Matthew J. Terry
Affiliations: | 1990-1993 | Biochemistry and Biophysics | University of California, Davis, Davis, CA |
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Publications
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Torrado A, Connabeer HM, Röttig A, et al. (2022) Directing cyanobacterial photosynthesis in a cytochrome c oxidase mutant using a heterologous electron sink. Plant Physiology |
Okamoto H, Ducreux LJM, Allwood JW, et al. (2020) Light Regulation of Chlorophyll and Glycoalkaloid Biosynthesis During Tuber Greening of Potato . Frontiers in Plant Science. 11: 753 |
Page MT, Garcia-Becerra T, Smith AG, et al. (2020) Overexpression of chloroplast-targeted ferrochelatase 1 results in a chloroplast-to-nucleus retrograde signalling phenotype. Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences. 375: 20190401 |
Shimizu T, Kacprzak SM, Mochizuki N, et al. (2019) The retrograde signaling protein GUN1 regulates tetrapyrrole biosynthesis. Proceedings of the National Academy of Sciences of the United States of America |
Terry MJ, Kacprzak SM. (2019) A Simple Method for Quantification of Protochlorophyllide in Etiolated Arabidopsis Seedlings. Methods in Molecular Biology (Clifton, N.J.). 2026: 169-177 |
Hu X, Page MT, Sumida A, et al. (2016) The iron-sulfur cluster biosynthesis protein SUFB is required for chlorophyll synthesis, but not phytochrome signaling. The Plant Journal : For Cell and Molecular Biology |
Burgess SJ, Granero-Moya I, Grangé-Guermente MJ, et al. (2016) Ancestral light and chloroplast regulation form the foundations for C4 gene expression. Nature Plants. 2: 16161 |
Page MT, McCormac AC, Smith AG, et al. (2016) Singlet oxygen initiates a plastid signal controlling photosynthetic gene expression. The New Phytologist |
Tamiru M, Takagi H, Abe A, et al. (2016) A chloroplast-localized protein LESION AND LAMINA BENDING affects defence and growth responses in rice. The New Phytologist. 210: 1282-97 |
Tamiru M, Abe A, Utsushi H, et al. (2014) The tillering phenotype of the rice plastid terminal oxidase (PTOX) loss-of-function mutant is associated with strigolactone deficiency. The New Phytologist. 202: 116-31 |