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Status |
Public on Mar 03, 2021 |
Title |
Illumina NovaSeq 6000 (Drosophila melanogaster; Homo sapiens) |
Technology type |
high-throughput sequencing |
Distribution |
virtual |
Organisms |
Drosophila melanogaster; Homo sapiens |
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Submission date |
Mar 03, 2021 |
Last update date |
Mar 03, 2021 |
Contact name |
GEO |
Country |
USA |
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Samples (45)
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GSM5064773, GSM5064774, GSM6090075, GSM6090076, GSM6090077, GSM6090078
GSM6090079, GSM6090080, GSM6090084, GSM6090085, GSM6090086, GSM6090087, GSM6090088, GSM6090089, GSM6090090, GSM6090091, GSM6090096, GSM6090097, GSM6090098, GSM6090099, GSM6090100, GSM6090101, GSM6341660, GSM6341661, GSM6341662, GSM6341663, GSM6341664, GSM6341665, GSM6341666, GSM6341667, GSM6341668, GSM6341669, GSM6341670, GSM6341671, GSM6341672, GSM6341673, GSM6341674, GSM6341675, GSM6341676, GSM6341677, GSM6341678, GSM6341679, GSM6341680, GSM6341681, GSM6341682
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Series (5)
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GSE166155 |
KARR-seq reveals principles of high-order ribonucleoprotein structure assembly |
GSE202040 |
High-resolution transcriptional analysis of immunoglobulin variable regions reveals the absence of direct relationships between somatic hypermutation, nascent transcription and epigenetic marks [PRO-cap] |
GSE202041 |
High-resolution transcriptional analysis of immunoglobulin variable regions reveals the absence of direct relationships between somatic hypermutation, nascent transcription and epigenetic marks [PRO-seq] |
GSE202042 |
High-resolution transcriptional analysis of immunoglobulin variable regions reveals the absence of direct relationships between somatic hypermutation, nascent transcription and epigenetic marks |
GSE208348 |
Increasing cell size remodels the proteome and promotes senescence |
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Supplementary data files not provided |
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