First-pass extracted concept

seed dormancy release

Candidate: concept label1 source documents4 linked claims
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Evidence Snippets

Dormancy release occurs under the influence of low temperature and/or illumination with red light.
Evidence 1Source 1DOIprovenance

Supporting Sources

Linked Claims

Claim 1environmental triggersupports2012Source 1DOI

Dormancy release occurs under low temperature and/or red light illumination.

Quoted textsource-backed
Dormancy release occurs under the influence of low temperature and/or illumination with red light.
Claim 2mechanistic summarysupports2012Source 1DOI

Dormancy release ends with GA-induced synthesis of proteins, including enzymes, required for the start of germination.

Quoted textsource-backed
Dormancy release ends with the GA-induced syntheses of some proteins, enzymes in particular, required for the start of germination.
Claim 3mechanistic summarysupports2012Source 1DOI

In Arabidopsis seeds with non-deep physiological dormancy, dormancy release is controlled by phytohormone-associated changes including decreased ABA content and signaling plus increased GA synthesis and signaling.

Quoted textsource-backed
The review characterizes the hormonal regulation of seed dormancy and its release, as exemplified by arabidopsis seeds possessing non-deep physiological dormancy... Two main trends are typical of this process: (1) a decrease in ABA content and blocking of signal transduction from ABA, and (2) GA synthesis and activation of GA signaling pathway.
Claim 4process distinctionsupports2012Source 1DOI

Seed dormancy release is controlled by phytohormones, whereas subsequent germination initiation in embryo axes is controlled by water inflow.

Quoted textsource-backed
Thus, seed dormancy release is controlled by phytohormones, whereas subsequent germination manifesting itself as the initiation of cell elongation in embryo axes is controlled by water inflow.