Molecular and biological characterization of melon-infecting squash leaf curl China virus in China

It has been reported that squash leaf curl China virus (SLCCNV) infects some Cucurbitaceae crops except for melon (Cucumis melo L.). A new disease of melon exhibiting severe leaf curl and dwarfing was observed in Hainan Province of China. In this study, the pathogen was identified as SLCCNV through...

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Published in:Journal of Integrative Agriculture
Main Authors: Hui-jie WU, Meng LI, Ni HONG, Bin PENG, Qin-sheng GU
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2020-02-01
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2095311919626420
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author Hui-jie WU
Meng LI
Ni HONG
Bin PENG
Qin-sheng GU
author_facet Hui-jie WU
Meng LI
Ni HONG
Bin PENG
Qin-sheng GU
author_sort Hui-jie WU
collection DOAJ
container_title Journal of Integrative Agriculture
description It has been reported that squash leaf curl China virus (SLCCNV) infects some Cucurbitaceae crops except for melon (Cucumis melo L.). A new disease of melon exhibiting severe leaf curl and dwarfing was observed in Hainan Province of China. In this study, the pathogen was identified as SLCCNV through biological and molecular characterization. The isolate (SLCCNV-HN) possess a bipartite genome, DNA-A (HM566112.1) with the highest nucleotide identity (99%) to SLCCNV-Hn (MF062251.1) pumpkin and SLCCNV-Hn61 (AM260205.1) squash isolates from China, whereas DNA-B (HM566113.1) with the highest nucleotide identity (99%) to SLCCNV-Hn (MF062252.1). Phylogenetic analyses based on the full-length SLCCNV-HN DNA-A and -B sequences indicated that SLCCNV-HN melon isolate is clustered with SLCCNV-Hn pumpkin, SLCCNV-Hn61 and SLCCNV-SY squash isolates from southern China, forming an independent cluster. Infectious clone of SLCCNV-HN was constructed and the melon plants were inoculated and the infection rate is 100%, the systemic symptoms in melon showed identical to those of melon plants infected in fields. Additionally, melon plants transmission of this virus by Bemisia tabaci with a transmission rate of 95% (19/20) showed leaf curl and dwarf symptoms 15 days post transmission, thereby fulfilling Koch's postulates. Analysis of genomic organization and phylogenetic trees indicated that SLCCNV-HN melon isolate belongs to the Begomovirus genus. To the best of our knowledge, this is the first characterization of melon-infecting SLCCNV through its genome, infectious clone and transmission.
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spelling doaj-e4a63bfe3af644569265c15980c07b572025-11-03T00:35:45ZengKeAi Communications Co., Ltd.Journal of Integrative Agriculture2095-31192020-02-0119257057710.1016/S2095-3119(19)62642-0Molecular and biological characterization of melon-infecting squash leaf curl China virus in ChinaHui-jie WU0Meng LI1Ni HONG2Bin PENG3Qin-sheng GU4Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou 450009, P.R.China; Huazhong Agricultural University, Wuhan 430070, P.R.China; Correspondence WU Hui-jieSchool of Food and Bioengineering, Zhengzhou University of Light Industry, Zhengzhou 450000, P.R.ChinaHuazhong Agricultural University, Wuhan 430070, P.R.ChinaZhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou 450009, P.R.ChinaZhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou 450009, P.R.China; Correspondence GU Qin-shengIt has been reported that squash leaf curl China virus (SLCCNV) infects some Cucurbitaceae crops except for melon (Cucumis melo L.). A new disease of melon exhibiting severe leaf curl and dwarfing was observed in Hainan Province of China. In this study, the pathogen was identified as SLCCNV through biological and molecular characterization. The isolate (SLCCNV-HN) possess a bipartite genome, DNA-A (HM566112.1) with the highest nucleotide identity (99%) to SLCCNV-Hn (MF062251.1) pumpkin and SLCCNV-Hn61 (AM260205.1) squash isolates from China, whereas DNA-B (HM566113.1) with the highest nucleotide identity (99%) to SLCCNV-Hn (MF062252.1). Phylogenetic analyses based on the full-length SLCCNV-HN DNA-A and -B sequences indicated that SLCCNV-HN melon isolate is clustered with SLCCNV-Hn pumpkin, SLCCNV-Hn61 and SLCCNV-SY squash isolates from southern China, forming an independent cluster. Infectious clone of SLCCNV-HN was constructed and the melon plants were inoculated and the infection rate is 100%, the systemic symptoms in melon showed identical to those of melon plants infected in fields. Additionally, melon plants transmission of this virus by Bemisia tabaci with a transmission rate of 95% (19/20) showed leaf curl and dwarf symptoms 15 days post transmission, thereby fulfilling Koch's postulates. Analysis of genomic organization and phylogenetic trees indicated that SLCCNV-HN melon isolate belongs to the Begomovirus genus. To the best of our knowledge, this is the first characterization of melon-infecting SLCCNV through its genome, infectious clone and transmission.http://www.sciencedirect.com/science/article/pii/S2095311919626420melonsquash leaf curl China virus (SLCCNV)genomeinfectious clone
spellingShingle Hui-jie WU
Meng LI
Ni HONG
Bin PENG
Qin-sheng GU
Molecular and biological characterization of melon-infecting squash leaf curl China virus in China
melon
squash leaf curl China virus (SLCCNV)
genome
infectious clone
title Molecular and biological characterization of melon-infecting squash leaf curl China virus in China
title_full Molecular and biological characterization of melon-infecting squash leaf curl China virus in China
title_fullStr Molecular and biological characterization of melon-infecting squash leaf curl China virus in China
title_full_unstemmed Molecular and biological characterization of melon-infecting squash leaf curl China virus in China
title_short Molecular and biological characterization of melon-infecting squash leaf curl China virus in China
title_sort molecular and biological characterization of melon infecting squash leaf curl china virus in china
topic melon
squash leaf curl China virus (SLCCNV)
genome
infectious clone
url http://www.sciencedirect.com/science/article/pii/S2095311919626420
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