Complete genome resources for Xylella fastidiosa strains AlmaEM3 and BB08-1 reveal prophage-associated structural variation among blueberry-infecting strains.

Author:

O'Leary Michael1,Arias-Giraldo Luis F. F.2,Burbank Lindsey3,De La Fuente Leonardo4,Landa Blanca B.5

Affiliation:

1. USDA-ARS San Joaquin Valley Agricultural Sciences Center, 57733, 9611 S. Riverbend Ave, Parlier, California, United States, 93648-9757;

2. Institute for Sustainable Agriculture - CSIC, Crop Protection, Avenida Menéndez Pidal s/n. Campus Alameda del Obispo, Cordoba, Cordoba, Spain, 14004;

3. USDA-ARS, Crop Diseases Pests and Genetics Research Unit, 9611 S Riverbend Ave, Parlier, California, United States, 93648;

4. Auburn University, Entomology and Plant Pathology, 209 Life Sciecnes Building, Auburn, Alabama, United States, 36849, , ;

5. Institute for Sustainable Agriculture - CSIC, Crop Protection, alameda del obispo s/n, Cordoba, Cordoba, Spain, 14080;

Abstract

Xylella fastidiosa is a gram-negative plant pathogenic bacterium with wide geographical distribution and host range. X. fastidiosa strains are separated into genetically distinct subspecies, and further categorized into sequence types (ST). Genetic characterization of X. fastidiosa strains infecting blueberry has revealed that strains of subspecies multiplex and fastidiosa are capable of causing bacterial leaf scorch disease of blueberry under field conditions. To better elucidate the relationships among blueberry-infecting X. fastidiosa subsp. multiplex strains, we completed the genomes of an ST 42 strain, AlmaEM3, and a ST 43 strain, BB08-1, using a hybrid assembly approach. Comparison of these assemblies reveals a large (0.95 Mb) chromosomal inversion in BB08-1 relative to AlmaEM3 and the reference strain M12, likely resulting from recombination between prophage regions.

Publisher

Scientific Societies

Subject

Plant Science,Agronomy and Crop Science

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