作物学报 ›› 2010, Vol. 36 ›› Issue (3): 422-427.doi: 10.3724/SP.J.1006.2010.00422
鲍思元1,2,谭明谱3,林兴华1,*
BAO Si-Yuan1,2,TAN Ming-Pu3,LIN Xing-Hua1,*
摘要:
[1]Mew T W. Current status and future prospects of research on bacterial blight of rice. Ann Rev Phytopathol, 1987, 25: 359–382 [2] Ogawa T. Methods and strategy for monitoring race distribution and identification of resistance genes to bacterial leaf blight (Xanthomonas campestris pv. oryzae) in rice. Jpn Agric Res Q, 1993, 27: 71–80 [3] Lee K S, Rasabandith S, Angeles E R, Khush G S. Inheritance of resistance to bacterial blight in 21 cultivars of rice. Phytopathology, 2003, 93: 147–152 [4] Chen Y(陈艳), Hu J(胡军), Qian W(钱韦), Tian Y-C(田颖川), Zhao W-M(赵文明), He C-Z(何朝族). Characterization and molecular marker screening of a rice bacteria-resistant gene Xa-min(t). Prog Nat Sci (自然科学进展), 2003, 13(9): 1001–1004 (in Chinese with English abstract) [5] Tan G-X(谭光轩), Ren X(任翔), Wong Q-M(翁清妹), Shi Z-Y(时振英), Zhu L-L(祝莉莉), He G-C(何光存). Mapping of a new resistance gene to bacterial blight in rice line introgressed from Oryza officinalis. Acta Genet Sin (遗传学报), 2004, 31(7): 724–729 (in Chinese with English abstract) [6]Zhang Q(章琦). Highlights in identification and application of resistance genes to bacterial blight. Chin J Rice Sci (中国水稻科学), 2005, 19(5): 453–459 (in Chinese with English abstract) [7]Yoshimura S, Yamanouchi U, Katayose Y, Toki S, Wang Z X, Kono I, Kurata N, Yano M, Iwata N, Sasaki T. Expression of Xa1, a bacterial blight-resistance gene in rice, is induced by bacterial inoculation. Proc Natl Acad Sci USA, 1998, 95: 1663–1668 [8]Lyer A S, McCouch S R. The rice bacterial blight resistance gene xa5 encodes a novel form of disease resistance. Mol Plant-Microbe Interact, 2004, 17: 1348–1354 [9] Song W Y, Wang G L, Chen L L, Kim H S, Pi L Y, Gardner J, Wang B, Holsten T, Zhai W X, Zhu L H, Fauquwt C, Ronald P. A receptor kinase-like protein encoded by the rice disease resistance gene Xa21. Science, 1995, 270: 1804–1806 [10]Sun X, Cao Y, Yang Z, Xu C, Li X, Wang S, Zhang Q. Xa26, a gene conferring resistance to Xanthomonas oryzae pv. oryzae in rice, encodes an LRR receptor kinase-like proein. Plant J, 2004, 37: 517–527 [11]Gu K, Yang B, Tian D, Wu L, Wang D, Sreekala C, Yang F, Chu Z, Wang G L, White F F, Yin Z R. Gene expression induced by a type-III effector triggers disease resistance in rice. Nature, 2005, 435: 1122–1125 [12] Taura S, Ogawa T, Tabien R E, Khush G S, Yoshimura A, Omura T. The specific reaction of Taichung Native 1 to Philippine races of bacterial blight and inheritance of resistance to race 5. Rice Genet Newsl, 1987, 4: 101–102 [13] Taura S, Ogawa T, Tabien R E, Khush G S, Yoshimura A, Omura T. Resistance gene of rice cultivar, Taichung Native to Philippines races of bacterial blight pathogens. Jpn J Breed, 1992, 42: 195–201 [14] Kinoshita T. Report of the committee on gene symbolization and linkage map. Rice Genet Newsl, 1993, 10: 1–5 [15] Tan Z-B(谭震波), Zhang Q(章琦), Zhu L-H(朱立煌), Wang C-L(王春莲). RFLP mapping of a rice bacterial blight resistance gene Xa14. Hereditas (遗传), 1998, 20(6): 30–33 (in Chinese with English abstract) [16] Ogawa T, Yamamoto T, Khush G S, Mew T W. Breeding of near-isogenic lines of rice with single genes for resistance to bacterial blight pathogen (Xanthomonas campestris pv. oryzae). Jpn J Breed, 1991, 41: 523–529 [17] Wakimoto S. The detemination of the presence of Xanthomonas oryzae by the phage technique. Scientific Bulletin of Faculty of Agriculture, Kyushu University, 1954, 14: 485–493 (in Japanese with English abstract) [18]Kauffman H E, Reddy A P K, Hsieh S P Y, Merca S D. An improved technique for evaluating resistance of rice varieties to Xanthomonas oryzae. Plant Dis Rep, 1973, 57: 537–541 [19] Temnykh S, DeClerck G, Lukashova A, Lipovich L, Cartinhour S, McCouch S. Computational and experimental analysis of microsatellites in rice (Oryza sativa L.): frequency, length variation, transposon associations, and genetic marker potential. Genome Res, 2001, 11: 1441–1152 [20] Temnykh S,Park W D, Ayres N, Cartinhour S, Harek N, Lipovich L, Cho Y G, Ishii T, McCouch S R. Mapping and genome organization of microsatellite sequences in rice (Oryza sativa L.). Theor Appl Genet, 2000, 100: 697–712 [21] Allard R W. Formulas and tables to facilitate the calculation of recombination values in heredity. Hilgardia, 1956, 24: 235-278 [22]Kosambi D D. The estmation of map distance from recombination values. Ann Eugen, 1994, 12: 172–175 [23]Liu R-H(刘仁虎), Meng J-L(孟金陵). MapDraw: A microsoft excel macro for drawing genetic linkage maps based on given genetic linkage data. Hereditas(遗传), 2003, 25(3): 317–321 (in Chinese with English abstract) [24]Sanchez A C, Ilag L L, Yang D, Brar D S, Ausubel F, Khush G S, Yano M, Sasaki T, Li Z, Huang N. Genetic and physical mapping of xa13, a recessive bacterial blight resistance gene in rice. Theor Appl Genet, 1999, 98: 1022–1028 [25] Blair M W, McCouch S R. Microsatellite and sequence-tagged site markers diagnostic for the rice bacterial leaf blight resistance gene xa-5. Theor Appl Genet, 1997, 95: 174–184 |
[1] | 田甜, 陈丽娟, 何华勤. 基于Meta-QTL和RNA-seq的整合分析挖掘水稻抗稻瘟病候选基因[J]. 作物学报, 2022, 48(6): 1372-1388. |
[2] | 郑崇珂, 周冠华, 牛淑琳, 和亚男, 孙伟, 谢先芝. 水稻早衰突变体esl-H5的表型鉴定与基因定位[J]. 作物学报, 2022, 48(6): 1389-1400. |
[3] | 周文期, 强晓霞, 王森, 江静雯, 卫万荣. 水稻OsLPL2/PIR基因抗旱耐盐机制研究[J]. 作物学报, 2022, 48(6): 1401-1415. |
[4] | 郑小龙, 周菁清, 白杨, 邵雅芳, 章林平, 胡培松, 魏祥进. 粳稻不同穗部籽粒的淀粉与垩白品质差异及分子机制[J]. 作物学报, 2022, 48(6): 1425-1436. |
[5] | 颜佳倩, 顾逸彪, 薛张逸, 周天阳, 葛芊芊, 张耗, 刘立军, 王志琴, 顾骏飞, 杨建昌, 周振玲, 徐大勇. 耐盐性不同水稻品种对盐胁迫的响应差异及其机制[J]. 作物学报, 2022, 48(6): 1463-1475. |
[6] | 杨建昌, 李超卿, 江贻. 稻米氨基酸含量和组分及其调控[J]. 作物学报, 2022, 48(5): 1037-1050. |
[7] | 邓钊, 江南, 符辰建, 严天泽, 符星学, 胡小淳, 秦鹏, 刘珊珊, 王凯, 杨远柱. 隆两优与晶两优系列杂交稻的稻瘟病抗性基因分析[J]. 作物学报, 2022, 48(5): 1071-1080. |
[8] | 于春淼, 张勇, 王好让, 杨兴勇, 董全中, 薛红, 张明明, 李微微, 王磊, 胡凯凤, 谷勇哲, 邱丽娟. 栽培大豆×半野生大豆高密度遗传图谱构建及株高QTL定位[J]. 作物学报, 2022, 48(5): 1091-1102. |
[9] | 杨德卫, 王勋, 郑星星, 项信权, 崔海涛, 李生平, 唐定中. OsSAMS1在水稻稻瘟病抗性中的功能研究[J]. 作物学报, 2022, 48(5): 1119-1128. |
[10] | 朱峥, 王田幸子, 陈悦, 刘玉晴, 燕高伟, 徐珊, 马金姣, 窦世娟, 李莉云, 刘国振. 水稻转录因子WRKY68在Xa21介导的抗白叶枯病反应中发挥正调控作用[J]. 作物学报, 2022, 48(5): 1129-1140. |
[11] | 王小雷, 李炜星, 欧阳林娟, 徐杰, 陈小荣, 边建民, 胡丽芳, 彭小松, 贺晓鹏, 傅军如, 周大虎, 贺浩华, 孙晓棠, 朱昌兰. 基于染色体片段置换系群体检测水稻株型性状QTL[J]. 作物学报, 2022, 48(5): 1141-1151. |
[12] | 王泽, 周钦阳, 刘聪, 穆悦, 郭威, 丁艳锋, 二宫正士. 基于无人机和地面图像的田间水稻冠层参数估测与评价[J]. 作物学报, 2022, 48(5): 1248-1261. |
[13] | 陈悦, 孙明哲, 贾博为, 冷月, 孙晓丽. 水稻AP2/ERF转录因子参与逆境胁迫应答的分子机制研究进展[J]. 作物学报, 2022, 48(4): 781-790. |
[14] | 王好让, 张勇, 于春淼, 董全中, 李微微, 胡凯凤, 张明明, 薛红, 杨梦平, 宋继玲, 王磊, 杨兴勇, 邱丽娟. 大豆突变体ygl2黄绿叶基因的精细定位[J]. 作物学报, 2022, 48(4): 791-800. |
[15] | 刘磊, 詹为民, 丁武思, 刘通, 崔连花, 姜良良, 张艳培, 杨建平. 玉米矮化突变体gad39的遗传分析与分子鉴定[J]. 作物学报, 2022, 48(4): 886-895. |
|