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Whole genome sequence of two Rathayibacter toxicus strains reveals a tunicamycin biosynthetic cluster similar to Streptomyces chartreusis

机译:两株Ratayibacter toxicus菌株的全基因组序列揭示了与黄绿色链霉菌相似的衣霉素生物合成簇

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摘要

Rathayibacter toxicus is a forage grass associated Gram-positive bacterium of major concern to food safety and agriculture. This species is listed by USDA-APHIS as a plant pathogen select agent because it produces a tunicamycin-like toxin that is lethal to livestock and may be vectored by nematode species native to the U.S. The complete genomes of two strains of R. toxicus, including the type strain FH-79, were sequenced and analyzed in comparison with all available, complete R. toxicus genomes. Genome sizes ranged from 2,343,780 to 2,394,755 nucleotides, with 2079 to 2137 predicted open reading frames; all four strains showed remarkable synteny over nearly the entire genome, with only a small transposed region. A cluster of genes with similarity to the tunicamycin biosynthetic cluster from Streptomyces chartreusis was identified. The tunicamycin gene cluster (TGC) in R. toxicus contained 14 genes in two transcriptional units, with all of the functional elements for tunicamycin biosynthesis present. The TGC had a significantly lower GC content (52%) than the rest of the genome (61.5%), suggesting that the TGC may have originated from a horizontal transfer event. Further analysis indicated numerous remnants of other potential horizontal transfer events are present in the genome. In addition to the TGC, genes potentially associated with carotenoid and exopolysaccharide production, bacteriocins and secondary metabolites were identified. A CRISPR array is evident. There were relatively few plant-associated cell-wall hydrolyzing enzymes, but there were numerous secreted serine proteases that share sequence homology to the pathogenicity-associated protein Pat-1 of Clavibacter michiganensis. Overall, the genome provides clear insight into the possible mechanisms for toxin production in R. toxicus, providing a basis for future genetic approaches.
机译:毒鼠李是与饲料草相关的革兰氏阳性细菌,是食品安全和农业的主要关注点。该物种被USDA-APHIS列为植物病原体选择剂,因为它产生类衣霉素样毒素,该毒素对牲畜具有致命性,并且可以由美国本土的线虫物种作为载体。两种毒性毒杆菌菌株的完整基因组,包括对FH-79型菌株进行了测序,并与所有可用的完整的毒理球菌基因组进行了比较。基因组大小范围从2,343,780到2,394,755个核苷酸,具有2079至2137个预测的开放阅读框;这四个菌株几乎在整个基因组上都表现出惊人的同义性,只有一个小的转座区。鉴定了与来自黄绿色链霉菌的衣霉素生物合成簇相似的基因簇。毒性罗非鱼中的衣霉素基因簇(TGC)在两个转录单位中包含14个基因,并且存在衣霉素生物合成的所有功能元件。 TGC的GC含量(52%)显着低于其余基因组(61.5%),这表明TGC可能起源于水平转移事件。进一步的分析表明,基因组中还存在许多其他潜在的水平转移事件的残留物。除了TGC,还鉴定了可能与类胡萝卜素和胞外多糖产生,细菌素和次生代谢产物相关的基因。 CRISPR阵列很明显。与植物相关的细胞壁水解酶相对较少,但是有许多分泌的丝氨酸蛋白酶,它们与密歇根氏杆菌的致病性相关蛋白Pat-1具有序列同源性。总体而言,该基因组提供了对毒杀性毒素中可能产生毒素的机制的清晰见解,为将来的遗传方法提供了基础。

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