ABA pathway transcription is used in the paper as a mechanistic axis for interpreting tomato responses to FsK.
First-pass extracted concept
abscisic acid signaling
Candidate: concept label4 source documents4 linked claims
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ABA
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Root traits and root and leaf transcripts for abscisic acid (ABA) and ethylene (ET) pathways were quantified.
the review explores the critical cross-talk between CDPKs signaling networks and phytohormone pathways, particularly abscisic acid (ABA)
Functional analysis revealed DEGs involved in four major hormone signaling pathways (auxin (AUX/IAA), jasmonic acid (JA), abscisic acid (ABA), and brassinosteroid (BR)).
Hormone-mediated signaling pathways, particularly those of salicylic acid, jasmonic acid, and abscisic acid, were shown to play central roles in host defense.
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Linked Claims
FsK broadly affects tomato leaf ABA biosynthetic and homeostasis gene expression in a pattern interpreted as reduced de novo ABA synthesis with enhanced deconjugation of stored ABA.
Quoted textsource-backed
In leaves, FsK broadly affected ABA biosynthetic and homeostasis genes (ZEP1, NCED1, ABA2, AAO1, ABA-GT, BG1), indicating reduced de novo synthesis with enhanced deconjugation of stored ABA.
Salicylic acid, jasmonic acid, and abscisic acid signaling pathways play central roles in chrysanthemum host defense.
CDPK signaling networks show critical cross-talk with ABA pathways and integrate with ROS and MAPK signaling cascades.
Quoted textsource-backed
the critical cross-talk between CDPKs signaling networks and phytohormone pathways, particularly abscisic acid (ABA), and their integration with reactive oxygen species (ROS) and MAPK signaling cascades
Differentially expressed genes in auxin, jasmonic acid, abscisic acid, and brassinosteroid signaling interact with the MAPK cascade to regulate oil palm cold stress adaptation and growth adjustments.
Quoted textsource-backed
Functional analysis revealed DEGs involved in four major hormone signaling pathways (auxin (AUX/IAA), jasmonic acid (JA), abscisic acid (ABA), and brassinosteroid (BR)), which also interact with the MAPK cascade to collectively regulate oil palm cold stress adaptation and growth adjustments.