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模式形成的涡旋芽孢杆菌的基因组序列揭示了其在复杂环境中茁壮成长的潜力。

Genome sequence of the pattern forming Paenibacillus vortex bacterium reveals potential for thriving in complex environments.

机构信息

The Sackler School of Physics and Astronomy, Tel Aviv University, PO Box 39040, Tel Aviv 69978, Israel.

出版信息

BMC Genomics. 2010 Dec 17;11:710. doi: 10.1186/1471-2164-11-710.

Abstract

BACKGROUND

The pattern-forming bacterium Paenibacillus vortex is notable for its advanced social behavior, which is reflected in development of colonies with highly intricate architectures. Prior to this study, only two other Paenibacillus species (Paenibacillus sp. JDR-2 and Paenibacillus larvae) have been sequenced. However, no genomic data is available on the Paenibacillus species with pattern-forming and complex social motility. Here we report the de novo genome sequence of this Gram-positive, soil-dwelling, sporulating bacterium.

RESULTS

The complete P. vortex genome was sequenced by a hybrid approach using 454 Life Sciences and Illumina, achieving a total of 289× coverage, with 99.8% sequence identity between the two methods. The sequencing results were validated using a custom designed Agilent microarray expression chip which represented the coding and the non-coding regions. Analysis of the P. vortex genome revealed 6,437 open reading frames (ORFs) and 73 non-coding RNA genes. Comparative genomic analysis with 500 complete bacterial genomes revealed exceptionally high number of two-component system (TCS) genes, transcription factors (TFs), transport and defense related genes. Additionally, we have identified genes involved in the production of antimicrobial compounds and extracellular degrading enzymes.

CONCLUSIONS

These findings suggest that P. vortex has advanced faculties to perceive and react to a wide range of signaling molecules and environmental conditions, which could be associated with its ability to reconfigure and replicate complex colony architectures. Additionally, P. vortex is likely to serve as a rich source of genes important for agricultural, medical and industrial applications and it has the potential to advance the study of social microbiology within Gram-positive bacteria.

摘要

背景

模式形成菌漩涡芽孢杆菌以其先进的社会行为而引人注目,这反映在具有高度复杂结构的菌落发育上。在此之前,仅有另外两个芽孢杆菌物种(芽孢杆菌 JDR-2 和幼虫芽孢杆菌)已被测序。然而,对于具有模式形成和复杂社会运动能力的芽孢杆菌物种,尚无基因组数据。在这里,我们报告了这种革兰氏阳性、土壤栖息、产芽孢细菌的从头基因组序列。

结果

使用 454 生命科学和 Illumina 的混合方法对完整的 P. vortex 基因组进行测序,总覆盖率达到 289×,两种方法之间的序列同一性为 99.8%。使用定制设计的安捷伦微阵列表达芯片对测序结果进行验证,该芯片代表了编码和非编码区域。对 P. vortex 基因组的分析揭示了 6437 个开放阅读框(ORF)和 73 个非编码 RNA 基因。与 500 个完整细菌基因组的比较基因组分析显示,双组分系统(TCS)基因、转录因子(TFs)、运输和防御相关基因的数量异常高。此外,我们还鉴定了参与产生抗菌化合物和细胞外降解酶的基因。

结论

这些发现表明,P. vortex 具有先进的感知和反应广泛信号分子和环境条件的能力,这可能与其重新配置和复制复杂菌落结构的能力有关。此外,P. vortex 可能是农业、医学和工业应用中重要基因的丰富来源,并且有可能推进革兰氏阳性菌中社会微生物学的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6a6/3012674/4f874f3bfebe/1471-2164-11-710-1.jpg

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