[1]Crowther RA. Viruses and the development of quantitative biological electron microscopy[J]. IUBMB Life, 2004, 56(5):239-48. [2]郑宽瑜, 董家红, 方琦, 等. 胶体金免疫电镜技术检测番茄环纹斑点病毒[J]. 电子显微学报, 2015, 1:12. [3]Byadgi AS, Ahlawat YS. A new viral ringspot disease of citrus(citrus species)in India[J]. Indian Journal of Agricultural Sciences, 1995, 65(10):763-770. [4]?nelge N, Satar S, Elibüyük ?, et al. Transmission studies on Citrus yellow vein clearing virus[C]. In:Proc 18th Conf IOCV IOCV, Riverside, CA:2011. [5]谢礼, 吕明芳, 王芳, 等. 甘薯羽状斑驳病毒和甘薯褪绿矮化病毒复合侵染甘薯引起的细胞病理学研究[J]. 电子显微学报, 2013(6):485-491. [6]Loconsole G, Onelge N, Potere O, et al. Identification and character-ization of citrus yellow vein clearing virus, a putative new member of the genus mandarivirus[J]. Phytopathology, 2012, 102(12):1168-1175. [7]Mascia T, Nigro F, Abdallah A, et al. Gene silencing and gene expression in phytopathogenic fungi using a plant virus vector[J]. Proc Natl Acad Sci USA, 2014, 111(11):4291-4296. [8]Fan J, Chen C, Achor DS, et al. Differential anatomical responses of tolerant and susceptible citrus species to the infection of ‘Candidatus Liberibacter asiaticus'[J]. Physiol Mol Plant Pathol, 2013, 83:69-74. [9]Paparella S, Tava A, Avato P, et al. Cell wall integrity, genotoxic injury and pcd dynamics in alfalfa saponin-treated white poplar cells highlight a complex link between molecule structure and activity[J]. Phytochemistry, 2015, 111:114-123. [10]Liu Y, Schiff M, Czymmek K, et al. Autophagy regulates program-med cell death during the plant innate immune response[J]. Cell, 2005, 121(4):567-577. [11]Ferrari S, Savatin DV, Sicilia F, et al. Oligogalacturonides:plant damage-associated molecular patterns and regulators of growth and development[J]. Frontiers in Plant Science, 2013, 4:49. [12]傅仕敏. 柑橘黄龙病的细胞病理及其寄主转录组学研究[D]. 重庆:西南大学, 2014. [13]Liu S, Vijayendran D, Bonning BC. Next generation sequencing technologies for insect virus discovery[J]. Viruses, 2011, 3(10):1849-1869. [14]朱培坤, 陆妙康, 朱孔生, 等. 长叶车前花叶病毒在青菜叶片叶柄内的免疫酶标定位[J]. 植物病理学报, 1983, 1:5. [15]沈明山, 洪维廉, 郭洁, 等. 水仙花叶病毒的免疫酶标检测方法[J]. 厦门大学学报:自然科学版, 1993, 2:19. [16]Rao AL, Hatta T, Francki RI. Comparative studies on tomato aspe-rmy and cucumber mosaic viruses. VII. Serological relationships reinvestigated[J]. Virology, 1982, 116(1):318-326. [17]Achachi A, Barka EA, Ibriz M. Recent advances in Citrus psorosis virus[J]. Virus Disease, 2014, 25(3):261-276. [18]Lin NS, Langenberg WG. Immunohistochemical localization of barley stripe mosaic virions in infected wheat cells[J]. J Ultrastruct, Res, 1983, 84(1):16-23. [19]PE Filho M, de O Resende R, Lima M, et al. Patchouli virus X, a new potexvirus from Pogostemon clabin[J]. Annals of Applied Biology, 2002, 141(3):267-274. [20]Pakdel A, Mounier C, Klein E, et al. On the interaction and localization of the beet necrotic yellow vein virus replicase[J]. Virus Research, 2015, 196:94-104. [21]李文财, 周常勇. 免疫电镜技术在植物病毒研究中的应用[J]. 南方农业, 2011(3):84-86. [22]Motamedi H, Seyyednejad SM, et al. Introducing Urtica dioica, A native plant of khuzestan, as an antibacterial medicinal plant[J]. Jundishapur J Nat Pharm Prod, 2014, 9(4):e15904. [23]Sadeghi B, Jamali M, Kia S, et al. Synthesis and characterization of silver nanoparticles for antibacterial activity[J]. International Journal of Nano, Dimension, 2010, 1(2):119-124. [24]Ko YJ, Kim JS, Kim KD, et al. Microscopical observation of inhibition-behaviors against Diaporthe citri by pre-treated with Pseudomonas putida, strain THJ609-3 on the leaves of citrus plants[J]. Journal of Microbiology, 2014, 52(10):879-883. [25]Gopalakrishnan S, Srinivas V, Alekhya G, et al. The extent of grain yield and plant growth enhancement by plant growth-promoting, broad-spectrum Streptomyces sp. in chickpea[J]. Springer Plus, 2015, 4:31. [26]Priya H, Prasanna R, Ramakrishnan B, et al. Influence of cyanobacterial inoculation on the culturable microbiome and growth of rice[J]. Microbiological Research, 2015, 171:78-89. [27]Murata K, Esaki M, Ogura T, et al. Whole-cell imaging of the budding yeast Saccharomyces cerevisiae by high-voltage scanning transmission, electron tomography[J]. Ultramicroscopy, 2014, 146:39-45. [28]Marty F. High voltage electron microscopy of membrane interactions in wheat[J]. J Histochem Cytochem, 1980, 10:1129-1132. [29]Stokes D. Investigating biological ultrastructure using environmental scanning electron microscopy(ESEM)[J]. Science, Technology and Education, of Microscopy:An Overview, 2003, 1:564-570. [30]Pathan A, Bond J, Gaskin R. Sample preparation for scanning electron microscopy of plant surfaces—horses for courses[J]. Micron, 2008, 39(8):1049-1061. [31]Fan J, Guo XY, Huang F, et al. Epiphytic colonization of Ustilagi-noidea virens on biotic and abiotic surfaces implies the widespread presence of, primary inoculum for rice false smut disease[J]. Plant Pathology, 2014, 63(4):937-945. [32]D’Aquino S, Fadda A, Barberis A, et al. Combined effects of potassium sorbate, hot water and thiabendazole against green mould of citrus fruit, and residue levels[J]. Food Chemistry, 2013, 2:858-864. [33]Zankel A, Kraus B, Poelt P, et al. Ultramicrotomy in the ESEM, a versatile method for materials and life sciences[J]. Journal of Microscopy, 2009, 233(1):140-148. [34]De Feyter S, Gesquière A, Abdel-Mottaleb MM, et al. Scanning tunneling microscopy:a unique tool in the study of chirality, dynamics, and reactivity in physisorbed organic monolayers[J]. Accounts of Chemical Research, 2000, 33(8):520-531. [35]张玉忠, 时东霞. 棉花纤维超微结构的扫描隧道显微镜观察[J]. 生物化学与生物物理学报:英文版, 2000, 32(5):521-523. [36]Masai J, Shibata T, Kagawa Y, et al. Imaging of subunit complexes of thermophilic bacterium H+-ATPase with scanning tunneling microscopy[J]. Ultramicroscopy, 1992, 42:1194-1199. [37]Kiselyova O, Yaminsky I, Karger E, et al. Visualization by atomic force microscopy of tobacco mosaic virus movement protein-RNA complexes formed in vitro[J]. J Gen Virol, 2001, 6:1503-1508. [38]Imai K, Yoshimura K, Tomitori M, et al. Scanning tunneling and atomic force microscopy of t4 bacteriophage and tobacco mosaic virus[J]. Japn J Appl Phys, 1993, 32(6S):2962. [39]Drygin YF, Bordunova OA, Gallyamov MO, et al. Atomic force microscopy examination of tobacco mosaic virus and virion RNA[J]. FEBS Letters, 1998, 425(2):217-221. [40]宋敬东, 屈建国, 鲁茁壮, 等. 提高负染法透射电镜检测病毒灵敏度的制样方法及应用[J]. 病毒学报, 2010, 26(5):410-413. [41]李博. 关于透射电镜样品污染问题的探讨[J]. 临床与病理杂志, 2014, 5:39. [42]Newcomb W, Jackson S, Racette S, et al. Ultrastructure of infected cells in the actinorhizal root nodules of Gymnostoma papuanum, (Casuarinaceae)prepared by high pressure freezing and chemical fixation[J]. Protoplasma, 1990, 157(1-3):172-181. [43]Kuntsche J, Horst JC, Bunjes H. Cryogenic transmission electron microscopy(cryo-TEM)for studying the morphology of colloidal drug delivery systems[J]. Int J Pharm, 2011, 1:120-137. [44]杨瑞, 范敬伟, 刘文可, 等. 植物透射电镜样品制备技术的改进及不同树脂选择比较[J]. 北京农学院学报, 2013, 4:5-7. [45]Roberts IM. Factors affecting the efficiency of immunogold labelling of plant virus antigens in thin sections[J]. Journal of Virological Methods, 1994, 50(1-3):155-166. [46]Sim KS, Tso CP, Ting HY. Canny optimization technique for electron microscope image colourization[J]. Journal of Microscopy, 2008, 232(2):313-334. [47]Sim KS, Ting HY, Lai MA, et al. Improvement to the scanning electron microscope image colorization by adaptive tuning[J]. Journal of Microscopy, 2009, 234(3):243-250. [48]Lo TY, Sim KS, Tso CP, et al. Improvement to the scanning electron microscope image adaptive Canny optimization colorization by, pseudo-mapping[J]. Scanning, 2014, 36(5):530-539. |