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Published on: July 28, 2017
An annotated chromosome-scale reference genome for Eastern black-eared wheatear (Oenanthe melanoleuca)
Valentina Peona1, Octavio Manuel Palacios-Gimenez1,2,3, Dave Lutgen4,2,5
1Department of Organismal Biology-Systematic Biology, Science for Life Laboratory, Evolutionary Biology Centre, Uppsala University, 75236 Uppsala, Sweden.
Researchers generated a chromosome-scale genome assembly for the Eastern black-eared wheatear, providing key genomic resources. This facilitates studies on the molecular basis of adaptation and speciation in wheatears, a genus known for convergent evolution and hybridization.
Area of Science:
- Genomics
- Evolutionary Biology
- Ornithology
Background:
- Wheatears (genus Oenanthe) exhibit significant convergent evolution and hybridization.
- Understanding the genetic underpinnings of their diversification is crucial.
Purpose of the Study:
- To generate and annotate a high-quality chromosome-scale genome assembly for the Eastern black-eared wheatear (Oenanthe melanoleuca).
- To provide essential genomic resources for studying adaptation and speciation in Oenanthe.
Main Methods:
- Generated a long-read-based male nuclear genome assembly.
- Annotated the genome for protein-coding genes and mRNAs.
- Assessed genome contiguity and completeness using established metrics (N50, BUSCO).
Main Results:
- A 1.04 Gb chromosome-scale assembly of the Eastern black-eared wheatear genome was produced.
- The assembly achieved high contiguity (scaffold N50, 70 Mb) and chromosome-level completeness (96%).
- The genome was annotated with 18,143 protein-coding genes and 31,333 mRNAs, with high BUSCO completeness (98.0%).
Conclusions:
- The annotated chromosome-scale genome assembly of O. melanoleuca is a vital resource.
- It will advance research into the genomics of adaptation and speciation in wheatears.
- This resource supports investigations into phenotypic diversification in this passerine genus.
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