File:Different-Levels-of-Catabolite-Repression-Optimize-Growth-in-Stable-and-Variable-Environments-pbio.1001764.s022.ogv
Different-Levels-of-Catabolite-Repression-Optimize-Growth-in-Stable-and-Variable-Environments-pbio.1001764.s022.ogv (Ogg multiplexed audio/video file, Theora/Vorbis, length 11 s, 640 × 480 pixels, 411 kbps overall, file size: 560 KB)
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[edit]DescriptionDifferent-Levels-of-Catabolite-Repression-Optimize-Growth-in-Stable-and-Variable-Environments-pbio.1001764.s022.ogv |
English: Isolate 1 transformed with a MALS-mCherry construct is shown. This movie shows the time-lapse microscopic data from the same cells depicted in Figure S5B and S5C. The sample's MAL genes were multimodally induced by pregrowth in maltose + glucose media (initial state uninduced) for 24 h before transferring to the maltose + glucose media for time-lapse microscopy. Note that induced and uninduced states propagate within microcolonies for many generations. |
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Source | Movie S6 from New A, Cerulus B, Govers S, Perez-Samper G, Zhu B, Boogmans S, Xavier J, Verstrepen K (2014). "Different Levels of Catabolite Repression Optimize Growth in Stable and Variable Environments". PLOS Biology. DOI:10.1371/journal.pbio.1001764. PMID 24453942. PMC: 3891604. | ||
Author | New A, Cerulus B, Govers S, Perez-Samper G, Zhu B, Boogmans S, Xavier J, Verstrepen K | ||
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This file is licensed under the Creative Commons Attribution 4.0 International license.
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current | 00:46, 26 January 2014 | 11 s, 640 × 480 (560 KB) | Open Access Media Importer Bot (talk | contribs) | Automatically uploaded media file from Open Access source. Please report problems or suggestions here. |
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Author | New A, Cerulus B, Govers S, Perez-Samper G, Zhu B, Boogmans S, Xavier J, Verstrepen K |
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Usage terms | http://creativecommons.org/licenses/by/4.0/ |
Image title | Isolate 1 transformed with a MALS-mCherry construct is shown. This movie shows the time-lapse microscopic data from the same cells depicted in Figure S5B and S5C. The sample's MAL genes were multimodally induced by pregrowth in maltose + glucose media (initial state uninduced) for 24 h before transferring to the maltose + glucose media for time-lapse microscopy. Note that induced and uninduced states propagate within microcolonies for many generations. |
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Date and time of digitizing | 2014-01 |