...
首页> 外文期刊>BMC Genomics >Genomic and metabolic comparison with Dickeya dadantii 3937 reveals the emerging Dickeya solani potato pathogen to display distinctive metabolic activities and T5SS/T6SS-related toxin repertoire
【24h】

Genomic and metabolic comparison with Dickeya dadantii 3937 reveals the emerging Dickeya solani potato pathogen to display distinctive metabolic activities and T5SS/T6SS-related toxin repertoire

机译:与Dickeya dadantii 3937的基因组和代谢比较显示,新兴的Dickeya solani马铃薯病原体显示出独特的代谢活性和与T5SS / T6SS相关的毒素库

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Background The pectinolytic enterobacteria of the Pectobacterium and Dickeya genera are causative agents of maceration-associated diseases affecting a wide variety of crops and ornamentals. For the past decade, the emergence of a novel species D. solani was observed in potato fields in Europe and the Mediterranean basin. The purpose of this study is to search by comparative genomics the genetic traits that could be distinctive to other Dickeya species and be involved in D. solani adaptation to the potato plant host. Results D. solani 3337 exhibits a 4.9?Mb circular genome that is characterized by a low content in mobile elements with the identification of only two full length insertion sequences. A genomic comparison with the deeply-annotated model D. dadantii 3937 strain was performed. While a large majority of Dickeya virulence genes are shared by both strains, a few hundreds genes of D. solani 3337, mostly regrouped in 25 genomic regions, are distinctive to D. dadantii 3937. These genomic regions are present in the other available draft genomes of D. solani strains and interestingly some of them were not found in the sequenced genomes of the other Dickeya species. These genomic regions regroup metabolic genes and are often accompanied by genes involved in transport systems. A metabolic analysis correlated some metabolic genes with distinctive functional traits of both D. solani 3337 and D. dadantii 3937. Three identified D. solani genomic regions also regroup NRPS/PKS encoding genes. In addition, D. solani encodes a distinctive arsenal of T5SS and T6SS-related toxin-antitoxin systems. These genes may contribute to bacteria-bacteria interactions and to the fitness of D. solani to the plant environment. Conclusions This study highlights the genomic specific traits of the emerging pathogen D. solani and will provide the basis for studying those that are involved in the successful adaptation of this emerging pathogen to the potato plant host.
机译:背景技术果胶杆菌属和迪卡属属的果胶分解肠杆菌是与浸软相关疾病的病原体,影响多种农作物和观赏植物。在过去的十年中,在欧洲和地中海盆地的马铃薯田中观察到了一种新种茄茄(D. solani)的出现。这项研究的目的是通过比较基因组学来寻找与其他迪基亚物种不同并可能与茄科D.solani对马铃薯寄主适应性有关的遗传特征。结果solani 3337展示了一个4.9?Mb环状基因组,其特征在于可移动元素含量低,仅鉴定了两个全长插入序列。与深注释的D. dadantii 3937菌株进行了基因组比较。虽然Dickeya毒力基因的大部分都由两种菌株共享,但D. solani 3337的数百个基因(主要在25个基因组区域重组)是D. dadantii 3937所特有的。这些基因组区域存在于其他可用的基因组草图中D. solani菌株,有趣的是其中一些在其他Dickeya物种的测序基因组中未发现。这些基因组区域重新组合了代谢基因,并经常伴有与转运系统有关的基因。代谢分析将D. solani 3337和D. dadantii 3937的一些代谢基因与独特的功能性状相关联。三个已鉴定的D. solani基因组区域也重组了NRPS / PKS编码基因。此外,茄形梭菌编码T5SS和与T6SS相关的毒素-抗毒素系统的独特武器库。这些基因可能有助于细菌与细菌的相互作用,并有助于茄形梭菌对植物环境的适应性。结论这项研究突出了新兴病原体D. solani的基因组特异性特征,并将为研究与该新兴病原体成功适应马铃薯植物宿主有关的特征提供基础。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号