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Open Access Research Article Issue
BrRRG regulates leaf size by controlling cell cycle gene expression in Chinese cabbage
Journal of Integrative Agriculture (JIA) 2026, 25(5): 1961-1970
Published: 31 December 2025
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Chinese cabbage (Brassica rapa subsp. pekinensis) is an important leafy vegetable in the Brassica genus of the Brassicaceae family. The size of its edible leaves is an essential trait that determines its economic and nutritional values. However, the current understanding of leaf development in Chinese cabbage remains limited. Here, through forward genetic analysis of the mutant mini24 with defective leaf and root development, we identified the BrRRG gene, which regulates cell division in Chinese cabbage by map-based cloning. We demonstrated that BrRRG impacts leaf size by regulating the expression of E2Fa transcription factors and cell cycle-related genes in Chinese cabbage. Furthermore, BrRRG was found to modulate Chinese cabbage’s response to auxin (indole-3-acetic acid, IAA) and cytokinins hormones, revealing a distinct regulatory mechanism by which BrRRG coordinates the development of underground roots and aboveground leaves. Thus, these results indicate that mutation in BrRRG impairs the growth and development of Chinese cabbage.

Open Access Research Article Issue
A mutation in BrPRPL1 causes leaf yellowing by influencing chloroplast protein translation in Chinese cabbage
Journal of Integrative Agriculture (JIA) 2026, 25(7): 2836-2846
Published: 18 December 2025
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Leaf color directly affects the appearance quality and nutritional quality of leafy vegetables, thereby determining their economic value. Here, we identified a golden leaf mutant, Mut298, from an ethyl methanesulfonate (EMS)-induced mutant library of Chinese cabbage. Through the approach of forward genetics, it has been demonstrated that the phenotype of Mut298 is due to a single nucleotide substitution from C to T that changes glycine to arginine in the conserved domain of BrPRPL1, which encodes the large subunit ribosomal protein L1 of the chloroplast. Because the PRPL1 mutation causes embryonic lethality in Arabidopsis, the function of PRPL1 in leaf development remains elusive. In this study, the mutation of BrPRPL1 causes a substantial reduction in the expression of key chloroplast-encoded proteins (RbcL, PsaA, and PsaB) and disrupts chloroplast development. Moreover, the chlorophyll content and photosynthetic parameters are significantly lower in Mut298 plants than in wild-type plants, resulting in golden yellow leaves in Chinese cabbage. This study reveals the impact of PRPL1 mutation on ribosome translation within chloroplasts and provides a theoretical a foundation for future research into the regulatory roles of PRPL1 in plant growth and development.

Open Access Letter Issue
High-efficiency γ-aminobutyric acid nano-formulation for turnip mosaic virus: excellent adhesion performance and amplified plant defensive responses
Horticultural Plant Journal 2025, 11(6): 2285-2288
Published: 14 November 2025
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