Search bioRxivSearch

Biology subjects

Midha, S.

Publications and source records attributed to Midha, S..

2 recordsLinked to original sources

Biofilm forming capabilities and protein secretion systems distinguish ecologically diverse lineages of Xanthomonas from rice

Xanthomonas oryzae is a devastating pathogen of rice worldwide, however, X. sontii and X. maliensis are its non-pathogenic counterparts from the same host. So far, these non-pathogenic isolates were overlooked due to their less economic importance and lack of genomic information. We have carried out detailed ecological and evolutionary study focusing on diverse lifestyles of these strains. Phylogenomic analysis revealed two major lineages corresponding to X. sontii (ML-I) and X. oryzae (ML-II) species. Interestingly, one of the non-pathogenic Xanthomonas strains belonging to X. maliensis is intermediary to both the major lineages/species suggesting on-going diversification and selection. Accordingly, pangenome analysis revealed large number of lifestyle specific genes with atypical GC content indicating role of horizontal gene transfer in genome diversification. Our comprehensive comparative genomic investigation of major lineages has revealed that impact of recombination is more for X. sontii as compared to X. oryzae. Acquisition of type III secretion system and its effectome along with a type VI secretion system also seem to have played a major role in the pathogenic lineage. Other known key pathogenicity clusters or genes like biofilm forming cluster, cellobiohydrolase and non-fimbrial adhesin (yapH) are exclusive to pathogenic lineage. However, commonality of loci encoding exopolysacharide, rpf signalling molecule, iron-uptake, xanthomonadin pigment, etc. suggests their essentiality in host adaptation. Overall, this study reveals evolutionary history of pathogenic and non-pathogenic strains and will further open up a new avenue for better management of pathogenic strains for sustainable cultivation of a major staple food crop.

evolutionary biology

A strain of an emerging Indian pathotype of Xanthomonas oryzae pv. oryzae defeats the rice bacterial blight resistance gene xa13 without inducing a clade III SWEET gene and is nearly identical to a recent Thai isolate

The rice bacterial blight pathogen Xanthomonas oryzae pv. oryzae (Xoo) injects transcription activator-like effectors (TALEs) that bind and activate host susceptibility (S) genes important for disease. Clade III SWEET genes are major S genes for bacterial blight. The resistance genes xa5, which reduces TALE activity generally, and xa13, a SWEET11 allele not recognized by the cognate TALE, have been effectively deployed. However, strains that defeat both resistance genes individually were recently reported in India and Thailand. To gain insight into the mechanism(s), we completely sequenced the genome of one such strain from each country and examined the encoded TALEs. Strikingly, the two strains are clones, sharing nearly identical TALE repertoires, including a TALE known to activate SWEET11 strongly enough to be effective even when diminished by xa5. We next investigated SWEET gene induction by the Indian strain. The Indian strain induced no clade III SWEET in plants harbouring xa13, indicating a pathogen adaptation that relieves dependence on these genes for susceptibility. The findings open a door to mechanistic understanding of the role SWEET genes play in susceptibility and illustrate the importance of complete genome sequence-based monitoring of Xoo populations in developing varieties with effective disease resistance.

pathology