PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
January 25, 2026New Phytologist5 citations

MsCDPK29 ‐ MsbZIP14 modulates ABA accumulation in response to saline‐alkali stress in alfalfa

View Full Paper
YRYuekun RenLLL. LiuWZWeidi Zhao

Key Points

  • The research aims to elucidate the role of MsCDPK29 in modulating responses to saline-alkali stress in alfalfa.
  • Identified MsCDPK29 as a positive regulator through overexpression in alfalfa under stress.
  • Used RNA interference to examine the effects of MsCDPK29 knockdown on stress tolerance.
  • Assessed antioxidant capacity, electrolyte leakage, and reactive oxygen species levels in transformed plants.
  • Investigated the interaction between MsCDPK29 and MsbZIP14, including phosphorylation sites.
  • Analyzed expression levels of MsNCED3 in relation to MsbZIP14 activity.
  • Overexpression of MsCDPK29 increased stress tolerance and antioxidant activity in alfalfa.
  • MsCDPK29 RNAi plants showed reduced tolerance and higher oxidative stress markers.
  • MsbZIP14 enhances ABA accumulation and interacts with MsCDPK29, being phosphorylated at specific sites for function.
  • MsbZIP14 activates MsNCED3 expression, thereby playing a crucial role in ABA biosynthesis.

Abstract

Summary Salinization of arable land is a major adversity factor affecting crop yields. Calcium‐dependent protein kinases (CDPKs/CPKs) play crucial regulatory roles in multiple stress responses. However, their functions in alfalfa and the mechanisms of CDPKs in regulating saline‐alkali stress are not well elaborated. In this study, we identified MsCDPK29 as a positive regulator of saline‐alkali tolerance in alfalfa. Overexpression (OE) of MsCDPK29 in alfalfa displayed tolerance to saline‐alkali stress, with higher antioxidant capacity, whereas electrolyte leakage, hydrogen peroxide (H 2 O 2 ), superoxide anions (O 2 − ), and malondialdehyde (MDA) contents were lower than wild‐type (WT). Conversely, MsCDPK29 RNA interference (RNAi) alfalfa displayed opposite phenotypes. Additionally, MsbZIP14, a basic region‐leucine zipper transcription factor, was identified as a MsCDPK29‐interacting protein. OE of MsbZIP14 promotes abscisic acid (ABA) accumulation and enhances saline‐alkali tolerance. Meanwhile, we showed that MsbZIP14 was phosphorylated by MsCDPK29 at threonine236 (T236) and serine237 (S237) sites, and the phosphorylation is required for the biological function of MsbZIP14 in regulating ABA biosynthesis and saline‐alkali stress response. MsbZIP14 directly binds to the promoter of MsNCED3 and activates its expression. Moreover, MsCDPK29 activated MsbZIP14 to enhance the expression of MsNCED3 . Collectively, this study uncovered the mechanism whereby MsCDPK29 positively regulates saline‐alkali tolerance in alfalfa by phosphorylation of MsbZIP14 to activate MsNCED3 expression.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Ren et al. (2026) studied this question.

synapsesocial.com/papers/6975b28afeba4585c2d6df8fhttps://doi.org/10.1111/nph.70945
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The <scp>MsNAC73</scp>–<scp>MsMPK3</scp> Complex Modulates Salt Tolerance and Shoot Branching of Alfalfa via Activating <scp><i>MsPG2</i></scp> and <scp><i>MsPAE12</i></scp> Expressions2025
  2. 2Alfalfa Transcription Factor MsNAC2a Orchestrates the Homeostasis of Salt Stress Responses via Reactive Oxygen Species Accumulation and Hydrogen Sulphide Depletion.2025
  3. 3CabZIP42 mediates ALA-regulated saline-alkali tolerance by enhancing the expression level of CaSOS1 and CaPOX2 in pepper seedlings2026
  4. 4Alfalfa MsSOS2 confers salinity tolerance by promoting lateral root growth and regulating Na+/K+ homeostasis2025
  5. 5Identification and preliminary functional characterization of MsPAL2, a key salt-tolerance gene during seed germination in Medicago sativa2026