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2005-09 至 <\/span>2009-06, <\/span>河北师范大学<\/span>, <\/span>生命科学<\/span>, <\/span>学士<\/span><\/span><\/p> 2009-09 至 <\/span>2012-06, <\/span>中国科学院水生生物研究所<\/span>, <\/span>水生生物学<\/span>, <\/span>硕士<\/span><\/span><\/p> 2012-10 至 <\/span>2016-06, <\/span>德国康斯坦茨大学<\/span>, <\/span>藻类生物学<\/span>, <\/span>博士<\/span><\/span><\/p> 2016-07 至 <\/span>2017-09, <\/span>法国国立应用科学院图卢兹分院<\/span>, <\/span>工程师<\/span><\/span><\/p> 2017-11 至 <\/span>2023-02, <\/span>斯坦福大学卡内基研究所,博士后<\/span><\/span><\/p> 2023-05 至 <\/span>2024-02, <\/span>中国科学院深圳先进技术研究院,副研究员<\/span><\/span><\/p> 2024-0<\/span>3<\/span><\/span> 至<\/span> 今<\/span>, 中国科学院水生生物研究所,研究员<\/span><\/span><\/p> <\/span><\/span><\/p> <\/p><\/div>"
var yjfx=" 多年来一直致力于<\/span><\/span>解析<\/span><\/span>藻类对多变环境的适应机制,<\/span><\/span>聚焦藻类光合作用、碳与能量代谢、亚细胞器互作等研究方向。<\/span><\/span>发现了莱茵衣藻叶绿体内膜光合产物输出的关键通道,揭示了衣藻与陆生植物叶绿体碳转运体系的不同;另外明确了叶绿体与线粒体能量流偶联维持衣藻在强光下的高光效;理清了三角褐指藻<\/span><\/span>金藻昆布<\/span><\/span>多糖的分子合成路径,并进一步提出液泡多糖储藏对光合活性、碳分配以及质体亚显微结构的调控作用。<\/span><\/span><\/p> <\/p><\/div>"
var hjjry=" • <\/span><\/span>2014 <\/span>年中国科学院水生生物研究所<\/span>\"<\/span>杰出论文奖<\/span>\";<\/span><\/span><\/p> •<\/span><\/span>2015 <\/span>年中国海洋湖沼学会<\/span>\"<\/span>中国藻类学研究优秀论文一等奖<\/span>\";<\/span><\/span><\/p> •<\/span><\/span>2018 <\/span>年获中德国康斯坦茨大学<\/span>\" Best Paper Award \"<\/span><\/span>。<\/span><\/span><\/p> <\/p><\/div>"
var cdkyxmqk=" <\/p><\/div>"
var dblz=" 1<\/span><\/strong>.Kim R<\/span>1<\/span><\/sup>, <\/span>Huang W<\/span><\/strong>1<\/span><\/sup><\/strong>, Findinier J<\/span>1<\/span><\/sup>, Bunbury F, Redekop P, Shrestha R,Vilarrasa-Blasi J, Jinkerson R, Fakhimi N, Fauser F, Jonikas M, Onishi M, Xu S, Grossman A.<\/span> <\/span>Chloroplast Methyltransferase Homolog RMT2 is Involved in Photosystem I Biogenesis. <\/span>bioRxiv<\/span><\/em><\/strong>., <\/span><\/strong>2023.<\/span><\/p><\/p> 2<\/span><\/strong>.<\/span><\/p> Huang W*<\/span><\/strong>1<\/span><\/sup><\/strong>, Krishnan A<\/span>1<\/span><\/sup>, Plett A, Meagher M, Linka N, <\/span>Wang Y, <\/span>Ren B, Findinier J, Redekop P, Fakhimi N, Xu J, Kim R, Boyle, N, Posewitz M, and Grossman A<\/span>*<\/span><\/strong>. Chlamydomonas mutants lacking chloroplast TRIOSE PHOSPHATE TRANSPORTER3 are metabolically compromised and light sensitive. <\/span>Plant Cell<\/span><\/em><\/strong>., <\/span><\/strong>2023, 35(7): 2592-2614. <\/span><\/p><\/span><\/p> 3.Huang W*<\/span><\/strong>1<\/span><\/sup><\/strong>, Haferkamp I<\/span>1<\/span><\/sup>, Lepetit B, Molchanova M, Hou S, Jeblick W, Río Bártulos C, and Kroth PG. Reduced vacuolar β-1,3-glucan synthesis affects carbohydrate metabolism as well as plastid homeostasis and structure in <\/span>Phaeodactylum tricornutum<\/span><\/em>. <\/span>PNAS<\/span><\/em><\/strong>, <\/span><\/strong>2<\/span><\/span>018, <\/span>115, 4791-4796. <\/span><\/p><\/p> 4.<\/span><\/strong><\/p> Ge F<\/span>1<\/span><\/sup>, <\/span>Huang W<\/span><\/strong>1<\/span><\/sup><\/strong>, Chen Z<\/span>1<\/span><\/sup>, Zhang C<\/span>1<\/span><\/sup>, Xiong Q, Bowler C, Yang J, Xu J, and Hu H. Methylcrotonyl-CoA carboxylase regulates triacylglycerol accumulation in the model diatom <\/span>Phaeodactylum tricornutum<\/span><\/em>. <\/span>Plant Cell<\/span><\/em><\/strong>.,<\/span><\/strong> 2014, 26(4): 1681-1697. <\/span><\/p><\/p> <\/span><\/p> 5.Huang W<\/span><\/strong>, and Daboussi F. Genetic and metabolic engineering in diatoms. <\/span>Phil. Trans. R. Soc. B<\/span><\/em><\/strong>., <\/span><\/strong>2017, 372. <\/span><\/p><\/span><\/p> 6<\/span><\/strong>.Sanz-Luque E, Sroussi S, <\/span>Huang W<\/span><\/strong>, Akkawi, N, and Grossman A. <\/span>Metabolic control of acclimation to nutrient deprivation dependent on polyphosphate synthesis<\/span>. <\/span>Sci. Adv<\/span><\/em><\/strong>., <\/span><\/strong> <\/span><\/em><\/strong>2020<\/span>,<\/span>6 (40): eabb5351. <\/span><\/p><\/p> 7<\/span><\/strong>.<\/span><\/p> Kaye Y<\/span>1<\/span><\/sup>, <\/span>Huang W<\/span><\/strong>1<\/span><\/sup><\/strong>, Clowez S, Saroussi S, Idoine A, Sanz-Luque E, and Grossman A. The mitochondrial alternative oxidase from <\/span>Chlamydomonas reinhardtii <\/span><\/em>enables survival in high light. <\/span>