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成果及论文

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(1)     Zuo, B., Nneji, L.M. & Sun, YB*. Comparative genomics reveals insights into anuran genome size evolution. 2023. BMC Genomics 24, 379.

(2)     Fu T.T#, Sun Y.B#, Gao W#, Long C, Yang C, Yang X, Zhang Y, Lan X, Huang S, Jin J, Murphy R, Zhang Y*, Lai R*, Hillis D*, Zhang Y.P*, Che J*. 2022 The highest-elevation frog provides insights into mechanisms and evolution of defenses against high ultraviolet radiation. PNAS 119 (46) e2212406119

(3)     Liu YN, Chen RM, Pu QT, Nneji LM, Sun YB*. 2022. Expression Plasticity of Transposable Elements Is Highly Associated with Organismal Re-adaptation to Ancestral Environments. Genome Biology and Evolution 14 evac084.

(4)     Yan-Bo Sun*, Yi Zhang, Kai Wang. 2020, Perspectives on studying molecular adaptations of amphibians in the genomic era. Zoological Research, 41(4): 351-364.

(5)     Chun-Hua Yang, Ting-Ting Fu, Xin-Qiang Lan, Yun Zhang, Lotanna Micah Nneji, Robert W. Murphy, Yan-Bo Sun*, Jing Che* 2019. Comparative skin histology of frogs reveals high-elevation adaptation of the Tibetan Nanorana parkeri. Asian Herpetological Research 10(2): 79–85.

(6)     Gao, W.#, Sun, Y.B.#, Zhou, W.W.#, Xiong, Z.J., Chen, L., Li, H., Fu, T.T., Xu, K., Xu, W., Ma, L., Chen, Y.J., Xiang, X.Y., Zhou, L., Zeng, T., Zhang, S., Jin, J.Q., Chen, H.M., Zhang, G., Hillis, D.M., Ji, X., Zhang, Y.P., Che, J., 2019. Genomic and transcriptomic investigations of the evolutionary transition from oviparity to viviparity. PNAS 116, 3646-3655.

(7)     Sun, Y.B., Fu, T.T., Jin, J.Q., Murphy, R.W., Hillis, D.M., Zhang, Y.P., Che, J., 2018. Species groups distributed across elevational gradients reveal convergent and continuous genetic adaptation to high elevations. PNAS 115, E10634-E10641.

(8)     Sun, Y.B., 2018. FasParser2: a graphical platform for batch manipulation of tremendous amount of sequence data. Bioinformatics 34, 2493-2495.

(9)     Jin, J.Q., Sun, Y.B.*, 2018. AutoSeqMan: batch assembly of contigs for Sanger sequences. Zoological Research 39, 123-126.

(10) Sun, Y.B*., 2017. FasParser: a package for manipulating sequence data. Zoological Research 38, 110-112 .

(11) Sun, Y.B., Xiong, Z.J., Xiang, X.Y., Liu, S.P., Zhou, W.W., Tu, X.L., Zhong, L., Wang, L., Wu, D.D., Zhang, B.L., Zhu, C.L., Yang, M.M., Chen, H.M., Li, F., Zhou, L., Feng, S.H., Huang, C., Zhang, G.J., Irwin, D., Hillis, D.M., Murphy, R.W., Yang, H.M., Che, J., Wang, J., Zhang, Y.P., 2015. Whole-genome sequence of the Tibetan frog Nanorana parkeri and the comparative evolution of tetrapod genomes. PNAS 112, E1257-1262.

(12) Wu, D.D., Ye, L.Q., Li, Y., Sun, Y.B., Shao, Y., Chen, C., Zhu, Z., Zhong, L., Wang, L., Irwin, D.M., Zhang, Y.E., Zhang, Y.P., 2015. Integrative analyses of RNA editing, alternative splicing, and expression of young genes in human brain transcriptome by deep RNA sequencing. Journal of molecular cell biology 7, 314-325.

(13) Sun, Y.B., Zhou, W.P., Liu, H.Q., Irwin, D.M., Shen, Y.Y., Zhang, Y.P., 2013. Genome-wide scans for candidate genes involved in the aquatic adaptation of dolphins. Genome biology and evolution 5, 130-139.

(14) Liu, J.#, Wang, L.D.#, Sun, Y.B.#, Li, E.M., Xu, L.Y., Zhang, Y.P., Yao, Y.G., Kong, Q.P., 2012. Deciphering the signature of selective constraints on cancerous mitochondrial genome. Molecular biology and evolution 29, 1255-1261.

(15) Sun, Y.B., Shen, Y.Y., Irwin, D.M., Zhang, Y.P., 2011. Evaluating the roles of energetic functional constraints on teleost mitochondrial-encoded protein evolution. Molecular biology and evolution 28, 39-44.