楚璞(南京農業大學副教授)

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楚璞,博士,南京農業大學副教授,碩士生導師。

基本介紹

  • 中文名:楚璞
  • 畢業院校:中山大學
  • 學位/學歷:博士
  • 職業:教師
  • 職務:碩士生導師
人物經歷,研究方向,

人物經歷

教育經歷:
2006/9 - 2012/1,中山大學,生命科學學院植物學系,博士
2002/9 - 2006/6,湖南農業大學,生物科技學院生物技術系,學士
工作經歷:
2016/1-至今,南京農業大學,農學院,種業科學系,副教授
2012/5-2015/12,南京農業大學,農學院,種業科學系,講師

研究方向

油菜遺傳育種、分子生物學、種質創新等
主要研究方向:
(1) 油菜株型相關性狀的分子生物學研究。
(2) 油菜高含油量優異等位基因挖掘與育種利用研究。
(3) 油菜重要性狀的高通量組學研究。
科研項目:
主持國家自然科學基金青年項目、中央高校基本科研業務費項目各1項;主持國家重點研發計畫專項項目子課題任務1項,參與國家重點研發計畫、973項目、國家自然科學基金等課題多項。
承擔教學任務:
目前承擔本科生生物統計與試驗設計I,生物統計與試驗設計II,試驗設計,作物育種學各論等課程。
榮譽獎項:
仲英種業人才基金,2019
農學院優秀教師,2017
農學院青年教師授課比賽一等獎,2017
年度考核優秀,2015
發明專利:
一種蓮膜聯蛋白及其表達載體和套用,2013,排名第2
已發表論文:(標#為共同第一作者,*為通訊作者)
[1] Huhui Chen, Jiuxiao Ruan, Pu Chu*, Wei Fu, Zhenwei Liang, Yin Li, Jianhua Tong, Langtao Xiao, Jun Liu, Chenlong Li, and Shangzhi Huang *. AtPER1 enhances primary seed dormancy and reduces seed germination by suppressing the ABA catabolism and GA biosynthesis in Arabidopsis seeds. The Plant Journal, 2020, 101: 310–323.
[2] Wenjing Chen, Shubei Wan, Linkui Shen, Ying Zhou, Chengwei Huang, Pu Chu* and Rongzhan Guan* Histological, Physiological, and Comparative Proteomic Analyses Provide Insights into Leaf Rolling in Brassica napus. Journal of Proteome Research, 2018, 17(5):1761-1772
[3] Kunjiang Yu, Xiaodong Wang, Feng Chen, Qi Peng, Song Chen, Hongge Li, Wei Zhang, Sanxiong Fu, Maolong Hu, Weihua Long,Pu Chu, Rongzhan Guan, Jiefu Zhang.Quantitative Trait Transcripts Mapping Coupled with Expression Quantitative Trait Loci Mapping Reveal the Molecular Network Regulating the Apetalous Characteristic in Brassica napus L.Front Plant Sci.2018, 9:89.
[4] Huhui Chen, Pu Chu, Yuliang Zhou, Yu Ding, Yin Li, Jun Liu, Liwen Jiang, shangzhi Huang. Ectopic expression of NnPER1, a Nelumbo nucifera 1-cysteine peroxiredoxin antioxidant, enhances seed longevity and stress tolerance in Arabidopsis.Plant Journal 2016, 88: 608-619
[5] Yankun Wang, Wenjing Chen,Pu Chu, Shubei Wan, Mao Yang, Mingming Wang, Rongzhan Guan. Mapping a major QTL responsible for dwarf architecture in Brassica napus using a single-nucleotide polymorphism marker approach. BMC Plant Biology 2016, 16:178
[6] Yankun Wang, Yongjun He, Mao Yang, Jianbo He, Pan Xu, Mingquan Shao, Pu Chu, Rongzhan Guan, Fine mapping of a dominant gene conferring chlorophyll-deficiency in Brassica napus.Sci Rep.2016; 6: 31419.
[7] Yankun Wang, Jianbo He, Li Yang, Yu Wang, Wenjing Chen, Shubei Wan, Pu Chu, Rongzhan Guan.* Fine mapping of a major locus controlling plant height using a high-density single-nucleotide polymorphism map in Brassica napus.Theoretical and Applied Genetics, 2016, 129(8): 1479-1491
[8] Kunjiang Yu, Xiaodong Wang, Feng Chen, Song Chen, Qi Peng, Hongge Li, Wei Zhang, Maolong Hu,Pu Chu, Jiefu Zhang, Rongzhan Guan.Genome-wide transcriptomic analysis uncovers the molecular basis underlying early flowering and apetalous characteristic in Brassica napus L.Sci Rep.2016; 6: 30576.
[9] Pu Chu, Guixia Yan, Qing Yang, Lina Zhai, Cheng Zhang, Fengqi Zhang, Rong Zhan Guan*. iTRAQ-based quantitative proteomics analysis of Brassica napus leaves reveals pathways associated with chlorophyll deficiency. Jounal of proteomics 2015, 113:244-259.
[10] Pu Chu, Huijuan Liu, Qing Yang, Yankun Wang, Guixia Yan, Rongzhan Guan*. An RNA-seq transcriptome analysis of floral buds of an interspecific Brassica hybrid between B. carinata and B. napus. Plant Reproduction 2014, 27:225–237.
[11] Huan Jia, Mingquan Shao, Yongjun He, Rongzhan Guan, Pu Chu*, Haidong Jiang*. Proteome Dynamics and Physiological Responses to Short-Term Salt Stress in Brassica napus Leaves. PLOS ONE, 2015 10 (12), e0144808
[12]Yankun Wang, Pu Chu, Qing Yang, Shengxin Chang, Jianmei Chen, Maolong Hu, Rongzhan Guan*. Complete Mitochondrial Genome of Eruca sativa Mill. (Garden Rocket). PLoS ONE 2014, 9(8): e105748.
[13]Chang S, Chen J, Wang Y, Gu B, He J, Chu P*, Guan R*, A mitochondrial genome of Raphanus sativus and gene evolution of cruciferous mitochondrial types. Journal of Genetics and Genomics 2013, 40(3):117-26.
[14]Chu P, Chen H,Zhou Y, Li Y, Tsang E, Wu K, Huang S, Proteomic and functional analyses of Nelumbo nucifera annexins involved in seed thermotolerance and germination vigor.Planta2012, 235(6):1271-88
[15]Chen H,Chu P, Zhou Y, Li Y, Liu J, Ding Y, Tsang E, Jiang L,Wu K, Huang S. Overexpression of AtOGG1, a DNA glycosylase/AP lyase, enhances seed longevity and abiotic stress tolerance in Arabidopsis. J Exp Bot., 2012, 63, 4107-4121
[16]Zhou Y,Chu P, Chen H, Li Y, Liu J, Ding Y, Tsang E, Jiang L, Wu K, Huang S. Overexpression of Nelumbo nucifera metallothioneins 2a and 3 enhances seed germination vigor in Arabidopsis. Planta, 2011, 235, 523-537.
[17]Zhou Y, Chen H, Chu P, Li Y, Tan B, Ding Y, Tsang E, Jiang L, Wu K, Huang S. NnHSP17.5, a cytosolic class II small heat shock protein gene from Nelumbo nucifera, contributes to seed germination vigor and seedling thermotolerance in transgenic Arabidopsis. Plant Cell Rep., 2011, 31, 379-389.
[18]楚璞,翟麗娜,管榮展.甘藍型油菜固醇載體蛋白2基因BnSCP-2的克隆與表達.中國油料作物學報,2015,37(1):9~14
[19]楚璞,劉慧娟,楊力,管榮展.甘藍型油菜BnXTH1基因的克隆與表達分析.分子植物育種,2014, 12: 432~439
[20]翟麗娜,楚璞,管榮展.甘藍型油菜BnFLA基因的克隆及表達分析.西北植物學報, 2014, 10: 1956-1961.

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