Two distinct monopartite begomovirus-betasatellite complexes in western India cause tomato leaf curl disease.
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Sangeeta | Bijendra Singh | B. Yadav | R. V. Kumar | A. Singh | Sunita Patel | B. Bhatt | Fenisha D. Chahwala | Punam Ranjan
[1] S. Kumari,et al. Bhendi yellow vein mosaic virus and bhendi yellow vein mosaic betasatellite cause enation leaf curl disease and alter host phytochemical contents in okra. , 2021, Plant disease.
[2] D. Singh,et al. A novel monopartite begomovirus and satellites associated with yellow mosaic disease of Sida spp. in India , 2020, Archives of virology.
[3] P. Shivaprasad,et al. Plant-virus-insect tritrophic interactions: insights into the functions of geminivirus virion-sense strand genes , 2020, Proceedings of the Royal Society B.
[4] S. Chakraborty,et al. Association of a begomovirus-satellite complex with yellow vein and leaf curl disease of hollyhock (Alcea rosea) in India , 2020, Archives of Virology.
[5] R. V. Kumar. Plant Antiviral Immunity Against Geminiviruses and Viral Counter-Defense for Survival , 2019, Front. Microbiol..
[6] S. Chakraborty,et al. Multifaceted role of geminivirus associated betasatellite in pathogenesis , 2019, Molecular plant pathology.
[7] Xiuren Zhang,et al. βC1 protein encoded in geminivirus satellite concertedly targets MKK2 and MPK4 to counter host defense , 2019, PLoS pathogens.
[8] S. Chakraborty,et al. Biology of viral satellites and their role in pathogenesis. , 2018, Current opinion in virology.
[9] Sudhir Kumar,et al. MEGA X: Molecular Evolutionary Genetics Analysis across Computing Platforms. , 2018, Molecular biology and evolution.
[10] P. Roumagnac,et al. Alphasatellitidae: a new family with two subfamilies for the classification of geminivirus- and nanovirus-associated alphasatellites , 2018, Archives of Virology.
[11] Muhammad Imtiaz Shafiq,et al. Real-time quantitative PCR assay for the quantification of virus and satellites causing leaf curl disease in cotton in Pakistan. , 2017, Journal of virological methods.
[12] S. Chakraborty,et al. Molecular diversity, recombination and population structure of alphasatellites associated with begomovirus disease complexes. , 2017, Infection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases.
[13] S. Chakraborty,et al. Molecular genetic analysis and evolution of begomoviruses and betasatellites causing yellow mosaic disease of bhendi , 2017, Virus Genes.
[14] P. Roumagnac,et al. ICTV Virus Taxonomy Profile: Geminiviridae , 2017, The Journal of general virology.
[15] D. Xie,et al. CLCuMuB βC1 Subverts Ubiquitination by Interacting with NbSKP1s to Enhance Geminivirus Infection in Nicotiana benthamiana , 2016, PLoS pathogens.
[16] S. Chakraborty,et al. Potential linkage between compound microsatellites and recombination in geminiviruses: Evidence from comparative analysis. , 2015, Virology.
[17] Judith K. Brown,et al. Revision of Begomovirus taxonomy based on pairwise sequence comparisons , 2015, Archives of Virology.
[18] B. Murrell,et al. RDP4: Detection and analysis of recombination patterns in virus genomes , 2015, Virus evolution.
[19] Arvind Varsani,et al. SDT: A Virus Classification Tool Based on Pairwise Sequence Alignment and Identity Calculation , 2014, PloS one.
[20] S. Chakraborty,et al. Host-specific adaptation of diverse betasatellites associated with distinct Indian tomato-infecting begomoviruses , 2014, Virus Genes.
[21] S. Chakraborty,et al. Differential pathogenicity among Tomato leaf curl Gujarat virus isolates from India , 2013, Virus Genes.
[22] Priyanka Singh,et al. Infection of tomato leaf curl New Delhi virus (ToLCNDV), a bipartite begomovirus with betasatellites, results in enhanced level of helper virus components and antagonistic interaction between DNA B and betasatellites , 2013, Applied Microbiology and Biotechnology.
[23] A. Varma,et al. Role of betasatellite in the pathogenesis of a bipartite begomovirus affecting tomato in India , 2012, Archives of Virology.
[24] S. Chakraborty,et al. Biology and interactions of two distinct monopartite begomoviruses and betasatellites associated with radish leaf curl disease in India , 2012, Virology Journal.
[25] S. Chakraborty,et al. A novel recombinant tomato-infecting begomovirus capable of transcomplementing heterologous DNA-B components , 2011, Archives of Virology.
[26] S. Chakraborty,et al. Molecular characterization of a new species of Begomovirus and betasatellite causing leaf curl disease of tomato in India. , 2010, Virus research.
[27] N. Tiwari,et al. Tomato leaf curl Bangalore virus (ToLCBV): infectivity and enhanced pathogenicity with diverse betasatellites , 2010, Archives of Virology.
[28] Y. Kumar,et al. Molecular characterization of a distinct bipartite begomovirus species infecting tomato in India , 2008, Virus Genes.
[29] N. Chua,et al. betaC1, the pathogenicity factor of TYLCCNV, interacts with AS1 to alter leaf development and suppress selective jasmonic acid responses. , 2008, Genes & development.
[30] Darren P Martin,et al. Avoidance of Protein Fold Disruption in Natural Virus Recombinants , 2007, PLoS pathogens.
[31] E. Holmes,et al. Phylogenetic Evidence for Rapid Rates of Molecular Evolution in the Single-Stranded DNA Begomovirus Tomato Yellow Leaf Curl Virus , 2007, Journal of Virology.
[32] H. Prasanna,et al. Detection and frequency of recombination in tomato-infecting begomoviruses of South and Southeast Asia , 2007, Virology Journal.
[33] R. Briddon,et al. Subviral agents associated with plant single-stranded DNA viruses. , 2006, Virology.
[34] J. Colvin,et al. Diversity and distribution of begomoviruses infecting tomato in India , 2005, Archives of Virology.
[35] A. Varma,et al. Emerging geminivirus problems: A serious threat to crop production , 2003 .
[36] C. Fauquet,et al. A New Begomovirus Species Causing Tomato Leaf Curl Disease in Varanasi, India. , 2003, Plant disease.
[37] J. Jose,et al. Bhendi yellow vein mosaic disease in India is caused by association of a DNA Beta satellite with a begomovirus. , 2003, Virology.
[38] D. Maxwell,et al. Tomato leaf curl Karnataka virus from Bangalore, India, Appears to be a Recombinant Begomovirus. , 2002, Phytopathology.
[39] S. Bull,et al. Universal primers for the PCR-mediated amplification of DNA β , 2002, Molecular biotechnology.
[40] R. Briddon,et al. Identification of dna components required for induction of cotton leaf curl disease. , 2001, Virology.
[41] S. Sawyer,et al. Possible emergence of new geminiviruses by frequent recombination. , 1999, Virology.
[42] James B. Hicks,et al. A plant DNA minipreparation: Version II , 1983, Plant Molecular Biology Reporter.
[43] S. Chakraborty,et al. Tomato Leaf Curl New Delhi Virus (Geminiviridae) , 2020 .
[44] Kuldeep Singh. EVALUATION OF TOMATO GENOTYPES AND ITS REACTION AGAINST ToLCV CAUSING LEAF CURL DISEASE IN TOMATO (Solanum lycopersicon L.) , 2014 .
[45] S. Chakraborty,et al. Tomato Leaf Curl Viruses from India , 2008 .
[46] M. Murthy,et al. Evidence for recombination among the tomato leaf curl virus strains/species from Bangalore, India , 2002, Archives of Virology.
[47] H. Czosnek,et al. Tomato leaf curl virus from Bangalore (ToLCV-Ban4): sequence comparison with Indian ToLCV isolates, detection in plants and insects, and vector relationships} , 2000, Archives of Virology.
[48] C. Fauquet,et al. Tomato leaf curl geminivirus from India has a bipartite genome and coat protein is not essential for infectivity. , 1995, The Journal of general virology.
[49] R. Gilbertson,et al. Use of degenerate primers in the polymerase chain reaction to detect whitefly-transmitted geminiviruses , 1993 .