Acta Agron Sin ›› 2013, Vol. 39 ›› Issue (07): 1293-1302.doi: 10.3724/SP.J.1006.2013.01293
• TILLAGE & CULTIVATION·PHYSIOLOGY & BIOCHEMISTRY • Previous Articles Next Articles
XU Zheng-Hao1,2,*,XIE Guo-Xiong3,ZHOU Yu-Jie4,GAO Shen1
[1]Xu Z-H(徐正浩), Wang Y-P(王一平), Yu L-Q(余柳青), Mortimer A M. Effects of rice transplanting density and early irrigation management on barnyardgrass ecological control. Chin J Ecol (生态学杂志), 2004, 23(4): 41–43 (in Chinese with English abstract)[2]Wang D-L(王大力), Ma R-X(马瑞霞), Liu X-F(刘秀芬). A preliminary studying on rice allelopathy germplasm. Sci Agric Sin (中国农业科学), 2000, 33(3): 94–96 (in Chinese with English abstract)[3]Xu Z-H(徐正浩), Chen Z-L(陈再廖), Lin Y-B(林云彪), Chen W-M(陈为民), Zhu Y-W(朱有为). Invasive species and their control in Zhejiang Province (浙江入侵生物及防治). Hangzhou: Zhejiang University Press, 2011 (in Chinese)[4]Ma Q-X(马奇祥), Zhao Y-Q(赵永谦). Identification and Control of Paddy Field Weed (农田杂草识别与防治). Beijing: Jindun Press, 2004 (in Chinese)[5]Yuan P-R(袁平荣), Sun C-Q(孙传清), Yang C-D(杨从党), Zhou N(周能), Ying J-F(应继峰), Peng S, He Q-R(贺庆瑞), Wang X-K(王象坤). Analysis on grain yield and yield components of the 15 t/hm2 high-yielding indica rice (Oryza sativa L.) in Yunnan. Acta Agron Sin (作物学报), 2000, 26(6): 756–762 (in Chinese with English abstract)[6]Zhang C-X(张朝贤), Ni H-W(倪汉文), Wei S-H(魏守辉), Huang H-J(黄红娟), Liu Y(刘延), Cui H-L(崔海兰), Sui B-F(隋标峰), Zhang M(张猛), Guo F(郭峰). Current advances in research on herbicide resistance. Sci Agric Sin (中国农业科学), 2009, 42(4): 1274–1289 (in Chinese with English abstract)[7]Xu Z-H(徐正浩), Yu L-Q(余柳青), Zhao M(赵明). Rice allelopathy to barnyardgrass. Chin J Appl Ecol (应用生态学报), 2003, 14(3): 737–740 (in Chinese with English abstract)[8]Bhadora P B S. Allelopathy: a natural way towards weed management. Am J Exp Agric, 2011, 1: 7–20[9]James R V. Allelochemicals as leads for new herbicides and agrochemicals. Tetrahedron, 2002, 58: 1631–1646[10]Zhang Z P. Development of Chemical Weed Control and Integrated Weed Management in China. Weed Biol Manag, 2003, 3: 197–203[11]Xuan T D, Tsuzuki E, Terao H, Matsuo M, Khanh T D, Murayama S, Kong N H. Alfalfa, Rice By-products and Their Incorporation for Weed Control in Rice. Weed Biol Manag, 2003, 3: 137–144[12]Hong N H, Xuan T D, Eiji T, Khanh T D. Paddy weed control by higher plants from Southeast Asia. Crop Prot, 2004, 23: 255–261[13]Fujii Y. Screening and future exploitation of allelopathic plants as alternative herbicides with special reference to hairy vetch. J Crop Prod, 2001, 4: 257–275[14]Xu Z-H(徐正浩), Yu L-Q(余柳青), Zhao M(赵明), Zhang X(张旭), Fang H-M(方洪民), Wei X-H(魏兴华), Zheng K-L(郑康乐), Guo L-B(郭龙彪), Ye Y-L(叶元林). Competition and allelopathy of rice with barnyardgrass. Chin J Rice Sci (中国水稻科学), 2003, 17(1): 67–72 (in Chinese with English abstract)[15]Dilday R H, Lin J, Yan W. Identification of allelopathy in the USDA-ARS rice germplasm collection. Australian J Exp Agric, 1994, 34: 907–910[16]Xu Z-H(徐正浩), Yu L-Q(余柳青). Ecological control of barnyardgrass by different morphological type rice. Chin J Rice Sci (中国水稻科学), 2000, 14(3): 125–128 (in Chinese with English abstract)[17]Li G(李贵), Wu J-L(吴竞仑), Wang Y-Z(王一专), Kiu L-P(刘丽萍). Inhibitory effect of different rice varieties on weeds in paddy field. Chin J Rice Sci (中国水稻科学), 2008, 22(6): 669–672 (in Chinese with English abstract)[18]Xu Z-H(徐正浩), He Y(何勇), Zhu C-Q(诸常青), Yu G-S(俞谷松). Inhibitor Effects of allelopathic rice materials on Echinochloa crus-galli and related field weeds. Chin J Appl Ecol (应用生态学报), 2005, 16(4): 958–962 (in Chinese with English abstract)[19]Kong C H, Hu F, Wang P, Wu J L. Effect of allelopathic rice varieties combined with cultural management options on paddy field weeds. Pest Management Sci, 2008: 64: 276–282[20]Olofsdotter M. Rice: a step toward use of allelopathy. Agron J, 2001, 93: 3–8[21]Olofsdotter M, Jensen L_B and Courtois B. Review: improving crop competitive ability using allelopathy—an example from rice. Plant Breed, 2002, 121: 1–9[22]Tang Q-Y(唐启义), Feng M-G(冯明光). Practical Statistics Analyses and Computer Platform (实用统计分析和计算机平台). Beijing: Agriculture Press, 1979 (in Chinese)[23]Xu Z-H(徐正浩), He Y(何勇), Wang Y-P(王一平), Yu G-S(俞谷松). Interference of allelopathic rice cultivars on barnyardgrass under different water irrigation and rice plant density. Chin J Appl Ecol (应用生态学报), 2004, 15(9): 1580–1584 (in Chinese with English abstract)[24]Zhang F-D(张付斗), Duo Y-Q(郭怡卿), Yu L-Q(余柳青), Tao D-Y(陶大云). Evaluation and screening of resistance to barnyardgrass in germplasm of wild rice (Oryza sativa) and african cultivar. Acta Agron Sin (作物学报), 2004, 30(11): 1140–1144 (in Chinese with English abstract)[25]Han H-H(韩豪华), Zhou Y-J(周勇军), Chen X(陈欣), Yu L-Q(余柳青). Inhibitory effects of mixed-planting of rice varieties with different weed-tolerant potentials on Echinochloa crus-galli. Chin J Rice Sci (中国水稻科学), 2007, 21(3): 319–322 (in Chinese with English abstract)[26]Chung I M, Kim K H, Ahn J K, Chun S C, Kim S C, Kim J T, Kim S H. Screening of allelochemicals on barnyardgrass (Echinochloa crus-galli) and identification of potentially allelopathic compounds from rice (Oryza sativa) variety hull extracts. Crop Prot, 2002, 21: 913–920[27]Ruan R-C(阮仁超), Han L-Z(韩龙植), Cao G-L(曹桂兰), An Y-P(安永平), Zhang Y-Y(张媛媛), Zhang Y-R(张艳蕊), Qu Y-P(曲英萍), Qi D-L(祁栋灵), Sun M-M(孙明茂). Evaluation of allelopathic potential for different type of rice germplasm on barnyardgrass. J Plant Gene Res (植物遗传资源学报), 2005, 6(4): 365–372 (in Chinese with English abstract)[28]Wu J-L(吴竞仑), Li Y-F(李永丰), Chen Z-S(陈志石), Wang Y-Z(王一专). Interference of allelopathic rice Huakangcao 78 on weeds under different ecological conditions. Chin J Appl Ecol (应用生态学报), 2006, 17(9): 1645–1648 (in Chinese with English abstract)[29]Jensen L B, Courtois B, Shin L, Li Z K, Olofsdotter M, Mauleon R P. Locating genes controlling allelopathic effects against barnyardgrass in upland rice. Agron J, 2001, 93: 21–26[30]Ebana K, Yan W, Dilday R_H, Namai H, Okuno K. Analysis of QTL associated with the allelopathic effect of rice using water-soluble extracts. Breed Sci, 2001, 51: 47–51[31]Xu Z-H(徐正浩), He Y(何勇), Cui S-R(崔绍荣), Zhao M(赵明), Zhang X(张旭), Li D(李迪). Genes mapping on rice allelopathy against barnyardgrass. Chin J Appl Ecol (应用生态学报), 2003, 14(12): 2258–2260 (in Chinese with English abstract)[32]Lin W-X(林文雄), He H-Q(何华勤), Dong Z-H(董章杭), Shen L-H(沈荔花), Duo Y-C(郭玉春), Liang Y-Y(梁义元), Chen F-Y(陈芳育), Liang K-J(梁康迳). Study on developmental inheritance of allelopathy in rice (Oryza sativa L.) under different environment. Acta Agron Sin (作物学报), 2004, 30(4): 348–353 (in Chinese with English abstract)[33]Xu Z-H(徐正浩), Guo D-P(郭得平), Yu L-Q(余柳青), Zhao M(赵明), Zhang X(张旭), Li D(李迪), Zheng K-L(郑康乐), Ye Y-L(叶元林). Molecular biological study on the action mechanism of rice allelochemicals against weeds. Chin J Appl Ecol (应用生态学报), 2003, 14(5): 829–833 (in Chinese with English abstract)[34]Seal A N, Pratley J, Haig T, An M. Identification and quantitation of compounds in series of allelopathic and non-allelopathic rice root exudates. J Chem Ecol, 2004, 30: 1647–1661[35]Olofsdotter M, Rebulanan M, Madrid A, Dali W, Navarez D, Olk D C. Why phenolic acids are unlikely primary allelochemicals in rice. J Chem Ecol, 2002, 28: 229–242[36]Hisashi K N, Takeshi I. Rice seedlings release momilactone b into the environment. Phytochemistry, 2003, 63: 551–554[37]Kong C-H(孔垂华), Xu X-H(徐效华), Hu F(胡飞), Chen X-H(陈雄辉), Ling B(凌冰), Tan Z-W(谭中文). Using specific secondary metabolites as markers to evaluate allelopathic potential of rice varieties and their individual plants. Chin Sci Bull (科学通报), 2002, 47(3): 203–206 (in Chinese with English abstract)[38]Chung I M, Ahn J K, Yun S J. Identification of allelopathic compounds from rice (Oryza sativa L.) straw and their biological activity. Can J Plant Sci, 2001, 81: 815–819[39]Chou C H, Lin H J. Autotoxication mechanism of Oryza sativa: I. Phytotoxic effects of decomposing rice residues in soil. J Chem Ecol, 1976, 2: 353–367[40]Rimando A M, Olofsdotter M, Dayan F E, Duke S O. Searching for rice allelochemicals: an example of bioassay-guided isolation. Agron J, 2001, 93: 16–20[41]Kong C H, Xu X H, Zhou B, Hu F, Zhang C X, Zhang M X. Two compounds from allelopathic rice accession and their inhibitory activity on weeds and fungal pathogens. Phytochemistry, 2004, 65: 1123–1128[42]Kato-Noguchi H, Ino T, Sata N, Yamamura S. Isolation and identification of a potent allelopahtic substance in rice root exudates. Physiol Plant, 2002, 115: 401–405[43]Kong C H, Liang W J, Xu X H, Hu F, Wang P, Jiang Y. Release and activity of allelochemicals from allelopathice rice seedlings. J Agric Food Chem, 2004, 52: 2861–2865[44]Mahmoodzadeh H, Abbasi F, Ghobzadeh Y. Allelopathic effects of root exudate and leaching of rice seedlings on hedgemustard (Sisybrium officinale). Res J Environ Sci, 2011, 5: 486–492[45]Salam M A, Morokuma M, Teruya T, Suenaga K, Kato-Noguchi H. Isolation and identification of a potent allelopathic substance in bangladesh rice. Plant Growth Regul, 2009, 58: 137–140[46]Xiong J(熊君), Lin W-X(林文雄), Zhou J-J(周军建), Wu M-H(吴敏鸿), Chen X-X(陈祥旭), He H-Q(何华勤), Guo Y-C(郭玉春), Liang Y-Y(梁义元). Allelopathy and resources competition of rice under different nitrogen supplies. Chin J Appl Ecol (应用生态学报), 2005, 16(5): 885–889 (in Chinese with English abstract)[47]Li G(李贵), Wu J-L(吴竞仑), Wang Y-Z(王一专), Liu L-P(刘丽萍). Effect of transplanting density and water depth on interference of allelopathic rice in weeds. J Shanghai Jiaotong Univ (Agric Sci)(上海交通大学学报•农业科学版), 2007, 25(6): 561–565 (in Chinese with English abstract) |
[1] | LI Lan-Lan, MU Dan, YAN Xue, YANG Lu-Ke, LIN Wen-Xiong, FANG Chang-Xun. Effect of OsPAL2;3 in regulation of rice allopathic inhibition on barnyardgrass (Echinochloa crusgalli L.) [J]. Acta Agronomica Sinica, 2021, 47(2): 197-209. |
[2] | LI Xiao-Xu, WANG Rui, ZHANG Li-Xia, SONG Ya-Meng, TIAN Xiao-Nan, GE Rong-Chao. Cloning and functional identification of gene OsATS in rice [J]. Acta Agronomica Sinica, 2021, 47(10): 2045-2052. |
[3] | LI Jing-Lan,CHEN Xin-Xin,SHI Cui-Cui,LIU Fang-Hui,SUN Jing,GE Rong-Chao. Effects of OsRPK1 gene overexpression and RNAi on the salt-tolerance at seedling stage in rice [J]. Acta Agronomica Sinica, 2020, 46(8): 1217-1224. |
[4] | Xiang-Yan ZHOU, Jiang-Wei YANG, Xun TANG, Yi-Kai WEN, Ning ZHANG, Huai-Jun SI. Effect of Silencing C-3 Oxidase Encoded Gene StCPD on Potato Drought Resistance by amiRNA Technology [J]. Acta Agronomica Sinica, 2018, 44(04): 512-521. |
[5] | ZHOU Lu, SHEN Bei-Bei, BAI Su-Yang, LIU Xi, JIANG Ling, ZHAI Hu-Qu, WAN Jian-Min. RNA Interference of OsGABA-T1 Gene Expression Induced GABA Accumulation in Rice Grain [J]. Acta Agron Sin, 2015, 41(09): 1305-1312. |
[6] | SHEN Li-Hua,LI Bi-Liang,REN Yong-Jie,LI Cheng-Xun,ZHONG Yong-Jia,FANG Chang-Xun,LIN Wen-Xiong. Phenolic Acid Synthesis of Allelopathic Rice Regulated by OsMYB and Its Weed Inhibition [J]. Acta Agron Sin, 2015, 41(04): 531-538. |
[7] | LIN Wen-Xiong. Rhizobiological Properties of Allelopathic Rice in Suppression of Weeds and Its Research Prospect [J]. Acta Agron Sin, 2013, 39(06): 951-960. |
[8] | IU Guang-Kuai,CAO Zhen-Zhen,WEI Ke-Su,PAN Gang,SU Da,ZHANG Chun-Jiao,CHENG Fang-Min. RNAi Vector Construction for Protein Disulfide Isomerase Gene and Seed Setting Characteristics in Offspring of Transgenic Rice under High Temperature Treatment [J]. Acta Agron Sin, 2013, 39(05): 816-826. |
[9] | XU Zheng-Hao,XIE Guo-Xiong,ZHOU Yu-Jie,GAO Shen. Interference of Rice with Different Morphological Types and Allelopathy on Barnyardgrass under Three Planting Patterns [J]. Acta Agron Sin, 2013, 39(03): 537-548. |
[10] | LIU Yu-Hui,WANG Li,YANG Hong-Yu,YU Bin,LI Yuan-Ming,ZHANG Jun-Lian,WANG Di. Cloning of Granule-Bound Starch Synthase Gene and Construction of Its RNAi Vector in Potato Tuber [J]. Acta Agron Sin, 2012, 38(07): 1187-1195. |
[11] | WANG Wang-Tian, ZHANG Jin-Wen, WANG Di, ZHANG Jun-Lian, SI Fu-Jun, TAO Shi-Hang. Cloning of Rhamnosyl Transferase Gene and Construction of Its RNAi Vector in Potato [J]. Acta Agron Sin, 2011, 37(11): 1926-1934. |
[12] | YIN Meng-Zhi, GUAN Mei, XIAO Gang, LI Quan, GUAN Chun-Yun. RNAi Vector Construction of AtDof1.7 Transcription Factors and Genetic Transformation into Arabidopsis thaliana [J]. Acta Agron Sin, 2011, 37(07): 1196-1204. |
[13] | SHU Jian-Meng, YAN Hua-Bing, SHI Ying-Hua, WANG Cheng-Zhang. Cloning of Medicago sativa Phychrome B cDNA and Establishment of Its RNA Interference Expression Vector [J]. Acta Agron Sin, 2011, 37(02): 374-379. |
[14] | ZHANG Fu-Dou, XU Gao-Feng, LI Tian-Lin, tAO Da-Yun, XU Peng, ZHANG Yu-Hua. Allelopathy and Weed-Suppression of Oryza longistaminata under Water-Nitrogen Interactions in the Field [J]. Acta Agron Sin, 2011, 37(01): 170-176. |
[15] | WANG Jie-Ming,ZHANG Jian,JIANG Hai-Yang,ZHU Su-Wen,FAN Jun,CHENG Bei-Jiu. Effects of RNA Interference of SBE3 Gene Expression on Starch Accumulation and Key Enzymes Activities Involved in Starch Synthesis in Transgenic Rice Grain [J]. Acta Agron Sin, 2010, 36(2): 313-320. |
|