Genome engineering reveals large dispensable regions in Bacillus subtilis

被引:158
作者
Westers, H
Dorenbos, R
van Dijl, JM [1 ]
Kabel, J
Flanagan, T
Devine, KM
Jude, F
Séror, SJ
Beekman, AC
Darmon, E
Eschevins, C
de Jong, A
Bron, S
Kuipers, OP
Albertini, AM
Antelmann, H
Hecker, M
Zamboni, N
Sauer, U
Bruand, C
Ehrlich, DS
Alonso, JC
Salas, M
Quax, WJ
机构
[1] Univ Groningen, Dept Pharmaceut Biol, NL-9700 AB Groningen, Netherlands
[2] Trinity Coll Dublin, Dept Genet, Smurfit Inst, Dublin, Ireland
[3] Univ Paris 11, Inst Genet & Microbiol, Orsay, France
[4] Groningen Biomol Sci & Biotechnol Inst, Dept Genet, Haren, Netherlands
[5] Univ Pavia, Dipartimento Genet & Microbiol, I-27100 Pavia, Italy
[6] Ernst Moritz Arndt Univ Greifswald, Inst Mikrobiol & Mol Biol, Greifswald, Germany
[7] ETH, Inst Biotechnol, Zurich, Switzerland
[8] INRA, Jouy En Josas, France
[9] CSIC, Ctr Nacl Biotecnol, Dept Microbial Biotechnol, Madrid, Spain
[10] Univ Autonoma Madrid, CSIC, Ctr Biol Mol Severo Ochoa, Madrid, Spain
关键词
Bacillus subtilis; PBSX; prophage; secretome; skin; SP beta;
D O I
10.1093/molbev/msg219
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Bacterial genomes contain 250 to 500 essential genes, as suggested by single gene disruptions and theoretical considerations. If this view is correct, the remaining nonessential genes of an organism, such as Bacillus subtilis, have been acquired during evolution in its perpetually changing ecological niches. Notably, similar to47% of the similar to4,100 genes of B. subtilis belong to paralogous gene families in which several members have overlapping functions. Thus, essential gene functions will outnumber essential genes. To answer the question to what extent the most recently acquired DNA contributes to the life of B. subtilis under standard laboratory growth conditions, we initiated a "reconstruction" of the B. subtilis genome by removing prophages and AT-rich islands. Stepwise deletion of two prophages (SPbeta, PBSX), three prophage-like regions, and the largest operon of B. subtilis (pks) resulted in a genome reduction of 7.7% and elimination of 332 genes. The resulting strain was phenotypically characterized by metabolic flux analysis, proteomics, and specific assays for protein secretion, competence development, sporulation, and cell motility. We show that genome engineering is a feasible strategy for functional analysis of large gene clusters, and that removal of dispensable genomic regions may pave the way toward an optimized Bacillus cell factory.
引用
收藏
页码:2076 / 2090
页数:15
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