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张宪省

张宪省,1962年1月出生于山东省,山东农业大学教授、博士生导师、校长,作物生物学国家重点实验室主任 。

张宪省于1982年、1来自988年先后获得山东农业大学学士、硕士学位360百科;1990年在美国加州大学戴维斯分校植物系做访问学台松先察胶者;1997年获得中国农业大学植物生理学博士学位;1999年12月担任山东农业大学党委常委、副校长;2005年被评为山东省有突出贡献的中青年专家 ;2007年被科技部聘为国家重大科学计划项目首席科学家;2008年被农业部聘为国家转基因新品种培育重大课题主持人;至粉者难知2016年11月担任山东农业大学校长;2018年担任第十三届全国人民代表大会代表 。

  • 中文名称 张宪省
  • 国籍 中国
  • 民族 汉族
  • 出生地 山东省
  • 出生日期 1962年1月

人物经历

  1982年,张宪省在山东农业大学农学专业获得学士学位。

  1988年,在山东农业谓财府观青取杂困态到大学植物生理学专业获得硕士学位来自

  1990年,受美国植物发育分子生物学家O'Neill教授的邀请,由美国资助,在美国加州大学戴维斯分校植物系做访问学者(至1993年),从事植物分子生物学研究。

  1997年,在中国农业大学获得植物生理学博士学位。

  1997年,先后任基础部360百科副主任、生命科学学院院长(状给迫程运胞答味至1999年)。

  2000年,在美国康奈尔大学做高级访问学者。

  2003年,在新加坡国立大学进行合作研究。

  1999年12月,担任山东农业大学党委常委、副校长(至2016年11月)。

  2007年,被科技部聘为国家重大科学计划项目(973怕工较板号内烈候印从项目)首席科学家

  2008年,被农业部聘为国家转基因新品种培育重大课题主持人。

  2016年11月,担任山东农业大学校罪亮书长。

  2018年,担任第十三届全国人民代表大会代表。

主要成就

科研成就

  • 项目承担&成果奖励

  截至2016到厂次分酸府甚年,张宪省先后主持科技部国家重大科学研究计划项目(973计划)、国家转基因生物新烟布品培育重大专项、国家自然基金重大科学研究计划重点项目、国家转基因植物与广烧笔项入触季界木活齐产业化专项、国家863项目、国家自然科学基金重点项目等国家级课题40余项,其他省部级课题和横向课题80余项。2007年友定超理罗硫,作为项目首席科学家主持973重大科学研究计划"植物授粉细胞花粉识别的分子机理研究"(2500万元)

  项目承担

时间项目名称项目来源经费
2007-2011年植物授粉细胞下段价程命旧识别的分子机理研究信句程喜如目兴曾亮劳号通路973计划项目,首席科学家2500万元
2并陆导音灯007-2011年植物干细胞维持和分化的分子机理研究973计划项目150万元
2006-2008年小麦开花时间重要夫延神陆委松整功能基因的鉴定及作用机理的研究863计划项目70万元
2005-2009年水稻重要农艺性状的功能基因组和分子基种界械便花易消础研究973计划项目40万元
2005-2007年小麦和玉米淀粉形成的分子机制及淀粉品质的遗传改良重大基础研究前期研究移沿笔专项50万元
2008-2010年植物离体生殖器官发生过程中细胞脱分化与再分化的分子基础研究国家自然科学基金课题40万元
2008-2010年保卫副田河下仅总差夜教政析细胞微丝骨架调节液泡动态及其调节机理的研究国家自然科学基金课30万元
2011-20参香星从风织妈准会12年高产转基因玉米新品种培育

  转基因生物新品种培育重大

  专项课题,主持

268万元
2010-2013年植物激素调节体细胞胚胎发生的分子机理研究国家自然科学基金重点项目,主持180万元
2008-2010年高产转基因玉米新品种培育

  转基因生物新品种培育重大

  专项课题,主持

423万元
2005-2009年水稻重要农艺性状的功能基因组和分子基础研究973计划项目60万元

  成果奖励

时间项目名称奖励名称
2012年植物生殖器官的发育与激素调节山东省自然科学一等奖
2005年小麦品质性状基因的分离与淀粉品质性状的遗传改良山东省自然科学二等奖
1997年高等植物花发育的分子生物学研究山东省科技进步二等奖
  • 论文著作&专利发明

  截至2016年,张宪省在《Plant Cell》、《Plant Journal》、《Plant Physiology》、《Plant Molecular Biology》、《中国科学》等国内外专业学术刊物上发表论文300余篇,其中SCI收录论文140余篇。

  1. Cheng ZJ1, Zhao XY1, Shao XX1, Wang F, Zhou C, Liu YG, Zhang Y and Zhang XS (2014) Abscisic Acid Regulates Early Seed Development in Arabidopsis by ABI5-Mediated Transcription of SHORT HYPOCOTYL UNDER BLUE1, Plant cell, 26: 1053-1068.
  2. Su YH and Zhang XS (2014) The Hormonal Control of Regeneration in Plants. In Brigitte Galliot, editor: Mechanisms of Regeneration, 108: 35-69
  3. Li YL, Dai XR, Yue X, Gao XQ and Zhang XS (2014) Identification of small secreted peptides (SSPs) in maize and expression analysis of partial SSP genes in reproductive tissues. Planta, 240: 713-728
  4. Dai XR1, Gao XQ1, Chen GH, Tang LL, Wang H and Zhang XS (2014) ABNORMAL POLLEN TUBE GUIDANCE1, an endoplasmic reticulum-localized mannosyltransferase homolog of GLYCOSYLPHOSPHATIDYLINOSITOL10 in yeast and PHOSPHATIDYLINOSITOL GLYCAN ANCHOR BIOSYNTHESIS B in human, is required for Arabidopsis pollen tube micropylar guidance and embryo development. Plant Physiology, 165:1544–1556
  5. Yue X1, Gao XQ1, Wang F and Zhang XS (2014) Transcriptional evidence for inferred pattern of pollen tube-stigma metabolic coupling during pollination. PLoS One, 9(9): e107046. DOI:10.1371/journal.pone.0107046
  6. Bai B, Su YH, Yuan J and Zhang XS (2013) Induction of Somatic Embryos in Arabidopsis Requires Local Auxin Biosynthesis Mediated by the Down-regulation of Ethylene Biosynthesis. Molecular Plant, 6: 1247-1260
  7. Su YH, Su YX, Liu YG and Zhang XS (2013) Abscisic acid is required for somatic embryo initiation through mediating spatial auxin response in Arabidopsis. Plant Growth Regul. 69: 167-176
  8. Zhao XY, Su YH, Zhang CL, Wang L, Li XG and Zhang XS (2013) Differences in capacities of in vitro organ regeneration between two Arabidopsis ecotypes Wassilewskija and Columbia. Plant Cell Tiss Organ Cult 112: 65-74
  9. Li XM, Sang YL, Zhao XY and Zhang XS (2013) High-Throughput Sequencing of Small RNAs from Pollen and Silk and Characterization of miRNAs as Candidate Factors Involved in Pollen-Silk Interactions in Maize. PLoS One, 8:e72852
  10. Xu XH, Wang F, Chen H, Sun W and Zhang XS (2013) Transcriptome Analysis of Maize Silks Reveals Effective Activation of Genes Involved in Microtubule-based Movement, Ubiquitin-dependent Protein Degradation, and Transport in the Pollination Process. PLoS One, 8:e53545
  11. Cheng ZJ, Wang L, Sun W, Zhang Y, Zhou C, Su YH, Li W, Sun TT, Zhao XY, Li XG, Cheng Y, Zhao Y, Xie Q and Zhang XS (2012) Pattern of auxin and cytokinin responses for shoot meristem induction results from the regulation of cytokinin biosynthesis by AUXIN RESPONSE FACTOR3. Plant Physiol. 161: 240-251
  12. Xu XH1, Chen H1, Sang YL, Wang F, Ma JP, Gao XQ and Zhang XS (2012) Identification of genes specifically or preferentially expressed in maize silk reveals similarity and diversity in transcript abundance of different dry stigmas. BMC Genomics 13:294-310
  13. Sang YL, Xu M, Ma FF, Chen H, Xu XH, Gao XQ and Zhang XS (2012) Comparative proteomic analysis reveals similar and distinct features of proteins in dry and wet stigmas. Proteomics 12:1983-1998
  14. Gao XQ and Zhang XS. (2012) Metabolism and Roles of Phosphatidylinositol 3-phosphate in Pollen Development and Pollen Tube Growth in Arabidopsis. Plant Siganling and Behavior 7:2, 1-5
  15. Xu N, Gao XQ, Zhao XY, Zhu DZ, Zhou LZ and Zhang XS (2011) Arabidopsis AtVPS15 is Essential for Pollen Development and Germination through Modulating Phosphatidylinositol 3-Phosphate Formation. PMB 77(3): 251-60
  16. Li W, Liu H, Cheng ZJ, Su YH, Han HN, Zhang Y and Zhang XS (2011) DNA Methylation and Histone Modifications Regulate de novo Shoot Regeneration in Arabidopsis by Modulating WUSCHEL Expression and Auxin Signaling. Plos Genetics 7:8el002243
  17. Su YH, Liu YB and Zhang XS (2011) Auxin-cytokinin interaction regulates meristem development. Molecular Plant 4 (4): 616-625
  18. Li X, Chen GH, Zhang WY and Zhang XS (2010) Genome-wide transcriptional analysis of maize endosperm in response to ae wx double mutation. JGG. 37: 749-762
  19. Su YH, Cheng ZJ, Su YX and Zhang XS (2010) Pattern analysis of stem cell differentiation during in vitro Arabidopsis organogenesis. Front. Biol. 5(5): 464-470
  20. Cheng ZJ, Zhu SS, Gao XQ and Zhang XS (2010) Cytokinin and auxin regulates WUS induction and inflorescence regeneration in in vitro in Arabidopsis. Plant Cell Rep 29:927-933.
  21. Gao XQ, Zhu DZ and ZhangXS (2010) Stigma factors regulating self-compatible pollination. Front. Biol. 5(2): 156-163
  22. Li XG, Su YH, Zhao XY, Li W, Gao XQ and Zhang XS (2010) Cytokinin overexpression-caused alteration of flower development is partially mediated by CUC2 and CUC3 in Arabidopsis. Gene 450:109-120
  23. Guo J, Wang F, Song J and Zhang XS (2010) The expression of Orysa;CycB1;1 is essential for endosperm formation and causes embryo enlargement in rice. Planta 231:293-303
  24. Ma Y, Wang F, Guo J and Zhang XS (2009) Rice OsAS2 Gene, a Member of LOB Domain Family, Functions in Regulation of Shoot Differentiation and Leaf Development. Journal of Plant Biology 52:374-381
  25. Su YH, Zhao XY, Liu YB, Zhang CL, O'Neill SD and Zhang XS (2009) Auxin-induced WUS expression is essential for embryonic stem cell renewal during somatic embryogenesis in Arabidopsis. Plant Journal 59:448-460
  26. Su YH and Zhang XS (2009) Auxin gradients trigger de novo formation of stem cells during somatic embryogenesis. Plant Signaling and Behavior 4:7, 574-576
  27. Zhou Y, Zhang XJ, Kang XJ, Zhao XY, Zhang XS and Ni M (2009) SHORT HYPOCOTYL UNDER BLUE1 associates with MINISEED3 and HAIKU2 promotes in vivo to regulate Arabidopsis seed development. Plant Cell 21:106-117
  28. Ma Q, Dai X, Xu Y, Guo J, Liu Y, Chen N, Xiao J, Zhang D, Xu Z, Zhang XS and Chong K. (2009) Enhanced tolerance to chilling stress in OsMYB3R-2 transgenic rice is mediated by alteration in cell cycle and ectopic expression of stress genes. Plant Physiology 150:257-271
  29. Luo Y, Liu YB, Dong YX, Gao XQ and Zhang XS. (2009) Expression of a putative alfalfa helicase increases tolerance to abiotic stress in Arabiodopsis by enhancing the capacities for ROS scavenging and osmotic adjustment. Journal of Plant Physiology 166:385-394
  30. Wang B, Sang Y, Song J, Gao XQ and Zhang XS. (2009) Expression of a rice OSARGOS gene in Arabidopsis promotes cell division and expension and increases organ size. J. Genet. Genomics 36:31-40
  31. Sun Z, Ma L, Murphy RW, Zhang XS and Huang DW. (2009) Factors affecting mito-nuclear codon usage interactions in the OXPHO system of Drosophila melanogaster. J. Genet. Genomics 35:729-735
  32. Sun Z, Wan DG, Murphy RW, Ma L, Zhang XS and Huang DW. (2009) Comparison of base composition and codon usage in insect mitochondrial genomes. Genes & Genomics 31:65-71
  33. 于明明,李兴国,张宪省。APETALA1 启动子驱动AtPT4在转基因拟南芥中表达导致花和花器官发育异常。植物学报 44(1):59-68
  34. Wu XQ, Li XG and Zhang XS. (2008) Molecular analysis of hormone-regulated pedal regeneration in Petunia. Plant Cell Reports 27:1169-1176
  35. Zhao XY, Su YH, Cheng ZH and Zhang XS. (2008) Cell fate switch during in vitro plant organogenesis. Journal of Intergrative Plant Biology 50 (7):814-822
  36. An BY, Luo Y, Li JR, Qiao WH, Zhang XS and Gao XQ. (2008) Expression of a vacuolar Na+/H+ antiportor gene of alfalfa enhances salinity tolerance in transgenic Arabidopsis. Acta Agronomica Sinica 34:557-564
  37. Guo J, Song J, Wang F and Zhang XS. (2007) Genome-wide identification and expression analysis of rice cell cycle genes. Plant Molecular Biology 64:349-360
  38. Qiao WH, Zhao XY, Li W and Zhang XS. (2007) Characterization of a root-specific vacuolar Na+/H+ antiporter gene in Agropyron elongatum and its expression involved in the salt tolerance of plants. Plant Cell Reports 26:1663-1672
  39. Dong YX, Zhao XY, Wang JW, Yuan GL and Zhang XS. (2007) Improvement for Agronomic Traits of Partial Waxy Wheat by Combination of Backcrossing with a PCR-based DNA Marker. Journal of Genet. Genomics 34:836-841
  40. Guo SJ, Zhou HY, Zhang XS, Li XG and Meng QW. (2007) Overexpression of CaHSP26 in transgenic tobacco alleviates photoinhibition of PSII and PSI during chilling stress under low irradiance. Journal of Plant Physiology 164:126-136
  41. Chu ZQ, Chen H, Zhang YY, Zhang ZH, Zheng NY, Yin BJ, Yan HY, Zhu L, Zhao XY, Yuan M, Zhang XS and Xie Q. (2007) Knockout of the AtCESA2 gene affects microtubule orientation and causes abnormal cell expansion in Arabiodpsis thaliana. Plant Physiology143:213-224
  42. Ma XJ, Tao Y, Zhao XY and Zhang XS. (2007) Wheat TaAS2, a member of LOB-Domain family, affects the adaxial-abaxial polarity of leaves in transgenic Arabidopsis. Plant Science 172: 181-188
  43. Wang F, Huo SN, Guo J and Zhang XS. (2006) Wheat D-Type cyclin Triae;CYCD2;1 regulate development of transgenic Arabidopsis plants. Planta 224:1129-1140
  44. Guan CM, Zhu SS, Li XG and Zhang XS. (2006) Hormone-regulated inflorescence induction and TFL1 expression in Arabidopsis callus in vitro. Plant Cell Reports 25:1133-1137
  45. Zhao W, Su HY, Song J, Zhao XY and Zhang XS. (2006) Ectopic expression of TaYAB1, a member of YABBY gene family in wheat, causes the partial abaxialization of the adaxial epidermises of leaves and arrests the development of shoot apical meristem in Arabidopsis, Plant Science 170:364-371
  46. Guo SJ, Li JR, Qiao WH and Zhang XS. (2006) Analysis of amylose accumulation during seed development of maize. Acta Genetica Sinica 32:846-854
  47. Zhao XY, Liu MS, Li JR, Guan CM and Zhang XS. (2005) The wheat TaGI1, involved in photoperoidic flowering, encodes an Arabidopsis GI ortholog. Plant Molecular Biology 58:53-64
  48. Zhao XY, Cheng ZJ and Zhang XS. (2006) Overexpression of TaMADS1, a SEPALLATA-like gene in wheat, causes early flowering and the abnormal development of floral organs in Arabidopsis. Planta 223:698-707
  49. Su HY, Li QZ, Li XG and Zhang XS. (2005) Characterization and expression analysis of a MADS box gene, HoMADS2, in Hyacinthus orientalis L. Acta Genetica Sinica 32: 1191-1198
  50. Liu MS, Wang F, Dong YX and Zhang XS. (2005) Expression analysis of dihydroflavonol 4-reductase genes involved in anthocyanin biosynthesis in purple grains of Triticum aestivum. Journal of Intergrative Plant Biology 47 (9): 1107-1114
  51. Li JR, Zhao W, Li QZ, Ye XG, An BY, Li X and Zhang XS. (2005) RNA Silencing of waxy gene results in low levels of amylose in the seeds of transgenic wheat (Triticum aestivum L.). Acta Genetica Sinica 32: 846-854
  52. Xu HY, Li XG, Li QZ, Bai SN, Lu WL and Zhang XS. (2004) Characterization of HoMADS1 and its induction by plant hormones during in vitro development in Hyacinthus orientalis L. Plant Molecular Biology 55:209-220
  53. Lan LF, Chen W, Lai Y, Suo JF, Kong ZS, Can Li, Lu Y, Zhang YJ, Zhao XY, Zhang XS, Zhang YS, Han B, Cheng J and Xue YB. (2004) Mornitoring of gene expression profiles and isolation of candidate genes involved in pollination and fertilization in rice (Oryza sativa L.) using 10K cDNA microarray. Plant Molecular Biology 54:471-483
  54. An YR, Li XG, Su HY and Zhang XS. (2004) Pistil induction by hormones from callus of Oryza sativa in vitro. Plant Cell Reports 23:448-452
  55. Li JR, Wang F, Zhao XY, Dong YX, Zhang LY, An BY and Zhang XS. (2004) Analysis of Seed Expressed Sequence Tags in Triticum aestivum. Acta Botanica Sinica 46 (3): 363-370
  56. Zhang XS, Wang X, Li QZ, Huo SN, Li XG and Ye BX. (2003) A seed-specific gene RS6, encodes a putative cupin domain protein, is essential for seed development in Oryza sativa L. The Annual Meeting of the American Society of Plant Biologists, Plant Biology, Abstract p49
  57. Li QZ, Li XG, Bai SN, Lu WL and Zhang XS. (2002) Isolation of HAG1 and its regulation by plant hormones during in vitro floral organogenesis in Hyacinthus orientalis L. Planta 215:533-540
  58. Li QZ, Li XG, Bai SN, Lu WL and Zhang XS. (2001) Isolation and expression of HAP2 in Hyacinthus orientalis L. Development & Reproductive Biology10: 69-75
  59. Zhang XS, Li QZ, Li XG, Bai SN and Lu WL. (2000) Molecular cloning and expression analysis of HAG1 in the floral organs of Hyacinthus orientalis L. Science in China C, 2000, 43: 395-401
  60. Zhang XS, Li QZ, Li XG, Bai SN and Lu WL. (2000) Regulation of homeotic gene expression in the regenerated flowers of Hyacinthus. Plant Biology, The Annual Meeting of the American Society of Plant Physiologists 80: p39
  61. Li QZ, Li XG, Sun JQ and Zhang XS. (2000) Isolation and expression of an AGAMOUS homolog in the flower of Cucumber (Cucumis sativas L.). Development & Reproductive Biology 9: 69-76
  62. Zhang XS, Zheng CC and O'Neill SD. (1999) Expression of ethylene biosynthetic genes regulated by pollination-associated factors in Doritaenopsis flowers. Acta Botanica Sinica 41 (5): 468-471
  63. Zheng CC and Zhang XS. (1999) Cloning and characterization of a circadian rhythm-regulated psaH cDNA in Pharbitis nil. Acta Botanica Sinica 41 (8): 820-824
  64. Zhang XS, Li QZ and Zheng CC. (1999) Hormonal regulation of postpollination development of Doritaenopsis flowers by auxin and ethylene. Acta Phytophysiologica Sinica 25 (2): 178-186
  65. Wang L, Zhang XS, Zhong HW and Li QZ. (1999) Expression and sequence analysis of a cDNA relative to Orchid ovule development. Acta Botanica Sinica 41(3): 276-279
  66. Nadeau JA, Zhang XS, Li J and O'Neill SD. (1996) Ovule development: Identification of stage-specific and tissue-specific cDNAs. Plant Cell 8:213-239
  67. O'Neill SD, Zhang XS and Zheng CC. (1994) Dark and circadian regulation of mRNA accumulation associated with photoperiodic flower induction. Plant Physiology104:569-580
  68. Zhang XS, Nadeau JA, Li J and O'Neill SD. (1994) Isolation of cDNA clones specific to developing and mature ovules of orchid flowers. Plant Physiology 124: Supplement
  69. Zhang XS and O'Neill SD. (1993) Ovary and gametophyte development are coordinately regulated by auxin and ethylene following pollination. Plant Cell 5:403-418
  70. Nadeau JA, Zhang XS, Nair H and O'Neill SD. (1993) Temporal and spatial regulation of 1-aminocyclopropane-1-carboxylate oxidase in the pollination-induced senescence of orchid flowers. Plant Physiology 103:31-39
  71. O'Neill SD, Nadeau JA, Zhang XS, Bui AQ and Hallevy AH. (1993) Interorgan regulation of ethylene biosynthetic genes by pollination. Plant Cell 5:419-432

  申请专利

  1. 小麦TaTOC1基因及其克隆方法和应用,专利号:ZL 2011 1 0093145.7。

  2. 一种用于改良玉米株型和提高玉米产量的基因的获得方法和应用,专利号:ZL 2013 1 0653350.3。

  3. 小麦TaGI1基因及其克隆与应用,专利号:ZL 2004 1 0035916.7。

  4. 紫花苜蓿Na+/H+反向转运蛋白基因及其克隆与应用,专利号ZL 2004 1 0035915.2。

  5. 紫色小麦二氢黄酮醇还原酶基因及其克隆与应用,专利号ZL 2004 1 0035914.8。

  6. 小麦周期蛋白基因及其分离方法与应用,专利号ZL 02 1 35544.4。

  7. 偃麦草钠离子反向转运蛋白基因及其克隆方法与应用,专利号ZL 02 1 35545.2。

  8. 山农紫糯1号,农业部新品种保护权。

  9. 山农紫糯2号,审核中,农业部新品种保护权。

人才培养

  • 开设课程

  张宪省在开设《植物生物学》、《生命科学研究进展》、《植物发育生物学》、《发育生物学专题讨论》等理论课程,和《生物科学基础实验》、《细胞生物学实验》、《基因工程实验技术》等实验课程。

  • 学科建设

  张宪省先后组织创建了生物技术和生物工程两个本科专业,植物细胞工程实验室、基因工程实验室、植物生物学实验室三个本科教学实验室。

  • 教学改革

  张宪省亲自组织主持教学改革,打破本科教学实验室依附于教研室,实验教学附属于理论教学的传统实验教学模式,打破学科界限,对大生物学实验室进行系统设计,组建并成功申报了农业生物学国家级实验教学示范中心。同时进一步更新实验项目,改革实验内容,改进实验教学方法,完善管理制度,规范教学管理,显著改善和优化了实验教学条件和环境,为提升教学水平、提高教学质量提供了坚实平台和有力保障。在教学改革中,他亲自参加《植物生物学》及其实践教学环节,带领课程组就教学内容、教学手段等方面开展改革,主编出版了普通高等教育"十五"国家级规划教材《植物学》(面向21世纪课程教材),并获2005年度全国高等农业院校优秀教材奖,2008年山东省高等学校优秀教材一等奖。主持、参加教学改革研究项目16项,发表教学研究论文55篇。

  • 指导学生

  近五年来张宪省共指导本科毕业生32人、指导硕士研究生64名、博士生32人、博士后13人。指导本科生、硕士生、博士生的学位毕业论文多篇获得山东省优秀学位论文奖。 在所指导的毕业论文中,先后有14名本科生、16名硕士和13名博士获得省级优秀毕业论文。

  • 教学荣誉

  2014年:依托国家级实验教学示范中心,构建农科类"多维度"实验教学模式,山东省教研项目一等奖;

  2014年:"植物生物学"在全国高等农业院校优秀"信息化课程体系"评比中获得"优秀奖";

荣誉表彰

时间荣誉/表彰
--享受国务院政府特殊津贴专家
--国家"百千万"人才工程一、二层次人选
--山东省有突出贡献的中青年专家
--山东省"十大杰出青年"获得者
--山东省"泰山学者攀登计划"
--山东省科技专业拔尖人才
--团省委授予"青春立功"一等功
--"山东省新长征突击手"荣誉称号

社会任职

时间担任职务
--国家级实验教学示范中心联席会植物(动物)学科组组长
--农业生物学国来自家级实验教学中心360百科主任
--生物化学与分子生物学国家级教学团队带头人
--作物生物学国家重点实验室学术骨干
--教育部"创新团队"的学术骨干
--中国植物学会植物细胞生物学与生物技术专业委员会副主任
--中国作物学会作物生物技术分会理事
--中国作物学会分子育种分会常务理事
--中国遗传学会理事
--山东省遗传学会理事长
--山东省植物学会副理事长
--美国植物生物学会会员
--《JIPB》、《JGG》、《Molecular Plant》、《植物学报》和《植物学通报》编编委
--《Pla京紧阶nt Cell Reports》副识值增齐分茶主编
--《植物学报》和《遗传》编委
第八届全国青联委员
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