曾為(浙江農林大學林業與生物技術學院教授)

曾為(浙江農林大學林業與生物技術學院教授)

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曾為,男,1980年1月出生,教授,美國俄亥俄大學分子細胞生物學專業博士,碩士生導師。2018年入選浙江省省級創新類人才。研究主要運用分子生物學和生物化學研究植物細胞壁合成,分析植物糖基轉移酶(GT)的功能,創立了一套利用外源表達鑑定GT,在試管中模擬植物多糖的合成的系統。同時以楊樹作為模式植物,研究林木次生壁發育和木材形成。在半纖維素木聚糖,AGP糖蛋白,蛋白N-糖基化等研究領域取得一定突破。近年來在國際主流期刊發表論文20餘篇。與澳大利亞、日本、英國等多個實驗室有密切國際合作展開植物細胞壁研究。

基本介紹

  • 中文名:曾為 
  • 國籍中國
  • 出生日期:1980年1月
  • 畢業院校俄亥俄大學
  • 學位/學歷:博士
  • 職業:教師
研究方向,學習與工作經歷,教學工作,科研項目,論文與專著,

研究方向

主要從事植物細胞壁合成的研究工作。

學習與工作經歷

2017.12-起 浙江農林大學,林業與生物技術學院,教授
2011.02-2017.11 澳大利亞墨爾本大學,副研究員
2009.11-2010.11 美國賓夕法尼亞州立大學,博士後
2004.01-2009.09 美國俄亥俄大學,分子細胞生物學專業,博士
1997.09-2001.07 北京師範大學,生命科學專業,學士

教學工作

本科:植物學
研究生:植物生理生化專題

科研項目

2020-2023年,楊樹細胞壁AGP的合成機制及其對材性的影響,自然科學基金面上項目,主持
2007-2009年,小麥木聚糖合成項目,美國自然科學基金項目,研究助理
2008-2009年,質譜分析植物細胞壁,美國農業部項目,研究助理

論文與專著

1.Zeng W, Chatterjee M, Faik A. Udp-xylose-stimulated glucuronyltransferase activity in wheat microsomal membranes: Characterization and role in glucurono(arabino)xylan biosynthesis.Plant Physiology2008, 147: 78-91.
2.Zeng W, Jiang N, Nadella R, Killen TL, Nadella V, Faik A. A glucurono(arabino)xylan synthase complex from wheat contains members of the GT43, GT47, and GT75 families and functions cooperatively.Plant Physiology2010, 154: 78-97.
3.Li L, Huang J, Qin L, Huang Y,Zeng W, Rao Y, Li J, Li X, Xu W. Two cotton fiber-associated glycosyltransferases, GhGT43a1 and GhGT43c1, function in hemicellulose glucuronoxylan biosynthesis during plant development.Physiologia Plantarum2014, 152: 367-379.
4.Zhao X, Ouyang K, Gan S,Zeng W, Song L, Zhao S, Li J, Doblin MS, Bacic A, Chen XY, Marchant A, Deng X, Wu AM. Biochemical and molecular changes associated with heteroxylan biosynthesis in Neolamarckia cadamba (Rubiaceae) during xylogenesis.Frontiers in Plant Science2014, 5: 602.
5.Ford KL,Zeng W, Heazlewood JL, Bacic A. Characterization of protein n-glycosylation by tandem mass spectrometry using complementary fragmentation techniques.Frontiers in Plant Science2015, 6: A674.
6.Song L,Zeng W, Wu AM, Picard K, Lampugnani ER, Cheetamun R, Beahan C, Cassin A, Lonsdale A, Doblin MS, Bacic A. Asparagus spears as a model to study heteroxylan biosynthesis during secondary wall development.PloS One2015, 10: e0123878.
7.Kuang B, Zhao X, Zhou C,Zeng W, Ren J, Ebert B, Beahan CT, Deng X, Zeng Q, Zhou G, Doblin M, Heazlewood J, Bacic A, Chen X, Wu AM. The role of UDP-glucuronic acid decarboxylase (UXS) in xylan biosynthesis in Arabidopsis.Molecular Plant2016, 9: 1119-1131.
8.Zeng W, Lampugnani ER, Picard KL, Song L, Wu AM, Farion IM, Zhao J, Ford K, Doblin MS, Bacic A. Asparagus IRX9, IRX10, and IRX14A are components of an active xylan backbone synthase complex that forms in the Golgi apparatus.Plant Physiology2016, 171: 93-109.
9.Ford K, Chin T, Srivastava V,Zeng W, Doblin M, Bulone V, Bacic A. Comparative “Golgi” proteome study of Lolium multiflorum and Populus trichocarpa.Proteomes2016, 4: 23.
10.Suzuki T, Narciso J,Zeng W, van de Meene A, Yasutomi M, Takemura S, Lampugnani ER, Doblin MS, Bacic A, Ishiguro S. KNS4/UPEX1: A type II arabinogalactan β-(1,3)-Galactosyltransfe rase required for pollen exine development.Plant Physiology2017, 173: 183-205.
11.Zeng W, Ebert B, Parsons H, Rautengarten C, Bacic A, Heazlewood J. Enrichment of Golgi Membranes from Triticum aestivum (Wheat) Seedlings. Methods inMolecular Biology2017, 1511: 131-150.
12.Qin LX, Chen Y,Zeng W, Li Y, Gao L, Li DD, Bacic A, Xu WL, Li XB. The cotton β-galactosyltransferase 1 (GalT1) that galactosylates arabinogalactan-proteins participates in controlling fiber development.Plant Journal2017, 89: 957-971.
13.Yu L, Yakubova GE,Zeng W, Xing X, Stensone J, Bulonec V, Stokesa JR. Multi-layer mucilage of Plantago ovata seeds: Rheological differences arise from variations in arabinoxylan side chains.Carbohydrate Polymers2017, 165: 132-141.
14.Jiang G, Yan H, Wu F, Zhang D,Zeng W, Qu H, Chen F, Tan L, Duan X, Jiang Y. Litchi fruit LcNAC1 is a target of LcMYC2 and regulator of fruit senescence through its interaction with LcWRKY1.Plant & Cell Physiology2017, 58:1075-1089.
15.Ebert B, Rautengarten C, McFarlane H, Rupasinghe T,Zeng W, Ford K, Scheller HV, Bacic A, Roessner U, Persson S, Heazlewood JL. A Golgi UDP-GlcNAc transporter delivers substrates for N-linked glycans and sphingolipids.Nature Plants. 2018,4:792-801
16.Zeng W, Ford K, Bacic A, Heazlewood JL. N-linked Glycan Micro-heterogeneity in Glycoproteins of Arabidopsis.Molecular Cellular Proteomics2018,17:413-421
17.Zhao X, Liu N, Shang N,Zeng W, Ebert B, Rautengarten C, Li H, Chen X, Cherie B, Bacic A, Heazlewood JL, Wu AM, UDP-Xylose transporters (UXTs) participate roles in xylan synthesis by transporting cytosolic UDP-Xylose into Golgi lumen in Arabidopsis.JXB2018,5:1125-1134
18.Huang JF, Guo YJ, Sun QW,Zeng W, Li J, Li XB, Xu WL. Genome-Wide Identification of R2R3-MYB Transcription Factors Regulating Secondary Cell Wall Thickening in Cotton Fiber Development.Plant and Cell Physiology 2019,60(3):687-701
19.Zhou MY, Song LL, Ye S,Zeng W, Hännien H, Yu WW, Suo JW, Hu YY, Wu JS. New sights into lipid metabolism regulation by low temperature in harvested Torreya grandis nuts.Journal of the Science of Food and Agriculture2019,99:4226-4234
20.Li CT, Xuan LL, He YM, Wang J, Zhang H, Ying YQ, Wu AM, Bacic A,Zeng Wand Song. LL Molecular Mechanism of Xylogenesis in Moso Bamboo (Phyllostachys edulis) Shoots during ColdStorage.Polymers2019,11:1-18

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