Uebler, Susanne and Marton, Mihaela L. and Dresselhaus, Thomas (2015) Classification of EA1-box proteins and new insights into their role during reproduction in grasses. PLANT REPRODUCTION, 28 (3-4). pp. 183-197. ISSN 2194-7953, 2194-7961
Full text not available from this repository. (Request a copy)Abstract
Success in reproduction and vegetative development in flowering plants strongly depends on precise cell-to-cell signaling events mediated by secreted peptides. A small peptide family named as EA1-like (EAL) has been first described 10 years ago and includes EA1 involved in pollen tubes attraction by the female gametophyte and EAL1-regulating germ cell identity in maize. EALs consist of an N-terminal endoplasmic reticulum-targeting motif, the highly conserved EA1-box and a short C-terminal alanine-rich domain. Whereas EAL peptides are exclusively found in the Gramineae, the EA1-box is widely distributed throughout the plant kingdom. Based on in silico analysis and subcellular localization studies, we report here a new classification of EA1-box proteins in flowering plants. They can be distinguished into three protein classes: the already defined EAL proteins, the EAG (EA1-box glycine-rich) proteins and the EAC (EA1-box-containing) proteins. While fusion proteins of EAL and EAC classes locate to the secretory pathway, EAGs are cytoplasmic and locate also to the nucleus. Moreover, we further show that the third EAL protein of Zea mays, EAL2, appears to be also involved in processes related to late embryogenic development as its peptide level increases after formation of leaf primordia. Immunohistochemical studies indicate its presence in the scutellar parenchyma and around the vasculature, where it is secreted to the extracellular space. In conclusion, the members of the maize EAL family possess very diverse functions during reproduction and it will now be exciting to elucidate the functions of EAGs and EACs in plants.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | GLYCINE-RICH PROTEINS; STEM-CELL FATE; ARABIDOPSIS-THALIANA; SECRETED PEPTIDE; PLANT; GENE; MAIZE; RNA; IDENTIFICATION; GENOME; EA1-box; Peptide signaling; Fertilization; Embryogenesis; Maize; Rice |
| Subjects: | 500 Science > 580 Botanical sciences |
| Divisions: | Biology, Preclinical Medicine > Institut für Pflanzenwissenschaften > Lehrstuhl für Zellbiologie und Pflanzenphysiologie |
| Depositing User: | Dr. Gernot Deinzer |
| Date Deposited: | 06 May 2019 08:07 |
| Last Modified: | 06 May 2019 08:07 |
| URI: | https://pred.uni-regensburg.de/id/eprint/4434 |
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