Weilong Hao

Affiliations: 
2002-2007 Biology McMaster University, Hamilton, ON, Canada 
 2007-2010 Biology Indiana University, Bloomington, Bloomington, IN, United States 
 2011- Biological Sciences Wayne State University, Detroit, MI, United States 
Area:
molecular evolution, genome evolution, mitochondrial genomes
Website:
http://haolab.wayne.edu
Google:
"Weilong Hao"
Cross-listing: FlyTree - Evolution Tree

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Publications

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Wu B, Hao W, Cox MP. (2022) Reconstruction of gene innovation associated with major evolutionary transitions in the kingdom Fungi. Bmc Biology. 20: 144
Hao W. (2022) From Genome Variation to Molecular Mechanisms: What we Have Learned From Yeast Mitochondrial Genomes? Frontiers in Microbiology. 13: 806575
Nguyen DT, Wu B, Long H, et al. (2020) Variable Spontaneous Mutation and Loss of Heterozygosity among Heterozygous Genomes in Yeast. Molecular Biology and Evolution. 37: 3118-3130
Nguyen DT, Wu B, Xiao S, et al. (2020) Evolution of a record-setting AT-rich genome: indel mutation, recombination, and substitution bias. Genome Biology and Evolution
Wu B, Hao W. (2019) Mitochondria-encoded Endonucleases Drive Recombination of Protein Coding Genes in Yeast. Environmental Microbiology
Su HJ, Barkman TJ, Hao W, et al. (2018) Novel genetic code and record-setting AT-richness in the highly reduced plastid genome of the holoparasitic plant . Proceedings of the National Academy of Sciences of the United States of America
Xiao S, Nguyen DT, Wu B, et al. (2017) Genetic drift and indel mutation in the evolution of yeast mitochondrial genome size. Genome Biology and Evolution
Wu B, Macielog AI, Hao W. (2017) Origin and Spread of Spliceosomal Introns: Insights from the Fungal Clade Zymoseptoria. Genome Biology and Evolution. 9: 2658-2667
Bhagwat AS, Hao W, Townes JP, et al. (2016) Strand-biased cytosine deamination at the replication fork causes cytosine to thymine mutations in Escherichia coli. Proceedings of the National Academy of Sciences of the United States of America
Xu YX, Mao J, Chen W, et al. (2015) Identification and expression profiling of the auxin response factors (ARFs) in the tea plant (Camellia sinensis (L.) O. Kuntze) under various abiotic stresses. Plant Physiology and Biochemistry : Ppb / Societe Francaise De Physiologie Vegetale. 98: 46-56
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