[1] |
Capron, A., Chatfield, S., Provart, N., and Berleth, T. (2009). Embryogenesis: pattern formation from a single cell. Arabidopsis Book 7, e0126.
|
[2] |
Chen, H., Li, S., Li, L., Hu, H., and Zhao, J. (2018). Arabidopsis EMB1990 encoding a plastid-targeted YlmG protein is required for chloroplast biogenesis and embryo development. Front Plant Sci 9, 181.
|
[3] |
Devic, M. (2008). The importance of being essential: EMBRYO-DEFECTIVE genes in Arabidopsis. C R Biol 331, 726-736.
|
[4] |
Ding, Y.H., Liu, N.Y., Tang, Z.S., Liu, J., and Yang, W.C. (2006). Arabidopsis GLUTAMINE-RICH PROTEIN23 is essential for early embryogenesis and encodes a novel nuclear PPR motif protein that interacts with RNA polymerase II subunit III. Plant Cell 18, 815-830.
|
[5] |
Feng, J., Li, R., Yu, J., Ma, S., Wu, C., Li, Y., Cao, Y., and Ma, L. (2016). Protein N-terminal acetylation is required for embryogenesis in Arabidopsis. J Exp Bot 67, 4779-4789.
|
[6] |
Goda, H., Sasaki, E., Akiyama, K., Maruyama-Nakashita, A., Nakabayashi, K., Li, W., Ogawa, M., Yamauchi, Y., Preston, J., Aoki, K., Kiba, T., Takatsuto, S., Fujioka, S., Asami, T., Nakano, T., Kato, H., Mizuno, T., Sakakibara, H., Yamaguchi, S., Nambara, E., Kamiya, Y., Takahashi, H., Hirai, M.Y., Sakurai, T., Shinozaki, K., Saito, K., Yoshida, S., Shimada, Y. (2008). The AtGenExpress hormone and chemical treatment data set: experimental design, data evaluation, model data analysis and data access. Plant J 55, 526-542.
|
[7] |
Jenik, P.D., Gillmor, C.S., and Lukowitz, W. (2007). Embryonic patterning in Arabidopsis thaliana. Annu Rev Cell Dev Biol 23, 207-236.
|
[8] |
Lau, S., Slane, D., Herud, O., Kong, J., and Jurgens, G. (2012). Early embryogenesis in flowering plants: setting up the basic body pattern. Annu Rev Plant Biol 63, 483-506.
|
[9] |
Lloyd, J., and Meinke, D. (2012). A comprehensive dataset of genes with a loss-of-function mutant phenotype in Arabidopsis. Plant Physiol 158, 1115-1129.
|
[10] |
Meinke, D., Muralla, R., Sweeney, C., and Dickerman, A. (2008). Identifying essential genes in Arabidopsis thaliana. Trends Plant Sci 13, 483-491.
|
[11] |
Meinke, D.W. (2019). Genome-wide identification of EMBRYO-DEFECTIVE (EMB) genes required for growth and development in Arabidopsis. New Phytol. DOI: 10.1111/nph.16071.
|
[12] |
Moller, B., and Weijers, D. (2009). Auxin control of embryo patterning. Cold Spring Harb Perspect Biol 1, a001545.
|
[13] |
Nemhauser, J.L., Mockler, T.C., and Chory, J. (2004). Interdependency of brassinosteroid and auxin signaling in Arabidopsis. PLoS Biol 2, E258.
|
[14] |
Smit, M.E., and Weijers, D. (2015). The role of auxin signaling in early embryo pattern formation. Curr Opin Plant Biol 28, 99-105.
|
[15] |
ten Hove, C.A., Lu, K.J., and Weijers, D. (2015). Building a plant: cell fate specification in the early Arabidopsis embryo. Development 142, 420-430.
|
[16] |
Tzafrir, I., Pena-Muralla, R., Dickerman, A., Berg, M., Rogers, R., Hutchens, S., Sweeney, T.C., McElver, J., Aux, G., Patton, D., Meinke, D. (2004). Identification of genes required for embryo development in Arabidopsis. Plant Physiol 135, 1206-1220.
|
[17] |
Wendrich, J.R., and Weijers, D. (2013). The Arabidopsis embryo as a miniature morphogenesis model. New Phytol 199, 14-25.
|
[18] |
Yamaoka, S., and Leaver, C.J. (2008). EMB2473/MIRO1, an Arabidopsis Miro GTPase, is required for embryogenesis and influences mitochondrial morphology in pollen. Plant Cell 20, 589-601.
|
[19] |
Yu, D.L., Jiang, L., Gong, H.Q., and Liu, C.M. (2012). EMBRYONIC FACTOR 19 encodes a pentatricopeptide repeat protein that is essential for the initiation of zygotic embryogenesis in Arabidopsis. J Integr Plant Biol 54, 55-64.
|
[20] |
Zhao, P., Begcy, K., Dresselhaus, T., and Sun, M.X. (2017). Does early embryogenesis in eudicots and monocots involve the same mechanism and molecular players? Plant Physiol 173, 130-142.
|