Complete genome sequencing and construction of full-length infectious cDNA clone of papaya ringspot virus-HYD isolate and its efficient in planta expression

Papaya ringspot virus (PRSV) is a devastating Potyvirus that causes papaya ringspot disease in Carica papaya plantations globally. In this study, the complete genome sequence of a PRSV isolate from Shankarpalli, Telangana, India, was reported and designated as PRSV-HYD (KP743981.1). The genome is a...

Full description

Bibliographic Details
Main Authors: Prodosh Gupta, Pavani L. C. Parupudi, Laha Supriya, Harshal Srivastava, Gudipalli Padmaja, Kodetham Gopinath
Format: Article
Language:English
Published: Frontiers Media S.A. 2023-11-01
Series:Frontiers in Microbiology
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fmicb.2023.1310236/full
_version_ 1827620282139934720
author Prodosh Gupta
Pavani L. C. Parupudi
Laha Supriya
Harshal Srivastava
Gudipalli Padmaja
Kodetham Gopinath
author_facet Prodosh Gupta
Pavani L. C. Parupudi
Laha Supriya
Harshal Srivastava
Gudipalli Padmaja
Kodetham Gopinath
author_sort Prodosh Gupta
collection DOAJ
description Papaya ringspot virus (PRSV) is a devastating Potyvirus that causes papaya ringspot disease in Carica papaya plantations globally. In this study, the complete genome sequence of a PRSV isolate from Shankarpalli, Telangana, India, was reported and designated as PRSV-HYD (KP743981.1). The genome is a single-stranded positive-sense RNA comprising 10,341 nucleotides. Phylogenetic analysis revealed that PRSV-HYD is closely related to PRSV Pune (Aundh) isolate with 92 and 95% nucleotide and amino acid sequence identity, respectively. To develop infectious cDNA (icDNA), the complete nucleotide sequence of PRSV-HYD was cloned between the right and left borders in the binary vector pCB301 using BglII and XmaI restriction sites. Cauliflower mosaic virus (CaMV) double promoter (35S) was fused at the 5′-end and Avocado sunblotch viroid (ASBVd) ribozyme (RZ) sequence was fused to the 3′ end to generate an authentic 3′ viral end in the transcribed mRNAs. The icDNA generated was mobilized into the Agrobacterium tumefaciens EHA 105, and the agrobacterial cultures were infiltrated into the natural host C. papaya and a non-host Nicotiana benthamiana plants; both did not show any symptoms. In RT-PCR analysis of RNAs isolated from N. benthamiana, we could detect viral genes as early as 3 days and continued up to 28 days post infiltration. Alternatively, virion particles were purified from agroinfiltrated N. benthamiana plants and introduced into C. papaya by mechanical inoculation as well as by pinprick method. In both cases, we could see visible systemic symptoms similar to that of wild type by 40 days. Additionally, we studied the expression patterns of the genes related to plant defense, transcription factors (TFs), and developmental aspects from both C. papaya and N. benthamiana.
first_indexed 2024-03-09T10:45:14Z
format Article
id doaj.art-28694fe3f0cc47d9887ee0b02f6e5caa
institution Directory Open Access Journal
issn 1664-302X
language English
last_indexed 2024-03-09T10:45:14Z
publishDate 2023-11-01
publisher Frontiers Media S.A.
record_format Article
series Frontiers in Microbiology
spelling doaj.art-28694fe3f0cc47d9887ee0b02f6e5caa2023-12-01T10:28:42ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2023-11-011410.3389/fmicb.2023.13102361310236Complete genome sequencing and construction of full-length infectious cDNA clone of papaya ringspot virus-HYD isolate and its efficient in planta expressionProdosh GuptaPavani L. C. ParupudiLaha SupriyaHarshal SrivastavaGudipalli PadmajaKodetham GopinathPapaya ringspot virus (PRSV) is a devastating Potyvirus that causes papaya ringspot disease in Carica papaya plantations globally. In this study, the complete genome sequence of a PRSV isolate from Shankarpalli, Telangana, India, was reported and designated as PRSV-HYD (KP743981.1). The genome is a single-stranded positive-sense RNA comprising 10,341 nucleotides. Phylogenetic analysis revealed that PRSV-HYD is closely related to PRSV Pune (Aundh) isolate with 92 and 95% nucleotide and amino acid sequence identity, respectively. To develop infectious cDNA (icDNA), the complete nucleotide sequence of PRSV-HYD was cloned between the right and left borders in the binary vector pCB301 using BglII and XmaI restriction sites. Cauliflower mosaic virus (CaMV) double promoter (35S) was fused at the 5′-end and Avocado sunblotch viroid (ASBVd) ribozyme (RZ) sequence was fused to the 3′ end to generate an authentic 3′ viral end in the transcribed mRNAs. The icDNA generated was mobilized into the Agrobacterium tumefaciens EHA 105, and the agrobacterial cultures were infiltrated into the natural host C. papaya and a non-host Nicotiana benthamiana plants; both did not show any symptoms. In RT-PCR analysis of RNAs isolated from N. benthamiana, we could detect viral genes as early as 3 days and continued up to 28 days post infiltration. Alternatively, virion particles were purified from agroinfiltrated N. benthamiana plants and introduced into C. papaya by mechanical inoculation as well as by pinprick method. In both cases, we could see visible systemic symptoms similar to that of wild type by 40 days. Additionally, we studied the expression patterns of the genes related to plant defense, transcription factors (TFs), and developmental aspects from both C. papaya and N. benthamiana.https://www.frontiersin.org/articles/10.3389/fmicb.2023.1310236/fullpapaya ringspot virusinfectious cDNAdouble promoterribozymePR genestranscription factors
spellingShingle Prodosh Gupta
Pavani L. C. Parupudi
Laha Supriya
Harshal Srivastava
Gudipalli Padmaja
Kodetham Gopinath
Complete genome sequencing and construction of full-length infectious cDNA clone of papaya ringspot virus-HYD isolate and its efficient in planta expression
Frontiers in Microbiology
papaya ringspot virus
infectious cDNA
double promoter
ribozyme
PR genes
transcription factors
title Complete genome sequencing and construction of full-length infectious cDNA clone of papaya ringspot virus-HYD isolate and its efficient in planta expression
title_full Complete genome sequencing and construction of full-length infectious cDNA clone of papaya ringspot virus-HYD isolate and its efficient in planta expression
title_fullStr Complete genome sequencing and construction of full-length infectious cDNA clone of papaya ringspot virus-HYD isolate and its efficient in planta expression
title_full_unstemmed Complete genome sequencing and construction of full-length infectious cDNA clone of papaya ringspot virus-HYD isolate and its efficient in planta expression
title_short Complete genome sequencing and construction of full-length infectious cDNA clone of papaya ringspot virus-HYD isolate and its efficient in planta expression
title_sort complete genome sequencing and construction of full length infectious cdna clone of papaya ringspot virus hyd isolate and its efficient in planta expression
topic papaya ringspot virus
infectious cDNA
double promoter
ribozyme
PR genes
transcription factors
url https://www.frontiersin.org/articles/10.3389/fmicb.2023.1310236/full
work_keys_str_mv AT prodoshgupta completegenomesequencingandconstructionoffulllengthinfectiouscdnacloneofpapayaringspotvirushydisolateanditsefficientinplantaexpression
AT pavanilcparupudi completegenomesequencingandconstructionoffulllengthinfectiouscdnacloneofpapayaringspotvirushydisolateanditsefficientinplantaexpression
AT lahasupriya completegenomesequencingandconstructionoffulllengthinfectiouscdnacloneofpapayaringspotvirushydisolateanditsefficientinplantaexpression
AT harshalsrivastava completegenomesequencingandconstructionoffulllengthinfectiouscdnacloneofpapayaringspotvirushydisolateanditsefficientinplantaexpression
AT gudipallipadmaja completegenomesequencingandconstructionoffulllengthinfectiouscdnacloneofpapayaringspotvirushydisolateanditsefficientinplantaexpression
AT kodethamgopinath completegenomesequencingandconstructionoffulllengthinfectiouscdnacloneofpapayaringspotvirushydisolateanditsefficientinplantaexpression