Comprehensive genome analysis of a pangolin-associatedParaburkholderia fungorumprovides new insights into its secretion systems and virulence

Author:

Tan Ka Yun12,Dutta Avirup23,Tan Tze King24,Hari Ranjeev2,Othman Rofina Y.15,Choo Siew Woh6

Affiliation:

1. Institute of Biological Sciences, Faculty of Science, Universiti Malaya, Kuala Lumpur, Malaysia

2. Genome Informatics Research Laboratory, Centre for Research in Biotechnology for Agriculture (CEBAR), High Impact Research Building, Universiti Malaya, Kuala Lumpur, Malaysia

3. The Novo Nordisk Foundation Center for Basic Metabolic Research, Human Genomics and Metagenomics in Metabolism, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark

4. Cancer Science Institute of Singapore, National University of Singapore, Singapore

5. Centre for Research in Biotechnology for Agriculture (CEBAR), Level 3, Research Management & Innovation Complex, Universiti Malaya, Copenhagen, Kuala Lumpur, Malaysia

6. College of Science and Technology, Wenzhou-Kean University, Wenzhou, Zhejiang Province, China

Abstract

BackgroundParaburkholderia fungorum (P. fungorum)is a Gram-negative environmental species that has been commonly used as a beneficial microorganism in agriculture as an agent for biocontrol and bioremediation. Its use in agriculture is controversial as many people believe that it could harm human health; however, there is no clear evidence to support.MethodologyThe pangolinP. fungorum(pangolin Pf) genome has a genomic size of approximately 7.7 Mbps with N50 of 69,666 bps. Our study showed that pangolin Pf is aParaburkholderia fungorumsupported by evidence from the core genome SNP-based phylogenetic analysis and the ANI analysis. Functional analysis has shown that the presence of a considerably large number of genes related to stress response, virulence, disease, and defence. Interestingly, we identified different types of secretion systems in the genome of pangolin Pf, which are highly specialized and responsible for a bacterium’s response to its environment and in physiological processes such as survival, adhesion, and adaptation. The pangolin Pf also shared some common virulence genes with the known pathogenic member of the Burkholderiales. These genes play important roles in adhesion, motility, and invasion.ConclusionThis study may provide better insights into the functions, secretion systems and virulence of this pangolin-associated bacterial strain. The addition of this genome sequence is also important for future comparative analysis and functional work ofP. fungorum.

Funder

Wenzhou-Kean University

UM High Impact Research

The Ministry of Higher Education of Malaysia

The Centre for Research in Biotechnology for Agriculture

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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