Liu Zhenghui, Sheng Hongyan, Okorley Benjamin Azu, Li Yu, Sossah Frederick Leo
Department of Plant Protection, Shenyang Agricultural University, Shenyang 110866, China.
Engineering Research Center of Chinese Ministry of Education for Edible and Medicinal Fungi, Jilin Agricultural University, Changchun 130118, China.
Pathogens. 2020 Apr 28;9(5):330. doi: 10.3390/pathogens9050330.
is a cosmopolitan bacterial pathogen that has been isolated from many hosts. Here, we sequenced a high-quality genome of B6-1 isolated from , an important cultivated mushroom, performed a comparative genomic analysis with four other strains from various origins, and tested the susceptibility of B6-1 to antibiotics. The genome size, predicted genes, and GC (guanine-cytosine) content of B6-1 was 4.67 Mb, 4301, and 53.80%, respectively. The origin of the strains did not significantly affect the phylogeny, but mobile genetic elements shaped the evolution of the genus . The strains encoded a set of common genes for type secretion, virulence effectors, CAZymes, and toxins required for pathogenicity in all hosts. They also had antibiotic resistance, pigments to suppress or evade host defense responses, as well as genes for adaptation to different environmental conditions, including temperature, oxidation, and nutrients. These findings provide a better understanding of the virulence, antibiotic resistance, and host adaptation strategies of , and they also contribute to the development of effective control strategies.
是一种已从许多宿主中分离出来的世界性细菌病原体。在此,我们对从重要栽培蘑菇中分离出的B6 - 1进行了高质量基因组测序,与其他4株来自不同来源的菌株进行了比较基因组分析,并测试了B6 - 1对抗生素的敏感性。B6 - 1的基因组大小、预测基因数和GC(鸟嘌呤 - 胞嘧啶)含量分别为4.67 Mb、4301和53.80%。菌株的来源对系统发育没有显著影响,但移动遗传元件塑造了该属的进化。这些菌株编码了一组在所有宿主中致病性所需的用于分泌型、毒力效应子、碳水化合物活性酶和毒素的共同基因。它们还具有抗生素抗性、抑制或逃避宿主防御反应的色素,以及适应不同环境条件(包括温度、氧化和营养)的基因。这些发现有助于更好地理解该病原体的毒力、抗生素抗性和宿主适应策略,也有助于制定有效的控制策略。