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March 29, 2026TURKISH JOURNAL OF BOTANY0 citationsOpen Access

Global Transcriptomic Insights into NLA-Dependent Boron Toxicity Responses in Arabidopsis thaliana

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DKDOĞA SELİN KAYIHAN

Key Points

  • This research aims to understand the role of NLA in Arabidopsis thaliana's response to boron toxicity.
  • Performed genome-wide transcriptomic analysis on nla mutant Arabidopsis thaliana
  • Exposed plants to mild and moderate boron toxicity
  • Analyzed gene expression changes related to metabolic and signaling pathways
  • NLA loss caused major changes in gene expression related to ribosome and translation pathways
  • Nla mutants were unable to accumulate anthocyanins under boron toxicity
  • Observed shift towards increased lignin biosynthesis and altered expression of circadian regulators

Abstract

Boron (B) toxicity disrupts multiple metabolic and signaling processes in plants, yet its interaction with post-translational regulators remains poorly understood. The E3 ubiquitin ligase NITROGEN LIMITATION ADAPTATION (NLA) is known to control nutrient transporter turnover, but its role in B toxicity responses has not been previously characterized. Here, we present the first genome-wide transcriptomic analysis of nla mutant Arabidopsis thaliana exposed to mild (1 mM) and moderate (2 mM) B toxicity. Loss of NLA caused a profound reprogramming of gene expression, marked by constitutive activation of ribosome- and translation-related pathways and strong repression of MAPK signaling, α-linolenic acid metabolism, and glucosinolate biosynthesis. Physiologically, nla mutants were unable to induce anthocyanin accumulation under toxic B conditions and instead redirected the phenylpropanoid pathway toward lignin biosynthesis. This shift coincided with the upregulation of circadian regulators (CCA1, LHY, HY5) and the downregulation of WRKY- and ERF-type transcription factors, suggesting that NLA is required for maintaining the circadian/phenylpropanoid regulatory balance necessary for anthocyanin induction. Together, our findings identify NLA as a previously unrecognized integrator of circadian, hormonal, and phenylpropanoid networks under B toxicity, and provide a set of candidate genes and pathways for improving B stress tolerance in plants.

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Cite This Study

DOĞA SELİN KAYIHAN (2026) studied this question.

synapsesocial.com/papers/69c8c15ade0f0f753b39bcc8https://doi.org/10.55730/1300-008x.2891
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Also Consider

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

  1. 1Transcriptome profiling of nla-mutant Arabidopsis reveals possible post-translational regulation of key factors cross-linking circadian-rhythm and anthocyanin pathways under boron toxicity2025 · 1 citations
  2. 2Nitrogen Limitation Adaptation (NLA) modulates phosphorus and iron homeostasis during boron toxicity in Arabidopsis thaliana2026
  3. 3The E3 ubiquitin ligase SCFLAO1 promotes NITRITE REDUCTASE degradation to modulate growth and oilseed production in Brassica napus2025
  4. 4Ubiquitin–Proteasome Pathway Genes Show Differential Transcriptional Responses to Excess Boron in Arabidopsis thaliana2026
  5. 5Circadian Rhythm and Nitrogen Metabolism Participate in the Response of Boron Deficiency in the Root of Brassica napus2024 · 3 citations