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DiatOmicBase: a versatile gene‐centered platform for mining functional omics data in diatom research. <i>Plant J. 121(6)</i>: e70061. <a href=\"https://dx.doi.org/10.1111/tpj.70061\" target=\"_blank\">https://dx.doi.org/10.1111/tpj.70061</a>","AutID":320479,"MonDate":null,"AnaDate":2025,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":362909,"RR":"<b>Fabris, M.; George, J.; Kuzhiumparambil, U.; Lawson, C.A.; Jaramillo-Madrid, A.C.; Abbriano, R.; Vickers, C.E.; Ralph, P.J.</b> (2020). Extrachromosomal genetic engineering of the marine diatom <i>Phaeodactylum tricornutum</i> enables the heterologous production of monoterpenoids. <i>ACS Synthetic Biology 9(3)</i>: 598-612. <a href=\"https://dx.doi.org/10.1021/acssynbio.9b00455\" target=\"_blank\">https://dx.doi.org/10.1021/acssynbio.9b00455</a>","AutID":320479,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":362888,"RR":"<b>George, J.; Kahlke, T.; Abbriano, R.; Kuzhiumparambil, U.; Ralph, P.J.; Fabris, M.</b> (2020). Metabolic engineering strategies in diatoms reveal unique phenotypes and genetic configurations with implications for algal genetics and synthetic biology. <i>Frontiers in Bioengineering and Biotechnology 8</i>: 00513. <a href=\"https://dx.doi.org/10.3389/fbioe.2020.00513\" target=\"_blank\">https://dx.doi.org/10.3389/fbioe.2020.00513</a>","AutID":320479,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":362889,"RR":"<b>Jaramillo-Madrid, A.C.; Ashworth, J.; Fabris, M.; Ralph, P.J.</b> (2020). The unique sterol biosynthesis pathway of three model diatoms consists of a conserved core and diversified endpoints. <i>Algal Research 48</i>: 101902. <a href=\"https://dx.doi.org/10.1016/j.algal.2020.101902\" target=\"_blank\">https://dx.doi.org/10.1016/j.algal.2020.101902</a>","AutID":320479,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":362771,"RR":"<b>Jaramillo-Madrid, A.C.; Abbriano, R.; Ashworth, J.; Fabris, M.; Pernice, M.; Ralph, P.J.</b> (2020). Overexpression of key sterol pathway enzymes in two model marine diatoms alters sterol profiles in <i>Phaeodactylum tricornutum</i>. <i>Pharmaceuticals 13(12)</i>: 481. <a href=\"https://dx.doi.org/10.3390/ph13120481\" target=\"_blank\">https://dx.doi.org/10.3390/ph13120481</a>","AutID":320479,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":363032,"RR":"<b>Jaramillo-Madrid, A.C.; Ashworth, J.; Fabris, M.; Ralph, P.J.</b> (2019). Phytosterol biosynthesis and production by diatoms (Bacillariophyceae). <i>Phytochemistry 163</i>: 46-57. <a href=\"https://dx.doi.org/10.1016/j.phytochem.2019.03.018\" target=\"_blank\">https://dx.doi.org/10.1016/j.phytochem.2019.03.018</a>","AutID":320479,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":362983,"RR":"<b>Ramarajan, M.; Fabris, M.; Abbriano, R.M.; Pernice, M.; Ralph, P.J.</b> (2019). Novel endogenous promoters for genetic engineering of the marine microalga <i>Nannochloropsis gaditana</i> CCMP526. <i>Algal Research 44</i>: 101708. <a href=\"https://dx.doi.org/10.1016/j.algal.2019.101708\" target=\"_blank\">https://dx.doi.org/10.1016/j.algal.2019.101708</a>","AutID":320479,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":293715,"RR":"<b>Matthijs, M.; Fabris, M.; Obata, T.; Foubert, I.; Franco-Zorrilla, M.; Solano, R.; Fernie, R.; Vyverman, W.; Goossens, A.</b> (2017). The transcription factor bZIP14 regulates the TCA cycle in the diatom <i>Phaeodactylum tricornutum</i>. <i>EMBO J. 36(11)</i>: 1559-1576. <a href=\"https://dx.doi.org/10.15252/embj.201696392\" target=\"_blank\">https://dx.doi.org/10.15252/embj.201696392</a>","AutID":156660,"MonDate":null,"AnaDate":2017,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":256749,"RR":"<b>Kim, J; Fabris, M.; Baart, G.; Kim, K; Goossens, A.; Vyverman, W.; Falkowski, G; Lun, S</b> (2016). Flux balance analysis of primary metabolism in the diatom <i>Phaeodactylum tricornutum</i>. <i>Plant J. 85(1)</i>: 161-176. <a href=\"http://dx.doi.org/10.1111/tpj.13081\" target=\"_blank\">dx.doi.org/10.1111/tpj.13081</a>","AutID":219628,"MonDate":null,"AnaDate":2016,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":280641,"RR":"<b>Matthijs, M.; Fabris, M.; Broos, S.; Vyverman, W.; Goossens, A.</b> (2016). Profiling of the early nitrogen stress response in the diatom <i>Phaeodactylum tricornutum</i> reveals a novel family of RING-domain transcription factors. <i>Plant Physiol. 170(1)</i>: 489-498. <a href=\"https://dx.doi.org/10.1104/pp.15.01300\" target=\"_blank\">https://dx.doi.org/10.1104/pp.15.01300</a>","AutID":240256,"MonDate":null,"AnaDate":2016,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":246865,"RR":"<b>Fabris, M.; Matthijs, M.; Carbonelle, S.; Moses, T.; Pollier, J.; Dasseville, R.; Baart, G.J.E.; Vyverman, W.; Goossens, A.</b> (2014). Tracking the sterol biosynthesis pathway of the diatom <i>Phaeodactylum tricornutum</i>. <i>New Phytol. 204(3)</i>: 521-535. <a href=\"http://dx.doi.org/10.1111/nph.12917\" target=\"_blank\">dx.doi.org/10.1111/nph.12917</a>","AutID":145510,"MonDate":null,"AnaDate":2014,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":221499,"RR":"<b>Fabris, M.; Matthijs, M.; Rombauts, S.; Vyverman, W.; Goossens, A.; Baart, G.J.E.</b> (2012). The metabolic blueprint of <i>Phaeodactylum tricornutum</i> reveals a eukaryotic Entner-Doudoroff glycolytic pathway. <i>Plant J. 70(6)</i>: 1004-1014. <a href=\"http://dx.doi.org/10.1111/j.1365-313X.2012.04941.x\" target=\"_blank\">http://dx.doi.org/10.1111/j.1365-313X.2012.04941.x</a>","AutID":145510,"MonDate":null,"AnaDate":2012,"PeerRev":1,"outputType":"1_A1","OpenAcc":0}],"Abstr":[{"BRefID":234066,"RR":"<b>Matthijs, M.; Fabris, M.; Obata, T.; Broos, S.; Baart, G.J.E.; Fernie, A.R.; Vyverman, W.; Goossens, A.</b> (2014). The early nitrogen starvation response of the diatom <i>Phaeodactylum tricornutum</i>, <b><i>in</i></b>: Mees, J. <i>et al.</i> (Ed.) <i>Book of abstracts – VLIZ Young Scientists’ Day. Brugge, Belgium, 7 March 2014. VLIZ Special Publication,</i> 67","AutID":145510,"MonDate":null,"AnaDate":2014,"PeerRev":0,"outputType":"6_Abstr","OpenAcc":1},{"BRefID":222879,"RR":"<b>Matthijs, M.; Fabris, M.; Baart, G.J.E.; Goossens, A.; Vyverman, W.</b> (2013). Differential expression of a model diatom in the early phases of lipid accumulation, <b><i>in</i></b>: Mees, J. <i>et al.</i> (Ed.) <i>Book of abstracts – VLIZ Young Marine Scientists' Day. Brugge, Belgium, 15 February 2013. VLIZ Special Publication,</i> 63: pp. 66","AutID":145510,"MonDate":null,"AnaDate":2013,"PeerRev":0,"outputType":"6_Abstr","OpenAcc":1},{"BRefID":218052,"RR":"<b>Fabris, M.; Matthijs, M.; Carbonelle, S.; Vyverman, W.; Goossens, A.; Baart, G.J.E.</b> (2012). Sterol biosynthesis in <i>P. tricornutum</i>, <b><i>in</i></b>: Sabbe, K. <i>et al.</i> (Ed.) <i>Twenty-second International Diatom Symposium, Aula Academica, Ghent, 26-31 August 2012. Abstracts. VLIZ Special Publication,</i> 58: pp. 41","AutID":145510,"MonDate":null,"AnaDate":2012,"PeerRev":0,"outputType":"6_Abstr","OpenAcc":1},{"BRefID":218053,"RR":"<b>Fabris, M.; Matthijs, M.; Vyverman, W.; Goossens, A.; Baart, G.J.E.</b> (2012). DiatomCyc, <b><i>in</i></b>: Sabbe, K. <i>et al.</i> (Ed.) <i>Twenty-second International Diatom Symposium, Aula Academica, Ghent, 26-31 August 2012. Abstracts. VLIZ Special Publication,</i> 58: pp. 42","AutID":145510,"MonDate":null,"AnaDate":2012,"PeerRev":0,"outputType":"6_Abstr","OpenAcc":1},{"BRefID":218112,"RR":"<b>Matthijs, M.; Baart, G.J.E.; Goossens, A.; Vyverman, W.</b> (2012). Enhancing lipid production of <i>Phaeodactylum tricornutum</i> through metabolic engineering, <b><i>in</i></b>: Sabbe, K. <i>et al.</i> (Ed.) <i>Twenty-second International Diatom Symposium, Aula Academica, Ghent, 26-31 August 2012. Abstracts. VLIZ Special Publication,</i> 58: pp. 76","AutID":145510,"MonDate":null,"AnaDate":2012,"PeerRev":0,"outputType":"6_Abstr","OpenAcc":1},{"BRefID":213412,"RR":"<b>Matthijs, M.; Fabris, M.; Baart, G.J.E.; Goossens, A.; Vyverman, W.</b> (2012). 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