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January 17, 2026Plants0 citationsOpen Access

BjuFKF1₁, a Plant-Specific LOV Blue Light Receptor Gene, Positively Regulates Flowering in Brassica juncea

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JGJian GaoKRKeran RenCWChengrun Wu

Key Points

  • This study investigates how the BjuFKF1_1 gene influences flowering timing in Brassica juncea under varying light conditions.
  • RNA-seq analysis of Brassica juncea for photoreceptor gene identification
  • qRT-PCR validation of candidate PHRs in early and late-bolting cultivars
  • Agrobacterium-mediated overexpression of BjuFKF1_1 to assess flowering time changes
  • Histochemical GUS staining to determine gene expression patterns in various tissues
  • Overexpression of BjuFKF1_1 led to earlier flowering in field conditions
  • BjuFKF1_1 showed high expression in seedlings, leaves, flower buds, and siliques
  • Under blue light, several interacting protein-encoding genes were up-regulated in flower buds
  • Developmental analysis indicated specific up-regulation patterns during reproductive stages under different light conditions

Abstract

Stem mustard (Brassica juncea var. tumida Tsen et Lee) is an important economic vegetable in China. Premature bolting induced by temperature fluctuations has become a major cultivation constraint. Photoreceptors (PHRs) serve as critical photosensor proteins that interpret light signals and regulate physiological responses in plants. In this study, five core PHR families, namely F-box-containing flavin binding proteins (ZTL/FKF1/LKP2), phytochrome (PHY), cryptochrome (CRY), phototropin (PHOT) and UV RESISTANCE LOCUS 8 (UVR8) were identified in Brassica species. RNA-seq analysis revealed their expression patterns during organogenesis in B. juncea. Seven candidate PHRs were validated by qRT-PCR in B. juncea early-bolting (‘YA-1’) and late-bolting (‘ZT-1’) cultivars. Agrobacterium-mediated BjuFKF1₁ overexpression (OE) lines resulted in significantly earlier flowering under field conditions. Histochemical GUS staining indicated that BjuFKF1₁ was expressed in seedlings, leaves, flower buds and siliques. Transcript analysis revealed that the expression level of BjuFKF1₁ was up-regulated in all tissues at both the vegetative and reproductive stages, whereas the expression of BjuFKF1₁ interacting protein-encoding genes were down-regulated in flowers. Under blue light, genes encoding interacting proteins (BjuCOL5, BjuSKP1, BjuCOL3, BjuAP2, BjuAP2-1 and BjuLKP2) were up-regulated in flower buds, whereas BjuCOL and BjuPP2C52 were down-regulated in flowers. Developmental stage analysis revealed the up-regulation of five (BjuAP2, BjuCOL3, BjuCOL5, BjuAP2-1 and BjuLKP2) and four (BjuCOL, BjuCOL5, BjuAP2 and BjuLKP2) interaction protein-encoding genes during the reproductive stage under white and blue light, respectively. These findings elucidate the role of BjuFKF1₁ in flowering regulation and provide molecular targets for B. juncea bolting-resistant variety breeding.

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Cite This Study

Gao et al. (2026) studied this question.

synapsesocial.com/papers/696b26b2d2a12237a9349ef8https://doi.org/10.3390/plants15020270
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Also Consider

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