bioRxiv · 10.1101/2021.03.05.432875
An atypical class of non-coding small RNAs produced in rice leaves upon bacterial infection
Abstract
Non-coding small RNAs (sRNA) act as mediators of gene silencing and regulate plant growth, development and stress responses. Early insights into plant sRNAs established a role in antiviral defense and they are now extensively studied across plant-microbe interactions. Here, sRNA sequencing discovered a class of sRNA in rice (Oryza sativa) specifically associated with foliar diseases caused by Xanthomonas oryzae bacteria. Xanthomonas-induced small RNAs (xisRNAs) loci were distinctively upregulated in response to diverse virulent strains at an early stage of infection producing a single duplex of 20-22nt sRNAs. xisRNAs production was dependent on the Type III secretion system, a major bacterial virulence factor for host colonization. xisRNA loci overlap with annotated transcripts sequences often encoding protein kinase domain proteins. A number of the corresponding rice cis-genes have documented functions in immune signaling and some xisRNA loci coincide with the coding sequence of a conserved kinase motif. xisRNAs exhibit features of small interfering RNAs and their biosynthesis depend on canonical components OsDCL1 and OsHEN1. xisRNA induction possibly mediates post-transcriptional gene silencing but they do not broadly suppress cis-genes expression on the basis of mRNA-seq data. Overall, our results identify a group of unusual sRNAs with a potential role in plant-microbe interactions.
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Reshetnyak, G., Jacobs, J. M., Auguy, F., Sciallano, C., Claude, L., Medina, C., Perez Quintero, A., Comte, A., Thomas, E., Bogdanove, A. J., Koebnik, R., Szurek, B., Dievart, A., Brugidou, C., Lacombe, S., Cunnac, S.. 2021-03-05. An atypical class of non-coding small RNAs produced in rice leaves upon bacterial infection. https://doi.org/10.1101/2021.03.05.432875
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