An Overview of Chili Leaf Curl Disease: Molecular Mechanisms, Impact, Challenges, and Disease Management Strategies in Indian Subcontinent

被引:14
作者
Shingote, Prashant Raghunath [1 ,2 ]
Wasule, Dhiraj Lalji [1 ]
Parma, Vaishnavi Sanjay [1 ]
Holkar, Somnath Kadappa [3 ]
Karkute, Suhas Gorakh [4 ]
Parlawar, Narsing Devanna [1 ]
Senanayake, D. M. J. B. [5 ]
机构
[1] Dr Panjabrao Deshmukh Krishi Veedyapeeth, Dept Agr Biotechnol, Akola, India
[2] Vasantrao Naik Coll Agr Biotechnol, Dept Agr Biotechnol, Yavatmal, India
[3] Indian Council Agr Res ICAR, Natl Res Ctr Grapes, Pune, India
[4] Indian Council Agr Res ICAR, Indian Inst Vegetable Res, Div Vegetable Improvement, Varanasi, India
[5] Rice Res & Dev Inst, Deparment Agr, Bathalagoda, Sri Lanka
关键词
Chili leaf curl virus; begomovirus; whitefly; chili; Geminiviridae; integrated disease management; NEW-DELHI-VIRUS; CAPSICUM-ANNUUM; BEMISIA-TABACI; DNA-BETA; DIFFERENTIAL EXPRESSION; RECOMBINANT BEGOMOVIRUS; AMBLYSEIUS-SWIRSKII; ACARI PHYTOSEIIDAE; MIXED INFECTIONS; SERIOUS THREAT;
D O I
10.3389/fmicb.2022.899512
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Leaf curl disease in a chili plant is caused mainly by Chili leaf curl virus (ChiLCV) (Family: Geminiviridae, Genus: Begomovirus). ChiLCV shows a widespread occurrence in most of the chili (Capsicum spp.) growing regions. ChiLCV has a limited host range and infects tomatoes (Solanum lycopersicum), potatoes (S. tuberosum), and amaranth (Amaranthus tricolor). The virus genome is a monopartite circular single-stranded DNA molecule of 2.7 kb and associated with alpha and beta-satellites of 1.3 and 1.4 kb, respectively. The virus genome is encapsulated in distinct twinned icosahedral particles of around 18-30 nm in size and transmitted by Bemisia tabaci (Family: Aleyrodidae, Order: Hemiptera). Recently, bipartite begomovirus has been found to be associated with leaf curl disease. The leaf curl disease has a widespread distribution in the major equatorial regions viz., Australia, Asia, Africa, Europe, and America. Besides the PCR, qPCR, and LAMP-based detection systems, recently, localized surface-plasmon-resonance (LPSR) based optical platform is used for ChiLCV detection in a 20-40 mu l of sample volume using aluminum nanoparticles. Management of ChiLCV is more challenging due to the vector-borne nature of the virus, therefore integrated disease management strategies need to be followed to contain the spread and heavy crop loss. CRISPR/Cas-mediated virus resistance has gained importance in disease management of DNA and RNA viruses due to certain advantages over the conventional approaches. Therefore, CRISPR/Cas system-mediated resistance needs to be explored in chili against ChiLCV.
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页数:18
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