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On July 27, 2023 at 8:23:23 AM UTC,
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Added resource Fig4_Data&Codes.zip to Data for: Timing of antibiotic administration determines the spread of plasmid-encoded antibiotic resistance during microbial range expansion
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to resource Fig3_Data&Codes.zip in Data for: Timing of antibiotic administration determines the spread of plasmid-encoded antibiotic resistance during microbial range expansion
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11 | plasmid-encoded antibiotic resistance during microbial range expansion | 11 | plasmid-encoded antibiotic resistance during microbial range expansion | ||
12 | (Version 1.0). Eawag: Swiss Federal Institute of Aquatic Science and | 12 | (Version 1.0). Eawag: Swiss Federal Institute of Aquatic Science and | ||
13 | Technology. https://doi.org/10.25678/0008EB" | 13 | Technology. https://doi.org/10.25678/0008EB" | ||
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18 | of antibiotic administration determines the spread of plasmid-encoded | 18 | of antibiotic administration determines the spread of plasmid-encoded | ||
19 | antibiotic resistance during microbial range expansion. Nature | 19 | antibiotic resistance during microbial range expansion. Nature | ||
20 | Communications, 14(1). https://doi.org/10.1038/s41467-023-39354-z\n" | 20 | Communications, 14(1). https://doi.org/10.1038/s41467-023-39354-z\n" | ||
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118 | "maintainer": "Johnson, David", | 118 | "maintainer": "Johnson, David", | ||
119 | "maintainer_email": "Johnson, David <David.Johnson@eawag.ch>", | 119 | "maintainer_email": "Johnson, David <David.Johnson@eawag.ch>", | ||
120 | "metadata_created": "2023-07-27T08:22:49.081919", | 120 | "metadata_created": "2023-07-27T08:22:49.081919", | ||
121 | "metadata_modified": "2023-07-27T08:22:49.081928", | 121 | "metadata_modified": "2023-07-27T08:22:49.081928", | ||
122 | "name": "data-for-timing-of-antibiotic-administration", | 122 | "name": "data-for-timing-of-antibiotic-administration", | ||
123 | "notes": "Plasmids are the main vector by which antibiotic | 123 | "notes": "Plasmids are the main vector by which antibiotic | ||
124 | resistance is transferred between bacterial cells within | 124 | resistance is transferred between bacterial cells within | ||
125 | surface-associated communities. In this study, we ask whether there is | 125 | surface-associated communities. In this study, we ask whether there is | ||
126 | an optimal time to administer antibiotics to minimize plasmid spread | 126 | an optimal time to administer antibiotics to minimize plasmid spread | ||
127 | in new bacterial genotypes during community expansion across surfaces. | 127 | in new bacterial genotypes during community expansion across surfaces. | ||
128 | We address this question using consortia of Pseudomonas stutzeri | 128 | We address this question using consortia of Pseudomonas stutzeri | ||
129 | strains, where one is an antibiotic resistance-encoding plasmid donor | 129 | strains, where one is an antibiotic resistance-encoding plasmid donor | ||
130 | and the other a potential recipient. We allowed the strains to | 130 | and the other a potential recipient. We allowed the strains to | ||
131 | co-expand across a surface and administered antibiotics at different | 131 | co-expand across a surface and administered antibiotics at different | ||
132 | times. We find that plasmid transfer and transconjugant proliferation | 132 | times. We find that plasmid transfer and transconjugant proliferation | ||
133 | have unimodal relationships with the timing of antibiotic | 133 | have unimodal relationships with the timing of antibiotic | ||
134 | administration, where they reach maxima at intermediate times. These | 134 | administration, where they reach maxima at intermediate times. These | ||
135 | unimodal relationships result from the interplay between the | 135 | unimodal relationships result from the interplay between the | ||
136 | probabilities of plasmid transfer and loss. Our study provides | 136 | probabilities of plasmid transfer and loss. Our study provides | ||
137 | mechanistic insights into the transfer and proliferation of antibiotic | 137 | mechanistic insights into the transfer and proliferation of antibiotic | ||
138 | resistance-encoding plasmids within microbial communities and | 138 | resistance-encoding plasmids within microbial communities and | ||
139 | identifies the timing of antibiotic administration as an important | 139 | identifies the timing of antibiotic administration as an important | ||
140 | determinant. ", | 140 | determinant. ", | ||
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145 | "created": "2019-09-18T14:11:46.562834", | 145 | "created": "2019-09-18T14:11:46.562834", | ||
146 | "description": "Our research is inspired by the extraordinary | 146 | "description": "Our research is inspired by the extraordinary | ||
147 | levels of biodiversity that are typically present within microbial | 147 | levels of biodiversity that are typically present within microbial | ||
148 | communities. For example, a single liter from a lake, a river, or the | 148 | communities. For example, a single liter from a lake, a river, or the | ||
149 | aeration basin of a wastewater treatment plant is estimated to contain | 149 | aeration basin of a wastewater treatment plant is estimated to contain | ||
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276 | } | 303 | } | ||
277 | ], | 304 | ], | ||
278 | "title": "Data for: Timing of antibiotic administration determines | 305 | "title": "Data for: Timing of antibiotic administration determines | ||
279 | the spread of plasmid-encoded antibiotic resistance during microbial | 306 | the spread of plasmid-encoded antibiotic resistance during microbial | ||
280 | range expansion", | 307 | range expansion", | ||
281 | "type": "dataset", | 308 | "type": "dataset", | ||
282 | "url": "https://doi.org/10.25678/0008EB/", | 309 | "url": "https://doi.org/10.25678/0008EB/", | ||
283 | "version": null | 310 | "version": null | ||
284 | } | 311 | } |