Identification of receptor-like proteins induced by Sclerotinia sclerotiorum in Brassica napus

Author:

Li Wei,Lu Junxing,Yang Chenghuizi,Xia Shitou

Abstract

Heightening the resistance of plants to microbial infection is a widely concerned issue, especially for economical crops. Receptor-like proteins (RLPs), typically with tandem leucine-rich repeats (LRRs) domain, play a crucial role in mediating immune activation, being an indispensable constituent in the first layer of defense. Based on an analysis of orthologs among Brassica rapa, Brassica oleracea, and Brassica napus using Arabidopsis thaliana RLPs as a reference framework, we found that compared to A. thaliana, there were some obvious evolutionary diversities of RLPs among the three Brassicaceae species. BnRLP encoding genes were unevenly distributed on chromosomes, mainly on chrA01, chrA04, chrC03, chrC04, and chrC06. The orthologs of five AtRLPs (AtRLP3, AtRLP10, AtRLP17, AtRLP44, and AtRLP51) were highly conserved, but retrenchment and functional centralization occurred in Brassicaceae RLPs during evolution. The RLP proteins were clustered into 13 subgroups. Ten BnRLPs presented expression specificity between R and S when elicited by Sclerotinia sclerotiorum, which might be fabulous candidates for S. sclerotiorum resistance research.

Publisher

Frontiers Media SA

Subject

Plant Science

Reference59 articles.

1. An RLP23-SOBIR1-BAK1 complex mediates NLP-triggered immunity;Albert;Nat Plants,2015

2. Fitting a mixture model by expectation maximization to discover motifs in biopolymers;Bailey;Proc. Int. Conf. Intell. Syst. Mol. Biol.,1994

3. Variation in abundance of predicted resistance genes in the Brassica oleracea pangenome;Bayer;Plant Biotechnol. J.,2019

4. Transcriptome analysis of the Brassica napus-Leptosphaeria maculans pathosystem identifies receptor, signaling and structural genes underlying plant resistance;Becker;Plant J.,2017

5. The HcrVf2 gene from a wild apple confers scab resistance to a transgenic cultivated variety;Belfanti;Proc. Natl. Acad. Sci. USA.,2004

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