# | Document title | Authors | Year | Source | Cited by |
1 | Transgenerational Stability of the Arabidopsis Epigenome Is Coordinated by CG Methylation | Mathieu O., Mathieu O., Reinders J., Čaikovski M., Smathajitt C., Paszkowski J. | 2007 | Cell 130(5),pp. 851-862 | 324 |
2 | Epigenetic regulation of transcription in intermediate heterochromatin | Habu Y., Habu Y., Mathieu O., Tariq M., Probst A.V., Probst A.V., Smathajitt C., Smathajitt C., Zhu T., Paszkowski J., Paszkowski J. | 2006 | EMBO Reports 7(12),pp. 1279-1284 | 56 |
3 | MOM1 and Pol-IV/V interactions regulate the intensity and specificity of transcriptional gene silencing | Yokthongwattana C., Yokthongwattana C., Yokthongwattana C., Bucher E., Čaikovski M., Čaikovski M., Vaillant I., Vaillant I., Nicolet J., Scheid O.M., Scheid O.M., Paszkowski J., Paszkowski J. | 2010 | EMBO Journal 29(2),pp. 340-351 | 53 |
4 | Divergent evolution of CHD3 proteins resulted in MOM1 refining epigenetic control in vascular plants | Čaikovski M., Yokthongwattana C., Yokthongwattana C., Habu Y., Nishimura T., Nishimura T., Mathieu O., Mathieu O., Paszkowski J. | 2008 | PLoS Genetics 4(8) | 29 |
5 | Comparative proteomic analysis of Chlamydomonas reinhardtii control and a salinity-tolerant strain revealed a differential protein expression pattern | Sithtisarn S., Yokthongwattana K., Mahong B., Roytrakul S., Paemanee A., Phaonakrop N., Yokthongwattana C. | 2017 | Planta 246(5),pp. 843-856 | 27 |
6 | Proteomic analysis of salinity-stressed Chlamydomonas reinhardtii revealed differential suppression and induction of a large number of important housekeeping proteins | Yokthongwattana C., Mahong B., Mahong B., Roytrakul S., Phaonaklop N., Narangajavana J., Yokthongwattana K. | 2012 | Planta 235(3),pp. 649-659 | 23 |
7 | Gene expression and promoter characterization of heat-shock protein 90B gene (HSP90B) in the model unicellular green alga Chlamydomonas reinhardtii | Traewachiwiphak S., Yokthongwattana C., Ves-Urai P., Ves-Urai P., Charoensawan V., Yokthongwattana K. | 2018 | Plant Science 272,pp. 107-116 | 9 |
8 | Bioactivities of Jc-SCRIP, a Type 1 ribosome-inactivating protein from jatropha curcas seed coat | Nuchsuk C., Wetprasit N., Roytrakul S., Choowongkomon K., T-Thienprasert N., Yokthongwattana C., Arpornsuwan T., Ratanapo S. | 2013 | Chemical Biology and Drug Design 82(4),pp. 453-462 | 8 |
9 | Carotenogenesis in nannochloropsis oculata under oxidative and salinity stress | Abidin A.A.Z., Yusof Z.N.B., Yokthongwattana C. | 2021 | Sains Malaysiana 50(2),pp. 327-337 | 4 |
10 | Comparative proteomic analysis of chromosome segment substitution lines of Thai jasmine rice KDML105 under short-term salinity stress | Nguyen V.Q., Sreewongchai T., Siangliw M., Roytrakul S., Yokthongwattana C. | 2022 | Planta 256(1),pp. 12 | 3 |
11 | Comparative secretome analysis between salinity-tolerant and control Chlamydomonas reinhardtii strains | Ves-urai P., Krobthong S., Thongsuk K., Roytrakul S., Yokthongwattana C. | 2021 | Planta 253(3) | 3 |
12 | Chlamydomonas plastid chaperonin subunits expressed in E. coli can interact with one another inside the bacterial cell and putatively confer enhanced tolerance toward singlet oxygen | Wongsamart R., Yokthongwattana C., Yokthongwattana K. | 2022 | ScienceAsia 48(4),pp. 496-505 | 1 |
13 | Nutritional Profiles, Phytochemical Analysis, Antioxidant Activity and DNA Damage Protection of Makapuno Derived from Thai Aromatic Coconut | Phonphoem W., Sinthuvanich C., Aramrak A., Sirichiewsakul S., Arikit S., Yokthongwattana C. | 2022 | Foods 11(23) | 0 |
14 | Structural Distinctive 26SK, a Ribosome-Inactivating Protein from Jatropha curcas and Its Biological Activities | Pathanraj D., Choowongkomon K., Roytrakul S., Yokthongwattana C. | 2021 | Applied Biochemistry and Biotechnology
| 0 |