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Article

Role of Diversity and Recombination in the Emergence of Chilli Leaf Curl Virus

1
Department of Biosciences, School of Liberal Arts and Sciences, Mody University of Science and Technology, Lakshmangarh, Sikar 332311, Rajasthan, India
2
Department of Biotechnology, D.D.U. Gorakhpur University, Gorakhpur 273006, Uttar Pradesh, India
3
Department of Biotechnology, ICAR—Indian Institute of Wheat & Barley Research, Agarsain Road, Karnal 132001, Haryana, India
4
Department of Biological Science, The University of Tulsa, 800 S Tucker Drive, Tulsa, OK 74104-3189, USA
*
Authors to whom correspondence should be addressed.
These authors contributed equally to this work.
Pathogens 2022, 11(5), 529; https://doi.org/10.3390/pathogens11050529
Submission received: 20 March 2022 / Revised: 16 April 2022 / Accepted: 27 April 2022 / Published: 30 April 2022
(This article belongs to the Special Issue Evolution of Plant Viruses)

Abstract

Chilli leaf curl virus (ChiLCV), (Genus Begomovirus, family Geminiviridae) and associated satellites pose a serious threat to chilli production, worldwide. This study highlights the factors accountable for genetic diversity, recombination, and evolution of ChiLCV, and associated chilli leaf curl alphasatellite (ChiLCA) and chilli leaf curl betasatellite (ChiLCB). Phylogenetic analysis of complete genome (DNA-A) sequences of 132 ChiLCV isolates from five countries downloaded from NCBI database clustered into three major clades and showed high population diversity. The dN/dS ratio and Tajima D value of all viral DNA-A and associated betasatellite showed selective control on evolutionary relationships. Negative values of neutrality tests indicated purified selection and an excess of low-frequency polymorphism. Nucleotide diversity (π) for C4 and Rep genes was higher than other genes of ChiLCV with an average value of π = 18.37 × 10−2 and π = 17.52 × 10−2 respectively. A high number of mutations were detected in TrAP and Rep genes, while ChiLCB has a greater number of mutations than ChiLCA. In addition, significant recombination breakpoints were detected in all regions of ChiLCV genome, ChiLCB and, ChiLCA. Our findings indicate that ChiLCV has the potential for rapid evolution and adaptation to a range of geographic conditions and could be adopted to infect a wide range of crops, including diverse chilli cultivars.
Keywords: chilli leaf curl virus; recombination; mutation; genetic diversity; selection chilli leaf curl virus; recombination; mutation; genetic diversity; selection

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MDPI and ACS Style

Mishra, M.; Verma, R.K.; Pandey, V.; Srivastava, A.; Sharma, P.; Gaur, R.; Ali, A. Role of Diversity and Recombination in the Emergence of Chilli Leaf Curl Virus. Pathogens 2022, 11, 529. https://doi.org/10.3390/pathogens11050529

AMA Style

Mishra M, Verma RK, Pandey V, Srivastava A, Sharma P, Gaur R, Ali A. Role of Diversity and Recombination in the Emergence of Chilli Leaf Curl Virus. Pathogens. 2022; 11(5):529. https://doi.org/10.3390/pathogens11050529

Chicago/Turabian Style

Mishra, Megha, Rakesh Kumar Verma, Vineeta Pandey, Aarshi Srivastava, Pradeep Sharma, Rajarshi Gaur, and Akhtar Ali. 2022. "Role of Diversity and Recombination in the Emergence of Chilli Leaf Curl Virus" Pathogens 11, no. 5: 529. https://doi.org/10.3390/pathogens11050529

APA Style

Mishra, M., Verma, R. K., Pandey, V., Srivastava, A., Sharma, P., Gaur, R., & Ali, A. (2022). Role of Diversity and Recombination in the Emergence of Chilli Leaf Curl Virus. Pathogens, 11(5), 529. https://doi.org/10.3390/pathogens11050529

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