Among these, Late Embryogenesis Abundant (LEA) proteins play a pivotal role in responding to abiotic stresses and participate in a reciprocal regulatory network with the abscisic acid (ABA) signaling pathway.
First-pass extracted concept
late embryogenesis-abundant (LEA) proteins
Candidate: concept label2 source documents5 linked claims
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Aliases
LEA proteins
Evidence Snippets
Many of the identified genes encoded late embryogenesis-abundant (LEA) proteins, which are abundant proteins that accumulate during normal seed development.
Supporting Sources
Linked Claims
The synthesized evidence redefines LEA proteins as active modulators rather than passive effectors in stress signaling.
LEA proteins play a pivotal role in plant responses to abiotic stress.
The review proposes an ABA-LEA feedback loop model in which ABA regulates LEA expression and LEA proteins feed back on ABA homeostasis and signaling.
Many desiccation-upregulated genes identified in Craterostigma plantagineum encoded LEA proteins.
LEA proteins participate in a reciprocal regulatory network with the ABA signaling pathway.