工作經(jīng)歷
1998.9~2002.7,中國(guó)海洋大學(xué),學(xué)士學(xué)位,海洋生物技術(shù)與計(jì)算機(jī)科學(xué)雙專(zhuān)業(yè)
2002.9~2007.7,中國(guó)海洋大學(xué),博士學(xué)位,遺傳學(xué)專(zhuān)業(yè),研究方向: 扇貝分子遺傳學(xué)
2007.9~2009.10,美國(guó)得克薩斯大學(xué)奧斯汀分校,博士后,研究方向: 珊瑚遺傳基因組學(xué)
2009.11~2010.12,美國(guó)得克薩斯大學(xué)奧斯汀分校,博士后,研究方向: 酒精成癮的分子機(jī)理
2011.1至今,中國(guó)海洋大學(xué),教授,研究方向: 扇貝基因組學(xué)與分子遺傳育種
研究方向
研究方向主要集中在海洋貝類(lèi)功能基因組學(xué)和分子遺傳育種學(xué)等領(lǐng)域。在海洋無(wú)脊椎生物的高通量低成本SNP分型技術(shù)開(kāi)發(fā),高精度遺傳連鎖圖譜構(gòu)建,共表達(dá)基因網(wǎng)絡(luò)研究,以及基因組進(jìn)化等方向上均有開(kāi)創(chuàng)性工作及標(biāo)志性的研究成果。研究成果陸續(xù)發(fā)表在國(guó)際知名期刊上,如Nature Methods, Journal of Neuroscience, Genome Biology等。迄今為止,已在主流SCI學(xué)術(shù)刊物上發(fā)表SCI論文30余篇,文章被他引230余次,其中第一或通訊作者SCI論文15篇(SCI 1區(qū)收錄2篇,2區(qū)收錄7篇)。
科研項(xiàng)目
(1) 扇貝高通量低成本SNP標(biāo)記分型技術(shù)的開(kāi)發(fā)及應(yīng)用,中國(guó)海洋大學(xué)青年英才工程支持計(jì)劃,2011.1~2013.12,主持;
(2) 櫛孔扇貝高精度遺傳連鎖圖譜的構(gòu)建(NCET-10-0761),2011.10~2013.12,教育部新世紀(jì)優(yōu)秀人才支持計(jì)劃,主持;
(3) 養(yǎng)殖扇貝重要經(jīng)濟(jì)性狀QTL精細(xì)定位及相關(guān)基因功能研究(31130054),2012.1~2016.12,國(guó)家自然科學(xué)基金重點(diǎn)項(xiàng)目,第2位;
(4) 基于全基因組信息的貝類(lèi)遺傳選育(2012AA10A405),2012.1~2015.12,“十二五”863計(jì)劃重大課題,主持。
代表論文
(1)Wang S, Meyer E, McKay JK & Matz MV. (2012) 2b-RAD: a simple and flexible method for genome-wide genotyping. Nature methods. ( IF: 20.7, In press)
(2) Ponomarev I,Wang S, Zhang L, Harris RA & Mayfield RD. (2012) Gene co-expression networks in human brain identify epigenetic modifications in alcohol dependence. Journal of Neuroscience. 32: 1884-1897. ( IF: 7.3)
(3) Zhang L, Hou R, Su H, Hu X,Wang S & Bao Z. (2012) Network analysis of oyster transcriptome revealed a cascade of cellular responses during recovery after heat shock. PLoS ONE. 7: e35484 ( IF: 4.4)
(4) Du H, Bao Z, Hou R, Wang S, Su H, Yan J, Tian M, Li Y, Wei W, Lu W, Hu X,Wang S & Hu J. (2012) Transcriptome sequencing and characterization for the sea cucumber Apostichopus japonicus (Selenka, 1867). PLoS ONE. 7: e33311. ( IF: 4.4)
(5) Hou R, Bao Z, Wang S, Su H, Li Y, Du H, Hu J,Wang S & Hu X. (2011) Transcriptome sequencing and de novo analysis for Yesso scallop ( Patinopecten yessoensis) using 454 GS FLX. PLoS ONE. 6: e21560. ( IF: 4.4)
(6)Wang S, Zhang L, Hu J, Bao Z & Liu Z. (2010) Molecular and cellular evidence for biased mitotic gene conversion in hybrid scallop. BMC Evolutionary Biology. 10: 6. ( IF: 3.7)
(7)Wang S, Zhang L, Meyer E & Matz MV. (2010) Characterization of a group of MITEs with unusual features from two coral genomes. PLoS ONE. 5: e10700. ( IF: 4.4)
(8)Wang S, Zhang L, Meyer E & Bao Z*. (2010) Genome-wide analysis of transposable elements and tandem repeats in the compact placozoan genome. Biology Direct. 5: 18. ( IF: 3.7)
(9)Wang S, Zhang L, Meyer E & Matz MV. (2009) Construction of a high-resolution genetic linkage map and comparative genome analysis for the reef-building coral Acropora millepora. Genome Biology. 10: R126. ( IF: 6.6)
(10)Wang S, Zhang L, Zhan A., Wang X, Liu Z, Hu J & Bao Z. (2007) Patterns of concerted evolution of the rDNA family in a natural population of Zhikong scallop, Chlamys farreri. Journal of Molecular Evolution. 65: 660-667. ( IF: 3.2)