 cm, which was 2 cm shorter than that of ‘Jinbu’. There were 91 spikelets per panicle in ‘Jungmo1022’. The elite line was developed by shuttle breeding in a cold screening field at Chuncheon and highland Jinbu sites in order to screen for cold tolerant varieties. Forty-five lines with more than 50% fertility were selected from the F2 generation in the cold screening field, and the line SR28990-B-2-2-2 was selected by the pedigree breeding method through F3-F7 generations cultivated on the North-middle highland in Jinbu. During the yield trial conducted in 2008-2009 yield trial, an early heading, high-yielding, and cold tolerant line ‘Jinbu 48’ was selected for the local adaptability tests conducted from 2010 to 2012. The early maturing and cold-tolerant ‘Jinbu 48’ was superior to ‘Jinbu’ in exhibiting shorter heading delay, reduced culm length, and spikelet fertility under cold temperature. The new line showed a milled rice productivity of 5.69 MT/ha at Jinbu sites under North-middle highland cultivation and was registered as a new cultivar ‘Jungmo1022’ (Registration No. 5563).

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재래벼 ‘자광도’ 유래 고품질 벼 ‘중모1033’
‘Jungmo1033’, a Derivative of High-quality Native Rice Variety ‘Jagwangdo’
Eung-Gi Jeong, Yong-Jae Won, Eok-Keun Ahn, Ung-Jo Hyun, Young-Chan Cho, Jung-Pil Suh, Myoung-Kyu Oh, Jeom-Ho Lee, Ha-Cheol Hong, Chung-Kuen Lee, Yong-Hee Jeon, Ji-Ung Jeung, Hi-Che Chung, Bo-Kyeong Kim
Korean. J. Breed. Sci. 2019;51(1):34-40.   Published online March 1, 2019
DOI: https://doi.org/10.9787/KJBS.2019.51.1.34

‘Jungmo1033’, a japonica rice variety, was developed by the rice breeding team at the National Institute of Crop Science (NICS) in 1992. It is derived from a cross between a native variety ‘Jagwangdo’, which has translucent milled rice and medium maturity; and ‘Hwayeong’, which is an elite line with bacterial blight resistance and mid-late maturity. The heading date of ‘Jungmo1033’ was August 10 in the middle plain area of Korea, which was two days later than that of ‘Hwaseong’. ‘Jungmo1033’ has a culm length of 79 cm, which was 5 cm shorter than that of ‘Hwaseong’, and 105 spikelets per panicle. ‘Jungmo1033’ showed resistance to bacterial blight (K1, K2, and K3 races) and stripe virus, but susceptibility to the K3a race of bacterial blight, dwarf and black-streaked dwarf viruses, and planthoppers. The milled rice of this variety exhibited translucency and a medium short grain shape. It had an excellent appearance and lower amylose content (19.1%) than that of ‘Hwaseong’. The characteristics related to grain milling were better than those of ‘Hwaseong’, especially head rice milling recovery ratio and head rice ratio (94.8%). ‘Jungmo1033’ showed a milled rice productivity of 5.38 MT/ha at 11 sites under ordinary cultivation conditions. (Registration No. 5723)

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복합내병충성 고품질 중만생 벼 ‘중모1045호’
Brown Planthopper and Bacterial Blight Resistant Mid-late High Grain Quality Rice ‘Jungmo1045’
Woo-Jae Kim, Woon-Chul Shin, Hyun-Su Park, Jeong-Kwon Nam, Hyun-Soon Kim, Man-Kee Baek, Bo-Kyeong Kim, Ki-Young Kim, Jeong-Ju Kim, Young-Chan Cho, Jae-Kwon Ko, Jong-Cheol Ko, So-Hyeon Back
Korean. J. Breed. Sci. 2018;50(1):72-79.   Published online March 1, 2018
DOI: https://doi.org/10.9787/KJBS.2018.50.1.72

‘Jungmo1045’, a multi-resistant japonica rice cultivar developed from a cross between ‘Hanggeumnuri’ having a good eating-quality and high yield and ‘SR30071’ having brown planthopper (BPH) resistance, was developed by the rice breeding team of NICS, RDA in 2015. This cultivar has about 121 days growth duration from transplanting to harvesting in west-southern coast, Honam and Youngnam plain of Korea. It has 73cm culm length and 22cm panicle length. In reaction to biotic and abiotic stresses, it shows resistance to bacterial blight pathogen races from K1 to K3, stripe virus and brown planthopper. The milled rice of ‘Jungmo1045’ exhibits translucent, relatively clear non-glutinous endosperm and medium short grain. It has good palatability of cooked rice compared with ‘Nampyeongbyeo’. The milled rice yield performance of this variety is about 5.74 MT/ha in local adaptability test for three years. ‘Junngmo1045’ would be useful genetic resources for multi-resistance breeding program against disease and insect and eco-friendly cultivation.

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쓰러짐과 탈립에 강한 녹색종피 유색콩 ‘중모3005호’
Green Seed-Coat Colored Soybean Variety ‘Jungmo3005’ with Tolerance to Lodging and Shattering
Won Young Han, Jeong Hyun Seo, Beom Kyu Kang, Hyun Tae Kim, Sang Ouk Shin, Hong Sik Kim, Yeong Hoon Lee, Byoung Won Lee, Tae Joung Ha, Min Jung Seo, In Youl Baek, Jong Min Ko, Do Yeon Kwak
Korean. J. Breed. Sci. 2017;49(3):273-279.   Published online September 1, 2017
DOI: https://doi.org/10.9787/KJBS.2017.49.3.273

A new colored soybean variety ‘Jungmo3005’ was developed as a breeding parent. ‘Cheongjakong’ and ‘Geomjeongkong3’ were crossed in 2000. F1 and F2 populations were grown for 2 years and selected by pedigree method from F3 to F5. The preliminary yield trial (PYT) and advanced yield trial (AYT) were conducted from 2006 to 2007, and regional yield trial (RYT) in 9 regions was conducted from 2008 to 2010. ‘Jungmo3005’ is determinate, white flower, green cotyledon, green spherical seed and yellow hilum. Flowering date and maturing date were July 30 and Oct. 7, respectively. Other quantitative characteristics of ‘Jungmo3005’ were similar to ‘Cheongdu1’, but it was more tolerant to lodging and shattering than ‘Cheongdu1’ at RYT field and indoor test. Although ‘Jungmo3005’ showed symptom of mosaic disease in inoculation test at greenhouse, it had high level of resistance to soybean mosaic virus and bacterial pustule diseases at field. The yield of tofu of ‘Jungmo3005’ was more than that of ‘Cheongdu1’. The mean yield of ‘Jungmo3005’ in RYT was 256kg/10a which was 97% of the yield of ‘Cheongdu1’. ‘Jungmo3005’ is expected to be widely used as a breeding parent to cross with other varieties and lines for creating colored soybean cultivars with tolerance to lodging, shattering and bacterial pustule.

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조숙 내도복 다수성 추파용 총체귀리 품종 ‘중모2501’
“Jungmo2501”, A Winter Oat (Avena sativa L.) Cultivar of Lodging Tolerance, Early-Heading and High Forage Yield
Ouk-Kyu Han, Tae-Il Park, Hyung-Ho Park, Ki-Hun Park, Young-Jin Oh, Kee-Jong Kim, Jung-Il Ju, Young-Jik Jang, Nam-Geon Park, Dea-Wook Kim, Ja-Hwan Ku, Soon-Jong Kweon, Jong-Woong Ahn
Korean. J. Breed. Sci. 2017;49(2):80-86.   Published online June 1, 2017
DOI: https://doi.org/10.9787/KJBS.2017.49.2.80

‘Jungmo2501’ (Avena sativa L.), a winter oat for forage use, was developed by the breeding team at the National Institute of Crop Science, RDA in 2010. The following is the characteristics of ‘Jungmo2501’ that is characterized as light green leaf, yellow brown culm and whitish yellow grain. The heading date of ‘Jungmo2501’ was about 3 days earlier than that of check cultivar ‘Samhan’(May 7 and May 10, respectively). Its plant height was 11 cm longer than 103 cm of the check, and the leaf blade ratio of aerial parts was 26 % higher than the check (11.8% and 9.4%, respectively). The cold tolerance, resistance to lodging and wet injury of ‘Jungmo2501’ were similar to those of the check. The average forage dry matter yield of ‘Jungmo2501’ harvested at milk-ripe stage was 5% higher than the check (15.5 ton ha -1 and 14.7 ton ha -1 , respectively). ‘Jungmo2501’ was higher than the check in terms of protein content (6.6% and 5.9%, respectively), neutral detergent fiber (58.5% and 57.6%, respectively), and acid detergent fiber (34.5% and 32.1%, respectively), while total digestible nutrients was lower than the check (61.6% and 63.6%, respectively), and TDN yield was 0.37 ton ha -1 more than that of the check (9.71 ton ha -1 and 9.34 ton ha -1 , respectively). The silage grade of ‘Jungmo2501’ estimated by Flig score showed level Ⅱ, meaning good quality. Fall sowing cropping of ‘Jungmo2501’ is recommended only for areas where average daily minimum mean temperatures in January are higher than -6°C.

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완전미율이 우수한 조생종 벼 중간모본 “중모1019호”
“Jungmo1019”: High Head Rice Ratio and Early-Maturing Rice Germplasm Line
Jong-Hee Lee, Un-Sang Yeo, Choon-Song Kim, Ji-Yoon Lee, You-Chun Song, No-Bong Park, Seong-Hwan Oh, Sang-Yeol Kim, Kuk-Hyun Jung, Woo-Jae Kim, Young-Bo Sohn, Jun-Hyeon Cho
Korean. J. Breed. Sci. 2016;48(3):378-383.   Published online September 30, 2016
DOI: https://doi.org/10.9787/KJBS.2016.48.3.378

Jungmo1019 early maturing rice variety was developed by the rice breeding team of the Department of Southern Crop, NICS, RDA in 2011. This cultivar was derived from the cross Hwayeongbyeo//Hitomebore/Nampyeongbyeo made in 2005 and the production of doubled haploid rice plant from anther culture in F1 generation. Testing in the replicated yield trial in 2008, a promising line YR25312Acp62 was selected and it was designated as the Milyang246. The early traus plauting local adaptability test of Milyang246 was carried out at three location in 2011 and it was named as Jungmo1019 showing a high head rice ratio and early–maturity eco-type. Number of spikelet/panicle and 1,000 grain weight of brown rice was slightly lower than those of Jopyeongbyeo. This variety is resistant to bacterial blight, rice stripe virus disease but susceptible to major insect and pests. The milled rice yield of Jungmo1019 is 4.52MT per ha at the early transplanting of the local adaptability test. This line should serve as a useful source for improving head rice ratio at early transplanting cultivation in southern plain area.

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종실과 잎이 매끄러운 중만생 고 바이오매스 사료용 벼 ‘중모1038’
Mid-late Flowering, High Biomass Yielding Whole Crop Silage Rice Cultivar ‘Jungmo1038’ with Glabrous Leaf and Hull
Eok-Keun Ahn, Jeom-Ho Lee, Chang-Ihn Yang, Eung-Gi Jeong, Sang-Bok Lee, Yong-Jae Won, Yong-Hwan Choi, Ji-Young Shon, Young-Seop Shin, Mi-Ra Yoon, Gyu-Sung Lee, Jong-Min Jeong, Jae-Ki Chang, Kuk-Hyun Jung, Yong-Hee Jeon, Jeom-Sik Lee, Ung-Jo Hyun, Ki-Ho Hwang, Young-Jun Mo, Bo-Gyeong Kim, Byeong-Ju Kim
Korean. J. Breed. Sci. 2016;48(3):292-300.   Published online September 30, 2016
DOI: https://doi.org/10.9787/KJBS.2016.48.3.292

‘Jungmo1038', a mid-late maturing, high dry matter yielding rice (Oryza sativa L.) cultivar with glabrous leaf and hull, was developed for whole crop silage (WCS) use. It was derived from a cross between ‘SR24592-HB2319’ with high biomass, smooth leaf and hull and good germinability in low temperature and new plant type (NPT), ‘IR73165-B-6-1-1‘ which had low tillering trait, large panicle, dark green leaf, thick and sturdy stem and vigorous root system. This cultivar had about 125 days growth period from seeding to heading, 99cm culm length, 20cm panicle length, 13 panicles per hill, 119 spikelets per panicle and 1,000-grain weight of 23.3 g as brown rice in central plain region, Suwon. This hairless WCS rice variety was weak to cold stresses similar to ‘Nokyang’ but was resistant to lodging in the field, strong to viviparous germination and good to low temperature germination. In addition, ‘Jungmo1038’ was resistant to leaf and neck blast but susceptible to bacterial blight, rice stripe virus and brown planthopper. Its average dry matter yield for three years reached 17.2 MT/ha, 21% higher than that of ‘Nokyang’. This glabrous cultivar had 6.6% crude protein and 62.4% total digestible nutrients a little low compared to ‘Nokyang’. In Korea peninsular, 'Jungmo1038' grows well in central and southern plain and is good to harvest between 15 to 30 days after heading to improve its feeding value and digestion rate of livestock(Grant No. 5634).

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고온조건에서 등숙이 양호하고 도열병에 강한 조생 고품질 벼 ‘중모1024’ 육성
Blast Resistant Early Maturing Rice ‘Jungmo1024’ with High Temperature Tolerance during Grain Filling Stage
Ji-Ung Jeung, Young-Seop Shin, Im-Soo Choi, Jae-Ki Chang, Myeong-Ki Kim, Jeom-Ho Lee, Hyang-Mi Park, Chang-Ihn Yang, Yong-Hee Jeon, Jung-Pil Suh, In-Bae Choi, Jong-Min Jeong, Nak-Sig Sung, Jeong-Heui Lee, Mi-Ra Yoon, Chung-Kon Kim
Korean. J. Breed. Sci. 2016;48(1):72-84.   Published online March 31, 2016
DOI: https://doi.org/10.9787/KJBS.2016.48.1.072

‘Jungmo1024’ is a blast resistant early maturing rice cultivar with high temperature tolerance during grain filling stage. ‘Jungmo1024’ was derived from a sodium azide treatment on ‘Suweon472’, a high yielding japonica elite line which was latterly registered as ‘Namil’. Comparison with the agronomical traits of ‘Namil’, ‘Jungmo1024’ was uniquely characterized as the induced gained function due to the reduced culm length, increased tiller number, strong blast resistance and especially high temperature tolerance during grain filling stage. The high temperature tolerance of ‘Jungmo1024’ was supported by two years experiments by comparing the head rice ratio produced in ordinary paddy field and green house condition. The heading date of ‘Jungmo1024’ was July 29 in central plain area, which was 9 days earlier than that of ‘Hwaseong’. The milled rice yield performance of ‘Jungmo1024’ was about 4.98 MT/ha in local adaptability test for three years. ‘Jungmo1024’ had 69 cm in culm length, which was 15 cm shorter than that of ‘Hwaseong’, 20 cm in panicle length, 16 in tiller number, and 22.3g in 1,000 grain-weight of brown rice. ‘Jungmo1024’ exhibited strong rice blast resistance, but do not have any clear resistance gene sources against bacterial blight, viral diseases and insect fests. ‘Jungmo1024’, nevertheless, would be a useful rice cultivar could be used as a donor line for the breeding programs for developing southern plane adaptable early maturing rice cultivars with enhanced rice blast resistance, lodging tolerance, and especially high temperature tolerance during grain filling stage.

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녹색자엽 검정종피 내도복 다수성 콩 중간모본 “중모3009호”
A New Soybean Variety, ‘Joongmo 3009’ with Green Cotyledon, Black Seed Coat, Disease Tolerant, and High Yield
Won-Young Han, Hyun-Tae Kim, Jong-Min Ko, Hong-Tae Yun, InYoul Baek, Byung-Won Lee, Young-Hoon Lee, Tae-Jung Ha, Sang-Ouk Shin, Suk-Ki Lee, Chan-Sik Jung, Jae-Keun Choi, Jong-Hyung Lee, Seung-Soo Lee, Dong-Kwan Kim, Eun-Ja Lee, Hang-Won Kang
Korean. J. Breed. Sci. 2016;48(1):54-59.   Published online March 31, 2016
DOI: https://doi.org/10.9787/KJBS.2016.48.1.054

A new soybean variety, ‘Joongmo 3009’ (Milyang 222) was developed at the National Institute of Crop Science (NICS) in 2012. ‘Joongmo 3009’ was released by pedigree selection from the cross between ‘Cheongja 2(Milyang 121)’ and ‘Daemangkong’.

It has determinate growth habit, white flower, brown pubescence, brown pod color, green seed coat, green cotyledon, spherical seed shape, oval leaf shape and large seed size (29.3 grams per 100 seeds). It was late 16 days in maturing date than the check cultivar ‘Cheongjakong’. The average yield of ‘Joongmo 3009’ was 2.91 ton per hectare, which was higher 36 percentage than the check variety, in the regional yield trials carried out in three adaptable locations of Korea from 2010 to 2012. The number of breeder’s right is ‘5474’

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중부지역 적응 조생 복합내병성 고품질 벼 ‘중모1023’
A Multiple Disease Resistant, Middle Plain Area Adaptable and Early Maturing Rice ‘Jungmo1023’
Yong-Jae Won, Young-Chan Cho, Im-Soo Choi, Jeom-Ho Lee, Sang-Bok Lee, Jeong-Heui Lee, Myung-Kyu Oh, Jeong-Ju Kim, Chang-Ihn Yang, Eok-Keun Ahn, Jae-Ki Chang, Jeom-Sig Lee, Ha-Cheol Hong, Mi-Ra Yoon, Jung-Pil Suh, Sea-Kwan Oh, Ki-Ho Hwang, Chung-Kon Kim
Korean. J. Breed. Sci. 2015;47(3):281-287.   Published online September 30, 2015
DOI: https://doi.org/10.9787/KJBS.2015.47.3.281

The ‘Jungmo1023’ is the japonica rice variety developed from a cross between Yeongdeog34 and F1 of Iksan456 and SR21097-B-B-19-2-2 by the rice breeding team at NICS in 2012. The heading date of ‘Jungmo1023’ is August 3 in middle plain area and it is six days earlier than ‘Hwaseong’. ‘Jungmo1023’ has 80 cm of culm length which is 4 cm shorter than those of ‘Hwaseong’ and 107 spikelet per panicle. The premature heading rate of ‘Jungmo1023’ was 3.3%. It showed resistance to blast, bacterial blight (K1, K2, K3 race) and stripe virus, but susceptibility to K3a race of bacterial blight, dwarf and black streak dwarf viruses and planthoppers. The milled rice of this variety exhibits translucent and medium short grain shape. It has better palatability index of cooked rice (0.24) and lower amylose content (18.0%) than that of ‘Hwaseong’. The characteristics related to grain milling were better than those of ‘Hwaseong’, especially head rice milling recovery ratio and head rice ratio (96.2%). ‘Jungmo1023’ showed 4.56 MT/ha of milled rice productivity at 7 sites in ordinary cultivation. However, ‘Jungmo1023’ showed early cultivation culture adaptability because of 98% of its yield potential (4.99 MT/ha) compared to high yielding early-maturing variety ‘Jopyeong’. ‘Jungmo1023’ could be adaptable to the middle plain, mid-mountainous and north-east coastal area in Korea (Registration No. 5115).

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내도복성 및 내수발아성 고품질 가공밥 적성 벼 ‘중모1017’
Lodging and Pre-harvest Sprouting Tolerant, High Quality and Suitable for Processing Cooked Rice ‘Jungmo1017’
Chang-Ihn Yang, Young-Chan Cho, Im-Soo Choi, Myeong-Ki Kim, Yeon-Gyu Kim, Ha-Cheol Hong, Jeong-Ju Kim, Jeom-Ho Lee, Jung-Pil Suh, Jong-Min Jeong, Yong-Jae Won, Eok-Keun Ahn, Jae-Ki Chang, In-Bae Choi, Sang-Bok Lee, Mi-Ra Yoon, Ji-Ung Jeung, Jeong-Heui Lee
Korean. J. Breed. Sci. 2014;46(4):463-469.   Published online December 31, 2014
DOI: https://doi.org/10.9787/KJBS.2014.46.4.463

The ‘Jungmo1017’ is a japonica rice variety developed from a cross between Suweon462 which has a good plant architecture, cold tolerance, moderately tolerant to leaf blast and bacterial blight and medium maturing habit, and Yeongdeog34 which has translucent milled rice and good milling properties, by the rice breeding team at NICS, RDA in 2011. The heading date of ‘Jungmo1017’ is August 16 and it is six days later than ‘Hwaseong’. ‘Jungmo1017’ has 65 cm of culm length which is 18 cm shorter than those of ‘Hwaseong’ and 93 spikelet per panicle. The pre-harvest sprouting rate of ‘Jungmo1017’ is 8.6% that is lower than 27.7% of ‘Hwaseong’ on local adaptability test (LAT). It showed resistance to blast diseases and moderately resistant to bacterial blight (K1 race) and stripe virus, but susceptible to other races (K2, K3 and K3a) of bacterial blight, viruses and planthoppers. The milled rice of this variety exhibits translucent, clear non-glutinous endosperm and medium short grain shape. It has better palatability index of cooked rice (0.53) than that of ‘Hwaseong’. ‘Jungmo1017’ showed lower protein content (6.4%) and amylose content (18.0%). ‘Jungmo1017’ could use aseptic-packaged cooked rice or processing cooked rice because its hardness of cooked rice is soft, setback and balance is low and palatability of cold and aseptic rice showed high score. The characters related to milling is better than those of ‘Hwaseong’. ‘Jungmo1017’ showed 5.01 MT/ha of milled rice productivity at 7 sites of middle plain, southern mid-mountainous and south-east coastal area in ordinary cultivation. ‘Jungmo1017’ could be adaptable to the middle plain area in Korea.

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식물육종신기술(NPBTs)의 발전에 따른 신규식물(Novel Plant)의 위해성평가 동향
Novel Plant Breeding Techniques and Risk Assessment
Myung-Ho Lim, Hee-Jong Woo, Kong-Sik Shin, Tae-Hoon Ryu, Yunsoo Yeo, Soon-Jong Kweon, Soon Ki Park
Korean. J. Breed. Sci. 2014;46(4):333-341.   Published online December 31, 2014
DOI: https://doi.org/10.9787/KJBS.2014.46.4.333

In recent years, novel plant breeding techniques (NPBTs) have emerged, and safety assessment of the novel plant(s) generated using the NPBTs has drawn the attention of many stakeholders. The notable characteristics of the novel plants are as follows: firstly, it is almost impossible to distinguish from the natural mutations in the conventional counterparts, because site-directed nuclease (SDN) and oligonucleotide-directed mutagenesis (ODM) could introduce short indel(s) in the targeted region(s) of the chromosomes. Secondly, the genome constitution of novel plants is almost identical to that of their conventional counterparts, eventually becoming indistinguishable by the introduction of only unmodified gene(s) from sexually compatible species to the target host plant. Thirdly, it is possible to generate new plants that have the desired traits, but without introducing genes. These plants will have some modified bases in their genome by selecting null-segregant(s) from heterozygous transgenic plants or by other epigenetic methods. The Organisation for Economic Co-operation and Development (OECD) and many countries developing genetically modified organisms (GMOs) have concluded that novel plants developed using SDN, ODM, cisgenesis, intragenesis, or null-segregant techniques are treated in the same manner as non-genetically modified (GM) plants or may even have less strict risk assessments depending on the case. Additionally, grafting and agro-infiltration are methods that can be used to avoid or reduce the burden of current strict GMO risk assessment. The risk assessments of some of the novel plants have already been performed and those of commercially important plants are expected to be performed in the near future. Hence, it is necessary to develop a competitive and practical NPBT that can mitigate the concern and revulsion toward GMOs in Korea.

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백립계 고제분 붉은곰팡이병 중도저항성 제면용 밀( L.) ‘중모2004’
A White Wheat Variety, ‘Joongmo2004’ with High Milling, Good Noodle Quality and Moderate Resistance to Fusarium Head Blight
Chon-Sik Kang, Young-Keun Cheong, Kyeong-Hoon Kim, Hag-Sin Kim, Young-Jin Kim, Kyong-Ho Kim, Jong-Chul Park, Hyung-Ho Park, Hong-Sik Kim, Sung-Ju Kang, Hong-Jip Choi, Jung-Gon Kim, Kee-Jong Kim, Choon-Ki Lee, Kwang-Geun Park, Ki-Hun Park, Chul-Soo Park
Korean. J. Breed. Sci. 2014;46(3):276-283.   Published online September 30, 2014
DOI: https://doi.org/10.9787/KJBS.2014.46.3.276

‘Joongmo2004’, a winter wheat (Triticum aestivum L.) cultivar was developed by the National Institute of Crop Science, RDA. It was derived from the cross ‘Bacanora88/Keumkang//Keumkang’ during 1996. ‘Joongmo2004’ was evaluated as ‘Iksan320’ in advance yield trial test in 2006. It was tested in the regional yield trial test between 2007 and 2009. Its heading date was April 26 in upland and April 23 in paddy filed conditions, and Maturity date was June 5 in upland and June 4 in paddy field, which were similar to Keumkang, respectively. It showed 830 in number of spikes per m2, 35 of grain number per spike, 44.9g of 1,000 grain weight, and 806g of test weight. ‘Joongmo2004’ showed moderate to fusarium graminearum (Scab) in test of specific character although ‘Keumkang’ is susceptible to scab. ‘Joongmo2004’ had higher flour yield (75.5%) than ‘Keumkang’(72.5%). ‘Joongmo2004’ showed similar ash (0.42%), lower protein content (12.3%), SDS-sedimentation volume (43.0 ml) and gluten content (10.3%) than ‘Keumkang’ (0.42%, 13.1%, 57.8ml and 10.8%, respectively). It showed higher lightness (89.97), redness (-1.38) and yellowness (10.76) in flour color than ‘Keumkang’ (89.61, -1.15 and 9.46, respectively). ‘Joongmo2004’ exhibited lower hardness (3.50N), similar springiness and higher cohesiveness of cooked noodles (0.92 and 0.65) compared to ‘Keumkang’ (4.54N, 0.93, and 0.63, respectively). The average grain yield in the regional yield trial was 517 kg/10a in upland and 534 kg/10a in paddy field, which were 11% lower and 3% higher than that of the check cultivar, ‘Keumkang’, respectively.

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백립계 조숙 내한성 제면용 밀(Triticum aestivum L.) ‘중모2003’
A Wheat Variety, ‘Joongmo2003’ Good Noodle Quality, White Grain Characteristics, Early Maturity and Resistance to Winter Hardiness
Chon-Sik Kang, Young-Keun Cheong, Kyeong-Hoon Kim, Hag-Sin Kim, Young-Jin Kim, Kim Kyong-Ho, Jong-Chul Park, Hyung-Ho Park, Hong-Sik Kim, Sung-Ju Kang, Hong-Jip Choi, Jung-Gon Kim, Kee-Jong Kim, Choon-Ki Lee, Kwang-Geun Park, Ki-Hun Park, Chul-Soo Park
Korean. J. Breed. Sci. 2014;46(3):268-275.   Published online September 30, 2014
DOI: https://doi.org/10.9787/KJBS.2014.46.3.268

‘Joongmo2003’, a winter wheat (Triticum aestivum L.) cultivar was developed by the National Institute of Crop Science, RDA. It was derived from the cross ‘SW86054/Keumkang’ during 1997. ‘Joongmo2003’ was evaluated as ‘Iksan318’ in advance yield trial test in 2006. It was tested in the regional yield trial test between 2007 and 2009. Its heading date was April 24 in upland and April 21 in paddy filed conditions, which was two days earlier than those of the check cultivar ‘Keumkang’, respectively, and maturity date was June 4 in upland and June 2 in paddy field, one or two days earlier than those of ‘Keumkang’, respectively. ‘Joongmo2003’ showed resistance to winter hardiness and pre-harvest sprouting, which lower withering rate on the low ridge (0.3%) and rate of pre-harvest sprouting (18.5%) than ‘Keumkang’ (9.2 and 25.8%, respectively). ‘Joongmo2003’ showed similar protein content (13.2%), lower SDS-sedimentation volume (54.0 ml) and higher gluten content (11.7%) than ‘Keumkang’ (13.1%, 57.8ml and 10.8%, respectively). It showed higher lightness (89.85) of flour and noodle dough sheet than ‘Keumkang’ (89.81 and 80.28, respectively). ‘Joongmo2003’ exhibited similar hardiness (3.84N), springiness and cohesiveness of cooked noodles (0.92 and 0.63) compared to ‘Keumkang’ (4.54N, 0.93, and 0.63, respectively). The average grain yield in the regional yield trial was 555 kg/10a in upland and 485 kg/10a in paddy field, which were 4% and 7% lower than those of the check cultivar, ‘Keumkang’, respectively.

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The purpose of this study was to characterize the T-DNAs introduced into the transgenic OsCK rice, as part of a biosafety evaluation. Choline Kinase (CK) gene is upregulated in the transgenic OsCK rice. We identified the insertion sites, flanking sequences, structures and sequences of the inserted T-DNAs. Based on the adaptor-ligation PCR, we found that the right border of the T-DNA was inserted at position no. 129971, on BAC clone OSJNBa0014J14 of chromosome 10. The flanking sequences of the left border region of the T-DNA (which was later identified as a region harboring a 1-kb long deleted sequence), could not be identified by various PCR-based trials. However, it was finally identified with whole-genome shotgun sequencing, using an Illumina sequencer. The result indicated that one of the T-DNAs was inserted into the CaMV 35S promoter region, whereas the other T-DNA was introduced at position 128947 on OSJNBa0014J14 clone, with an inverse orientation. During the insertion process, a 1024-bp-long chromosome sequences flanked by the right border of the T-DNA region was deleted. A 370-bp long left border region and 199-bp long right border region corresponding to the matrix attachment region (MAR) sequences of the T-DNA were also deleted. Collectively, these results indicate that whole-genome shotgun sequencing is a useful tool to reveal the detailed sequences and structures of the introduced T-DNAs, especially in the case of multiple T-DNA insertions. The expenses incurred on genome sequencing can be easily compensated by minimizing the time and efforts invested in conventional molecular analyses.

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