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Journal Article

CRISPR/SpCas9-mediated KO of epigenetically active MORC proteins increases barley resistance to Bipolaris spot blotch and Fusarium root rot

Matteo Galli; Selina Hochstein; Danish Iqbal; Martina Claar; Jafargholi Imani; Karl-Heinz Kogel
Journal of Plant Diseases and Protection · Vol. 129, Issue 4 · pp. 1005-1011 · 2022

Abstract

Microrchidia (MORC) proteins are fundamental regulators of genome stabilization, chromatin remodeling and gene expression in both mammals and plants. In Arabidopsis, their activity is linked to the RNA-directed DNA methylation (RdDM) pathway, which utilizes small RNAs (sRNAs) to influence the rate of DNA methylation and chromatin compaction and thus gene expression. In barley, there are a total of seven members of the MORC family, and recent advances showed that Hv MORC1 and Hv MORC6a also interact with components of the RdDM pathway. CRISPR/ Sp Cas9-mediated single and double knock-out mutants showed de-repression of transposable elements ( TEs ) and pathogenesis-related ( PR ) genes and interestingly increased resistance to both biotrophic and necrotrophic plant pathogenic fungi. In this study, we further demonstrate the requirement of MORC proteins in the resistance against two devastating cereal diseases, Bipolaris spot blotch , caused by Bipolaris sorokiniana and Fusarium root rot, caused by Fusarium graminearum .

Bibliographic Information

JournalJournal of Plant Diseases and Protection
PublisherSpringer
Publication Date2022-08-01
Publication Year2022
Volume129
Issue4
Pages1005-1011
Document TypeJournal Article
Print ISSN1861-3829
eISSN1861-3837
DOI10.1007/s41348-022-00574-y

Access Information

NARA Access Coverage2003-01-01~Current
Journal Homepagehttps://www.springer.com/journal/41348
Publisher PageOpen Publisher Page
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