[1] 方福平, 程式华.水稻科技与产业发展[J].农学学报, 2018, 8(1):92-98.

FANG Fuping, CHENG Shihua. The development of rice science, technology and industry in China[J]. J Agric, 2018, 8(1):92-98.
[2] 辛良杰, 李鹏辉.中国居民口粮消费特征变化及安全耕地数量[J].农业工程学报, 2017, 33(13):1-7.

XIN Liangjie, LI Penghui. Characteristics change of grain ration consumption and the amount of safe arable land in Chinese residents[J]. Trans Chin Soc Agric Eng, 2017, 33(13):1-7.
[3] 王渭霞, 朱廷恒, 邵国胜, 等.杂草稻的分类、起源及利用研究进展[J].杂草科学, 2005, 23(2):1-5.

WANG Weixia, ZHU Tingheng, SHAO Guosheng, et al. Advances in classification, origin and utilization of weedy rice[J]. Weed Sci, 2005, 23(2):1-5.
[4] 王哲, 戎俊, 卢宝荣.杂草稻的发生、危害与我国水稻生产面临的挑战[J].杂草科学, 2015, 33(1):1-9.

WANG Zhe, RONG Jun, LU Baorong. Occurrence and damage of weedy rice and its threats to rice production in China[J]. Weed Sci, 2015, 33(1):1-9.
[5] 马静, 王兴盛, 段彩林, 等.宁夏杂草稻外观和碾磨品质分析[J].种子, 2018, 37(2):55-58.

MA Jing, WANG Xingsheng, DUAN Cailin, et al. Analysis on appearance and milling quality of weedy rice in Ningxia[J]. Seed, 2018, 37(2):55-58.
[6] PRATHEPHA P. Seed morphological traits and genotypic diversity of weedy rice (Oryza sativa f. spontanea) populations found in the Thai Hom Mali rice fields of north-eastern Thailand[J]. Weed Biol Manage, 2010, 9(1):1-9.
[7] 柏超, 吕进, 宁国云, 等.长兴县稻田杂草稻的发生、预防与防治[J].浙江农业科学, 2016, 57(12):1974-1975.

BAI Chao, LÜ Jin, NING Guoyun, et al. Occurrence, prevention and control of weedy rice in paddy fields of Changxing County[J]. J Zhejiang Agric Sci, 2016, 57(12):1974-1975.
[8] 吴树娟, 黄柳松, 汤铎.沿江稻区杂草稻的发生特点及其防控对策[J].上海农业科技, 2014(3):137, 139.

WU Shujuan, HUANG Liusong, TANG Duo. Occurrence characteristics and control measures of weedy rice in rice growing area along the Yangtze River[J]. J Shanghai Agric Technol, 2014(3):137, 139.
[9] DELOUCHE J C, BURGOS N R, GEALY D R, et al. Weedy Rices: Origin, Biology, Ecology and Control[M]. Rome: Food and Agriculture Organization (FAO) of the United Nations, 2007.
[10] 吴文革, 季雅岚, 习敏, 等.杂草稻的生物学特性及利用研究进展[J].安徽农业科学, 2018, 46(17):30-33.

WU Wenge, JI Yalan, XI Min, et al. Research progress on biological characteristics of weedy rice and its utilization[J]. J Anhui Agric Sci, 2018, 46(17):30-33.
[11] SUH H S, SATO Y I, MORISHIMA H. Genetic characterization of weedy rice (Oryza sativa L.) based on morpho-physiology, isozymes and RAPD markers[J]. Theor Appl Genet, 1997, 94(3/4):316-321.
[12] CHO Y C, CHOI I S, HAN S S, et al. Inheritance of resistance to blast (Pyricularia grisea Sacc.) in Korean weedy rice (Oryza sativa L.)[J]. Korean J Breed, 1996, 28(3):309-316.
[13] QIU Jie, ZHOU Yongjun, MAO Lingfeng, et al. Genomic variation associated with local adaptation of weedy rice during de-domestication[J]. Nat Commun, 2017, 8:15323. doi:10.1038/ncomms15323.
[14] LI Linfeng, LI Yaling, JIA Yulin, et al. Signatures of adaptationin the weedy rice genome[J]. Nat Genet, 2017, 49(5):811-814.
[15] CHEN Lijuan, LEE Dongsun, SONG Ziping, et al. Gene flow from cultivated rice (Oryza sativa) to its weedy and wild relatives[J]. Ann Bot, 2004, 93(1):67-73.
[16] PARK J S, CHO Y C, HAN S W, et al. Characteristics of weedy rice on paddy field in Kyonggi area[J]. Korean J Breed, 1999, 19(4):299-306.
[17] VAUGHAN L K, OTTIS B V, PRAZAKHAVEY A M, et al. Is all red rice found in commercial rice really Oryza sativa[J]. Weed Sci, 2001, 49(4):468-476.
[18] TANG L H, MORISHIMA H. Genetic characterization of weedy rices and the inference on their origins[J]. Breeding Sci, 1997, 47(2):153-160.
[19] 熊海波, 白怀瑾, 董陈文华, 等.黄河流域豫北粳稻区杂草稻特性及其发生机制分析[J].分子植物育种, 2017, 15(8):3351-3357.

XIONG Haibo, BAI Huaijin, DONG Chenwenhua, et al. Origin and characterization of weedy rice in japonica rice regions of northern Henan along Yellow River, China[J]. Mol Plant Breed, 2017, 15(8):3351-3357.
[20] 马殿荣, 陈温福, 徐正进, 等.辽宁省杂草稻的初步考察[J].辽宁农业科学, 2005(6):22-24.

MA Dianrong, CHEN Wenfu, XU Zhengjin, et al. Preliminary study on weedy rice in Liaoning[J]. Liaoning Agric Sci, 2005(6):22-24.
[21] 钱卫红, 陈立勇, 秦礼宝, 等.水稻田杂草稻的发生特点和防控措施[J].中国种业, 2008(5):14-15.

QIAN Weihong, CHEN Liyong, QIN Libao, et al. Occurrence characteristics and control measures of weedy rice in rice fields[J]. China Seed Ind, 2008(5):14-15.
[22] 王慧.水稻直播技术特点及发展现状[J].农业科技与装备, 2017(1):72-73.

WANG Hui. Characteristics and development status of rice direct seeding technology[J]. Agric Sci Technol Equip, 2017(1):72-73.
[23] 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[J].生物多样性, 2010, 18(1):29-36.

WU Chuan, DAI Weimin, SONG Xiaoling, et al. Diversity of plant traits of weedy rice in Liaoning and Jiangsu provinces[J]. Biodiversity Sci, 2010, 18(1):29-36.
[24] 关志坚, 付文君, 班小莉, 等.伊犁河谷杂草稻发生特点及综合防治技术[J].农村科技, 2018(3):28-30.

GUAN Zhijian, FU Wenjun, BAN Xiaoli, et al. Occurrence characteristics and integrated control techniques of weedy rice in Ili Valley[J]. Nongcun Keji, 2018(3):28-30.
[25] 郭勋斌, 顾克礼, 袁秦.越冬杂草稻的发生与防治研究[J].安徽农业科学, 2005, 33(7):1180-1181.

GUO Xunbin, GU Keli, YUAN Qin, et al. Occurrence and control of weedy rice overwintering[J]. J Anhui Agric Sci, 2005, 33(7):1180-1181.
[26] 潘学彪, 陈宗祥, 左示敏, 等.江苏省杂草稻成因及防控策略[J].江苏农业科学, 2007(4):52-54.

PAN Xuebiao, CHEN Zongxiang, ZUO Shimin, et al. Causes and control strategies of weedy rice in Jiangsu[J]. Jiangsu Agric Sci, 2007(4):52-54.
[27] ESTORNINOS JR 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[J]. Weed Sci, 2005, 53(5):683-689.
[28] 孙建昌, 王兴盛, 马静, 等.宁夏杂草稻的危害与防除措施[J].宁夏农林科技, 2014, 55(3):32-34.

SUN Jianchang, WANG Xingsheng, MA Jing, et al. Harm and control measures of weedy rice in Ningxia[J]. Ningxia J Agric For Sci Technol, 2014, 55(3):32-34.
[29] 刘丹, 柴永山, 孙玉友, 等.杂草稻资源研究现状及利用进展[J].湖北农业科学, 2017, 56(2):202-205.

LIU Dan, CHAI Yongshan, SUN Yuyou, et al. Advances in research and utilization of weedy rice(Oryza sativa)germplasm resources[J]. Hubei Agric Sci, 2017, 56(2):202-205.
[30] KANE N C, BAACK E J. The origins of weedy rice[J]. Mol Ecol, 2010, 16(21):4423-4425.
[31] 梁帝允, 强胜.我国杂草稻危害现状及其防控对策[J].中国植保导刊, 2011, 31(3):21-24.

LIANG Diyun, QIANG Sheng. Harm status and control countermeasures of weedy rice in China[J]. China Plant Prot, 2011, 31(3):21-24.
[32] 朱建义, 周小刚, 何洪元, 等.四川省杂草稻发生危害初步调查与防除研究[J].杂草科学, 2012, 30(3):44-46.

ZHU Jianyi, ZHOU Xiaogang, HE Hongyuan, et al. Preliminary investigation and control of weedy rice in Sichuan[J]. Weed Sci, 2012, 30(3):44-46.
[33] 李其勇, 朱从桦, 李星月, 等.水稻田杂草稻的发生与防控技术对策[J].四川农业科技, 2017(7):36-38.

LI Qiyong, ZHU Congye, LI Xingyue, et al. Occurrence and control strategies of weedy rice in rice fields[J]. Sichuan Agric Sci Technol, 2017(7):36-38.
[34] 杨巍, 吴其褒, 陈惠哲, 等.杂草稻生物学特性、危害与防治方法[J].中国稻米, 2008(3):50-53.

YANG Wei, WU Qibao, CHEN Huizhe, et al. Biological characteristics, harm and control methods of weedy rice[J]. China Rice, 2008(3):50-53.
[35] 黎明, 高联义.泰州市杂草稻的发生规律和防控技术[J].杂草学报, 2013, 31(3):51-52.

LI Ming, GAO Lianyi. Occurrence law and control technology of weedy rice in Taizhou City[J]. Weed Sci, 2013, 31(3):51-52.
[36] 刘冠明, 林青山, 江奕君, 等.杂草稻研究进展[J].中国农学通报, 2014, 30(21):9-13.

LIU Guanming, LIN Qingshan, JIANG Yijun, et al. The research advances on weedy rice[J]. Chin Agric Sci Bull, 2014, 30(21):9-13.
[37] 刘秀, 李俭, 李海粟, 等.东北稻区杂草稻分布与特征及其有效控制措施[J].黑龙江八一农垦大学学报, 2015, 27(2):5-9.

LIU Xiu, LI Jian, LI Haisu, et al. Distribution and effective control of weedy rice in northeast region[J]. J Heilongjiang Bayi Agric Univ, 2015, 27(2):5-9.
[38] 刘延刚, 李相奎, 刘德友, 等.临沂市水稻田杂草稻的发生特点及综合防控对策[J].北方水稻, 2015, 46(3):38-41.

LIU Yangang, LI Xiangkui, LIU Deyou, et al. Occurrence characteristics and comprehensive control measures of weedy rice in paddy fields of Linyi City[J]. North Rice, 2015, 46(3):38-41.
[39] 张生忠, 赵学智, 马毅.吴忠市灌区杂草稻发生特点及防治技术[J].农业科学研究, 2011, 32(4):48-50.

ZHANG Shengzhong, ZHAO Xuezhi, MA Yi. Occurrence characteristics and control technology of weedy rice in Wuzhong irrigation area[J]. J Agric Sci, 2011, 32(4):48-50.
[40] 宁国云, 王蓓, 彭志清, 等.长兴县杂草稻的分布、特性及发生规律调查[J].浙江农业科学, 2018, 59(12):2214-2217.

NING Guoyun, WANG Bei, PENG Zhiqing, et al. Investigation on distribution, characteristics and occurrence law of weedy rice in Changxing county[J]. J Zhejiang Agric Sci, 2018, 59(12):2214-2217.
[41] 陈晓锋, 强胜, 杨金玲, 等.江苏省杂草稻的传播与籼粳分化研究[J].中国水稻科学, 2015, 29(1):82-90.

CHEN Xiaofeng, QIANG Sheng, YANG Jinling, et al. Propagation of weedy rice and differentiation of indica and japonica in Jiangsu[J]. Chin J Rice Sci, 2015, 29(1):82-90.
[42] 李珣, 苗立新, 刘忠卓, 等.水稻直播技术的发展现状及研究进展[J].北方水稻, 2013, 43(1):78-80.

LI Xun, MIAO Lixin, LIU Zhongzhuo, et al. Current situation and research progress of rice direct seeding technology[J]. North Rice, 2013, 43(1):78-80.
[43] OLOFSDOTTER M, VALVERDE B E, MADSEN K H. Herbicide resistant rice (Oryza sativa L.):global implications for weedy rice and weed management[J]. Ann Appl Biol, 2015, 137(3):279-295.
[44] CHAUHAN B S. Weedy rice (Oryza sativa)(Ⅱ)Response of weedy rice to seed burial and flooding depth[J]. Weed Sci, 2012, 60(3):385-388.
[45] CHAUHAN B S. Strategies to manage weedy rice in Asia[J]. Crop Prot, 2013, 48(2):51-56.
[46] ESTORNINOS L E, GEALY D R, TALBERT R E, et al. Rice and red rice interference(Ⅰ)response of red rice (Oryza sativa) to sowing rates of tropical japonica and indica rice cultivars[J]. Weed Sci, 2005, 53(5):676-682.
[47] CHOI C D, MOON B C, KIM S C, et al. Ecology and growth of weeds and weedy rice in direct-seeded rice fields[J]. Korean J Weed Sci, 1995, 15(1):39-45.
[48] NADIR S, XIONG H B, ZHU Q, et al. Weedy rice in sustainable rice production:a review[J]. Agron Sustain Dev, 2017, 37(5):46.
[49] 李国君, 何卓先, 王革, 等.广东雷州杂草稻的发生与危害及其防治对策[J].杂草科学, 2013, 31(1):20-25.

LI Guojun, HE Zhuoxian, WANG Ge, et al. Occurrence and harm of weedy rice in Leizhou, Guangdong and its control measures[J]. Weed Sci, 2013, 31(1):20-25.
[50] 杨林, 沈浩宇, 强胜.噁草酮防除直播稻田杂草稻的施用技术[J].植物保护学报, 2016, 43(6):1033-1040.

YANG Lin, SHEN Haoyu, QIANG Sheng. A technique for oxadiazon application in controlling weedy rice in direct-seeded rice fields[J]. J Plant Prot, 2016, 43(6):1033-1040.
[51] 李瑞民, 陈雷, 丁林彬, 等.洁田技术防控杂草稻试验初报[J].中国农技推广, 2018, 34(1):44, 61.

LI Ruimin, CHEN Lei, DING Linbin, et al. Preliminary report on prevention and control of weedy rice by JD Technology[J]. China Agric Technol Ext, 2018, 34(1):44, 61.
[52] MEROTTO A, GOULART I, NUNES A L, et al. Evolutionary and social consequences of introgression of nontransgenic herbicide resistance from rice to weedy rice in Brazil[J]. Evol Appl, 2016, 9(7):837-846.
[53] SUDIANTO E, SONG B K, NEIK T X, et al. Clearfield® rice:its development, success, and key challengeson a global perspective[J]. Crop Prot, 2013, 49:40-51.
[54] BURGOS N R, NORMAN R J, SINGH V, et al. The impact ofherbicide-resistant rice technology on phenotypic diversity and populationstructure of United States weedy rice[J]. Plant Physiol, 2014, 166:1208-1220.
[55] WANG J G, MIAO W, WANG J Y, et al. Effects of exogenous abscisic acid on antioxidant system in weedy and cultivated rice with different chilling sensitivity under chilling stress[J]. J Agron Crop Sci, 2013, 199(3):200-208.
[56] KAO-KNIFFIN J, CARVER S M, DITOMMASO A, et al. Advancing weed management strategies using meta genomic techniques[J]. Weed Sci, 2013, 61(2):171-184.
[57] BATISH D R, ARORA K, SINGH H P, et al. Potential utilization of dried powder of Tagete sminuta as a natural herbicide for managing rice weeds[J]. Crop Prot, 2007, 26(4):566-571.
[58] OLAJUMOKE B, JURAIMI A S, UDDIN M K, et al. Competitive ability of cultivated rice against weedy rice biotypes:a review[J]. Chilean J Agric Res, 2016, 76(2):243-252.
[59] FERRERO A. Weedy rice, biological features and control[J]. Fao Plant Prod Prot Paper, 2003, 120:89-107.
[60] GU Xingyou, KIANIAN S F, FOLEY M E. Multiple loci and epistases control genetic variation for seed dormancy in weedy rice (Oryza sativa)[J]. Genetics, 2004, 166(3):1503-1516.
[61] 杨金玲, 强胜, 张帮华, 等.中国杂草稻种群的发芽期耐冷性研究[J].植物遗传资源学报, 2017, 18(1):1-9.

YANG Jinling, QIANG Sheng, ZHANG Banghua, et al. Cold tolerance of weedy rice population in China during germination period[J]. J Plant Genet Resour, 2017, 18(1):1-9.
[62] 丁国华, 孙健, 杨光.干旱胁迫下杂草稻和栽培稻根系基因表达差异研究[J].中国水稻科学, 2016, 30(5):458-468.

DING Guohua, SUN Jian, YANG Guang. Global genome expression analysis of root genes under drought stress in weedy rice and UP-land rice[J]. Chin J Rice Sci, 2016, 30(5):458-468.