Standard

Draft genome sequence of Halomonas lutea strain YIM 91125<sup>T</sup> (DSM 23508<sup>T</sup>) isolated from the alkaline Lake Ebinur in Northwest China. / Gao, X.-Y.; Zhi, X.-Y.; Li, H.-W.; Zhou, Y.; Lapidus, A.; Han, J.; Haynes, M.; Lobos, E.; Huntemann, M.; Pati, A.; Ivanova, N.N.; Mavromatis, K.; Tindall, B.J.; Markowitz, V.; Woyke, T.; Klenk, H.-P.; Kyrpides, N.C.; Li, W.-J.

в: Standards in Genomic Sciences, № FEBRUARY2015, 2015.

Результаты исследований: Научные публикации в периодических изданияхстатья

Harvard

Gao, X-Y, Zhi, X-Y, Li, H-W, Zhou, Y, Lapidus, A, Han, J, Haynes, M, Lobos, E, Huntemann, M, Pati, A, Ivanova, NN, Mavromatis, K, Tindall, BJ, Markowitz, V, Woyke, T, Klenk, H-P, Kyrpides, NC & Li, W-J 2015, 'Draft genome sequence of Halomonas lutea strain YIM 91125<sup>T</sup> (DSM 23508<sup>T</sup>) isolated from the alkaline Lake Ebinur in Northwest China', Standards in Genomic Sciences, № FEBRUARY2015. https://doi.org/10.1186/1944-3277-10-1

APA

Gao, X-Y., Zhi, X-Y., Li, H-W., Zhou, Y., Lapidus, A., Han, J., Haynes, M., Lobos, E., Huntemann, M., Pati, A., Ivanova, N. N., Mavromatis, K., Tindall, B. J., Markowitz, V., Woyke, T., Klenk, H-P., Kyrpides, N. C., & Li, W-J. (2015). Draft genome sequence of Halomonas lutea strain YIM 91125<sup>T</sup> (DSM 23508<sup>T</sup>) isolated from the alkaline Lake Ebinur in Northwest China. Standards in Genomic Sciences, (FEBRUARY2015). https://doi.org/10.1186/1944-3277-10-1

Vancouver

Author

Gao, X.-Y. ; Zhi, X.-Y. ; Li, H.-W. ; Zhou, Y. ; Lapidus, A. ; Han, J. ; Haynes, M. ; Lobos, E. ; Huntemann, M. ; Pati, A. ; Ivanova, N.N. ; Mavromatis, K. ; Tindall, B.J. ; Markowitz, V. ; Woyke, T. ; Klenk, H.-P. ; Kyrpides, N.C. ; Li, W.-J. / Draft genome sequence of Halomonas lutea strain YIM 91125<sup>T</sup> (DSM 23508<sup>T</sup>) isolated from the alkaline Lake Ebinur in Northwest China. в: Standards in Genomic Sciences. 2015 ; № FEBRUARY2015.

BibTeX

@article{8769842c80ac4604890cea7986ce9a04,
title = "Draft genome sequence of Halomonas lutea strain YIM 91125T (DSM 23508T) isolated from the alkaline Lake Ebinur in Northwest China",
abstract = "{\textcopyright} 2015 Gao et al.Species of the genus Halomonas are halophilic and their flexible adaption to changes of salinity and temperature brings considerable potential biotechnology applications, such as degradation of organic pollutants and enzyme production. The type strain Halomonas lutea YIM 91125T was isolated from a hypersaline lake in China. The genome of strain YIM 91125T becomes the twelfth species sequenced in Halomonas, and the thirteenth species sequenced in Halomonadaceae. We described the features of H. lutea YIM 91125T, together with the high quality draft genome sequence and annotation of its type strain. The 4,533,090 bp long genome of strain YIM 91125T with its 4,284 protein-coding and 84 RNA genes is a part of Genomic Encyclopedia of Type Strains, Phase I: the one thousand microbial genomes (KMG-I) project. From the viewpoint of comparative genomics, H. lutea has a larger genome size and more specific genes, which indicated acquisition of function bringin",
author = "X.-Y. Gao and X.-Y. Zhi and H.-W. Li and Y. Zhou and A. Lapidus and J. Han and M. Haynes and E. Lobos and M. Huntemann and A. Pati and N.N. Ivanova and K. Mavromatis and B.J. Tindall and V. Markowitz and T. Woyke and H.-P. Klenk and N.C. Kyrpides and W.-J. Li",
year = "2015",
doi = "10.1186/1944-3277-10-1",
language = "English",
journal = "Standards in Genomic Sciences",
issn = "1944-3277",
publisher = "Michigan State University",
number = "FEBRUARY2015",

}

RIS

TY - JOUR

T1 - Draft genome sequence of Halomonas lutea strain YIM 91125T (DSM 23508T) isolated from the alkaline Lake Ebinur in Northwest China

AU - Gao, X.-Y.

AU - Zhi, X.-Y.

AU - Li, H.-W.

AU - Zhou, Y.

AU - Lapidus, A.

AU - Han, J.

AU - Haynes, M.

AU - Lobos, E.

AU - Huntemann, M.

AU - Pati, A.

AU - Ivanova, N.N.

AU - Mavromatis, K.

AU - Tindall, B.J.

AU - Markowitz, V.

AU - Woyke, T.

AU - Klenk, H.-P.

AU - Kyrpides, N.C.

AU - Li, W.-J.

PY - 2015

Y1 - 2015

N2 - © 2015 Gao et al.Species of the genus Halomonas are halophilic and their flexible adaption to changes of salinity and temperature brings considerable potential biotechnology applications, such as degradation of organic pollutants and enzyme production. The type strain Halomonas lutea YIM 91125T was isolated from a hypersaline lake in China. The genome of strain YIM 91125T becomes the twelfth species sequenced in Halomonas, and the thirteenth species sequenced in Halomonadaceae. We described the features of H. lutea YIM 91125T, together with the high quality draft genome sequence and annotation of its type strain. The 4,533,090 bp long genome of strain YIM 91125T with its 4,284 protein-coding and 84 RNA genes is a part of Genomic Encyclopedia of Type Strains, Phase I: the one thousand microbial genomes (KMG-I) project. From the viewpoint of comparative genomics, H. lutea has a larger genome size and more specific genes, which indicated acquisition of function bringin

AB - © 2015 Gao et al.Species of the genus Halomonas are halophilic and their flexible adaption to changes of salinity and temperature brings considerable potential biotechnology applications, such as degradation of organic pollutants and enzyme production. The type strain Halomonas lutea YIM 91125T was isolated from a hypersaline lake in China. The genome of strain YIM 91125T becomes the twelfth species sequenced in Halomonas, and the thirteenth species sequenced in Halomonadaceae. We described the features of H. lutea YIM 91125T, together with the high quality draft genome sequence and annotation of its type strain. The 4,533,090 bp long genome of strain YIM 91125T with its 4,284 protein-coding and 84 RNA genes is a part of Genomic Encyclopedia of Type Strains, Phase I: the one thousand microbial genomes (KMG-I) project. From the viewpoint of comparative genomics, H. lutea has a larger genome size and more specific genes, which indicated acquisition of function bringin

U2 - 10.1186/1944-3277-10-1

DO - 10.1186/1944-3277-10-1

M3 - Article

JO - Standards in Genomic Sciences

JF - Standards in Genomic Sciences

SN - 1944-3277

IS - FEBRUARY2015

ER -

ID: 4008623