\[1\]Baki B B, Chin D V, Mortimer M. Wild and weedy rice in rice ecosystems in Asia:A review. Limited Proceedings No.2. Los Banos (Philippines): Internationl Rice Research Institute, 2000: 124.\[2\]Delouche J C, Labrada R, Rosell C. Weedy ricesorigin, biology, ecology and control. Rome, Italy: Food and Agriculture Organization (FAO) of the United Nations, 2007: 129.\[3\]Cao Q, Lu B R, Xia H, et al. Genetic diversity and origin of weedy rice (Oryza sativa f. Spontanea) populations found in Northeastern China revealed by simple sequence repeat (SSR) markers. Ann Bot, 2006, 98(6): 12411252.\[4\]Fogliatto S, Vidotto F, Ferrero A. Morphological characterisation of Italian weedy rice (Oryza sativa) populations. Weed Res, 2012, 52(1): 6069.\[5\]Burgos N R, Norman R J, Gealy D R, et al. Competitive N uptake between rice and weedy rice. Field Crops Res, 2006, 99(2/3): 96105.\[6\]Ottis B V, Smith K L, Scott R C, et al. Rice yield and quality as affected by cultivar and red rice (Oryza sativa) density. Weed Sci, 2005, 53(4): 499504.\[7\]Estorninos L E, Gealy D R, Gbur E E, et al. Rice and red rice interference: Ⅱ. Rice response to population densities of three red rice (Oryza sativa) ecotypes. Weed Sci, 2005, 53(5): 683689.\[8\]Karim S, Ismail B, Azmi M. A short review of the impact and management of weedy rice.Plant Prot Quart, 2006, 21(1): 1319.\[9\]Vidotto F, Ferrero A. ModelingPopulation Dynamics to Overcome Feral Rice in Rice. Boca Raton: Crop ferality and volunteerism, CRC Press, 2005: 355.\[10\]Zhang J, Burgos N R, Kun M, et al. Genetic diversity and relationship of weedy rice in Taizhou City, Jiangsu Province, China. Rice Sci, 2008, 15(4): 295302.\[11\]AbdelAal E S M, Young J C, Rabalski I. Anthocyanin composition in black, blue, pink, purple, and red cereal grains. J Agric Food Chem, 2006, 54(13): 46964704.\[12\]Gu XY, Foley M E, Horvath D P, et al. Association between seed dormancy and pericarp color is controlled by a pleiotropic gene that regulates abscisic acid and flavonoid synthesis in weedy red rice. Genetics, 2011, 189(4): 15151521.\[13\]Sweeney M T, Thomson M J, Cho Y G, et al. Global dissemination of a single mutation conferring white pericarp in rice. PLoS Genet, 2007, 3(8): 121133.\[14\]戴伟民, 宋小玲, 吴川, 等. 江苏省杂草稻的颖果显微结构观察. 江苏农业学报, 2009, 25(1): 9699.\[15\]WinkelShirley B. Flavonoid biosynthesis: A colorful model for genetics, biochemistry, cell biology, and biotechnology. Plant Physiol, 2001, 126(2): 485493.\[16\]Harborne J B, Williams C A. Advances in flavonoid research since 1992. Phytochemistry, 2000, 55(6): 481504.\[17\]Furukawa T, Maekawa M, Oki T, et al. The Rc and Rd genes are involved in proanthocyanidin synthesis in rice pericarp.Plant J, 2007, 49(1): 91102.\[18\]Lee D, Lupotto E, Powell W. Gstring slippage turns white rice red. Genome, 2009, 52(5): 490495.\[19\]Khlestkina E, Huang X, Quenum F B, et al. Genetic diversity in cultivated plantsloss or stability? Theor Appl Genet, 2004, 108(8): 14661472.\[20\]Sweeney M T, Thomson M J, Pfeil B E, et al. Caught redhanded: Rc encodes a basic helixloophelix protein conditioning red pericarp in rice. Plant Cell, 2006, 18(2): 283294.\[21\]Brooks S A, Yan W, Jackson A K, et al. A natural mutation in rc reverts whitericepericarp to red and results in a new, dominant, wildtype allele:Rcg. Theor Appl Genet, 2008, 117(4): 575580.\[22\]Gross B L, Steffen F T, Olsen K M. The molecular basis of white pericarps in African domesticated rice:Novel mutations at the Rc gene. J Evol Biol, 2010, 23(12): 27472753.\[23\]戴伟民, 宋小玲, 吴川,等. 江苏省杂草稻危害情况的调研. 江苏农业学报, 2009, 25(3): 712714.\[24\]吴川, 戴伟民, 宋小玲,等. 辽宁和江苏两省杂草稻植物性状多样性. 生物多样性, 2010, 18(1): 2936.\[25\]张峥, 戴伟民, 章超斌,等. 江苏沿江地区杂草稻的生物学特性及危害调查. 中国农业科学, 2012, 45(14): 28562866.\[26\]林山. 中国稻作学. 北京: 中国农业出版社, 1986.\[27\]Gross B L, Reagon M, Hsu S C, et al. Seeing red: The origin of grain pigmentation in US weedy rice.Mol Ecol, 2010, 19(16): 33803393.\[28\]卢扬江,郑康乐. 提取水稻DNA的一种简易方法. 中国水稻科学, 1992, 6(1): 4748.\[29\]邵菁, 戴伟民, 张连举,等. 江苏省中部地区杂草稻遗传多样性及其起源分析. 作物学报, 2011, 37(8): 13241332.\[30\]Lu G, Moriyama E N. Vector NTI, a balanced allinone sequence analysis suite. Brief Bioinform, 2004, 5(4): 378388.\[31\]Woffelman, C. DNAMAN for Windows, Version 5.2.10. Lynon Biosoft, Leiden University, Netherlands: Institute of Molecular Plant Sciences, 2004. \[32\]Librado P, Rozas J. DnaSP v5:A software for comprehensive analysis of DNA polymorphism data. Bioinformatics, 2009, 25(11): 14511452.\[33\]Tamura K, Peterson D, Peterson N, et al. MEGA5:Molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods. Mol Biol Evol, 2011, 28(10): 27312739.\[34\]Bandelt H J, Forster P, Rohl A. Medianjoining networks for inferring intraspecific phylogenies. Mol Biol Evol, 1999, 16(1): 3748.\[35\]Drummond A, Rambaut A. BEAST: Bayesian evolutionary analysis by sampling trees. BMC Evol Biol, 2007, 7(1): 214.\[36\]Stamatakis A, Hoover P, Rougemont J. A rapid bootstrap algorithm for the RAxML Web servers. System Biol, 2008, 57(5): 758771.\[37\]Felsenstein J. PHYLIP (Phylogeny Inference Package) version 3.6 a 3. http://evolution.gs.washington.edu/phylip.html 2008.\[38\]Rambaut A, FigTree. v1. 3, http://tree.bio.ed.ac.uk/software/ gtree, 2006.\[39\]Zhang L J, Dai W M, Wu C, et al. Genetic diversity and origin of japonicaand indicalike rice biotypes of weedy rice in the Guangdong and Liaoning provinces of China. Genet Res Crop Evol, 2012, 59(3): 399410. \[40\]Thurber C S, Reagon M, Gross B L, et al. Molecular evolution of shattering loci in US weedy rice. Mol Ecol, 2010, 19(16): 32713284.\[41\]Zhu Y, Ellstrand N C, Lu B R, Sequence polymorphisms in wild, weedy, and cultivated rice suggest seedshattering locus sh4 played a minor role in Asian rice domestication. Ecol Evol, 2012, 2(9): 21062113.\[42\]Ishikawa R, Toki N, Imai K, et al. Origin of weedy rice grown in Bhutan and the force of genetic diversity. Genet Resour Crop Evol, 2005, 52(4): 395403.\[43\]郭勋斌, 顾克礼, 袁秦. 越冬杂草稻的发生与防治研究. 安徽农业科学, 2005, 33(7): 11801181.\[44\]丁颖稻作论文选集编辑组. 丁颖稻作论文选集. 北京: 农业出版社, 1983.\[45\]魏兴华, 杨致荣, 董岚,等. 穞稻分类地位的SSR证据. 中国农业科学, 2004, 37(7): 937942.\[46\]Zhu S S, Jiang L, Wang C M, et al. The origin of weedy rice Ludao in China deduced by genome wide analysis of its hybrid sterility genes. Breeding Sci, 2005, 55(4): 409414. |