A comprehensive description and evolutionary analysis of 22 grouper (Perciformes, Epinephelidae) mitochondrial genomes with emphasis on two novel genome organizations X Zhuang, M Qu, X Zhang, S Ding PLoS One 8 (8), e73561, 2013 | 82 | 2013 |
Molecular mechanism and history of non-sense to sense evolution of antifreeze glycoprotein gene in northern gadids X Zhuang, C Yang, KR Murphy, CHC Cheng Proceedings of the National Academy of Sciences 116 (10), 4400-4405, 2019 | 75 | 2019 |
ND6 gene “lost” and found: evolution of mitochondrial gene rearrangement in Antarctic notothenioids X Zhuang, CHC Cheng Molecular Biology and Evolution 27 (6), 1391-1403, 2010 | 69 | 2010 |
Molecular phylogenetic relationships of China Seas groupers based on cytochrome b gene fragment sequences S Ding, X Zhuang, F Guo, J Wang, Y Su, Q Zhang, Q Li Science in China Series C 49 (3), 235-242, 2006 | 62 | 2006 |
The genomic basis for colonizing the freezing Southern Ocean revealed by Antarctic toothfish and Patagonian robalo genomes L Chen, Y Lu, W Li, Y Ren, M Yu, S Jiang, Y Fu, J Wang, S Peng, KT Bilyk, ... GigaScience 8 (4), giz016, 2019 | 53 | 2019 |
A set of 16 consensus primer pairs amplifying the complete mitochondrial genomes of orange‐spotted grouper (Epinephelus coioides) and Hong Kong grouper (Epinephelus akaara) X Zhuang, S Ding, J Wang, Y Wang, Y Su Molecular Ecology Resources 9 (6), 1551-1553, 2009 | 22 | 2009 |
Molecular phylogenetic relationships of 30 grouper species in China Seas based on 16S rDNA fragment sequences D Shaoxiong, W Yinghui, W Jun, Z Xuan, S Yongquan, Y Yingzhe, L Qifu Dong wu xue bao.[Acta Zoologica Sinica] 52 (3), 504-513, 2006 | 16 | 2006 |
Resource Status and Effect of Long-Term Stock Enhancement of Large Yellow Croaker in China. J Yuan, H Lin, L Wu, X Zhuang, J Ma, B Kang, S Ding Frontiers in Marine Science, 1218, 2021 | 15 | 2021 |
The effects of age, sex, and habitat on body size and shape of the blackstripe topminnow, Fundulus notatus (Cyprinodontiformes: Fundulidae) (Rafinesque 1820) DP Welsh, M Zhou, SM Mussmann, LG Fields, CL Thomas, SP Pearish, ... Biological Journal of the Linnean Society 108 (4), 784-789, 2013 | 15 | 2013 |
Protein genes in repetitive sequence—antifreeze glycoproteins in Atlantic cod genome X Zhuang, C Yang, SE Fevolden, CHC Cheng BMC genomics 13, 1-9, 2012 | 14 | 2012 |
Evolution of chaperome gene expression and regulatory elements in the antarctic notothenioid fishes KT Bilyk, X Zhuang, L Vargas-Chacoff, CHC Cheng Heredity 126 (3), 424-441, 2021 | 11 | 2021 |
Molecular origins and mechanisms of fish antifreeze evolution CHC Cheng, X Zhuang Antifreeze proteins volume 1: environment, systematics and evolution, 275-313, 2020 | 10 | 2020 |
A tale of two genes: divergent evolutionary fate of haptoglobin and hemopexin in hemoglobinless Antarctic icefishes KT Bilyk, X Zhuang, KR Murphy, CHC Cheng Journal of Experimental Biology 222 (6), jeb188573, 2019 | 10 | 2019 |
Propagation of a de novo gene under natural selection: antifreeze glycoprotein genes and their evolutionary history in codfishes X Zhuang, CHC Cheng Genes 12 (11), 1777, 2021 | 8 | 2021 |
Molecular phylogenetic relationships of grouper species in China seas based on Cytochrome b gene fragment sequence X Zhuang, SX Ding, F Guo, J Wang, YQ Su, QY Zhang, QF Li Science in China (Ser, C) 36 (1), 27-34, 2006 | 7 | 2006 |
Reconstruction of the repetitive antifreeze glycoprotein genomic loci in the cold-water gadids Boreogadus saida and Microgadus tomcod X Zhuang, KR Murphy, L Ghigliotti, E Pisano, CHC Cheng Marine genomics 39, 73-84, 2018 | 6 | 2018 |
Positive and relaxed selective pressures have both strongly influenced the evolution of cryonotothenioid fishes during their radiation in the freezing Southern Ocean KT Bilyk, X Zhuang, C Papetti Genome Biology and Evolution 15 (4), evad049, 2023 | 5 | 2023 |
Creating sense from non-sense DNA: de novo genesis and evolutionary history of antifreeze glycoprotein gene in northern cod fishes (Gadidae) X Zhuang University of Illinois at Urbana-Champaign, 2013 | 5 | 2013 |
Cloning and sequencing of FlaA gene of Vibrio harveyi and construction of its eukaryotic expression recombinant plasmid Z Xuan, QIN Ying-xue, SU Yong-quan, W Jun, D Shao-xiong 海洋学报 29 (6), 74-79, 2007 | 5 | 2007 |
Differentiation and temperature adaptation of Pampus echinogaster based on genome-wide SNPs Y Li, F Lou, S Liu, H Li, J Xiang, B Shan, L Lin, X Zhuang Frontiers in Marine Science 9, 936217, 2022 | 4 | 2022 |