Epigenetic Modulating Chemicals Significantly Affect the Virulence and Genetic Characteristics of the Bacterial Plant Pathogen Xanthomonas campestris pv. campestris

被引:4
|
作者
Baranek, Miroslav [1 ]
Kovacova, Viera [2 ]
Gazdik, Filip [1 ]
Spetik, Milan [1 ]
Eichmeier, Ales [1 ]
Pulawska, Joanna [3 ]
Barankova, Katerina [1 ]
机构
[1] Mendel Univ Brno, Fac Hort, Mendeleum Inst Genet, Lednice 69144, Czech Republic
[2] Univ Cologne, Inst Biol Phys, D-50923 Cologne, Germany
[3] Res Inst Hort, Dept Phytopathol, PL-96100 Skierniewice, Poland
关键词
bacterial epigenetics; DNA methylation; virulence; Xanthomonas campestris; dual RNA-seq; RESTRICTION-MODIFICATION SYSTEMS; DNA METHYLATION; 5-AZACYTIDINE; ROLES; IDENTIFICATION; ACETYLATION; INHIBITION; EXPRESSION; SIRTUINS; NITROGEN;
D O I
10.3390/genes12060804
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Epigenetics is the study of heritable alterations in phenotypes that are not caused by changes in DNA sequence. In the present study, we characterized the genetic and phenotypic alterations of the bacterial plant pathogen Xanthomonas campestris pv. campestris (Xcc) under different treatments with several epigenetic modulating chemicals. The use of DNA demethylating chemicals unambiguously caused a durable decrease in Xcc bacterial virulence, even after its reisolation from infected plants. The first-time use of chemicals to modify the activity of sirtuins also showed some noticeable results in terms of increasing bacterial virulence, but this effect was not typically stable. Changes in treated strains were also confirmed by using methylation sensitive amplification (MSAP), but with respect to registered SNPs induction, it was necessary to consider their contribution to the observed polymorphism. The molecular basis of the altered virulence was deciphered by using dualRNA-seq analysis of treated Xcc strains infecting Brassica rapa plants. The results of the present study should promote more intensive research in the generally understudied field of bacterial epigenetics, where artificially induced modification by epigenetic modulating chemicals can significantly increase the diversity of bacterial properties and potentially contribute to the further development of the fields, such as bacterial ecology and adaptation.
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页数:20
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