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本文引用的文献

1
The complete genome of Rhodococcus sp. RHA1 provides insights into a catabolic powerhouse.红球菌属RHA1的全基因组为了解一个分解代谢强者提供了线索。
Proc Natl Acad Sci U S A. 2006 Oct 17;103(42):15582-7. doi: 10.1073/pnas.0607048103. Epub 2006 Oct 9.
2
Genetic and genomic insights into the role of benzoate-catabolic pathway redundancy in Burkholderia xenovorans LB400.关于伯克霍尔德氏菌LB400中苯甲酸酯分解代谢途径冗余作用的遗传和基因组学见解。
Appl Environ Microbiol. 2006 Jan;72(1):585-95. doi: 10.1128/AEM.72.1.585-595.2006.
3
Growth substrate- and phase-specific expression of biphenyl, benzoate, and C1 metabolic pathways in Burkholderia xenovorans LB400.伯克霍尔德氏菌LB400中,联苯、苯甲酸酯和C1代谢途径的生长底物特异性和阶段特异性表达
J Bacteriol. 2005 Dec;187(23):7996-8005. doi: 10.1128/JB.187.23.7996-8005.2005.
4
Pathogenic fungus harbours endosymbiotic bacteria for toxin production.致病真菌含有用于毒素产生的内共生细菌。
Nature. 2005 Oct 6;437(7060):884-8. doi: 10.1038/nature03997.
5
Multilocus sequence typing scheme that provides both species and strain differentiation for the Burkholderia cepacia complex.多位点序列分型方案可对洋葱伯克霍尔德菌复合体进行菌种和菌株鉴别。
J Clin Microbiol. 2005 Sep;43(9):4665-73. doi: 10.1128/JCM.43.9.4665-4673.2005.
6
Characterization of the cciIR quorum-sensing system in Burkholderia cenocepacia.洋葱伯克霍尔德菌中cciIR群体感应系统的特性分析
Infect Immun. 2005 Aug;73(8):4982-92. doi: 10.1128/IAI.73.8.4982-4992.2005.
7
ACT: the Artemis Comparison Tool.ACT:阿耳忒弥斯比较工具。
Bioinformatics. 2005 Aug 15;21(16):3422-3. doi: 10.1093/bioinformatics/bti553. Epub 2005 Jun 23.
8
Extensive DNA inversions in the B. fragilis genome control variable gene expression.脆弱拟杆菌基因组中的广泛DNA倒位控制可变基因表达。
Science. 2005 Mar 4;307(5714):1463-5. doi: 10.1126/science.1107008.
9
Species abundance and diversity of Burkholderia cepacia complex in the environment.环境中洋葱伯克霍尔德菌复合体的物种丰度和多样性。
Appl Environ Microbiol. 2005 Mar;71(3):1193-201. doi: 10.1128/AEM.71.3.1193-1201.2005.
10
One-component systems dominate signal transduction in prokaryotes.单组分系统在原核生物的信号转导中占主导地位。
Trends Microbiol. 2005 Feb;13(2):52-6. doi: 10.1016/j.tim.2004.12.006.

嗜麦芽窄食单胞菌LB400拥有一个多复制子、973万碱基对的基因组,其结构具有多功能性。

Burkholderia xenovorans LB400 harbors a multi-replicon, 9.73-Mbp genome shaped for versatility.

作者信息

Chain Patrick S G, Denef Vincent J, Konstantinidis Konstantinos T, Vergez Lisa M, Agulló Loreine, Reyes Valeria Latorre, Hauser Loren, Córdova Macarena, Gómez Luis, González Myriam, Land Miriam, Lao Victoria, Larimer Frank, LiPuma John J, Mahenthiralingam Eshwar, Malfatti Stephanie A, Marx Christopher J, Parnell J Jacob, Ramette Alban, Richardson Paul, Seeger Michael, Smith Daryl, Spilker Theodore, Sul Woo Jun, Tsoi Tamara V, Ulrich Luke E, Zhulin Igor B, Tiedje James M

机构信息

Center for Microbial Ecology, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Proc Natl Acad Sci U S A. 2006 Oct 17;103(42):15280-7. doi: 10.1073/pnas.0606924103. Epub 2006 Oct 9.

DOI:10.1073/pnas.0606924103
PMID:17030797
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1622818/
Abstract

Burkholderia xenovorans LB400 (LB400), a well studied, effective polychlorinated biphenyl-degrader, has one of the two largest known bacterial genomes and is the first nonpathogenic Burkholderia isolate sequenced. From an evolutionary perspective, we find significant differences in functional specialization between the three replicons of LB400, as well as a more relaxed selective pressure for genes located on the two smaller vs. the largest replicon. High genomic plasticity, diversity, and specialization within the Burkholderia genus are exemplified by the conservation of only 44% of the genes between LB400 and Burkholderia cepacia complex strain 383. Even among four B. xenovorans strains, genome size varies from 7.4 to 9.73 Mbp. The latter is largely explained by our findings that >20% of the LB400 sequence was recently acquired by means of lateral gene transfer. Although a range of genetic factors associated with in vivo survival and intercellular interactions are present, these genetic factors are likely related to niche breadth rather than determinants of pathogenicity. The presence of at least eleven "central aromatic" and twenty "peripheral aromatic" pathways in LB400, among the highest in any sequenced bacterial genome, supports this hypothesis. Finally, in addition to the experimentally observed redundancy in benzoate degradation and formaldehyde oxidation pathways, the fact that 17.6% of proteins have a better LB400 paralog than an ortholog in a different genome highlights the importance of gene duplication and repeated acquirement, which, coupled with their divergence, raises questions regarding the role of paralogs and potential functional redundancies in large-genome microbes.

摘要

洋葱伯克霍尔德菌LB400(LB400)是一种经过充分研究的高效多氯联苯降解菌,拥有已知最大的细菌基因组之一,也是首个完成测序的非致病性伯克霍尔德菌分离株。从进化的角度来看,我们发现LB400的三个复制子在功能特化方面存在显著差异,并且位于两个较小复制子上的基因与位于最大复制子上的基因相比,其选择压力更为宽松。伯克霍尔德菌属内高度的基因组可塑性、多样性和特化表现为LB400与洋葱伯克霍尔德菌复合体菌株383之间只有44%的基因保守。即使在四株食 xenovorans菌株中,基因组大小也从7.4兆碱基对到9.73兆碱基对不等。后者很大程度上可以由我们的发现来解释,即LB400序列中超过20%是最近通过横向基因转移获得的。尽管存在一系列与体内生存和细胞间相互作用相关的遗传因素,但这些遗传因素可能与生态位宽度有关,而不是致病性的决定因素。LB400中至少有11条“中心芳香族”和20条“外围芳香族”途径,在所有已测序的细菌基因组中处于最高水平之一,这支持了这一假设。最后,除了在实验中观察到的苯甲酸酯降解和甲醛氧化途径中的冗余现象外,如果17.6%的蛋白质在LB400中有一个比在其他基因组中的直系同源物更好的旁系同源物,这突出了基因复制和重复获得的重要性,再加上它们之间的差异,引发了关于旁系同源物的作用以及大基因组微生物中潜在功能冗余的问题。