Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Use of RNAi technology to develop a PRSV-resistant transgenic papaya

View through CrossRef
AbstractPapaya ringspot virus (PRSV) seriously limits papaya (Carica papaya L.) production in tropical and subtropical areas throughout the world. Coat protein (CP)- transgenic papaya lines resistant to PRSV isolates in the sequence-homology-dependent manner have been developed in the U.S.A. and Taiwan. A previous investigation revealed that genetic divergence among Hainan isolates of PRSV has allowed the virus to overcome the CP-mediated transgenic resistance. In this study, we designed a comprehensive RNAi strategy targeting the conserved domain of the PRSV CP gene to develop a broader-spectrum transgenic resistance to the Hainan PRSV isolates. We used an optimized particle-bombardment transformation system to produce RNAi-CP-transgenic papaya lines. Southern blot analysis and Droplet Digital PCR revealed that line 474 contained a single transgene insert. Challenging this line with different viruses (PRSV I, II and III subgroup) under greenhouse conditions validated the transgenic resistance of line 474 to the Hainan isolates. Northern blot analysis detected the siRNAs products in virus-free transgenic papaya tissue culture seedlings. The siRNAs also accumulated in PRSV infected transgenic papaya lines. Our results indicated that this transgenic papaya line has a useful application against PRSV in the major growing area of Hainan, China.
Title: Use of RNAi technology to develop a PRSV-resistant transgenic papaya
Description:
AbstractPapaya ringspot virus (PRSV) seriously limits papaya (Carica papaya L.
) production in tropical and subtropical areas throughout the world.
Coat protein (CP)- transgenic papaya lines resistant to PRSV isolates in the sequence-homology-dependent manner have been developed in the U.
S.
A.
and Taiwan.
A previous investigation revealed that genetic divergence among Hainan isolates of PRSV has allowed the virus to overcome the CP-mediated transgenic resistance.
In this study, we designed a comprehensive RNAi strategy targeting the conserved domain of the PRSV CP gene to develop a broader-spectrum transgenic resistance to the Hainan PRSV isolates.
We used an optimized particle-bombardment transformation system to produce RNAi-CP-transgenic papaya lines.
Southern blot analysis and Droplet Digital PCR revealed that line 474 contained a single transgene insert.
Challenging this line with different viruses (PRSV I, II and III subgroup) under greenhouse conditions validated the transgenic resistance of line 474 to the Hainan isolates.
Northern blot analysis detected the siRNAs products in virus-free transgenic papaya tissue culture seedlings.
The siRNAs also accumulated in PRSV infected transgenic papaya lines.
Our results indicated that this transgenic papaya line has a useful application against PRSV in the major growing area of Hainan, China.

Related Results

e0157 RNA interference targeting ACE and AT1R gene reduced blood pressure and improved myocardial remodelling in SHR
e0157 RNA interference targeting ACE and AT1R gene reduced blood pressure and improved myocardial remodelling in SHR
Introduction Angiotensin-converting enzyme (ACE) and angiotensin II (Ang II) Type 1 receptor (ATlR) have been shown to play an important role in the pathogenesis ...
The difference of Antibacterial properties extract seeds Papaya and Papaya leaves (Carica papaya L) against Streptococcus mutans
The difference of Antibacterial properties extract seeds Papaya and Papaya leaves (Carica papaya L) against Streptococcus mutans
Background: Streptococcus mutans is a bacterium that causes caries. Various attempts have been made to treat caries such as restoration and the use of toothpaste/mouthwash made fro...
Development and reproduction of Tetranychus cinnabarinus (Acari: Tetranychiae) on transgenic insect-resistant cotton plants
Development and reproduction of Tetranychus cinnabarinus (Acari: Tetranychiae) on transgenic insect-resistant cotton plants
The effects of two insect-resistant transgenic cotton strains (transgenic Bt pest-resistant cotton Zhongkangza 5 and Lumianyan 23, transgenic Bt+CpTI pest-resistant cotton sGK958 a...
Screening of F1 intergeneric hybrid progenies of papaya for papaya ringspot virus (PRSV) resistance
Screening of F1 intergeneric hybrid progenies of papaya for papaya ringspot virus (PRSV) resistance
The present investigation was undertaken to develop papaya ringspot virus (PRSV) resistant papaya hybrids through intergeneric hybridization. Intergeneric hybridization was done in...
Kinetika Perubahan Mutu Sediaan Sabun Padat Transparan Dari Ekstrak Daun Pepaya (Carica Papaya L.)
Kinetika Perubahan Mutu Sediaan Sabun Padat Transparan Dari Ekstrak Daun Pepaya (Carica Papaya L.)
Intisari— Daun pepaya mengandung pigmen klorofil yang dapat digunakan sebagai bahan pewarna alami. Oleh karenanya, kandungan klorofil dari daun pepaya dapat dimanfaatkan menjadi ba...
A non-canonical RNAi pathway controls virulence and genome stability in Mucorales
A non-canonical RNAi pathway controls virulence and genome stability in Mucorales
Abstract Epimutations in fungal pathogens are emerging as novel phenomena that could explain the fast-developing resistance to antifungal drugs a...
The effect of indigenous Arbuscular mycorrhizal fungi (AMF) on phyto-accumulation in Carica papaya hybrids
The effect of indigenous Arbuscular mycorrhizal fungi (AMF) on phyto-accumulation in Carica papaya hybrids
Papaya (Carica papaya L.) is a climacteric fruit with a resilient and distinctive aroma. The consumption of the fruit is global due to its high nutritive and medicinal values. Howe...

Back to Top