
FIRST REPORT AND GENOME CHARACTERIZATION OF Pepper leaf curl Bangladesh virus INFECTING CHILLI IN INDIA
PLANT CELL BIOTECHNOLOGY AND MOLECULAR BIOLOGY,
Page 75-88
DOI:
10.56557/pcbmb/2022/v23i39-408075
Abstract
Chilli (Capsicum annuum L.) leaves showing curling symptoms were collected from Jalandhar region of Punjab, India, and a monopartite begomovirus Pepper leaf curl Bangladesh virus (PepLCBV) associated with Tomato leaf curl Bangladesh betasatellite (ToLCBB) was found to infect the crop. The viral DNA was amplified, cloned and sequenced. Sequencing results revealed that the virus genome and betasatellite consists of 2755 and 1361 nucleotides respectively. Infectious clones of the virus were constructed in binary vector pCAMBIA-1300 and Koch’s postulates were fulfilled. PepLCBV infectious clone caused minor curling in chilli plants when inoculated alone, but it produced typical leaf curl and stunting symptoms in combination with the ToLCBB infectious clone. Phylogenetic analysis with other closely related begomoviruses showed that the present isolate shares high identity with Pepper leaf curl Bangladesh virus. The present isolate grouped with other chilli isolates of begomoviruses reported from India (Pepper leaf curl Lahore virus, Chilli leaf curl Nagpur virus and Tomato leaf curl Liwa virus). Phylogenetic analysis of betasatellite showed its closest identity with Tomato leaf curl Bangladesh betasatellite. It grouped with other betasatellites reported from India (Tomato leaf curl betasatellite, Fenugreek leaf curl betasatellite and Chilli leaf curl betasatellite). Recombination analysis of the virus and betasatellite sequences suggested that PepLCBV might be a recombinant of Chilli leaf curl virus as a major parent and Chilli leaf curl Multan virus as a minor parent, whereas ToLCBB seemed to be a recombinant of Tomato leaf curl betasatellite as a major parent and Tomato leaf curl Ranchi betasatellite as a minor parent. To the best of our knowledge this is the first report of PepLCBV infecting chilli in India.
Keywords:
- Geminiviridae
- begomovirus
- monopartite
- recombination
- infectious clone
- BLAST
How to Cite
References
Fiallo-Olivé E, Jean-Michel L, Darren P, Philippe Roumagnac M, Varsani A, MuriloZerbini F, Navas-Castillo J. ICTV virus taxonomy profile: Geminiviridae. J Gen Virol. 2021;102:001696.
Rojas MR, Macedo MA, Maliano MR, Soto-Aguilar M, Souza JO, Briddon RW, Kenyon L, Rivera Bustamante RF, Zerbini FM, Adkins S, Legg JP. World management of geminiviruses. Annu Rev Phytopathol. 2018;25(56):637-677.
Cantú-Iris M, Pastor-Palacios G, Mauricio-Castillo JA, Bañuelos-Hernández B, Avalos-Calleros JA, Juárez-Reyes A, Rivera-Bustamante R, Argüello-Astorga GR. Analysis of a new begomovirus unveils a composite element conserved in the CP gene promoters of several Geminiviridae genera: Clues to comprehend the complex regulation of late genes. PloS One. 2019;14(1):e0210485.
Kumar Y, Hallan V, Zaidi AA. Chilli leaf curl Palampur virus is a distinct begomovirus species associated with a betasatellite. Plant Pathol. 2011;60(6):1040-1047.
Roy A, Zhai Y, Ortiz J, Neff M, Mandal B, Mukherjee SK, Pappu HR. Multiplexed editing of a begomovirus genome restricts escape mutant formation and disease development. PLoS One. 2019;23:14(10):e0223765.
Thakur H, Jindal SK, Sharma A, Dhaliwal MS. Chilli leaf curl virus disease: a serious threat for chilli cultivation. J Plant Dis Prot. 2018;125:239-249.
Chattopadhyay B, Singh AK, Yadav T, Fauquet CM, Sarin NB, Chakraborty S. Infectivity of the cloned components of a begomovirus: DNA beta complex causing chilli leaf curl disease in India. Arch Virol. 2008;153:533-539.
Juárez M, Rabadán MP, Martínez LD, Tayahi M, Grande-Pérez A, Gómez P. Natural hosts and genetic diversity of the emerging tomato leaf curl New Delhi virus in Spain. Front Microbiol. 2019;20:140.
Senanayake DM, Varma A, Mandal B. Virus–vector relationships, host range, detection and sequence comparison of Chilli leaf curl virus associated with an epidemic of leaf curl disease of chilli in Jodhpur, India. J Phytopathol. 2012;160(3):146-155.
Khan MS, Raj SK, Singh R. First report of Tomato leaf curl New Delhi virus infecting chilli in India. Plant Pathol. 2006;55(2):289-289.
Hussain M, Mansoor S, Iram S, Zafar Y, Briddon RW. First report of Tomato leaf curl New Delhi virus affecting chilli pepper in Pakistan. Plant Pathol. 2004;53(6):794-794.
Tsai WS, Shih SL, Green SK, Rauf A, Hidayat SH, Jan FJ. Molecular characterization of Pepper yellow leaf curl Indonesia virus in leaf curl and yellowing diseased tomato and pepper in Indonesia. Plant Dis. 2006;90(2):247-247.
Hussain M, Mansoor S, Amin I, Iram S, Zafar Y, Malik KA, Briddon RW. First report of cotton leaf curl disease affecting chili peppers. Plant Pathol. 2003;52(6):809-809.
Shih SL, Tsai WS, Green SK, Khalid S, Ahmad I, Rezaian MA, Smith J. Molecular characterization of tomato and chili leaf curl begomoviruses from Pakistan. Plant Dis. 2003;87(2):200-200.
Martinez Zubiaur Y, Muñiz Martín Y, Quiñones Pantoja M. A new begomovirus infecting pepper plants in Cuba. Plant Pathol. 2006;55(6):817-817.
Mishra M, Verma RK, Marwal A, Sharma P, Gaur RK. Biology and interaction of the natural occurrence of distinct monopartite begomoviruses associated with satellites in Capsicum annum from India. Front Microbiol. 2020;7(11):512957.doi: 10.3389/fmicb.2020.512957
Joshi G, Choudhury B. Screening Lycopersicon and Solanum species for resistance to leaf curl virus. Veg. Sci. 1981;8:45-50.
Wyatt SD, Brown JK. Detection of subgroup III geminivirus isolates in leaf extracts by degenerate primers and polymerase chain reaction. Phytopathology. 1996;86(12):1288-1293.
Boratyn GM, Thierry-Mieg J, Thierry-Mieg D, Busby B, Madden TL. Magic-BLAST, an accurate RNA-seq aligner for long and short reads. BMC bioinform. 2019;20(1):1-9.
Gasteiger E, Gattiker A, Hoogland C, Ivanyi I, Appel RD, Bairoch A. ExPASy: the proteomics server for in-depth protein knowledge and analysis. Nucleic Acids Res. 2003;31(13):3784-3788.
Stothard P. The sequence manipulation suite: JavaScript programs for analyzing and formatting protein and DNA sequences. Biotechniques. 2000;28(6):1102-1104.
Corpet F. Multiple sequence alignment with hierarchical clustering. Nucleic Acids Res. 1988;16(22):10881-10890.
Thompson JD, Higgins DG, Gibson TJ. CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. Nucleic Acids Res. 1994;22(22): 4673-4680.
Saitou N, Nei M. The neighbor-joining method: a new method for reconstructing phylogenetic trees. MolBiolEvol. 1987;4(4):406-425.
Martin DP, Murrell B, Golden M, Khoosal A, Muhire B. RDP4: Detection and analysis of recombination patterns in virus genomes. Virus Evol. 2015;1(1): vev003. DOI:https://doi.org/10.1093/ve/vev003.
Xu R, Qingshun LQ. Protocol: Streamline cloning of genes into binary vectors in Agrobacterium via the Gateway® TOPO vector system. Plant Methods. 2008;4:1-7.
Zhou X, Xie Y, Tao X, Zhang Z, Li Z, Fauquet CM. Characterization of DNAβ associated with begomoviruses in China and evidence for co-evolution with their cognate viral DNA-A. J Gen Virol. 2003;84(1):237-247.
Fauquet CM, Briddon RW, Brown JK, Moriones E, Stanley J, Zerbini M, Zhou X. Geminivirus strain demarcation and nomenclature. Arch Virol. 2008;153:783-821.
Padidam M, Sawyer S, Fauquet CM. Possible emergence of new geminiviruses by frequent recombination. Virology. 1999;265(2):218-225.
Roberts S, Stanley J. Lethal mutations within the conserved stem-loop of African cassava mosaic virus DNA are rapidly corrected by genomic recombination. J Gen Virol. 1994;75(11):3203-3209.
Dry IB, Krake LR, Rigden JE, Rezaian MA. A novel subviral agent associated with a geminivirus: the first report of a DNA satellite. Proc Natl Acad Sci. 1997;94(13):7088-7093.
Mansoor S, Khan SH, Bashir A, Saeed M, Zafar Y, Malik KA, Briddon R, Stanley J, Markham PG. Identification of a novel circular single-stranded DNA associated with cotton leaf curl disease in Pakistan. Virology. 1999;259(1):190-199.
Jukes TH, Cantor CR. Evolution of protein molecules. In: Munro HN, ed. Mammalian Protein Metabolism. NewYork, USA: Academic Press. 1969;21-132.
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