姓  名: 王文达
职务/职称: 研究员
联系电话: (86)-010-62836729
电子邮件: wdwang@ibcas.ac.cn
个人网页: http://www.klpbcas.com/yjzcy/hf_50082/
课 题 组: 光合膜蛋白结构生物学研究组
王文达,男,博士,研究员。

2006年毕业于西南大学,2013年在中国科学院植物研究所取得博士学位并留所工作。 2016-2017年在日本冈山大学进行博士后研究,20201月晋升为研究员。主要从事植物和藻类光合作用研究,首次破解了硅藻光合膜蛋白超分子结构和功能之谜,揭示了植物环式电子传递调控能量平衡的新机制,为阐明硅藻捕获绿光和植物适应光环境的分子机理奠定了坚实基础,在已在Science, Nature, Nature communications, Advanced Science等发表论文40多篇。硅藻相关成果被Science特邀专题评为里程碑式的研究工作,入选2019 中国科学十大进展中国生命科学十大进展中国十大科技进展新闻中国海洋十大进展评选,入选国家十三五科技创新成就展。个人获中国植物生理与分子生物学学会卫志明青年创新奖、中国科学院第一届青年五四奖章等奖励。目前任植物所团委书记,兼任中国植物学会植物整合组学专业委员会秘书长,主持国自然优青基金、重点研发计划课题和中科院院创新交叉团队等项目。

主要研究方向:

主要研究方向为植物和藻类光合膜蛋白复合物结构、功能与调控机理研究。通过植物生理生化、分子生物学、结构生物学、人工智能和多组学等技术手段交叉研究光系统复合物、捕光天线、以及其他重要蛋白调控叶绿体发育和光合作用效率的分子机理。

主持和参加的科研项目:

国家自然科学基金优秀青年基金,2023-2025,主持

国家自然科学基金面上项目基金,2020-2023,主持

中国科学院青年创新促进会项目,2020-2023,主持

中国科学院创新交叉团队项目,2021-2023,主持

国家重点研发计划合成生物学专项青年科学家项目,2019-2024,参与

国家重点研发计划生物大分子与微生物组专项项目,2021-2026,参与,课题负责人

发表论文 (#标记为共同第一作者;*标记为通讯作者)

2023

(1)   Yang Z#, Wang J#, Yin B, Liu W, Yin D, Shen J-R, Wang W*, Li L*, Guo X*. 2023. Stimuli-Induced Subconformation Transformation of the PSI-LHCI Protein at Single-Molecule Resolution. Advanced Science. 2205945.

(2)   Qiu S, Yuan Y, Li X, Zhao C, He Y, Tang B, Wang W, Fan J*.2023.  Peridinin-chlorophyll-protein complex industry from algae: A critical review of the current advancements, hurdles, and biotechnological potential. Algal Research. 72: 103118.

(3)   Zhang S#, Tang K#, Yan Q#, Li X, Shen L, Wang W, He Y, Kuang T, Han G*, Shen JR*, Zhang X*.2023. Structural insights into a unique PSI-LHCI-LHCII-Lhcb9 supercomplex from moss Physcomitrium patens. Nature Plants. doi: 10.1038/s41477-023-01401-4.

(4)   Li DH, Wang W, Zhou C, Zhang Y, Zhao S, Zhou Y, Gao R, Yao H, Fu L, Wang P, Shen JR, Kuang T*, Zhang J*.2023. Photoinduced chlorophyll charge transfer state identified in the light-harvesting complex II from a marine green alga Bryopsis corticulans. iScience. 26, 105761.

2022

(5)   Shen L#, Tang K#, Wang W#, Wang C, Wu H, Mao Z, An S, Chang S, Kuang T, Shen JR*, Han G*, Zhang X*.2022. Architecture of the chloroplast PSI-NDH supercomplex in Hordeum vulgare. Nature. 601:649-654.

(6)   Yao H-D, Li D-H, Gao R-Y, Zhou C, Wang W, Wang P, Shen JR, Kuang T*, Zhang JP*.2022. A Possible Mechanism for Aggregation-Induced Chlorophyll Fluorescence Quenching in Light-Harvesting Complex II from the Marine Green Alga Bryopsis corticulans. Journal of Physical Chemistry B. 126(46):9580-9590.

(7)   Zhu S, Bin S, Wang W, Lu S*, Yang W*.2022. Exogenous arachidonic acid affects fucoxanthin biosynthesis and photoprotection in Phaeodactylum tricornutum. Marine Drugs. 20 (10):644.

2021

(8)   Wang J#, Yu LJ#, Wang W#, Yan Q, Kuang T, Qin X*, Shen JR*.2021. Structure of plant photosystem I‐light harvesting complex I supercomplex at 2.4 Å resolution. Journal of Integrative Plant Biology. 63(7):1367-1381.

(9)   Huang Z#, Shen L#, Wang W, Mao Z, Yi X, Kuang T, Shen J-R*, Zhang X*, Han G*.2021. Structure of photosystem I-LHCI-LHCII from the green alga Chlamydomonas reinhardtii in State 2. Nature Communications. 12:1100.

(10)    赵松浩, 陶秋爽, 沈建仁, 王文达.2021. 硅藻岩藻黄素-叶绿素 a/c 蛋白-揭秘红系捕光天线复合物. 自然杂志. 43 : 157-164.

(11)    Huang G#, Xiao Y#, Pi X, Zhao L, Zhu Q, Wang W, Kuang T, Han G*, Sui SF*, Shen JR*.2021. Structural insights into a dimeric Psb27-photosystem II complex from a cyanobacterium Thermosynechococcus vulcanus. Proceeding of the National Academy of Sciences of USA. 118 (5): e2018053118.

(12)    Yan Q#, Zhao L#, Wang W, Pi X, Han G, Wang J, Cheng L, He YK, Kuang T, Qin X*, Sui SF*, Shen JR*.2021. Antenna arrangement and energy-transfer pathways of PSI–LHCI from the moss Physcomitrella patens. Cell Discovery. 7:10.

2020

(13)    Chang L, Tian L, Ma F, Mao Z, Liu X, Han G, Wang W, Yang Y, Kuang T, Pan J, Shen JR.2020. Regulation of photosystem I-light-harvesting complex I from a red alga Cyanidioschyzon merolae in response to light intensities. Photosynthesis Research. 146:287-297.

(14)    Li D-H, Wang W, Zhou C, Zhang Y, Wang P, Shen J-R, Kuang T*, Zhang JP*.2020. Excitation Dynamics and Relaxation in the Major Antenna of a Marine Green Alga Bryopsis Corticulans. Biochimica et Biophysica Acta-Bioenergetics. 1861(5-6):148186.

(15)    Chen J-H, Wu H, Xu C, Liu X-C, Huang Z, Chang S, Wang W, Han G, Kuang T*,Shen JR*, Zhang X*.2020. Architecture of the photosynthetic complex from a green sulfur bacterium. Science. 370, eabb6350.

(16)    Zhu Q#, Yang Y#, Xiao Y, Wang W, Kuang T, Shen JR*, Han G*.2020. Function of PsbO-Asp158 in photosystem II: effects of mutation of this residue on the binding of PsbO and function of PSII in Thermosynechococcus vulcanus. Photosynthesis Research. 146:26-40.

(17)    Xiao Y, Zhu Q, Yang Y, Wang W, Kuang T, Shen JR*, Han G*.2020. Role of PsbV-Tyr137 in photosystem II studied by site-directed mutagenesis in the thermophilic cyanobacterium Thermosynechococcus vulcanus. Photosynthesis Research. 146:41–54.

(18)    Akhtar P, Nowakowski P J, Wang W, Do T N, Zhao S, Siligardi G, Garab G, Shen JR, Tan HS*, Lambrev PH*.2020. Spectral tuning of light-harvesting complex II in the siphonous alga Bryopsis corticulans and its effect on energy transfer dynamics. Biochimica et Biophysica Acta-Bioenergetics. 1861(5-6):148191.

(19)    Xu C#, Pi X#, HuangY#, Han G, Chen X, Qin X, Huang G, Zhao S, Yang Y , Kuang T, Wang W*, Sui S*, Shen JR*.2020. Structural basis for energy transfer in a huge diatom PSI-FCPI supercomplex. Nature Communications. 11:5081.

(20)    Wang W, Zhao S, Pi X, Kuang T, Sui SF, Shen JR.2020. Structural features of the diatom photosystem II–light-harvesting antenna complex. FEBS journal. 287(11):2191-2200.

(21)    王文达, 韩广业, 匡廷云, 沈建仁.2020. 硅藻和绿藻:光合作用的蛋白体不再神秘. 前沿科学. 1, 14-18.

2019

(22)    Wang W#, Yu LJ#, Xu C, Tomizaki T, Zhao S, Umena Y, Chen X, Qin X, Xin Y, Suga M, Han G, Kuang T*, Shen JR*.2019. Structural basis for blue-green light harvesting and energy dissipation in diatoms. Science. 363: eaav0365.

(23)    Pi X#, Zhao S#, Wang W#, Liu D, Xu C, Han G, Kuang T*, Sui SF*, Shen JR*.2019. The pigment-protein network of a diatom photosystem II-light harvesting antenna supercomplex. Science. 365: eaax4406.

(24)    Qin X#, Pi X#, Wang W, Han G, Zhu L, Liu M, Cheng L, Shen JR*, Kuang T*, Sui SF*.2019. Structure of a green algal PSI in complex with a large number of light-harvesting complex I subunits. Nature Plants. 5: 263-272.

(25)    Shen L#, Huang Z#, Chang S#, Wang W, Wang J, Kuang T, Han G*, Shen JR*, Zhang X*.2019. Structure of a C2S2M2N2-type PSII-LHCII supercomplex from the green alga Chlamydomonas reinhardtii. Proceeding of the National Academy of Sciences of USA. 116(42): 21246-21255.

2018

(26)    Giovagnetti V, Han G, Ware M A, Ungerer P, Qin X, Wang W, Kuang T, Shen JR*, Ruban AV*.2018. A siphonous morphology affects light-harvesting modulation in the intertidal green macroalga Bryopsis corticulans (Ulvophyceae). Planta. 247:1293-1308.

2017

(27)    Zhang T, Liu C, Dong W, Wang W, Sun Y, Chen X*, Yang C*, Dai N*.2017. Photoelectrochemical Complexes of Fucoxanthin-Chlorophyll Protein for Bio-Photovoltaic Conversion with a High Open-Circuit Photovoltage. Chemistry an Asian journal. 12: 2996-2999.

(28)    Tian L, Liu Z, Wang F, Shen L, Chen J, Chang L, Zhao S, Han G, Wang W, Kuang T, Qin X*, Shen JR*.2017. Isolation and characterization of PSI-LHCI super-complex and their sub-complexes from a red alga Cyanidioschyzon merolae. Photosynthesis research. 133: 201-214.

2016

(29)    徐才哲, 王文达, 艾鹏飞, 靳占忠, , 匡廷云.2016. 三角褐指藻岩藻黄素-叶绿素蛋白复合体的分离纯化和功能研究. 水生生物学报. 40 (1)109-115.

(30)    李文军, 张超, 王文达, 赵松浩, 秦松.2016. 岩藻黄素与岩藻黄素-叶绿素复合体(FCP)研究进展. 食品研究与开发. 37 (23)191-196.

2015及以前

(31)    芦亚菲, 曲娜, 陈晓波, 王文达.2015. 对氢键网络的干扰降低细胞色素 b6f 复合体中Chla 的光稳定性. 中国科学: 生命科学. 45(3) 311 -316.

(32)    Feng J, Zhao S, Chen X, Wang W, Dong W, Chen J, Shen JR , Liu L*, Kuang T*.2015. Biochemical and structural study of Arabidopsis hexokinase 1, Aata Crystallographica Section D. Biological Crystallography. 71: 367-375.

(33)    Qin X#, Wang W#, Chang L, Chen J, Wang P, Zhang J, He Y, Kuang T*, Shen JR*.2015. Isolation and characterization of a PSI-LHCI super-complex and its sub-complexes from a siphonaceous marine green alga, Bryopsis Corticulans. Photosynthesis research. 123: 61-76.

(34)    Wang W#, Qin X#, Sang M, Chen D, Wang K, Lin R, Lu C, Shen JR*, Kuang T*.2013. Spectral and functional studies on siphonaxanthin-type lightharvesting complex of photosystem II from Bryopsis corticulans. Photosynthesis Research. 117: 267-279.

(35)    Qin X, Zhu J, Wang W, Ding X, Wang K, Fang Y*, Kuang T*.2013.  A stable ‘sandwich’ system of Surface-Enhanced Resonance Raman Scattering for the analysis of β-carotenes in a photosynthetic pigment-protein complex. Journal of Raman Spectroscopy. 44: 1111-1119.

(36)    Sang M, Qin X, Wang W, Chen X, Xie J, Li L*, Kuang T*.2012. Singlet Oxygen Formation and Scavengingin Cytochrome b6f Complex from Spinach. ACTA BIOPHYSICA SINICA. 28(10): 848-854.

(37)    Sang M, Xie J, Qin X, Wang W, Chen X, Wang K, Zhang J*, Li L*, Kuang T. 2011. High-light induced superoxide radical formation in cytochrome b(6)f complex from Bryopsis corticulans as detected by EPR spectroscopy. Journal of photochemistry and photobiology B. 102: 177-181.

(38)    Sang M, Qin X, Wang W, Xie J, Chen X, Wang K, Zhang J, Li L*, Kuang T*.2011. High-light-induced superoxide anion radical formation in cytochrome b(6)f complex from spinach as detected by EPR spectroscopy. Photosynthetica. 49(1): 48-54.

(39)    Qin X#, Wang W#, Wang K, Xin Y, Kuang T*.2011. Isolation and characteristics of the PSI-LHCI-LHCII supercomplex under high light. Photochemistry and photobiology. 87: 143-150.

(40)    Sang M, Ma F, Xie J, Chen X, Wang K, Qin X, Wang W, Zhao J, Li L, Zhang J*, Kuang T*.2010. High-light induced singlet oxygen formation in cytochrome b(6)f complex from Bryopsis corticulans as detected by EPR spectroscopy. Biophysical chemistry. 146: 7-12.

著作:

Wang W*, Shen JR*.2021. Chapter 6: Structure, Organization and Function of Light-Harvesting Complexes Associated with Photosystem II. Photosynthesis: Molecular Approaches to- Solar Energy Conversion, Springer, pp:163-194.

王文达, 沈建仁.2020. 硅藻光合膜蛋白超分子结构和功能之谜. 中国科协生命科学学会联合体编中国生命科学十大进展2019”,中国科学技术出版社, 北京. pp1-21.