2011Unpublished venueRequires access

Analysis Of 14-3-3 R Proteins Involved In Disease Resistance Using Virus-Induced Gene Silencing

Frank Gabriel Campos, Brian Zimmerman, Roman Empleo, Melanie A. Sacco

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Abstract

Plants utilize a variety of defense mechanisms against invading pathogens. RNA-interference (RNAi) is a defense mechanism that plants use to combat viruses1. Double-stranded virus RNA is recognized by host Dicer, an endonuclease that is part of the plant’s immune system, and cleaved at different positions creating 21-25 base pair small interfering RNAs (siRNAs)2. The siRNA becomes part of the RNA-induced silencing complex (RISC) with the protein Argonaute, and is used to locate complementary viral or host mRNAs. Once the complementary strand is located, it is cleaved by Argonaute, a protein component of RISC(Fig. 1), effectively silencing the gene. This phenomenon allows RNA viruses to be used as vectors for silencing host genes in a process termed virus-induced gene silencing (VIGS).

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What this paper is about

Plants utilize a variety of defense mechanisms against invading pathogens. RNA-interference (RNAi) is a defense mechanism that plants use to combat viruses1. Double-stranded virus RNA is recognized by host Dicer, an endonuclease that is part of the plant’s immune system, and cleaved at different positions creating 21-25 base pair small interfering RNAs (siRNAs)2. The siRNA becomes part of the RNA-induced silencing complex (RISC) with the protein Argonaute, and is used to locate complementary viral or host mRNAs. Once the complementary strand is located, it is cleaved by Argonaute, a protein component of RISC(Fig. 1), effectively silencing the gene. This phenomenon allows RNA viruses to be used as vectors for silencing host genes in a process termed virus-induced gene silencing (VIGS).

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Available abstract

Plants utilize a variety of defense mechanisms against invading pathogens. RNA-interference (RNAi) is a defense mechanism that plants use to combat viruses1. Double-stranded virus RNA is recognized by host Dicer, an endonuclease that is part of the plant’s immune system, and cleaved at different positions creating 21-25 base pair small interfering RNAs (siRNAs)2. The siRNA becomes part of the RNA-induced silencing complex (RISC) with the protein Argonaute, and is used to locate complementary viral or host mRNAs. Once the complementary strand is located, it is cleaved by Argonaute, a protein component of RISC(Fig. 1), effectively silencing the gene. This phenomenon allows RNA viruses to be used as vectors for silencing host genes in a process termed virus-induced gene silencing (VIGS).

Key concepts: Argonaute, RNA-induced silencing complex, Trans-acting siRNA, RNA silencing, Dicer, Gene silencing, RNA interference, Biology

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