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- 01GRBG2MRR4DTYGYSTYY46JR9Q classification A1.
- 01GRBG2MRR4DTYGYSTYY46JR9Q date "2023".
- 01GRBG2MRR4DTYGYSTYY46JR9Q language "eng".
- 01GRBG2MRR4DTYGYSTYY46JR9Q type journalArticle.
- 01GRBG2MRR4DTYGYSTYY46JR9Q hasPart 01H3H1JHWR1V1RMEA34297QA4Q.pdf.
- 01GRBG2MRR4DTYGYSTYY46JR9Q hasPart urn:uuid:3faea0b8-753d-4150-8e75-96a6ea9db8de.
- 01GRBG2MRR4DTYGYSTYY46JR9Q subject "Biology and Life Sciences".
- 01GRBG2MRR4DTYGYSTYY46JR9Q doi "10.1016/j.ejcb.2023.151291".
- 01GRBG2MRR4DTYGYSTYY46JR9Q issn "0171-9335".
- 01GRBG2MRR4DTYGYSTYY46JR9Q issn "1618-1298".
- 01GRBG2MRR4DTYGYSTYY46JR9Q issue "2".
- 01GRBG2MRR4DTYGYSTYY46JR9Q volume "102".
- 01GRBG2MRR4DTYGYSTYY46JR9Q abstract "Regeneration serves as a self-protective mechanism that allows a tissue or organ to recover its entire form and function after suffering damage. However, the regenerative capacity varies greatly within the plant kingdom. Primitive plants frequently display an amazing regenerative ability as they have developed a complex system and strategy for long-term survival under extreme stress conditions. The regenerative ability of dicot species is highly variable, but that of monocots often exhibits extreme recalcitrance to tissue replenishment. Recent studies have revealed key factors and signals that affect cell fate during plant regeneration, some of which are conserved among the plant lineage. Among these, several members of the ETHYLENE RESPONSE FACTOR (ERF) transcription factors have been implicated in wound signaling, playing crucial roles in the regenerative mechanisms after different types of wounding. An understanding of plant regeneration may ultimately lead to an increased regenerative potential of recalcitrant species, producing more high-yielding, multi-resistant and environmentally friendly crops and ensuring the long-term development of global agriculture.".
- 01GRBG2MRR4DTYGYSTYY46JR9Q author BD551AFA-C690-11E8-876E-14A05607D3EF.
- 01GRBG2MRR4DTYGYSTYY46JR9Q author DC5A204C-B83D-11E7-A19C-8FBCAD28A064.
- 01GRBG2MRR4DTYGYSTYY46JR9Q author F4C04C64-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GRBG2MRR4DTYGYSTYY46JR9Q author F9EFDA88-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GRBG2MRR4DTYGYSTYY46JR9Q dateCreated "2023-02-03T11:20:08Z".
- 01GRBG2MRR4DTYGYSTYY46JR9Q dateModified "2024-12-12T20:44:41Z".
- 01GRBG2MRR4DTYGYSTYY46JR9Q name "Evolution of wound-activated regeneration pathways in the plant kingdom".
- 01GRBG2MRR4DTYGYSTYY46JR9Q pagination urn:uuid:83e7fe89-e04a-4976-95aa-a0d12531b4de.
- 01GRBG2MRR4DTYGYSTYY46JR9Q sameAs LU-01GRBG2MRR4DTYGYSTYY46JR9Q.
- 01GRBG2MRR4DTYGYSTYY46JR9Q sourceOrganization urn:uuid:8a980538-7bba-4957-9c89-d6f119d1f970.
- 01GRBG2MRR4DTYGYSTYY46JR9Q sourceOrganization urn:uuid:96224203-1683-4c8a-82db-5a47e2645ce3.
- 01GRBG2MRR4DTYGYSTYY46JR9Q type A1.