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March 5, 2026Biology0 citationsOpen Access

Adaptive Mechanisms of White-Flowered Alfalfa (Medicago sativa L.) in High-Altitude Cold and Saline–Alkali Environments

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XWXiaoli WeiWWWei WangYZYuanyuan Zhao

Key Points

  • The research aims to explore how white-flowered alfalfa adapts to high-altitude saline-alkali environments through physiological and metabolic changes.
  • Compared phenotypic and physiological profiles of white-flowered and purple-flowered alfalfa under field conditions.
  • Conducted transcriptomic and metabolomic analyses to assess molecular changes.
  • Utilized multi-omics analysis to understand reprogramming of metabolic pathways.
  • White-flowered alfalfa showed reduced flower size and chlorophyll a content by 18.9% and 46%, respectively.
  • Significant increases were observed in jasmonic acid (36.3%), proline (51.5%), and antioxidant enzyme activities.
  • Reprogramming of the phenylpropanoid pathway was confirmed, with suppression of anthocyanin biosynthesis.

Abstract

White-flowered alfalfa (Medicago sativa L.) persisting in Qinghai–Tibet Plateau’s saline–alkali habitats provides a unique model to explore floral color polymorphism-linked ecological adaptation. We systematically compared phenotypic, physiological, transcriptomic, and metabolomic profiles of white-flowered (WF) and purple-flowered (PF) alfalfa under high-altitude cold/saline–alkali field conditions (three biological replicates; Student’s t-test). WF showed a significant growth-defense trade-off: flower size and chlorophyll a content decreased by 18.9% and 46.0%, with reduced gibberellin levels, while jasmonic acid (36.3%), proline (51.5%), antioxidant enzyme activities, total flavonoids (17.7%), and condensed tannins (18.2%) were significantly increased (p < 0.001). Multi-omics analysis revealed phenylpropanoid pathway reprogramming (suppressed anthocyanin biosynthesis, precursor accumulation) and coordinated hormone signaling (jasmonic acid activation, salicylic acid inhibition). Our findings confirm the white-flower trait is not an isolated mutation. It is a key component of a coordinated adaptive syndrome, mediated by metabolic reprogramming and hormonal crosstalk. These results provide theoretical and technical support for breeding stress-resistant alfalfa varieties suitable for marginal land cultivation.

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Cite This Study

Wei et al. (2026) studied this question.

synapsesocial.com/papers/69a91e57d6127c7a504c24bdhttps://doi.org/10.3390/biology15050414
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