刘金香, 王欢欢, 王洪苏, 等. 橘蚜传播率不同的柑橘衰退病毒分离株CPm的表达特性和分子特征[J]. 园艺学报, 2021, 48(5): 1023-1030.
|
ROISTACHER C N. Should We Introduce Protective Isolates of Citrus Tristeza Virus[J]. Citrograph, 1992, 77(2): 5-9.
|
GOWDA S, SATYANARAYANA T, DAVIS C L, et al. The P20 Gene Product of Citrus Tristeza Virus Accumulates in the Amorphous Inclusion Bodies[J]. Virology, 2000, 274(2): 246-254. doi: 10.1006/viro.2000.0413
|
LU R, FOLIMONOV A, SHINTAKU M, et al. Three Distinct Suppressors of RNA Silencing Encoded by a 20-Kb Viral RNA Genome[J]. Proceedings of the National Academy of Sciences of the United States of America, 2004, 101(44): 15742-15747.
|
FANELLI V, DE GIOVANNI C, SAPONARI M, et al. A Possible Role of CTV. 20 Gene Methylation in Response to Citrus Tristeza Virus Infection[J]. European Journal of Plant Pathology, 2018, 150(2): 527-532. doi: 10.1007/s10658-017-1293-7
|
CHENG C Z, ZHANG Y Y, ZHONG Y, et al. Gene Expression Changes in Leaves of Citrus sinensis (L.) Osbeck Infected by Citrus tristeza Virus[J]. The Journal of Horticultural Science and Biotechnology, 2016, 91(5): 466-475. doi: 10.1080/14620316.2016.1173523
|
POWELL C A, PELOSI R R, RUNDELL P A, et al. Breakdown of Cross-Protection of Grapefruit from Decline-Inducing Isolates of Citrus Tristeza Virus Following Introduction of the Brown Citrus Aphid[J]. Plant Disease, 2003, 87(9): 1116-1118. doi: 10.1094/PDIS.2003.87.9.1116
|
LEE R F, KEREMANE M L. Mild Strain Cross Protection of Tristeza: a Review of Research to Protect Against Decline on Sour Orange in Florida[J]. Frontiers in Microbiology, 2013, 4: 259.
|
KARASEV A V, HILF M E, GARNSEY S M, et al. Transcriptional Strategy of Closteroviruses: Mapping the 5' Termini of the Citrus Tristeza Virus Subgenomic RNAs[J]. Journal of Virology, 1997, 71(8): 6233-6236. doi: 10.1128/jvi.71.8.6233-6236.1997
|
PUMPLIN N, VOINNET O. RNA Silencing Suppression by Plant Pathogens: Defence, Counter-Defence and Counter-Counter-Defence[J]. Nature Reviews Microbiology, 2013, 11(11): 745-760. doi: 10.1038/nrmicro3120
|
WU Q F, WANG X B, DING S W. Viral Suppressors of RNA-Based Viral Immunity: Host Targets[J]. Cell Host & Microbe, 2010, 8(1): 12-15.
|
CHAPMAN E J, PROKHNEVSKY A I, GOPINATH K, et al. Viral RNA Silencing Suppressors Inhibit the microRNA Pathway at an Intermediate Step[J]. Genes & Development, 2004, 18(10): 1179-1186.
|
PANTALEO V, SZITTYA G, BURGYÁN J. Molecular Bases of Viral RNA Targeting by Viral Small Interfering RNA-Programmed RISC[J]. Journal of Virology, 2007, 81(8): 3797-3806.
|
TATINENI S, ROBERTSON C J, GARNSEY S M, et al. Three Genes of Citrus Tristeza Virus are Dispensable for Infection and Movement Throughout some Varieties of Citrus Trees[J]. Virology, 2008, 376(2): 297-307.
|
CHENG C Z, YANG J W, YAN H B, et al. Expressing P20 Hairpin RNA of Citrus Tristeza Virus Confers Citrus Aurantium with Tolerance/Resistance Against Stem Pitting and Seedling Yellow CTV Strains[J]. Journal of Integrative Agriculture, 2015, 14(9): 1767-1777.
|
王亚飞, 阮涛, 周彦, 等. 甜橙和柚中CTV强弱毒株系p20的遗传变异[J]. 中国农业科学, 2017, 50(7): 1343-1350.
|
朱丽娟, 张崇涛, 王耀伟, 等. 影响茉莉H病毒沉默抑制子功能关键氨基酸的鉴定[J]. 福建农林大学学报(自然科学版), 2022, 51(1): 27-32.
|
林艺华, 肖胜华, 刘营航, 等. 甘蔗黄叶病毒P0蛋白分子特性及其抑制RNA沉默活性[J]. 中国农业科学, 2014, 47(23): 4627-4636.
|
LI Z R, HE Y Z, LUO T, et al. Identification of Key Residues Required for RNA Silencing Suppressor Activity of P23 Protein from a Mild Strain of Citrus Tristeza Virus[J]. Viruses, 2019, 11(9): 782.
|
VAN LOON L C, REP M, PIETERSE C M J. Significance of Inducible Defense-Related Proteins in Infected Plants[J]. Annual Review of Phytopathology, 2006, 44: 135-162.
|
VLOT A C, DEMPSEY D A, KLESSIG D F. Salicylic Acid, a Multifaceted Hormone to Combat Disease[J]. Annual Review of Phytopathology, 2009, 47: 177-206.
|
LIU R, LU J, XING J Y, et al. Characterization and Functional Analyses of Wheat TaPR1 Genes in Response to Stripe Rust Fungal Infection[J]. Scientific Reports, 2023, 13(1): 3362.
|
ZHOU G H, SHABBIR R, SUN Z H, et al. Transcriptomic Analysis Reveals Candidate Genes in Response to Sorghum Mosaic Virus and Salicylic Acid in Sugarcane[J]. Plants, 2024, 13(2): 234.
|
MAUCK K E, DE MORAES C M, MESCHER M C. Biochemical and Physiological Mechanisms Underlying Effects of Cucumber Mosaic Virus on Host-Plant Traits that Mediate Transmission by Aphid Vectors[J]. Plant, Cell & Environment, 2014, 37(6): 1427-1439.
|
LOVE A J, GERI C, LAIRD J, et al. Cauliflower Mosaic Virus Protein P6 Inhibits Signaling Responses to Salicylic Acid and Regulates Innate Immunity[J]. PLoS One, 2012, 7(10): e47535.
|
GROENENBOOM M A C, HOGEWEG P. Modelling the Dynamics of Viral Suppressors of RNA Silencing[J]. Journal of the Royal Society, Interface, 2012, 9(68): 436-447.
|
GILLET F X, CATTONI D I, PETIOT-BÉCARD S, et al. The RYMV-Encoded Viral Suppressor of RNA Silencing P1 is a Zinc-Binding Protein with Redox-Dependent Flexibility[J]. Journal of Molecular Biology, 2013, 425(14): 2423-2435.
|
LI M J, LI C C, JIANG K R, et al. Characterization of Pathogenicity-Associated V2 Protein of Tobacco Curly Shoot Virus[J]. International Journal of Molecular Sciences, 2021, 22(2): 923.
|
PAZHOUHANDEH M, DIETERLE M, MARROCCO K, et al. F-Box-Like Domain in the Polerovirus Protein P0 is Required for Silencing Suppressor Function[J]. Proceedings of the National Academy of Sciences of the United States of America, 2006, 103(6): 1994-1999.
|
尚鹏祥, 张洁, 张琦, 等. 木尔坦棉花曲叶病毒V2蛋白N端保守脯氨酸对病毒致病性的影响[J]. 福建农林大学学报(自然科学版), 2023, 52(4): 450-456.
|
PADIDAM M, BEACHY R N, FAUQUET C M. The Role of AV2 ("Precoat") and Coat Protein in Viral Replication and Movement in Tomato Leaf Curl Geminivirus[J]. Virology, 1996, 224(2): 390-404.
|
刘顺民. 新竹番茄曲叶病毒AV2功能研究[D]. 福州: 福建农林大学, 2019.
|
PRUSS G J, LAWRENCE C B, BASS T, et al. The Potyviral Suppressor of RNA Silencing Confers Enhanced Resistance to Multiple Pathogens[J]. Virology, 2004, 320(1): 107-120.
|
ABE H, TOMITAKA Y, SHIMODA T, et al. Antagonistic Plant Defense System Regulated by Phytohormones Assists Interactions among Vector Insect, Thrips and a Tospovirus[J]. Plant & Cell Physiology, 2012, 53(1): 204-212.
|
ZHOU T, MURPHY A M, LEWSEY M G, et al. Domains of the Cucumber Mosaic Virus 2b Silencing Suppressor Protein Affecting Inhibition of Salicylic Acid-Induced Resistance and Priming of Salicylic Acid Accumulation during Infection[J]. The Journal of General Virology, 2014, 95(Pt 6): 1408-1413.
|
YANG L P, XU Y N, LIU Y Q, et al. HC-Pro Viral Suppressor from Tobacco Vein Banding Mosaic Virus Interferes with DNA Methylation and Activates the Salicylic Acid Pathway[J]. Virology, 2016, 497: 244-250.
|