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Evolution of symbiotic bacteria in the distal human intestine
4. Xu J*, Mahowald MA*, Ley RE, Lozupone CA, Hamady M, Martens EC, Henrissat B, Coutinho PM,Minx P, Latreille P, Cordum H, Van Brunt A, Kim K, Fulton RS, Fulton LA, Clifton SW, Wilson RK, Knight RD, Gordon JI
2007
发表期刊PLoS Biology
期号7
摘要

The adult human intestine contains trillions of bacteria, representing hundreds of species and thousands of subspecies. Little is known about the selective pressures that have shaped and are shaping this community’s component species, which are dominated by members of the Bacteroidetes and Firmicutes divisions. To examine how the intestinal environment affects microbial genome evolution, we have sequenced the genomes of two members of the normal distal human gut microbiota, Bacteroides vulgatus and Bacteroides distasonis, and by comparison with the few other sequenced gut and non-gut Bacteroidetes, analyzed their niche and habitat adaptations. The results show that lateral gene transfer, mobile elements, and gene amplification have played important roles in affecting the ability of gutdwelling Bacteroidetes to vary their cell surface, sense their environment, and harvest nutrient resources present in the distal intestine. Our findings show that these processes have been a driving force in the adaptation of Bacteroidetes to the distal gut environment, and emphasize the importance of considering the evolution of humans from an additional perspective, namely the evolution of our microbiomes.

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The adult human intestine contains trillions of bacteria, representing hundreds of species and thousands of subspecies. Little is known about the selective pressures that have shaped and are shaping this community’s component species, which are dominated by members of the Bacteroidetes and Firmicutes divisions. To examine how the intestinal environment affects microbial genome evolution, we have sequenced the genomes of two members of the normal distal human gut microbiota, Bacteroides vulgatus and Bacteroides distasonis, and by comparison with the few other sequenced gut and non-gut Bacteroidetes, analyzed their niche and habitat adaptations. The results show that lateral gene transfer, mobile elements, and gene amplification have played important roles in affecting the ability of gutdwelling Bacteroidetes to vary their cell surface, sense their environment, and harvest nutrient resources present in the distal intestine. Our findings show that these processes have been a driving force in the adaptation of Bacteroidetes to the distal gut environment, and emphasize the importance of considering the evolution of humans from an additional perspective, namely the evolution of our microbiomes.

关键词Evolution Of Symbiotic Bacteria In The Distal Human IntestIne
学科领域功能基因组
文献类型期刊论文
条目标识符http://ir.qibebt.ac.cn/handle/337004/959
专题单细胞中心组群
推荐引用方式
GB/T 7714
4. Xu J*, Mahowald MA*, Ley RE, Lozupone CA, Hamady M, Martens EC, Henrissat B, Coutinho PM,Minx P, Latreille P, Cordum H, Van Brunt A, Kim K, Fulton RS, Fulton LA, Clifton SW, Wilson RK, Knight RD, Gordon JI. Evolution of symbiotic bacteria in the distal human intestine[J]. PLoS Biology,2007(7).
APA 4. Xu J*, Mahowald MA*, Ley RE, Lozupone CA, Hamady M, Martens EC, Henrissat B, Coutinho PM,Minx P, Latreille P, Cordum H, Van Brunt A, Kim K, Fulton RS, Fulton LA, Clifton SW, Wilson RK, Knight RD, Gordon JI.(2007).Evolution of symbiotic bacteria in the distal human intestine.PLoS Biology(7).
MLA 4. Xu J*, Mahowald MA*, Ley RE, Lozupone CA, Hamady M, Martens EC, Henrissat B, Coutinho PM,Minx P, Latreille P, Cordum H, Van Brunt A, Kim K, Fulton RS, Fulton LA, Clifton SW, Wilson RK, Knight RD, Gordon JI."Evolution of symbiotic bacteria in the distal human intestine".PLoS Biology .7(2007).
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