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PXD067376
PXD067376 is an original dataset announced via ProteomeXchange.
Dataset Summary
| Title | Organellar LEA proteins ensure seed longevity by plastidial remodelling and embryonal degreening |
| Description | Seeds provide plant embryos with the remarkable ability to endure extended periods of times and extreme environmental conditions. Orthodox – or desiccation-tolerant – seeds, in particular, feature a number of adaptations to optimise resistance against extreme environments. Those traits must be established during seed maturation, since metabolism is reduced to a minimum during the desiccated phase and cannot support active defence. A characteristic of the maturation of most orthodox seeds is de-greening of the embryo, i.e. the regulated disassembly of the chloroplast thylakoid systems and chlorophyll degradation. While de-greening was shown to be under hormonal control, the physiological significance of thylakoid disassembly and reassembly remains unclear. Here we isolated an Arabidopsis lea48 lea42 line, as a model for depleted LEA function specifically in mitochondria and plastids of seeds. lea48 lea42 features a stay-green phenotype due to incomplete thylakoid degradation of the chloroplast, as evidenced by proteomic, transcriptomic and transmission electron microscopy analyses, yet without apparent signs of disrupted ABA homeostasis. While fresh lea48 lea42 seeds were unaffected in their germination properties, mutants were compromised in longevity at high-temperature/ high-humidity aging. Organelle-specific genetic complementation revealed that reduced longevity is linked to LEA ablation in the plastid, rather than the mitochondria. Strikingly, ‘light-ageing’, i.e. illumination of mature dry seeds, also reduced longevity delayed germination, which was associated with an accumulation of oxidised lipids. Our study pinpoints a novel role for LEA proteins in the regulated remodelling of seed mitochondria and plastids before desiccation. We identify embryo de-greening under the partial control of LEA as a key contributor to seed longevity, with direct evolutionary and ecological implications, as well as for strategies in plant breeding and agriculture. |
| HostingRepository | jPOST |
| AnnounceDate | 2026-08-18 |
| AnnouncementXML | Submission_2026-08-17_08:00:05.197.xml |
| DigitalObjectIdentifier | |
| ReviewLevel | Non peer-reviewed dataset |
| DatasetOrigin | Original dataset |
| RepositorySupport | Unsupported dataset by repository |
| PrimarySubmitter | Jürgen Eirich |
| SpeciesList | scientific name: Arabidopsis thaliana (Mouse-ear cress); NCBI TaxID: 3702; |
| ModificationList | S-carboxamidomethyl-L-cysteine; L-methionine sulfoxide; alpha-amino acetylated residue |
| Instrument | Orbitrap Eclipse; Orbitrap Exploris 480 |
Dataset History
| Revision | Datetime | Status | ChangeLog Entry |
|---|---|---|---|
| 0 | 2025-08-14 23:17:02 | ID requested | |
| ⏵ 1 | 2026-08-17 08:00:05 | announced |
Publication List
| Dataset with its publication pending |
Keyword List
| submitter keyword: Arabidopsis thaliana, seeds, LEA, mitochondria |
Contact List
| Iris Finkemeier | |
|---|---|
| lab head | |
| Jürgen Eirich | |
| contact affiliation | University of Münster - WWU - Institute for Biology and Biotechnology of Plants |
| dataset submitter | |
Full Dataset Link List
| jPOST dataset URI |
| Dataset FTP location NOTE: Most web browsers have now discontinued native support for FTP access within the browser window. But you can usually install another FTP app (we recommend FileZilla) and configure your browser to launch the external application when you click on this FTP link. Or otherwise, launch an app that supports FTP (like FileZilla) and use this address: ftp://ftp.jpostdb.org/JPST004009/ |




