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Autor:
Eveline J. Krab, Angela L. Straathof, Fernando T. Maestre, Si Creer, Manuel Delgado-Baquerizo, Marcel G. A. van der Heijden, Klaus Schlaeppi, Kelly S. Ramirez, Christopher Knight, John Davison, Krista L. McGuire, Brajesh K. Singh, Caroline Orr, Sylvain Monteux, Chris C. Hale, Jennifer M. Bhatnagar, Graeme Fox, Wim H. van der Putten, Franciska T. de Vries, Jennifer D. Rocca, Anne Cotton, Kyle Hartman, Mattias de Hollander, David L. Jones, Bede Constantinides, David A. Robinson, Francis Q. Brearley, Thomas W. Crowther, Ian Roberts, Matthew Shepherd, David Elliott, Ellen Dorrepaal, Ashley Houlden, Cécile Thion, Robert I. Griffiths, Jennifer K. Rowntree
Publikováno v:
Nature microbiology, vol 3, iss 2
Nature Microbiology, 3, 189-196
Nature Microbiology 3 (2018)
Ramirez, K S, Knight, C, de Hollander, M, Brearley, F Q, Constantinides, B, Cotton, A, Creer, S, Crowther, T W, Davison, J, Delgado-Baquerizo, M, Dorrepaal, E, Elliott, D R, Fox, G, Griffiths, R, Hale, C, Hartman, K, Houlden, A, Jones, D L, Krab, E J, Maestre, F T, McGuire, K L, Monteux, S, Orr, C H, van der Putten, W H, Roberts, I, Robinson, D A, Rocca, J D, Rowntree, J, Schlaeppi, K, Shepherd, M, Singh, B K, Straathof, A, Bhatnagar, J M, Thion, C, van der Heijden, M G A & De Vries, F 2018, ' Detecting macroecological patterns in bacterial communities across independent studies of global soils ', Nature Microbiology, vol. 3, pp. 189-196 . https://doi.org/10.1038/s41564-017-0062-x
Nature Reviews Microbiology, 3, 189. Nature Publishing Group
Nature Microbiology
Ramirez, KS; Knight, CG; de Hollander, M; Brearley, FQ; Constantinides, B; Cotton, A; et al.(2018). Detecting macroecological patterns in bacterial communities across independent studies of global soils. NATURE MICROBIOLOGY, 3(2), 189-196. doi: 10.1038/s41564-017-0062-x. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/7m35k2mx
Nature Microbiology, 3, 189-196. Nature Publishing Group
Nature Microbiology, 3, 189-196
Nature Microbiology 3 (2018)
Ramirez, K S, Knight, C, de Hollander, M, Brearley, F Q, Constantinides, B, Cotton, A, Creer, S, Crowther, T W, Davison, J, Delgado-Baquerizo, M, Dorrepaal, E, Elliott, D R, Fox, G, Griffiths, R, Hale, C, Hartman, K, Houlden, A, Jones, D L, Krab, E J, Maestre, F T, McGuire, K L, Monteux, S, Orr, C H, van der Putten, W H, Roberts, I, Robinson, D A, Rocca, J D, Rowntree, J, Schlaeppi, K, Shepherd, M, Singh, B K, Straathof, A, Bhatnagar, J M, Thion, C, van der Heijden, M G A & De Vries, F 2018, ' Detecting macroecological patterns in bacterial communities across independent studies of global soils ', Nature Microbiology, vol. 3, pp. 189-196 . https://doi.org/10.1038/s41564-017-0062-x
Nature Reviews Microbiology, 3, 189. Nature Publishing Group
Nature Microbiology
Ramirez, KS; Knight, CG; de Hollander, M; Brearley, FQ; Constantinides, B; Cotton, A; et al.(2018). Detecting macroecological patterns in bacterial communities across independent studies of global soils. NATURE MICROBIOLOGY, 3(2), 189-196. doi: 10.1038/s41564-017-0062-x. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/7m35k2mx
Nature Microbiology, 3, 189-196. Nature Publishing Group
The emergence of high-throughput DNA sequencing methods provides unprecedented opportunities to further unravel bacterial biodiversity and its worldwide role from human health to ecosystem functioning. However, despite the abundance of sequencing stu
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::49367f31888a217314a73301bcbad392
https://escholarship.org/uc/item/7m35k2mx
https://escholarship.org/uc/item/7m35k2mx