领域:高端装备制造产业 学校:南京大学职称:教授
自然界80% 以上的植物都依赖与菌根真菌形成共生关系来获取必要的养份;同时,所有的植物都面临环境中多种多样病原的威胁。本实验室的研究主要围绕植物与共生真菌的相互作用以及植物与病原的相互作用这两个主题展开。
1. 菌根学方向 (Mycorrhizal Symbiosis)Ø1)植物主要依靠哪些基因调控与菌根真菌的共生关系;2)这些基因及所在家族成员在不同类群植物(如单子叶禾本科植物水稻 与 豆科植物苜蓿)中的功能分化机制;3)保守型小RNA在植物菌根共生过程中所扮演的角色及调控机制。Ø2. 植物-病原相互作用方向 (Plant-pathogen interaction)1)植物中最大的一类抗病基因(NBS-LRR类R基因)在不同类群植物中的保存与分化特征;
2)大豆抗花叶病毒病功能基因(Rsv基因)的定位与转基因功能验证;
3)复合R基因位点中多个成员协同对抗不同病原的多功能化机制。
本实验室同时在植物基因组演化,植物分子系统学,植物形态发育与分子机制等研究领域都有着广泛的兴趣。
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南京大学工作期间发表的论文
36. Wu M, Liu YN, Zhang C, Liu XT, Liu CC, Guo R, Niu KX, Zhu AQ, Yang JY, Chen JQ*, Wang B* (2019) Molecular mapping of the gene(s) conferring resistances to Soybean mosaic virus and Bean common mosaic virus in the soybean cultivar Raiden. Theor Appl Genet(accepted).
35.Shao ZQ, Xue JY, Wang B, Chen JQ* (2019) Revisiting the origin of plant NBS-LRR genes. Trends in Plant Science 24(1): 9-12.
34.Xu RR, Yang WD, Niu KX, Wang B*, Wang WM* (2018) An update on the evolution of Glucosyltransferase (Gtf) genes in Streptococcus. Frontiers in Microbiology9: 2979.
33.Wu Y, Wu P, Wang B, Shao ZQ* (2018) Genome-wide analysis reveals ancestral lack of seventeen different tRNAs and clade-specific loss of tRNA-CNNs in Archaea. Frontiers in Microbiology9: 1245.
32.Wu M,Wu WP,Liu CC,Liu YN,Wu XY,Ma FF,Zhu AQ,Yang JY*,Wang B*,Chen JQ* (2018) A bean common mosaic virus (BCMV)-resistance gene is fine-mapped to the same region as Rsv1-h in the soybean cultivar Suweon 97. Theor Appl Genet131(9): 1851-1860.
31.Ma FF, Wu M, Liu YN, Feng XY, Wu XZ, Chen JQ*, Wang B* (2018) Molecular characterization of NBS-LRR genes in the soybean Rsv3 locus reveals several divergent alleles that likely confer resistance to the soybean mosaic virus. Theor Appl Genet131(2): 253-265.
30.Chen YX, Wu M, Ma FF, Chen JQ*, Wang B* (2017) Complete nucleotide sequences of seven soybean mosaic viruses (SMV), isolated from wild soybeans (Glycine soja) in China. Archives of Virology162(3): 901-904.
29.Ma FF, Wu XY, Chen YX, Liu YN, Shao ZQ, Wu P, Wu M, Liu CC, Wu WP, Yang JY, Li DX, Chen JQ*,Wang B* (2016) Fine mapping of the Rsv1-h gene in the soybean cultivar Suweon97 that confers resistance to two Chinese strains of the soybean mosaic virus. Theor Appl Genet129: 2227-2236.
28. Shao ZQ, Wang B*, Chen JQ* (2016) Tracking ancestral lineages and recent expansions of NBS-LRR genes in angiosperms. Plant Signaling & Behavior11(7): e1197470.
27.Wu XY, Zhou GC, Chen YX, Wu P, Liu LW, Ma FF, Wu M, Liu CC, Zeng YJ, Chu AE, Hang YY, Chen JQ*, Wang B*(2016) Soybean cyst nematode resistance emerged via artificial selection of duplicated serine hydroxylmethyltransferase genes. Frontiers in Plant Science 7:998.
26. Wu P, Wu Y, Liu CC, Liu LW, Ma FF, Wu XY, Wu M, Hang YY, Chen JQ, Shao ZQ*, Wang B* (2016) Identification of arbuscular mycorrhiza (AM)-responsive microRNAs in tomato. Frontiers in Plant Science7: 429.
25. Shao ZQ, Xue JY, Wu P, Zhang YM, Wu Y, Hang YY, Wang B*,Chen JQ*(2016) Large-scale analyses of angiosperm Nucleotide-Binding Site-Leucine-Rich Repeat (NBS-LRR) Genes reveal three anciently diverged classes with distinct evolutionary patterns. Plant Physiology,170 (4): 2095-2109. cited: 36
24.Pan HR, Oztas O, Zhang XW, Wu XY, Stonoha C, Wang ET, Wang B, Wang D*(2016) A symbiotic SNARE protein generated by alternative termination of transcription. Nature Plants215197.cited: 28
23.Zhang YM, Shao ZQ, Wang Q, Hang YY, Xue JY, Wang B*, Chen JQ*(2016) Uncovering the dynamic evolution of nucleotide-binding site-leucine-rich repeat (NBS-LRR) genes in Brassicaceae. J Integra Plant Biol58(2): 165-177.
22.Zhou GC, Shao ZQ, Ma FF, Wu P, Wu XY, Xie ZY, Yu DY, Cheng H, Liu ZH, Jiang ZF, Chen QS, Wang B*, Chen JQ*(2015) The evolution of soybean mosaic virus: An updated analysis by obtaining 18 new genomic sequences of Chinese strains/isolates. Virus Research208: 189-198.
21.Shao ZQ, Zhang YM, Hang YY, Xue JY, Zhou GC, Wu P, Wu XY, Wu XZ, Wang Q, Wang B*, Chen JQ*(2014) Long-term evolution of nucleotide-binding site-leucine-rich repeat genes: understanding gained from and beyond the legume family. Plant Physiology, 166(1): 217-234.cited: 47
20.Zhou GC, Wu XY, Zhang YM, Wu P, Wu XZ, Liu LW, Wang Q, Hang YY, Yang JY, Shao ZQ*, Wang B*, Chen JQ*(2014) A genomic survey of thirty soybean-infecting bean common mosaic virus (BCMV) isolates from China pointed BCMV as a potential threat to soybean production. Virus Research191: 125-133.
19.Wu P, Shao ZQ, Wu XZ, Wang Q, Wang B, Chen JQ, Hang YY, Xue JY (2014) Loss/retention and evolution of NBS-encoding genes upon whole genome triplication of Brassica rapa. Gene, 540(1): 54-61.
18.Zhang YM, Shao ZQ, Yang LT, Sun XQ, Mao YF, Chen JQ*, Wang B*(2013) Non-random arrangement of synonymous codons in archaea coding sequences. Genomics101 (6) 362-367.
17.Shao ZQ, Zhang YM, Pan XZ, Wang B*, Chen JQ*(2013) Insight into the evolution of the Histidine Triad Protein (HTP) family in Streptococcus. PLoS ONE 8 (3) e60116.
16.Xue JY, Wang Y, Wu P, Wang Q, Yang LT, Pan XH, Wang B*, Chen JQ*(2012) A primary survey on bryophyte species revealed two novel classes of nucleotide-binding site (NBS) genes. PLoS ONE 7 (5) e36700.
15.Shao ZQ, Zhang YM, Feng XY, Wang B*, Chen JQ*(2012) Synonymous Codon Ordering: A Subtle but Prevalent Strategy of Bacteria to Improve Translational Efficiency. PLoS ONE, 7(3): e33547.
14.Wang B, Shao ZQ, Xu Y, Liu J, Liu Y, Hang YY, Chen JQ (2011) Optimal codon identities in bacteria: Implications from the conflicting results of two different methods. PloS ONE6 (7) e22714.
13.Wang B, Yuan J, Liu J, Jin L, Chen JQ (2011) Codon usage bias and determining forces in green plant mitochondrial genomes. J Integra Plant Biol53: 324-334.
12.Wang B, Liu J, Jin L, Feng XY, Chen JQ (2010) Complex mutation and weak selection together determined the codon usage bias in bryophyte mitochondrial genomes. J Integra Plant Biol52: 1100-1108.
博士期间工作发表的论文
11.Liu Y*, Wang B*, Cui P*, Li LB, Xue JY, Yu J, Qiu YL (2012) The mitochondrial genome of the lycophyte Huperzia squarrosa: the most archaic form in vascular plants. 专利、著作版权等