1. Feng P, Shang YF, Cen K, Wang CS*. 2015. Fungal biosynthesis of the bibenzoquinoe oosporein to evade insect immunity. Proceedings of the National Academy of Sciences USA, 112(36): 11365-11370.
2. Shang YF, Feng P, Wang CS*. 2015. Fungi that infect insects: altering host behavior and beyond. PLoS Pathogens, 11(8): e1005037.
3. Huang W, Shang YF, Chen PL, Cen K, Wang CS*. 2015. Basic leucine zipper (bZIP) domain transcription factor MBZ1 regulates cell wall integrity, spore adherence, and virulence in Metarhizium robertsii. Journal of Biological Chemistry, 290(13): 8218-8231.
4. Huang W, Shang YF, Chen PL, Gao Q, Wang CS*. 2015. MrpacC regulates sporulation, insect cuticle penetration and immune evasion in Metarhizium robertsii. Environmental Microbiology, 17(4): 994-1008.
5. Hu X, Xiao GH, Zheng P, Shang YF, Su Y, Zhang XY, Liu XZ, Zhan S, St. Leger RJ, Wang CS*. 2014. Trajectory and genomic determinants of fungal-pathogen speciation and host adaptation. Proceedings of the National Academy of Sciences USA, 111(47): 16796-16801.
6. Duan ZB, Chen YX, Huang W, Shang YF, Chen PL, Wang CS*. 2013. Linkage of autophagy to fungal development, lipid storage and virulence in Metarhizium robertsii. Autophagy,9(4): 538-549.
7. Hu X, Zhang YJ, Xiao GH, Zheng P, Xia YL, Zhang XY, St Leger RJ, Liu XZ, Wang CS*. 2013. Genome survey uncovers the secrets of sex and lifestyle in caterpillar fungus. Chinese Science Bulletin, 58(23): 2846-2854. (cover story)
8. Xiao GH, Ying S-H, Zheng P, Zhang SW, Xie X-Q, Shang YF, St. Leger RJ, Zhao G-P, Wang CS*, Feng M-G*. 2012. Genomic perspectives on the evolution of fungal entomopathogenicity in Beauveria bassiana. Scientific Reports 2: 483.
9. Wang B, Kang QJ, Lu YZ, Bai LQ, Wang CS*. 2012. Unveiling the biosynthetic puzzle of destruxins in Metarhizium species. Proceedings of the National Academy of Sciences USA, 109(4): 1287-1292.
10. Shang YF, Duan ZB, Huang W, Gao Q, Wang CS*. 2012. Improving UV resistance and virulence of Beauveria bassiana by genetic engineering with an exogenous tyrosinase gene. Journal of Invertebrate Pathology, 109(1): 105-109.
11. Zheng P, Xia YL, Xiao GH, Xiong CH, Zhang SW, Zheng HJ, Huang Y, Zhou Y, Wang SY, Zhao G-P. Liu XZ, St. Leger RJ, Wang CS*. 2011. Genome sequence of the insect pathogenic fungus Cordyceps militaris, a valued traditional Chinese medicine. Genome Biology, 12(11): R116.
12. Gao Q, Jin K, Ying S-H, Zhang YJ, Xiao GH, Shang YF, Duan ZB, Hu X, Xie XQ, Zhou G, Peng GX, Luo ZB, Huang W, Wang B, Fang WG, Wang SB, Zhong Y, Ma L-J, St. Leger RJ, Zhao G-P, Pei Y, Feng M-G*, Xia YX*, Wang CS*. 2011. Genome sequencing and comparative transcriptomics of the model entomopathogenic fungi Metarhizium anisopliae and M. acridum. PLoS Genetics,7(1): e1001264.
13. Duan ZB, Shang YF, Gao Q, Zheng P, Wang CS*. 2009. A phosphoketolase Mpk1 of bacterial origin is adaptively required for full virulence in the insect-pathogenic fungus Metarhizium anisopliae. Environmental Microbiology, 11(9): 2351-2360.
14. Wang CS*, St Leger RJ*. 2007. A scorpion neurotoxin increases the potency of a fungal insecticide. Nature Biotechnology, 25(12): 1455-1456.
15.Wang CS*, St Leger RJ*. 2007. TheMetarhizium anisopliae perilipin homolog MPL1 regulates lipid metabolism, appressorial turgor pressure and virulence. The Journal of Biological Chemistry 282(29): 21110-21115.
16. Wang CS, St Leger RJ*. 2007. The MAD1 adhesin of Metarhizium anisopliae links adhesion with blastospore production and virulence to insects, and the MAD2 adhesin enables attachment to plants. Eukaryotic Cell 6(5): 808-816.
17. Wang CS, St Leger RJ*. 2006. A collagenous protective coat enables Metarhizium anisopliae to evade insect immune responses. Proceedings of the National Academy of Sciences USA103(17): 6647-6652.
18. Wang CS*, Shah FA, Petal N, Li ZZ, Butt TM. 2003. Molecular investigation on genetic relatedness and population structure of the entomopathogenic fungus, Beauveria bassiana. Environmental Microbiology 5(10): 908-915.
擴展閱讀:
Nature子刊:王成樹博士最新殺蟲劑毒力研究成果
來自中科院植物生理生態研究所(Institute of Plant Physiology and Ecology)與美國馬里蘭大學昆蟲學系的研究人員發現了一種能促進殺蟲劑毒力的神經毒素,為這種殺蟲劑的套用,以及研究真菌殺蟲劑作用機理,真菌-昆蟲相互作用的分子機制提供了重要資料。這一研究結果公布在Nature Biotechnology 雜誌上。
文章的作者分別為植生生態研究所的“百人計畫”課題組長王成樹博士,以及馬里蘭大學的Raymond J St Leger教授。王成樹博士的研究領域主要包括昆蟲病原真菌致病基因功能研究、真菌-昆蟲相互作用的分子機制、絲狀真菌菌種退化、衰老的分子機理和蟲草菌發育生物學及活性成份代謝途徑。