Acta Agron Sin ›› 2018, Vol. 44 ›› Issue (01): 15-23.doi: 10.3724/SP.J.1006.2018.00015
• CROP GENETICS & BREEDING · GERMPLASM RESOURCES · MOLECULAR GENETICS • Previous Articles Next Articles
SUN Ai-Ling1,WU Hong-Ming1,CHEN Gao-Ming1,ZHANG Tian-Yu1,CAO Peng-Hui1,LIU Shi-Jia1,JIANG Ling1,*,WAN Jian-Min1,2
| [1] Bewley J D. Seed germination and dormancy. Plant Cell, 1997, 9: 1055–1066 [2] Dong Y J, Tsuzuki E, Kamiunten H, Terao H, Lin D Z, Matsuo M, Zheng Y F. Identification of quantitative trait loci associated with pre-harvest sprouting resistance in rice (Oryza sativa L.). Field Crops Res, 2003, 81: 133–139 [3] 卢丙越. 水稻品种强休眠性的定位及遗传解析. 南京农业大学博士学位论文, 江苏南京, 2011 Lu B Y. QTL Mapping and genetic dissection of strong seed dormancy in N22 (Oryza sativa L.). PhD Dissertation of Nanjing Agricultural University, Nanjing, China, 2011 (in Chinese with English abstract) [4] Sugimoto K, Takeuchi Y, Ebana K, Miyao A, Hirochika H, Hara N, Ishiyama K, Kobayashi M, Ban Y, Hattori T, Yano M. Molecular cloning of Sdr4, a regulator involved in seed dormancy and domestication of rice. Proc Natl Acad Sci USA, 2010, 107: 5792–5797 [5] Takeuchi Y, Lin S Y, Sasaki T, Yano M. Fine linkage mapping enables dissection of closely linked quantitative trait loci for seed dormancy and heading in rice. Theor Appl Genet, 2003, 107: 1174–1180 [6] Gu X Y, Kianian S F, Hareland G A, Hoffer B L, Foley M E. Genetic analysis of adaptive syndromes interrelated with seed dormancy in weedy rice (Oryza sativa). Theor Appl Genet, 2005, 110: 1108–1118 [7] Gu X Y, Liu T L, Feng J H, Suttle J C, Gibbons J. The qSD12 underlying gene promotes abscisic acid accumulation in early developing seeds to induce primary dormancy in rice. Plant Mol Biol, 2010, 73: 97–104 [8] Lu B Y, Xie K, Yang C Y, Wang S F, Liu X, Zhang L, Jiang L, Wan J M. Mapping two major effect grain dormancy QTL in rice. Mol Breed, 2011, 28: 453–462 [9] 罗正良. 水稻抗穗发芽主效QTL qPSR8的精细定位及候选基因分析. 四川农业大学硕士学位论文, 四川雅安, 2012 Luo Z L. Fine mapping and candidate gene analysis of qPSR8, a major QTL for pre-harvest sprouting resistance in rice. MS Thesis of Sichuan Agricultural University, Ya’an, China, 2012 (in Chinese with English abstract) [10] 钟代彬, 罗利军, 应存山. 野生稻有利基因转移研究进展. 中国水稻科学, 2000, 14: 103–106 Zhong D B, Luo L J, Ying C S. Advances on transferring elite gene from wild rice species into cultivated rice. Chin J Rice Sci, 2000, 14: 103–106 (in Chinese with English abstract) [11] Wan J M, Cao Y J, Wang C M, Ikehashi H. Quantitative trait loci associated with seed dormancy in rice. Crop Sci, 2005, 45: 712–716 [12] Porebski S, Bailey L G, Baum B R. Modification of a CTAB DNA extraction protocol for plants containing high polysaccharide and polyphenol components. Plant Mol Biol Rep, 1997, 15: 8–15 [13] Sanguinetti C J, Dias N E, Simpson A J. RAPD silver staining and recovery of PCR products separated on polyacrylamide gels. Biotechniques, 1994, 17: 914–918 [14] Meng L, Li H H, Zhng L Y, Wang J K. QTL IciMapping Integrated software for genetic linkage map construction and quantitative trait locus mapping in biparental populations. Crop J, 2015, 3: 269–283 [15] McCouch S R, Cho Y G, Yno M, Paul E, Blinstrub M, Morishima H, Kinoshita T. Report on QTL nomenclature. Rice Genet Newsl, 1997, 14: 11-13 [16] Tanksley S D, Grandillo S, Fulton T M, Zamir D, Eshed Y, Petiard V, Lopez J, Beck-Bunn T. Advanced backcross QTL analysis in a cross between an elite processing line of tomato and its wild relative L. pimpinellifolium. Theor Appl Genet, 1996, 92: 213–224 [17] Cai H W, Morishima H. Genomic regions affecting seed shattering and seed dormancy in rice. Theor Appl Genet, 2000, 100: 840–846 [18] Miura K, Lin S, Yano M, Nagamine T. Mapping quantitative trait loci controlling seed longevity in rice (Oryza sativa L.). Theor Appl Genet, 2002, 104: 981–986 [19] Wang L, Cheng J, Lai Y Y, Du W L, Huang X, Wang Z F, Zhang H S. Identification of QTLs with additive, epistatic and QTL × development interaction effects for seed dormancy in rice. Planta, 2014, 239: 411–420 [20] Li W, Xu L, Bai X F, Xing Y Z. Quantitative trait loci for seed dormancy in rice. Euphytica, 2011, 178: 427–435 [21] Marzougui S, Sugimoto K, Yamanouchi U, Shimono M, Hoshino T, Hori K, Kobayashi M, Ishiyama K, Yano M. Mapping and characterization of seed dormancy QTLs using chromosome segment substitution lines in rice. Theor Appl Genet, 2012, 124: 893–902 [22] Gu X Y, Kianian S F, Foley M E. Multiple loci and epistases control genetic variation for seed dormancy in weedy rice (Oryza sativa). Genetics, 2004, 166: 1503–1516 [23] Sasaki K, Kazama Y, Chae Y, Sato T. Confirmation of novel quantitative trait loci for seed dormancy at different ripening stages in rice. Rice Sci, 2013, 20: 207–212 [24] Rathi S, Baruah A R, Chowdhury R K, Sarma R N. QTL analysis of seed dormancy in indigenous rice of Assam, India. Cereal Res Commun, 2011, 39: 137–146 |
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