Literature DB >> 21895944

Resistance to Wheat streak mosaic virus generated by expression of an artificial polycistronic microRNA in wheat.

Muhammad Fahim1, Anthony A Millar, Craig C Wood, Philip J Larkin.   

Abstract

Wheat streak mosaic virus (WSMV) is a persistent threat to wheat production, necessitating novel approaches for protection. We developed an artificial miRNA strategy against WSMV, incorporating five amiRNAs within one polycistronic amiRNA precursor. Using miRNA sequence and folding rules, we chose five amiRNAs targeting conserved regions of WSMV but avoiding off-targets in wheat. These replaced the natural miRNA in each of five arms of the polycistronic rice miR395, producing amiRNA precursor, FanGuard (FGmiR395), which was transformed into wheat behind a constitutive promoter. Splinted ligation detected all five amiRNAs being processed in transgenic leaves. Resistance was assessed over two generations. Three types of response were observed in T(1) plants of different transgenic families: completely immune; initially resistant with resistance breaking down over time; and initially susceptible followed by plant recovery. Deep sequencing of small RNAs from inoculated leaves allowed the virus sequence to be assembled from an immune transgenic, susceptible transgenic, and susceptible non-transgenic plant; the amiRNA targets were fully conserved in all three isolates, indicating virus replication on some transgenics was not a result of mutational escape by the virus. For resistant families, the resistance segregated with the transgene. Analysis in the T(2) generation confirmed the inheritance of immunity and gave further insights into the other phenotypes. Stable resistant lines developed no symptoms and no virus by ELISA; this resistance was classified as immunity when extracts failed to transmit from inoculated leaves to test plants. This study demonstrates the utility of a polycistronic amiRNA strategy in wheat against WSMV.
© 2011 CSIRO. Plant Biotechnology Journal © 2011 Society for Experimental Biology, Association of Applied Biologists and Blackwell Publishing Ltd.

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Year:  2011        PMID: 21895944     DOI: 10.1111/j.1467-7652.2011.00647.x

Source DB:  PubMed          Journal:  Plant Biotechnol J        ISSN: 1467-7644            Impact factor:   9.803


  37 in total

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Journal:  Protein Cell       Date:  2013-03-13       Impact factor: 14.870

4.  Fast-forward generation of effective artificial small RNAs for enhanced antiviral defense in plants.

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Journal:  3 Biotech       Date:  2022-02-12       Impact factor: 2.406

9.  Transgenic resistance to Bamboo mosaic virus by expression of interfering satellite RNA.

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10.  Engineering Artificial MicroRNAs for Multiplex Gene Silencing and Simplified Transgenic Screen.

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Journal:  Plant Physiol       Date:  2018-10-05       Impact factor: 8.340

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