BjuFKF1_1, a Plant-Specific LOV Blue Light Receptor Gene, Positively Regulates Flowering in Brassica juncea
Jian Gao, Keran Ren, Chengrun Wu, Qing Wang, Daiyu Huang, Jing Zeng

TL;DR
This study identifies a light receptor gene in mustard plants that helps control flowering time, which could aid in developing varieties resistant to premature bolting.
Contribution
The study identifies BjuFKF1_1 as a novel gene regulating flowering in Brassica juncea under blue light.
Findings
Overexpression of BjuFKF1_1 leads to earlier flowering in Brassica juncea under field conditions.
BjuFKF1_1 is expressed in multiple tissues and interacts with several proteins during reproductive stages.
Blue light influences the expression of BjuFKF1_1 and its interacting genes during flowering.
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 BjuFKF1_1 overexpression (OE) lines resulted in significantly earlier flowering under field…
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Taxonomy
TopicsLight effects on plants · Plant Gene Expression Analysis · Photosynthetic Processes and Mechanisms
