441 to 450 of 579 Results
Aug 25, 2026 -
Theobroma cacao: Genome Sequences and Annotations
Unknown - 31.5 MB -
MD5: 0d1fcd8883545019af52251a3c79e4c1
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Aug 25, 2026 -
Theobroma cacao: Genome Sequences and Annotations
Plain Text - 3.3 MB -
MD5: bf3f7dbe1a9c6e40bff4b81d6e1430e0
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Aug 18, 2026
Vieira Salgado de Oliveira, Julie Anne; Baez, Mariana Alejandra; Pucker, Boas, 2026, "Valeriana officinalis genome sequence and annotation V1", https://doi.org/10.60507/FK2/TQZVWU, bonndata, V1
Here we present the first genome sequence and annotation of Valeriana officinalis (commonly known as valerian), a widespread perennial plant widely used as a herbal remedy. Using ONT long-read sequencing data, a highly continuous genome assembly was generated for V. officinalis. This study uncovers the flavonoid biosynthesis gene repertoire and num... |
Aug 18, 2026 -
Valeriana officinalis genome sequence and annotation V1
Plain Text - 4.8 KB -
MD5: 778e89fab0d7b78a39aae5a6d8b5ce6d
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Aug 18, 2026 -
Valeriana officinalis genome sequence and annotation V1
Gzip Archive - 18.3 MB -
MD5: 11508dbc56970e062e5a216431999f25
structural annotation |
Aug 18, 2026 -
Valeriana officinalis genome sequence and annotation V1
Gzip Archive - 147.6 KB -
MD5: f392895ed32ca2e884d2383c0bbd3ca7
functional annotation |
Aug 18, 2026 -
Valeriana officinalis genome sequence and annotation V1
Gzip Archive - 30.5 MB -
MD5: 45cc9fa3a93143f4bcc9dd41da1194cf
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Aug 18, 2026 -
Valeriana officinalis genome sequence and annotation V1
Gzip Archive - 784.2 MB -
MD5: 4901f8a030ed515b3ac3172e5db3aeff
genome sequence |
Aug 18, 2026 -
Valeriana officinalis genome sequence and annotation V1
Gzip Archive - 19.9 MB -
MD5: 3c45bf8a726c3838464d680b0db7047b
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Jun 24, 2026
Meckoni, Samuel Nestor; Vieira Salgado de Oliveira, Julie Anne; Pucker, Boas, 2026, "Utricularia gibba genome sequence and annotation", https://doi.org/10.60507/FK2/JJ5QZX, bonndata, V1
The genome of an Utricularia gibba plant was sequenced with nanopore long reads. The genome sequence was assembled with hifiasm and the gene models were predicted by Helixer, BRAKER3 and GeMoMa. The functional annotation was predicted based on sequence similarity to well characterized Arabidopsis thaliana sequences. |
