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Eukaryotic translation initiation factor 2B-beta ( eIF2Bβ), a new class of plant virus resistance gene.

Authors :
Shopan, Jannat
Mou, Haipeng
Zhang, Lili
Zhang, Changtong
Ma, Weiwei
Walsh, John A.
Hu, Zhongyuan
Yang, Jinghua
Zhang, Mingfang
Source :
Plant Journal. Jun2017, Vol. 90 Issue 5, p929-940. 12p.
Publication Year :
2017

Abstract

Recessive resistances to plant viruses in the Potyvirus genus have been found to be based on mutations in the plant eukaryotic translation initiation factors, eIF4E and eIF4G or their isoforms. Here we report that natural, monogenic recessive resistance to the Potyvirus Turnip mosaic virus (Tu MV) has been found in a number of mustard ( Brassica juncea) accessions. Bulked segregant analysis and sequencing of resistant and susceptible plant lines indicated the resistance is controlled by a single recessive gene, re cessive T u MV r esistance 03 ( retr03), an allele of the eukaryotic translation initiation factor 2B-beta ( eIF2Bβ). Silencing of eIF2Bβ in a Tu MV-susceptible mustard plant line and expression of eIF2Bβ from a Tu MV-susceptible line in a Tu MV-resistant mustard plant line confirmed the new resistance mechanism. A functional copy of a specific allele of eIF2Bβ is required for efficient Tu MV infection. eIF2Bβ represents a new class of virus resistance gene conferring resistance to any pathogen. eIF2B acts as a guanine nucleotide exchange factor ( GEF) for its GTP-binding protein partner eIF2 via interaction with eIF2· GTP at an early step in translation initiation. Further genotyping indicated that a single non-synonymous substitution (A120G) in the N-terminal region of eIF2Bβ was responsible for the Tu MV resistance. A reproducible marker has been developed, facilitating marker-assisted selection for Tu MV resistance in B. juncea. Our findings provide a new target for seeking natural resistance to potyviruses and new opportunities for the control of potyviruses using genome editing techniques targeted on eIF2Bβ. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09607412
Volume :
90
Issue :
5
Database :
Academic Search Index
Journal :
Plant Journal
Publication Type :
Academic Journal
Accession number :
123225693
Full Text :
https://doi.org/10.1111/tpj.13519