# | Document title | Authors | Year | Source | Cited by |
1 | Genome, Functional Gene Annotation, and Nuclear Transformation of the Heterokont Oleaginous Alga Nannochloropsis oceanica CCMP1779 | Vieler A., Wu G., Tsai C.H., Bullard B., Cornish A.J., Harvey C., Reca I.B., Thornburg C., Achawanantakun R., Buehl C.J., Campbell M.S., Cavalier D., Childs K.L., Clark T.J., Deshpande R., Erickson E., Erickson E., Armenia Ferguson A., Handee W., Kong Q., Li X., Liu B., Lundback S., Peng C., Roston R.L., Sanjaya , Simpson J.P., TerBush A., Warakanont J., Zäuner S., Farre E.M., Hegg E.L., Jiang N., Kuo M.H., Lu Y., Niyogi K.K., Niyogi K.K., Ohlrogge J., Osteryoung K.W., Shachar-Hill Y., Sears B.B., Sun Y., Takahashi H., Yandell M., Shiu S.H., Benning C. | 2012 | PLoS Genetics 8(11) | 349 |
2 | TAG, You're it! Chlamydomonas as a reference organism for understanding algal triacylglycerol accumulation | Merchant S., Kropat J., Liu B., Shaw J., Warakanont J. | 2012 | Current Opinion in Biotechnology 23(3),pp. 352-363 | 285 |
3 | Lipid catabolism in microalgae | Kong F., Romero I.T., Warakanont J., Warakanont J., Li-Beisson Y. | 2018 | New Phytologist 218(4),pp. 1340-1348 | 94 |
4 | Dynamics of protein and polar lipid recruitment during lipid droplet assembly in Chlamydomonas reinhardtii | Tsai C.H., Zienkiewicz K., Zienkiewicz K., Amstutz C.L., Amstutz C.L., Brink B.G., Warakanont J., Roston R., Roston R., Benning C. | 2015 | Plant Journal 83(4),pp. 650-660 | 61 |
5 | Critical role of chlamydomonas reinhardtii ferredoxin-5 in maintaining membrane structure and dark metabolism | Yang W., Yang W., Wittkopp T.M., Li X., Warakanont J., Dubini A., Catalanotti C., Kim R.G., Kim R.G., Nowack E.C.M., Mackinder L.C.M., Aksoy M., Page M.D., D'Adamof S., Saroussi S., Heinnickel M., Johnson X., Johnson X., Richaud P., Alric J., Alric J., Boehm M., Jonikas M.C., Benningh C., Merchant S.S., Posewitz M.C., Grossman A.R. | 2015 | Proceedings of the National Academy of Sciences of the United States of America 112(48),pp. 14978-14983 | 47 |
6 | Chloroplast lipid transfer processes in Chlamydomonas reinhardtii involving a TRIGALACTOSYLDIACYLGLYCEROL 2 (TGD2) orthologue | Warakanont J., Tsai C.H., Tsai C.H., Michel E.J.S., Michel E.J.S., Murphy G.R., Murphy G.R., Hsueh P.Y., Roston R.L., Roston R.L., Sears B.B., Benning C. | 2015 | Plant Journal 84(5),pp. 1005-1020 | 36 |
7 | LIP4 Is Involved in Triacylglycerol Degradation in Chlamydomonas reinhardtii | Warakanont J., Warakanont J., Warakanont J., Li-Beisson Y., Benning C. | 2019 | Plant and Cell Physiology 60(6),pp. 1250-1259 | 24 |
8 | Molecular characterization of two genes encoding plastidic ATP/ADP transport proteins in cassava | Yuen C., Yuen C., Leelapon O., Chanvivattana Y., Warakanont J., Narangajavana J. | 2009 | Biologia Plantarum 53(1),pp. 37-44 | 9 |
9 | All members of the Arabidopsis DGAT and PDAT acyltransferase families operate during high and low temperatures | Shomo Z.D., Mahboub S., Vanviratikul H., McCormick M., Tulyananda T., Roston R.L., Warakanont J. | 2024 | Plant physiology 195(1),pp. 685-697 | 7 |
10 | Erratum: Correction: Genome, Functional Gene Annotation, and Nuclear Transformation of the Heterokont Oleaginous Alga Nannochloropsis oceanica CCMP1779 (PLoS genetics (2012) 8 11 (e1003064)) | Vieler A., Wu G., Tsai C.H., Bullard B., Cornish A.J., Harvey C., Reca I.B., Thornburg C., Achawanantakun R., Buehl C.J., Campbell M.S., Cavalier D., Childs K.L., Clark T.J., Deshpande R., Erickson E., Armenia Ferguson A., Handee W., Kong Q., Li X., Liu B., Lundback S., Peng C., Roston R.L., Sanjaya , Simpson J.P., TerBush A., Warakanont J., Zäuner S., Farre E.M., Hegg E.L., Jiang N., Kuo M.H., Lu Y., Niyogi K.K., Ohlrogge J., Osteryoung K.W., Shachar-Hill Y., Sears B.B., Sun Y., Takahashi H., Yandell M., Shiu S.H., Benning C. | 2017 | PLoS genetics 13(5),pp. e1006802 | 6 |
11 | Chlamydomonas glycerolipid metabolism | Li-Beisson Y., Warakanont J., Riekhof W., Benning C. | 2023 | The Chlamydomonas Sourcebook: Volume 2: Organellar and Metabolic Processes ,pp. 51-97 | 6 |