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English: Within the organisms, genes are transcribed and spliced (in eukaryotes) to produce mature mRNA transcripts (red). The mRNA is extracted from the organism, fragmented and copied into stable ds-cDNA (blue). The ds-cDNA is sequenced using high-throughput, short-read sequencing methods. These sequences can then be aligned to a reference genome sequence to reconstruct which genome regions were being transcribed. This data can be used to annotate where expressed genes are, their relative expression levels, and any alternative splice variants.[1]
Titimangsa
Sumber Karya sorangan
Pangarang Thomas Shafee
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  1. Lowe, Rohan (2017-05-18). "Transcriptomics technologies". PLOS Computational Biology 13 (5): e1005457. DOI:10.1371/journal.pcbi.1005457. PMID 28545146. PMC: PMC5436640. ISSN 1553-7358.

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menggambarkan Indonesia

status hak cipta Indonesia

berhak cipta Indonesia

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sejak Indonesia

5 Oktober 2016

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TitimangsaMiniaturUkuranPamakéKamandang
kiwari13 Pébruari 2017 12.20'Thumbnail' pikeun vérsi mangsa 13 Pébruari 2017 12.201.020 × 803 (246 KB)Evolution and evolvabilitytext as paths to avoid artefacts
13 Pébruari 2017 12.19'Thumbnail' pikeun vérsi mangsa 13 Pébruari 2017 12.191.020 × 803 (90 KB)Evolution and evolvabilitytext as paths to avoid artefacts
13 Pébruari 2017 10.48'Thumbnail' pikeun vérsi mangsa 13 Pébruari 2017 10.481.020 × 803 (88 KB)Evolution and evolvabilityupdate sequence text to 'sans-serif' open font for more robust rendering
10 Pébruari 2017 08.41'Thumbnail' pikeun vérsi mangsa 10 Pébruari 2017 08.411.020 × 803 (87 KB)Evolution and evolvabilityreverse order of fragmentation and reverse-transcription
5 Oktober 2016 05.08'Thumbnail' pikeun vérsi mangsa 5 Oktober 2016 05.081.020 × 803 (85 KB)Evolution and evolvabilityUser created page with UploadWizard

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