$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

자포니카 벼의 담수발아 내성에 대한 QTL 분석
QTL Analysis for Tolerance to Anaerobic Germination in Japonica Rice (Oryza Sativa L.) 원문보기

Korean journal of breeding science = 한국육종학회지, v.51 no.4, 2019년, pp.415 - 423  

김진희 (농촌진흥청 국립식량과학원) ,  모영준 (농촌진흥청 국립식량과학원) ,  하수경 (농촌진흥청 국립식량과학원) ,  김우재 (농촌진흥청 국립식량과학원) ,  김보경 (농촌진흥청 국립식량과학원) ,  정지웅 (농촌진흥청 국립식량과학원) ,  정종민 (농촌진흥청 국립식량과학원)

초록
AI-Helper 아이콘AI-Helper

자포니카 벼의 담수발아 내성 증진을 위하여, 밀양23호와 기호벼 교배를 통해 육성된 MGRIL 을 이용하여 담수 내성 QTL을 탐색하였다. QTL 분석을 통하여 기호벼(자포니카)에서 유래한 2개의 담수발아 내성 QTL인 qAG2.1과 qAG2.2를 2번 염색체에서 탐색하였다. qAG2.1는 기존에 보고 된 적이 없던 새로운 혐기발아 내성 QTL인 것으로 확인 되었으며 qAG2.2은 이전 연구를 통해 보고된 자포니카 품종인 Kinmaze 유래 혐기내성 QTL과 인디카 품종 IR72 유래의 담수내성 QTL과 위치가 중첩되었다. 본 연구에서는 qAG2.2 위치를 60 kb로 영역으로 한정하여 기존 연구보다 QTL 영역을 정밀화하였다. QTL 효과 분석을 통하여qAG2.1과 qAG2.2 두 개의 QTL이 집적되었을 때, 담수 생존율이 향상됨을 확인하였다. 본 논문에서 탐색된 QTL은 자포니카 품종인 기호벼에서 유래하여 국내 자포니카 벼의 담수 발아 개선에 유용하게 활용될것이다.

Abstract AI-Helper 아이콘AI-Helper

Hypoxia caused by water seeding of rice inhibits germination and often leads to serious problems in seedling establishment and early growth. To solve this problem, it is necessary to develop rice cultivars that can stably germinate and grow under anaerobic environments. In this study, we performed Q...

주제어

참고문헌 (47)

  1. Angaji, S. Abdolhamid, Septiningsih, Endang M., Mackill, D. J., Ismail, Abdelbagi M.. QTLs associated with tolerance of flooding during germination in rice (Oryza sativa L.). Euphytica : Netherlands journal of plant breeding, vol.172, no.2, 159-168.

  2. Baltazar, Miriam D., Ignacio, John Carlos I., Thomson, Michael J., Ismail, Abdelbagi M., Mendioro, Merlyn S., Septiningsih, Endang M.. QTL mapping for tolerance of anaerobic germination from IR64 and the aus landrace Nanhi using SNP genotyping. Euphytica : Netherlands journal of plant breeding, vol.197, no.2, 251-260.

  3. Biswas JK, Yamauchi M. 1997. Mechanism of seedling establishment of direct-seeded rice ( Oryza sativa L.) under lowland conditions. Bot Bull Acad Sin 38: 29-32. 

  4. Choi KJ. 2018. Status of rice direct seeding and stabligation of rice establisment in direct seeding. In Oh MK, Choi KJ, Lee CK, Hwang UH, Jeong JH, Choi IB, Lee HS, Yang SY, Yoon JT (Eds.). Education of rice direct seeding and labor saving culture. NICS, RDA, Wanju. pp. 13-44. 

  5. Dawe, David. Increasing Water Productivity in Rice-Based Systems in Asia–Past Trends, Current Problems, and Future Prospects. Plant production science, vol.8, no.3, 221-230.

  6. 10.1093/genetics/138.3.963 Churchill GA, Doerge RW. 1994. Empirical threshold values for quantitative trait mapping. Genetics 138: 963-971. 

  7. 10.17660/ActaHortic.1999.504.22 Ella ES, Setter TL. 1999. Importance of seed carbohydrates in rice seedling establishment under anoxia. In VI Symposium on Stand Establishment and ISHS Seed Symposium. Acta Hortic 504: 209-218. 

  8. FAO. 2017. Available online: http://www.fao.org/faostat/en/#home 

  9. Han, L., Qiao, Y., Zhang, S., Zhang, Y., Cao, G., Kim, J., Lee, K., Koh, H.. Identification of Quantitative Trait Loci for Cold Response of Seedling Vigor Traits in Rice. Journal of genetics and genomics = 遺傳學報, vol.34, no.3, 239-246.

  10. Hwang, Y.-S., Thomas, B.R., Rodriguez, R.L.. Differential expression of rice &agr;-amylase genes during seedling development under anoxia. Plant molecular biology, vol.40, no.6, 911-920.

  11. Ismail, Abdelbagi M., Ella, Evangelina S., Vergara, Georgina V., Mackill, David J.. Mechanisms associated with tolerance to flooding during germination and early seedling growth in rice (Oryza sativa). Annals of botany, vol.103, no.2, 197-209.

  12. Ismail, Abdelbagi M., Johnson, David E., Ella, Evangelina S., Vergara, Georgina V., Baltazar, Aurora M.. Adaptation to flooding during emergence and seedling growth in rice and weeds, and implications for crop establishment. AoB plants, vol.2012, pls019-.

  13. JACKSON, MICHAEL B., RAM, PHOOL C.. Physiological and Molecular Basis of Susceptibility and Tolerance of Rice Plants to Complete Submergence. Annals of botany, vol.91, no.2, 227-241.

  14. Ji HS, Kim HB, Lee GS, Yoon UH, Kim TH, Seol YJ, Yun DW, Koh HJ, Eun MY. 2012. Development of rice molecular genetic and physical map using pcr-based dna markers with the recombinant inbred population derived from Milyang23/Gihobyeo cross. Korean J Breed Sci 44: 273-281. 

  15. Jiang, Ling, Liu, Shijia, Hou, Mingyu, Tang, Jiuyou, Chen, Liangmin, Zhai, Huqu, Wan, Jianmin. Analysis of QTLs for seed low temperature germinability and anoxia germinability in rice (Oryza sativa L.). Field crops research, vol.98, no.1, 68-75.

  16. Jiang L, MingYu H, ChunMing W, JianMin W. 2004. Quantitative trait loci and epistatic analysis of seed anoxia germinability in rice ( Oryza sativa ). Rice Sci 11: 238-244. 

  17. Kim, Suk‐Man, Kim, Choon‐Song, Jeong, Ji‐Ung, Reinke, Russell F., Jeong, Jong‐Min, Ahn, Sang Nag. Marker‐assisted breeding for improvement of anaerobic germination in japonica rice (Oryza sativa). Plant breeding : Zeitschrift für Pflanzenzüchtung, vol.138, no.6, 810-819.

  18. Kim, Suk-Man, Reinke, Russell F.. Identification of QTLs for tolerance to hypoxia during germination in rice. Euphytica : Netherlands journal of plant breeding, vol.214, no.9, 160-.

  19. Li, Sanfeng, Wei, Xiangjin, Ren, Yulong, Qiu, Jiehua, Jiao, Guiai, Guo, Xiuping, Tang, Shaoqing, Wan, Jianmin, Hu, Peisong. OsBT1 encodes an ADP-glucose transporter involved in starch synthesis and compound granule formation in rice endosperm. Scientific reports, vol.7, 40124-.

  20. Lincoln SE, Daly MJ, Lander ES. 1993. Constructing Genetic Linkage Maps with MAPMAKER/EXP Version 3.0: A Tutorial and Reference Manual. 

  21. Microarray-Assisted Fine-Mapping of Quantitative Trait Loci for Cold Tolerance in Rice. Molecular plant = 分子植物 英文版, vol.6, no.3, 757-767.

  22. LORETI, ELENA, YAMAGUCHI, JUNJI, ALPI, AMEDEO, PERATA, PIERDOMENICO. Sugar Modulation of α‐Amylase Genes under Anoxia. Annals of botany, vol.91, no.2, 143-148.

  23. Lou, Qiaojun, Chen, Liang, Sun, Zongxiu, Xing, Yongzhong, Li, Jun, Xu, Xiaoyan, Mei, Hanwei, Luo, Lijun. A major QTL associated with cold tolerance at seedling stage in rice (Oryza sativa L.). Euphytica : Netherlands journal of plant breeding, vol.158, no.1, 87-94.

  24. 10.1016/B978-0-12-394276-0.00006-8 

  25. McCouch, Susan R.. Gene Nomenclature System for Rice. Rice, vol.1, no.1, 72-84.

  26. Miro, Berta, Longkumer, Toshisangba, Entila, Frederickson D., Kohli, Ajay, Ismail, Abdelbagi M.. Rice Seed Germination Underwater: Morpho-Physiological Responses and the Bases of Differential Expression of Alcoholic Fermentation Enzymes. Frontiers in plant science, vol.8, 1857-.

  27. Murata, Takao, Akazawa, T., Fukuchi, Shikiko. Enzymic Mechanism of Starch Breakdown in Germinating Rice Seeds I. An Analytical Study. Plant physiology, vol.43, no.12, 1899-1905.

  28. Narsai, Reena, Edwards, Joshua M., Roberts, Thomas H., Whelan, James, Joss, Gregory H., Atwell, Brian J.. Mechanisms of growth and patterns of gene expression in oxygen‐deprived rice coleoptiles. The Plant journal : for cell and molecular biology, vol.82, no.1, 25-40.

  29. Pandey S, Velasco L. 2002. Economics of direct seeding in Asia: patterns of adoption and research priorities. In: Pandey S, Mortimer M, Wade L, Lopez K, Hardy B (Eds.). Direct Seeding: Research Strategies and Opportunities. Proceedings of the International Workshop on Direct Seeding in Asian Rice Systems: strategic search Issues and Opportunities, 25-28 Jan 2000, Bangkok, Thailand. International Rice Research Institute, Los Baños, Philippines. ISBN: 978-1-891127-63-2. pp. 3-14. 

  30. Park HJ. 2018. Supply status and problems on rice direct seeding technology. In Oh MK, Choi KJ, Lee CK, Hwang UH, Jeong JH, Choi IB, Lee HS, Yang SY, Yoon JT (Eds.). Education of rice direct seeding and labor saving culture. NICS, RDA Manila, Philippines. pp 137-162. 

  31. Perata, P., Geshi, N., Yamaguchi, J., Akazawa, T.. Effect of anoxia on the induction of ?-amylase in cereal seeds. Planta, vol.191, no.3,

  32. Perata, Pierdomenico, Guglielminetti, Lorenzo, Alpi, Amedeo. Mobilization of Endosperm Reserves in Cereal Seeds under Anoxia. Annals of botany, vol.79, no.1, 49-56.

  33. Perata, P., Pozueta-Romero, J., Akazawa, T., Yamaguchi, J.. Effect of anoxia on starch breakdown in rice and wheat seeds. Planta, vol.188, no.4,

  34. Perata, P., Voesenek, L.A.C.J.. Submergence tolerance in rice requires Sub1A, an ethylene-response-factor-like gene. Trends in plant science, vol.12, no.2, 43-46.

  35. Redoña, E. D., Mackill, D. J.. Genetic Variation for Seedling Vigor Traits in Rice. Crop science, vol.36, no.2, 285-290.

  36. Santosh Rama Bhadra Rao, Tata, Vijaya Naresh, Juturu, Sudhakar Reddy, Palakolanu, Reddy, Malireddy K., Mallikarjuna, Garladinne. Expression of Pennisetum glaucum Eukaryotic Translational Initiation Factor 4A ( PgeIF4A ) Confers Improved Drought, Salinity, and Oxidative Stress Tolerance in Groundnut. Frontiers in plant science, vol.8, 453-.

  37. Sarkar RK, Reddy JN, Sharma SG, Ismail AM. 2006. Physiological basis of submergence tolerance in rice and implications for crop improvement. Curr Sci 91: 899-906. 

  38. Septiningsih, Endang M., Ignacio, John Carlos I., Sendon, Pamella M. D., Sanchez, Darlene L., Ismail, Abdelbagi M., Mackill, David J.. QTL mapping and confirmation for tolerance of anaerobic conditions during germination derived from the rice landrace Ma-Zhan Red. TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik, vol.126, no.5, 1357-1366.

  39. Septiningsih, Endang M., Sanchez, Darlene L., Singh, Namrata, Sendon, Pamella M. D., Pamplona, Alvaro M., Heuer, Sigrid, Mackill, David J.. Identifying novel QTLs for submergence tolerance in rice cultivars IR72 and Madabaru. TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik, vol.124, no.5, 867-874.

  40. 손지영, 이충근, 김준환, 윤영환, 양원하, 최경진, 최민규, 박홍규, 고종철, 김연규, 김정곤, 양운호. 벼 무논점파재배와 이앙재배의 생육, 출수 및 등숙특성 비교. Korean journal of crop science = 韓國作物學會誌, vol.57, no.2, 151-159.

  41. Wright, Mark H., Tung, Chih-Wei, Zhao, Keyan, Reynolds, Andy, McCouch, Susan R., Bustamante, Carlos D.. ALCHEMY: a reliable method for automated SNP genotype calling for small batch sizes and highly homozygous populations. Bioinformatics, vol.26, no.23, 2952-2960.

  42. Xie, Kun, Jiang, Ling, Lu, BingYue, Yang, ChunYan, Li, LinFang, Liu, Xi, Zhang, Long, Zhao, ZhiGang, Wan, JianMin. Identification of QTLs for seed dormancy in rice (Oryza sativa L.). Plant breeding : Zeitschrift für Pflanzenzüchtung, vol.130, no.3, 328-332.

  43. Yamauchi, M., Aguilar, A. M., Vaughan, D. A., Seshu, D. V.. Rice (Oryza sativa L.) germplasm suitable for direct sowing under flooded soil surface. Euphytica : Netherlands journal of plant breeding, vol.67, no.3, 177-184.

  44. Yamauchi, M., Winn, Tun. Rice Seed Vigor and Seedling Establishment in Anaerobic Soil. Crop science, vol.36, no.3, 680-686.

  45. Zhang, Luyan, Li, Huihui, Li, Zhonglai, Wang, Jiankang. Interactions Between Markers Can Be Caused by the Dominance Effect of Quantitative Trait Loci. Genetics, vol.180, no.2, 1177-1190.

  46. Zhang, Mengchen, Lu, Qing, Wu, Wei, Niu, Xiaojun, Wang, Caihong, Feng, Yue, Xu, Qun, Wang, Shan, Yuan, Xiaoping, Yu, Hanyong, Wang, Yiping, Wei, Xinghua. Association Mapping Reveals Novel Genetic Loci Contributing to Flooding Tolerance during Germination in Indica Rice. Frontiers in plant science, vol.8, 678-.

  47. Zhang, Ye, Lan, Hongxia, Shao, Qiaolin, Wang, Ruqin, Chen, Hui, Tang, Haijuan, Zhang, Hongsheng, Huang, Ji. An A20/AN1-type zinc finger protein modulates gibberellins and abscisic acid contents and increases sensitivity to abiotic stress in rice (Oryza sativa). Journal of experimental botany, vol.67, no.1, 315-326.

관련 콘텐츠

오픈액세스(OA) 유형

GOLD

오픈액세스 학술지에 출판된 논문

저작권 관리 안내
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로