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@@ -8,12 +8,11 @@ Pan‐genomes aim to address the presence-absence and copy number variation as w
 
 ## Data Files
 
-[Genome annotations](https://git.nfdi4plants.org/usadellab/Camellia_sinensis_genomics/-/tree/master/assays/Genome_annotations)
+[Genome annotations](https://git.nfdi4plants.org/usadellab/camellia_sinensis_genomics/-/tree/main/assays/Genome_annotations)
 
-[Genome assemblies](https://git.nfdi4plants.org/usadellab/Camellia_sinensis_genomics/-/tree/master/assays/Genome_assemblies)
-
-[Transposable elements](https://git.nfdi4plants.org/usadellab/Camellia_sinensis_genomics/-/tree/master/assays/Transposable_elements)
+[Genome assemblies](https://git.nfdi4plants.org/usadellab/camellia_sinensis_genomics/-/tree/main/assays/Genome_assemblies)
 
+[Transposable elements](https://git.nfdi4plants.org/usadellab/camellia_sinensis_genomics/-/tree/main/assays/Transposable_elements)
 ## Citation
 Tariq, A., Meng, M., Jiang, X., Bolger, A., Beier, S., Buchmann, J.P., Fernie, A.R., Wen, W. and Usadel, B. (2024), In-depth exploration of the genomic diversity in tea varieties based on a newly constructed pangenome of Camellia sinensis. Plant J. [https://doi.org/10.1111/tpj.16874](https://doi.org/10.1111/tpj.16874)