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Leek Yellow Stripe Virus Can Adjust for Host Adaptation by Trimming the N-Terminal Domain to Allow the P1 Protein to Function as an RNA Silencing Suppressor |
Jun Sasaki, Shusuke Kawakubo, Hangil Kim, Ok-Kyung Kim, Kazuo Yamashita, Hanako Shimura, Chikara Masuta |
Plant Pathol J. 2022;38(4):383-394. Published online August 1, 2022 DOI: https://doi.org/10.5423/PPJ.FT.06.2022.0077 |
Leek Yellow Stripe Virus Can Adjust for Host Adaptation by Trimming the N-Terminal Domain to Allow the P1 Protein to Function as an RNA Silencing Suppressor Functional comparison of RNA silencing suppressor between the p5 protein of rice grassy stunt virus and the p3 protein of rice stripe virus V2 protein encoded by Tomato yellow leaf curl China virus is an RNA silencing suppressor Aphid transmissibility of onion yellow dwarf virus isolates with an N-terminal truncated HC-Pro is aided by leek yellow stripe virus The P1 Protein of Watermelon mosaic virus Compromises the Activity as RNA Silencing Suppressor of the P25 Protein of Cucurbit yellow stunting disorder virus Virus-Induced Necrosis Is a Consequence of Direct Protein-Protein Interaction between a Viral RNA-Silencing Suppressor and a Host Catalase
Transgenic rice expressing rice stripe virus NS3 protein, a suppressor of RNA silencing, shows resistance to rice blast disease Silencing suppressor protein PRT of rice tungro bacilliform virus interacts with the plant RNA silencing-related protein SGS3 Variability in the P1 gene helps to refine phylogenetic relationships among leek yellow stripe virus isolates from garlic Host-specific adaptation drove the coevolution of leek yellow stripe virus and
Allium
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