Acta Agron Sin ›› 2011, Vol. 37 ›› Issue (08): 1324-1332.doi: 10.3724/SP.J.1006.2011.01324
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles Next Articles
SHAO Jing,DAI Wei-Min,ZHANG Lian-Ju,SONG Xiao-Ling,QIANG Sheng*
[1]Baki B B, Chin D V, Mortimer M. Wild and Weedy Rice in Rice Ecosystems in Asia—a Review. Los Banos, Philippine: Internationl Rice Research Institute, 2000 [2]Lentini Z, Espinoza A M. Coexistence of weedy rice and rice in tropical America—gene flow and genetic diversity. In: Gressel J ed. Crop Ferality and Volunteerism. Boca Raton,,USA; CRC Press Inc , 2005, pp 305–322 [3]Olsen K M, Caicedo A L, Jia Y L. Evolutionary genomics of weedy rice in the USA. J Integr Plant Biol, 2007, 49: 811–816 [4]Gealy D R. Gene movement between rice (Oryza sativa) and weedy rice (Oryza sativa): a US temperate rice perspective.In: Gressel J ed. Crop Ferality and Volunteerism. Boca Raton: CRC Press, 2005. pp 323–354 [5]Estorninos L E, Gealy D R, Gbur E E, Talbert R E, McClelland M R. Rice and red rice interference: II. Rice response to population densities of three red rice (Oryza sativa) ecotypes. Weed Sci, 2005, 53: 683–689 [6]Burgos N R, Norman R J, Gealy D R, Black H. Competitive N uptake between rice and weedy rice. Field Crops Res, 2006, 99: 96–105 [7]Gealy D R, Tai T H, Sneller C H. Identification of red rice, rice, and hybrid populations using microsatellite markers. Weed Sci, 2002, 50: 333–339 [8]Maneechote C, Jamjod S, Rerkasem B. Invasion of weedy rice in rice fields in Thailand: problems and management. Int Rice Res Notes, 2004, 29: 20–22 [9]Pan X-B(潘学彪), Chen Z-X(陈宗祥), Zuo S-M(左示敏), Zhang Y-F(张亚芳). Origin and control strategy on the weedy rice occured in Jiangsu province. Jiangsu Agric Sci (江苏农业科学), 2007, (4): 52–54 (in Chinese with English abstract) [10]Dai W-M(戴伟民), Song X-L(宋小玲), Zhang L-J(张连举), Zuo R-L(左然林), Zhang Z(张铮), Li S-S(李淑顺), Cao D(曹旦), Zuo J(左娇), Yang L(杨琳), Liu L-L(刘琳莉), Qiang S(强胜). Investigation of weed rice (Oryza sativa f. spontanea) occurrence in Jiangsu province. J Jiangsu Agric Sci (江苏农业学报), 2009, 25(3): 712–714 (in Chinese with English abstract) [11]Wu C(吴川), Dai W-M(戴伟民), Song X-L(宋小玲), Qiang S(强胜). Diversity of plant traits of weedy rice in Liaoning and Jiangsu provinces. Biodiversity (生物多样性), 2010, 18(1): 29–36 (in Chinese with English abstract) [12]Yang L(杨琳), Dai W-M(戴伟民), Qiang S(强胜), Song X-L(宋小玲). Cluster analysis of weedy rice and cultivated rice based on the structural characteristics of leaf lower epidermis. Chin J Rice Sci (中国水稻科学), 2009, 23(5): 495–502 (in Chinese with English abstract) [13]Zhong W-G(仲维功), Yang J(杨杰), Chen Z-D(陈志德), Tang L-H(汤陵华), Wang C-L(王才林), Shi J-W(施积文), Xiao Y-C(肖跃成). Classification of a ‘weedy rice’ in Yangzhong city of Jiangsu province. J Jiangsu Agric Sci (江苏农业学报), 2006, 22(3): 238–242 (in Chinese with English abstract) [14]Zhang J, Burgos N R, Kun M, Zhou Y J, Yu L Q, Geng R M. Genetic diversity and relationship of weedy rice in Taizhou city, Jiangsu province, China. Rice Sci, 2008, 15(4): 295–302 [15]Cao Q J, Lu B R, Xia H, Rong J, Sala F, Spada A, Grassi F. Genetic diversity and origin of weedy rice (Oryza sativa f. spontanea) populations found in North-eastern China revealed by simple sequence repeat (SSR) markers. Ann Bot, 2006, 98: 1241–1252 [16]Ma D-R(马殿荣), Li M-B(李茂柏), Sun J(孙健), Wang N(王楠), Xu Z-J(徐正进), Chen W-F(陈温福). Studies on biological diversity and genetic differentiation of Liaoning weedy rice. J Shenyang Agric Univ (沈阳农业大学学报), 2008, 39(3): 265–269 (in Chinese with English abstract) [17]Suh H S, Sato Y I, Morishima H. Genetic characterization of weedy rice (Oryza sativa L.) based on morpho-physiology, isozymes and RAPD markers. Theor Appl Genet, 1997, 94: 316–321 [18]Cho Y C, Chung T Y, Suh H S. Genetic characteristics of Korean weedy rice (Oryza sativa L.) by RFLP analysis. Euphytica, 1995, 86: 103–110 [19]Heu M H, Cho Y C, Suh H S. Cross affinity of Korean weedy rice to the cultivars Korean. J Crop Sci, 1990, 35: 233–238 [20]Londo J P, Schaal B A. Origins and population genetics of weedy red rice in the USA. Mol Ecol, 2007, 16: 4523–4535 [21]Lu Y-J(卢扬江), Zheng K-L(郑康乐). A simple method for isolation of rice DNA. Chin J Rice Sci (中国水稻科学), 1992, 6(1): 47–48 (in Chinese with English abstract) [22]Yeh F C, Yang R C. POPGENE Version 1.31, [2010-12-07] http://www.ualberta/fyeh/popgene, 1999 [23]Rohlf F J. NTSYS: Numerical Taxonomy and Multivariate Analysis System, Version 2.1. New York: Exeter Software, 2000 [24]Peakall R, Smouse P E. GENALEX 6: genetic analysis in Excel. Population genetic software for teaching and research. Mol Ecol Notes, 2006, 6: 288–295 [25]MINITAB 16, available at http://www.minitab.com.cn/downloading.htm, Minitab Inc, State College, PA, 1998 [26]Guo X-B(郭勋斌), Gu K-L(顾克礼), Yuan Q(袁秦). The occurrence of winter weedy rice and control. J Anhui Agric Sci (安徽农业科学), 2005, 33(7): 1180–1181 (in Chinese with English abstract) [27]Chen L J, Lee D S, Song Z P, Suh H S, Lu B R. Gene flow from cultivated rice (Oryza sativa) to its weedy and wild relatives. Ann Bot, 2004, 93: 67–73 [28]Olguin S E, Espinoza A G G, Lobo J A , Esquivel E A M. Assessment of gene flow from a herbicide-resistant indica rice (Oryza sativa L.) to the Costa Rican weedy rice (Oryza sativa) in tropical America: factors affecting hybridization rates and characterization of F-1 hybrids. Transgenic Res, 2009, 18: 633–647 [29]Wei X-H(魏兴华), Yang Z-R(杨致荣), Dong L(董岚), Yu H-Y(余汉勇), Wang Y-P(王一平), Yuan X-P(袁筱萍), Tang S-X(汤圣祥). SSR evidence for taxonomic position of weedy rice‘Ludao’. Sci Agric Sin (中国农业科学), 2004, 37(7): 937–942 (in Chinese with English abstract) [30]Tang L H, Morishima H. Genetic characterization of weedy rices and the inference on their origins. Breed Sci, 1997, 47: 153-160 [31]Min S-K(闵绍楷), Wu X-Z(吴宪章), Yao C-X(姚长溪), Li L-P(李路平). Rice Cropping Regionalizton in China (中国水稻种植区划). Hangzhou: Zhejiang Science and Technology Press, 1989, pp 81–84 (in Chinese with English abstract) |
[1] | XIAO Ying-Ni, YU Yong-Tao, XIE Li-Hua, QI Xi-Tao, LI Chun-Yan, WEN Tian-Xiang, LI Gao-Ke, HU Jian-Guang. Genetic diversity analysis of Chinese fresh corn hybrids using SNP Chips [J]. Acta Agronomica Sinica, 2022, 48(6): 1301-1311. |
[2] | CHEN Xiao-Hong, LIN Yuan-Xiang, WANG Qian, DING Min, WANG Hai-Gang, CHEN Ling, GAO Zhi-Jun, WANG Rui-Yun, QIAO Zhi-Jun. Development of DNA molecular ID card in hog millet germplasm based on high motif SSR [J]. Acta Agronomica Sinica, 2022, 48(4): 908-919. |
[3] | ZHANG Xia, YU Zhuo, JIN Xing-Hong, YU Xiao-Xia, LI Jing-Wei, LI Jia-Qi. Development and characterization analysis of potato SSR primers and the amplification research in colored potato materials [J]. Acta Agronomica Sinica, 2022, 48(4): 920-929. |
[4] | FU Mei-Yu, XIONG Hong-Chun, ZHOU Chun-Yun, GUO Hui-Jun, XIE Yong-Dun, ZHAO Lin-Shu, GU Jia-Yu, ZHAO Shi-Rong, DING Yu-Ping, XU Yan-Hao, LIU Lu-Xiang. Genetic analysis of wheat dwarf mutant je0098 and molecular mapping of dwarfing gene [J]. Acta Agronomica Sinica, 2022, 48(3): 580-589. |
[5] | MA Hong-Bo, LIU Dong-Tao, FENG Guo-Hua, WANG Jing, ZHU Xue-Cheng, ZHANG Hui-Yun, LIU Jing, LIU Li-Wei, YI Yuan. Application of Fhb1 gene in wheat breeding programs for the Yellow-Huai Rivers valley winter wheat zone of China [J]. Acta Agronomica Sinica, 2022, 48(3): 747-758. |
[6] | WANG Yin, FENG Zhi-Wei, GE Chuan, ZHAO Jia-Jia, QIAO Ling, WU Bang-Bang, YAN Su-Xian, ZHENG Jun, ZHENG Xing-Wei. Identification of seedling resistance to stripe rust in wheat-Thinopyrum intermedium translocation line and its potential application in breeding [J]. Acta Agronomica Sinica, 2021, 47(8): 1511-1521. |
[7] | WANG Yan-Yan, WANG Jun, LIU Guo-Xiang, ZHONG Qiu, ZHANG Hua-Shu, LUO Zheng-Zhen, CHEN Zhi-Hua, DAI Pei-Gang, TONG Ying, LI Yuan, JIANG Xun, ZHANG Xing-Wei, YANG Ai-Guo. Construction of SSR fingerprint database and genetic diversity analysis of cigar germplasm resources [J]. Acta Agronomica Sinica, 2021, 47(7): 1259-1274. |
[8] | HE Jun-Yu, YIN Shun-Qiong, CHEN Yun-Qiong, XIONG Jing-Lei, WANG Wei-Bin, ZHOU Hong-Bin, CHEN Mei, WANG Meng-Yue, CHEN Sheng-Wei. Identification of wheat dwarf mutants and analysis on association between the mutant traits of the dwarf plants [J]. Acta Agronomica Sinica, 2021, 47(5): 974-982. |
[9] | WANG Heng-Bo, CHEN Shu-Qi, GUO Jin-Long, QUE You-Xiong. Molecular detection of G1 marker for orange rust resistance and analysis of candidate resistance WAK gene in sugarcane [J]. Acta Agronomica Sinica, 2021, 47(4): 577-586. |
[10] | HAN Bei, WANG Xu-Wen, LI Bao-Qi, YU Yu, TIAN Qin, YANG Xi-Yan. Association analysis of drought tolerance traits of upland cotton accessions (Gossypium hirsutum L.) [J]. Acta Agronomica Sinica, 2021, 47(3): 438-450. |
[11] | ZHANG Xue-Cui, SUN Su-Li, LU Wei-Guo, LI Hai-Chao, JIA Yan-Yan, DUAN Can-Xing, ZHU Zhen-Dong. Identification of resistance gene against phytophthora root rot in new soybean lines breeded in Henan province [J]. Acta Agronomica Sinica, 2021, 47(2): 275-284. |
[12] | LIU Shao-Rong, YANG Yang, TIAN Hong-Li, YI Hong-Mei, WANG Lu, KANG Ding-Ming, FANG Ya-Ming, REN Jie, JIANG Bin, GE Jian-Rong, CHENG Guang-Lei, WANG Feng-Ge. Genetic diversity analysis of silage corn varieties based on agronomic and quality traits and SSR markers [J]. Acta Agronomica Sinica, 2021, 47(12): 2362-2370. |
[13] | GUO Qing-Qing, ZHOU Rong, CHEN Xue, CHEN Lei, LI Jia-Na, WANG Rui. Location and InDel markers for candidate interval of the orange petal gene in Brassica napus L. by next generation sequencing [J]. Acta Agronomica Sinica, 2021, 47(11): 2163-2172. |
[14] | HUANG Yi-Wen, DAI Xu-Ran, LIU Hong-Wei, YANG Li, MAI Chun-Yan, YU Li-Qiang, YU Guang-Jun, ZHANG Hong-Jun, LI Hong-Jie, ZHOU Yang. Relationship between the allelic variations at the Ppo-A1 and Ppo-D1 loci and pre-harvest sprouting resistance in wheat [J]. Acta Agronomica Sinica, 2021, 47(11): 2080-2090. |
[15] | GUO Yan-Chun, ZHANG Li-Lan, CHEN Si-Yuan, QI Jian-Min, FANG Ping-Ping, TAO Ai-Fen, ZHANG Lie-Mei, ZHANG Li-Wu. Establishment of DNA molecular fingerprint of applied core germplasm in jute (Corchorus spp.) [J]. Acta Agronomica Sinica, 2021, 47(1): 80-93. |
|