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Genome Sequence Resource of Bacillus velezensis EB14, a Native Endophytic Bacterial Strain with Biocontrol Potential Against the Poplar Stem Canker Causative Pathogen, Sphaerulina musiva
Author(s) -
N. Sachin,
Adrian Tsang,
R. Uma Shaanker,
Selvadurai Dayanandan
Publication year - 2021
Publication title -
phytopathology
Language(s) - English
Resource type - Journals
eISSN - 1943-7684
pISSN - 0031-949X
DOI - 10.1094/phyto-09-20-0433-a
Subject(s) - biology , genome , canker , whole genome sequencing , gene , pathogen , genetics , biological pest control , botany , microbiology and biotechnology
Bacillus velezensis EB14, isolated from a leaf of Populus × jackii, possesses antagonistic activity against Sphaerulina musiva, a fungal pathogen of Populus sp. that causes leaf spots and stem cankers on poplars, limiting the utility of hybrid poplars as plantation trees. We sequenced the genome of B. velezensis EB14 to gain insights into the underlying basis of its antagonistic activity. Here, we report the complete genome sequence of B. velezensis EB14, a gram-positive bacterium of the family Bacillaceae. Through antiSMASH analysis, we predicted several gene clusters coding for the biosynthesis of antimicrobial compounds and several genes involved in plant bacterial interactions. These findings support the potential of developing B. velezensis EB14 as a biocontrol agent against S. musiva in poplar plantations. The genome of B. velezensis EB14 along with genome sequences of closely related B. velezensis species are invaluable for comparative genomic analyses to gain insights into bacterial, fungal, and host plant interactions.

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