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Widespread premature transcription termination of Arabidopsis thaliana NLR genes by the spen protein FPA.


ABSTRACT: Genes involved in disease resistance are some of the fastest evolving and most diverse components of genomes. Large numbers of nucleotide-binding, leucine-rich repeat (NLR) genes are found in plant genomes and are required for disease resistance. However, NLRs can trigger autoimmunity, disrupt beneficial microbiota or reduce fitness. It is therefore crucial to understand how NLRs are controlled. Here, we show that the RNA-binding protein FPA mediates widespread premature cleavage and polyadenylation of NLR transcripts, thereby controlling their functional expression and impacting immunity. Using long-read Nanopore direct RNA sequencing, we resolved the complexity of NLR transcript processing and gene annotation. Our results uncover a co-transcriptional layer of NLR control with implications for understanding the regulatory and evolutionary dynamics of NLRs in the immune responses of plants.

SUBMITTER: Parker MT 

PROVIDER: S-EPMC8116057 | biostudies-literature | 2021 Apr

REPOSITORIES: biostudies-literature

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Widespread premature transcription termination of <i>Arabidopsis thaliana</i> NLR genes by the spen protein FPA.

Parker Matthew T MT   Knop Katarzyna K   Zacharaki Vasiliki V   Sherwood Anna V AV   Tomé Daniel D   Yu Xuhong X   Martin Pascal Gp PG   Beynon Jim J   Michaels Scott D SD   Barton Geoffrey J GJ   Simpson Gordon G GG  

eLife 20210427


Genes involved in disease resistance are some of the fastest evolving and most diverse components of genomes. Large numbers of nucleotide-binding, leucine-rich repeat (NLR) genes are found in plant genomes and are required for disease resistance. However, NLRs can trigger autoimmunity, disrupt beneficial microbiota or reduce fitness. It is therefore crucial to understand how NLRs are controlled. Here, we show that the RNA-binding protein FPA mediates widespread premature cleavage and polyadenyla  ...[more]

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