Complete genome dynamics of a dominant-lineage strain of Xanthomonas oryzae pv. oryzae harbouring a novel plasmid encoding a type IV secretion system
Date
2019
Journal Title
Journal ISSN
Volume Title
Publisher
Microbiology Society
Abstract
Xanthomonas oryzae pv. oryzae (Xoo) is a serious pathogen causing bacterial blight disease in rice. Population genomic studies
have revealed that rampant inter-strain rather than inter-lineage differences are contributing to the evolutionary success of
this pathogen. Here, we report the complete genome sequence of BXO1, a strain of Xoo belonging to a dominant lineage from
India. A complete genome-based investigation revealed the presence of two plasmids, pBXO1-1 (66.7kb) and pBXO1-2 (25.6kb).
The pBXO1-1 plasmid encodes 71 genes, 38 of which encode hypothetical proteins of unknown function. However, these hypothetical genes possess atypical GC content, pointing towards their acquisition and movement through horizontal gene transfer.
Interestingly, pBXO1-2 encodes a type IV secretion system (T4SS), which is known to play an important role in the conjugative
transfer of genetic material, and also provides fitness to pathogenic bacteria for their enhanced survival. Neither plasmid has
been reported previously in any other complete Xoo genome published to date. Our analysis also revealed that the pBXO1-2
plasmid is present in Xanthomonas albilineans str. GPE PC73, which is known to cause leaf scald, a lethal disease in sugarcane.
Our complete genome sequence analysis of BXO1 has provided us with detailed insights into the two novel strain-specific plasmids, in addition to decoding their functional capabilities, which were not assessable when using the draft genome sequence
of the strain. Overall, our study has revealed the mobility of a novel T4SS in two pathogenic species of Xanthomonas that infect
the vascular tissues of two economically important monocot plants, i.e. rice and sugarcane.
Description
Accepted date: 27 August 2019
Keywords
Xanthomonas, type IV secretion system, monocots, xylem, nanopore sequencing
Citation
Access Microbiology, 1(9): e000063
