[1] |
WANG W, MAULEON R, HU Z, et al. Genomic variation in 3, 010 diverse accessions of Asian cultivated rice[J]. Nature., 2018, 557(7703): 43 − 49. doi: 10.1038/s41586-018-0063-9 |
[2] |
ZHANG L B, ZHU Q, WU Z Q, et al. Selection on grain shattering genes and rates of rice domestication[J]. The New Phytologist, 2009, 184(3): 708 − 720. doi: 10.1111/j.1469-8137.2009.02984.x |
[3] |
JI Z Y, ZAKRIA M, ZOU L F, et al. Genetic diversity of transcriptional activator-like effector genes in Chinese isolates of Xanthomonas oryzae pv. Oryzicola[J]. Phytopathology., 2014, 104(7): 672 − 682. doi: 10.1094/PHYTO-08-13-0232-R |
[4] |
廖晓兰, 朱水芳, 赵文军, 等. 水稻白叶枯病菌和水稻细菌性条斑病菌的实时荧光 PCR 快速检测鉴定[J]. 微生物学报, 2003, 43(5): 626. DOI:10.13343 /i. cnki. wsxb. 2003.05.013. |
[5] |
韩阳, 张丽辉, 王永吉, 等. 水稻细菌性条斑病菌的实时荧光PCR检测技术研究[J]. 云南农业大学学报(自然科学), 2012, 27(3): 315 − 320. |
[6] |
白飒. 检测西瓜噬酸菌和稻黄单胞菌的环介导等温扩增技术及荧光定量PCR方法的建立[D]. 南京: 南京农业大学, 2013. |
[7] |
张华, 姜英华, 胡白石, 等. 利用PCR技术专化性检测水稻细菌性条斑病菌[J]. 植物病理学报, 2008, 38(1): 1 − 5. doi: 10.3321/j.issn:0412-0914.2008.01.001 |
[8] |
田艳丽, 孟军, 范家勤, 等. 利用padlock 探针结合 Macroarray 技术对几种重要植物病原细菌的高通量检测[C] . 第四届中国植物细菌病害学术研讨会 论文集. 北京: 中国植物病理学会, 2008. |
[9] |
莫瑾, 王哲, 周慧平, 等. 利用多重PCR技术快速检测4种水稻病原细菌[J]. 植物保护, 2021, 47(3): 160 − 164. |
[10] |
刘雅婷, 岳凯, 李小林, 等. 水稻上两种种传病害的多重PCR检测试剂盒及其专用引物和多重PCR检测方法: CN201510292152.8[P]. 2015-06-02. |
[11] |
于贵戌, 赵玉强, 姜培, 等. PMA-PCR方法进行水稻细菌性条斑病菌细胞活性检测的建立与初步应用[J]. 植物病理学报, 2023, 53(5): 944 − 949. |
[12] |
YANG B, KONG J, FANG X. Bandage like wearable flexible microfluidic recombinase polymerase amplification sensor for the rapid visual detection of nucleic acids[J]. Talanta, 2019, 204: 685 − 692 doi: 10.1016/j.talanta.2019.06.031 |
[13] |
PIEPENBURG O, WILLIAMS C H, STEMPIE D L, et al. DNA detection using recombination proteins[J]. PLoS biology, 2006, 4(7): e204. doi: 10.1371/journal.pbio.0040204 |
[14] |
王季秋, 赵欣, 王照, 等. 实时荧光定量PCR检测技术及其在病原微生物检测中的应用[J]. 中国地方病防治杂志, 2016, 31(5): 517 − 519. |
[15] |
EULER M, WANG Y, HEIDENREICH D, et al. Development of a panel of recombinase polymerase amplification assays for detection of biothreat agents[J]. Journal of Clinical Microbiology, 2013, 51(4): 1110 − 1117. doi: 10.1128/JCM.02704-12 |
[16] |
DAHER R K, STEWART G, BOISSINOT M, et al. Recombinase polymerase amplification for diagnostic applications[J]. Clinical Chemistry, 2016, 62(7): 947 − 958. doi: 10.1373/clinchem.2015.245829 |
[17] |
YANG X, DONG Y, MA C, et al. Establishment of a visualized isothermal nucleic acid amplification method for on-site diagnosis of acute hepatopancreatic necrosis disease in shrimp farm[J]. Journal of fish Diseases., 2021, 44(9): 1293 − 1303. doi: 10.1111/jfd.13388 |
[18] |
BEHRMANN O, BAVHMANN I, SPIEGEL M, et al. Rapid detection of SARS-CoV-2 by low volume real-time single tube reverse transcription recombinase polymerase amplification using an exo probe with an internally linked quencher (Exo-IQ)[J]. Clinical Chemistry, 2020, 66(8): 1047 − 1054. doi: 10.1093/clinchem/hvaa116 |
[19] |
CHI Y K, ZHAO W, YE M, et al. Evaluation of recombinase polymerase amplification assay for detecting Meloidogyne javanica[J]. Plant Disease, 2020, 104(3): 801 − 807. doi: 10.1094/PDIS-07-19-1473-RE |
[20] |
XU H, XIA A, WANG D, et al. An ultraportable and versatile point-of-care DNA testing platform[J]. Science Advances, 2020, 6(17): eaaz7445. doi: 10.1126/sciadv.aaz7445 |
[21] |
STRAYER-SCHERER A, JONES JB, PARET ML. Recombinase polymerase amplification assay for field detection of tomato bacterial spot pathogens[J]. Phytopathology, 2019, 109(4): 690 − 700. doi: 10.1094/PHYTO-03-18-0101-R |
[22] |
KISSENKOTTER J, BOHLKEN-FASCHER S, FORREST M S, et al. Recombinase polymerase amplification assays for the identification of pork and horsemeat[J]. Food Chemistry, 2020, 322: 126759. doi: 10.1016/j.foodchem.2020.126759 |
[23] |
GENG Y, TAN K, LIU L, et al. Development and evaluation of a rapid and sensitive RPA assay for specific detection of Vibrio parahaemolyticus in seafood[J]. BMC Microbiology, 2019, 19(1): 186. doi: 10.1186/s12866-019-1562-z |
[24] |
ZHANG L, PENG J, CHEN J, et al. Highly sensitive detection of low-abundance BRAF v600E mutation in fine-needle aspiration samples by Zip recombinase polymerase amplification[J]. Analytical Chemistry, 2021, 93(13): 5621 − 5628. doi: 10.1021/acs.analchem.1c00405 |
[25] |
张海敏. 基于CRISPR/Cas12a的水稻白叶枯病菌和细菌性条斑病菌快速检测方法研究[D]. 武汉: 华中农业大学, 2023. |