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"Su-min Cho"

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"Su-min Cho"

New Cultivar Developed

수발아 내성 및 완전미율 우수 단기성 벼 중간모본 ‘엠와이362브이피’
Development of the Short-duration Intermediate Rice Variety ‘MY362VP’ with Enhanced Viviparous Germination Resistance and Superior Head Rice
So-Myeong Lee, Dong-Soo Park, Dongjin Shin, Su-min Cho, Hyeonjin Park, Youngho Kwon, Jin-Kyung Cha, Juwon Kang, Junhyeon Cho, Ki-Won Oh, Ji-Yoon Lee, Jong-Hee Lee
Korean. J. Breed. Sci. 2024;56(2):169-177.
Published online June 1, 2024
DOI: https://doi.org/10.9787/KJBS.2024.56.2.169

Rice is a staple crop in South Korea and globally. The era of global boiling, characterized by rising temperatures and abnormal climatic conditions, significantly impacts crop production worldwide. This study examines the effects of high temperatures and rainfall on early maturing rice varieties, focusing on enhancing heat tolerance during the ripening stage and preharvest sprouting resistance. Utilizing ‘Milyang247,’ a progeny line from ‘Nampyeong,’ we developed the intermediate line ‘MY362VP.’ During 2020–2022, regional adaptability tests were conducted at five locations across Korea. Results showed that ‘MY362VP’ had a viviparous germination rate of 1.9% compared to 19.0% in the control variety ‘Jopyeong.’ Furthermore, ‘MY362VP’ maintained a head rice rate of 90.6% under high temperature conditions, outperforming ‘Jopyeong,’ which has a rate of 62.1%. ‘MY362VP’ produced an average yield of 529 kg/10a, comparable to the control’s 518 kg/10a. This study offers valuable insights for breeding climate-resilient early-maturing rice varieties, positioning ‘MY362VP’ as a promising candidate for future cultivation.

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통일형 벼에서 메소트리온계 제초제 저항성 연관 DNA marker 탐색
Identification of DNA Markers Related to Resistance to Herbicide Containing Mesotrione in Tongil Type Rice
Ji-Yoon Lee, Jun-Hyeon Cho, Jong-Hee Lee, Su-Min Cho, Young-Ho Kwon, Dong-Soo Park, You-Chun Song, Jong-Min Ko
Korean. J. Breed. Sci. 2018;50(4):387-395.   Published online December 1, 2018
DOI: https://doi.org/10.9787/KJBS.2018.50.4.387

This study was conducted to identify DNA markers related to resistance to herbicide containing mesotrione in Tongil type rice. Two Tongil type elite lines; Milyang154 and Suweon382, showed resistance to mesotrione, whereas the others were susceptible at 20 days after mesotrione application, and severe growth inhibition was observed in the remaining 13 lines. As a result of analysis of mesotrione resistance using 190 F2 populations derived from a cross of Hanareum2 (susceptible) and Milyang154 (resistant), the mesotrione resistance locus was shown to be a single dominant gene with a 3:1 segregation ratio (X2=1.19, P=0.31). To identify a DNA marker closely linked to the mesotrione resistance gene, bulked segregant analysis (BSA) was adopted. The DNA marker RM3501 was identified on chromosome 2 with a recombinant value of 0.53 to the mesotrione resistance gene. Mst1(t) was located between SSR (simple sequence repeat) markers RM3501 and RM324 with a physical map distance of 10.2 Mb–11.4 Mb on chromosome 2. The band pattern of agarose gel electrophoresis of the SSR marker RM3501 showed the same segregation pattern with respect to mesotrione treatment in 20 Tongil type varieties and a BC2F2 segregation population derived from a cross between Unkwang (resistant) and Hanareum2 (susceptible). Thus, the RM3501 DNA marker could be used in breeding programs for Marker Assisted Selection in mesotrione resistant rice breeding.

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