Issue Date | Title | Author(s) | Relation | scopus | WOS | Fulltext/Archive link |
2014 | Ancient Nuclear Plastid DNA in the Yew Family (Taxaceae) | Hsu, CY; Wu, CS; Chaw, SM | Genome Biology and Evolution 6(8), 2111-2121 | | | |
2014 | Ancient nuclear plastid DNA in the yew family (taxaceae). | Hsu, CY; Wu, CS; Chaw, SM | Genome biology and evolution 6(8), 2111-21 | | | |
2016 | Birth of four chimeric plastid gene clusters in Japanese umbrella pine. | Hsu, CY; Wu, CS; Chaw, SM | Genome Biology and Evolution 8(6), 1776-1784 | | | |
2007 | Chloroplast genome (cpDNA) of Cycas taitungensis and 56 cp protein-coding genes of Gnetum parvifolium: insights into cpDNA evolution and phylogeny of extant seed plants | Wu, CS; Wang, YN; Liu, SM; Chaw, SM | Molecular Biology and Evolution 24, 1366-1379 | | | |
2013 | Chloroplast phylogenomic indicates that Ginkgo biloba is sister to cycads | Wu, CS; Chaw, SM; Huang, YY | Genome Biology and Evolution 5(1), 243-254 | | | |
- | Chloroplast phylogenomics: Misleading factors underlie the long-debated phylogeny of Ginkgo biloba | Wu, CS; Chaw, SM; Huang, YY | Genome Biology and Evolution | | | |
2010 | Comparative Chloroplast Genomics reveals the evolution of Pinaceae Genera and Subfamilies. Genome Biology and Evolution. 2: 504–517. | Lin, CP; Huang, JP; Wu, CS; Hsu, CY; Chaw, SM | Genome Biology and Evolution 2, 504-517 | | | |
2012 | Complete chloroplast genome of Ginkgo biloba: reveals the mechanism of inverted repeat contraction | Lin, CP; Wu, CS; Huang, YY; Chaw, SM | Genome Biology and Evolution 4, 374-381 | | | |
2022 | Disulfiram blocked cell entry of SARS-CoV-2 via inhibiting the interaction of spike protein and ACE2 | Chen, HF; Hsueh, PR; Liu, YY; Chen, Y; Chang, SY; Wang, WJ; Wu, CS; Tsai, YM; Liu, YS; Su, WC; Chou, YC ; Hung, MC | American journal of cancer research 12(7), 3333-3346 | | | |
2008 | Elevated serum decoy receptor 3 with enhanced T cell activation in systemic lupus erythematosus. | Lee, CS; Hu, CY; Tsai, HF; Wu, CS; Hsieh, SL; Liu, LC; Hsu, PN | Clinical and experimental immunology 151(3), 383-90 | | | |
2019 | Enlarged and highly repetitive plastome of Lagarostrobos and plastid phylogenomics of Podocarpaceae | Sudianto, E; Wu, CS; Leonhard, L; Martin, WF; Chaw, SM | Molecular Phylogenetics and Evolution 133, 24-32 | | | |
2018 | Evolution of gymnosperm plastomes | Chaw, SM; Wu, CS; Sudianto, E | Chaw, SM & R K Jansen (Editors). "Plastid Genome Evolution, Volume 85 (1st Edition)". ISBN: 9780128134573, Academic Press., Chapter 7, 195-216 | | | |
2022 | Evolution of mitochondrial RNA editing in extant gymnosperms | Wu, CS; Chaw, SM | Plant J 111(6), 1676-1687 | | | |
2009 | Evolution of reduced and compact chloroplast genomes (cpDNAs) in gnetophytes: Selection toward a lower-cost strategy | Wu, CS; Lai, YT; Lin, CP; Wang, YN; Chaw, SM | Molecular Phylogenetics and Evolution 52, 115-124 | | | |
2015 | Evolutionary Stasis in Cycad Plastomes and the First Case of Plastome GC-Biased Gene Conversion. | Wu, CS; Chaw, SM | Genome biology and evolution 7(7), 2000-9 | | | |
2022 | From polyploidy to polyploidy reversal: its role in normal and disease states. | Wu, CS; Lu, WH; Hung, MC; Huang, YS ; Chao, HW | Trends in genetics : TIG 38(10), 991-995 | | | |
2014 | Highly rearranged and size-variable chloroplast genomes in conifer II clade (cupressophytes): selection toward shorter intergenic spacers. | Wu, CS; Chaw, SM | Plant Biotechnology Journal 12(3), 344-353 | | | |
2017 | Insights into the Existence of Isomeric Plastomes in Cupressoideae (Cupressaceae) | Qu, XJ; Wu, CS; Chaw, SM ; Yi, TS | Genome Biology and Evolution 9(4), 1110-1119 | | | |
2022 | Plastid phylogenomics and plastome evolution in the morning glory family (Convolvulaceae) | Wu, CS; Chen, CI; Chaw, SM | Frontiers in Plant Science 13, 1061174 | | | |
2017 | Plastome Evolution in the Sole Hemiparasitic Genus Laurel Dodder (Cassytha) and Insights into the Plastid Phylogenomics of Lauraceae | Wu, CS; Wang, TJ; Wu, CW; Wang, YN; SM, Chaw | GENOME BIOLOGY AND EVOLUTION 9(10), 2604-2614 | | | |