| [1] |
Hou X, Li Y, Huang F. 2020. New advances in molecular biology of main characters and breeding technology in non-heading Chinese cabbage (Brassica campestris ssp. chinensis). |
| [2] |
Sun M, Tian K, Zhang Y, Wang H, Guan D, et al. 2017. Research on leaf functional traits and their environmental adaptation. |
| [3] |
Hao N, Cao J, Wang C, Zhu Y, Du Y, et al. 2022. Understanding the molecular mechanism of leaf morphogenesis in vegetable crops conduces to breeding process. |
| [4] |
Ren W, Wu F, Bai J, Li X, Yang X, et al. 2020. BcpLH organizes a specific subset of microRNAs to form a leafy head in Chinese cabbage (Brassica rapa ssp. pekinensis). |
| [5] |
Sun S, Li X, Nie N, Chen Y, Gao S, et al. 2023. Sweet potato NAC transcription factor NAC43 negatively regulates plant growth by causing leaf curling and reducing photosynthetic efficiency. |
| [6] |
Dong J, Huang H. 2018. Auxin polar transport flanking incipient primordium initiates leaf adaxial-abaxial polarity patterning. |
| [7] |
Li L, Qu L. 2006. Advances in research on the regulation of auxin on leaf development in Arabidopsis thaliana. |
| [8] |
Park SC, Kim HS, Lee HU, Kim YH, Kwak SS. 2019. Overexpression of Arabidopsis YUCCA6 enhances environment stress tolerance and inhibits storage root formation in sweetpotato. |
| [9] |
Tan Y, Ren L, Wang J, Ran S, Wu L, et al. 2023. Identification and characterization of a curly-leaf locus CL1 encoding an IAA2 protein in Brassica napus. |
| [10] |
Wang L, Liu H, Sun Y, Wang W, Li C, et al. 2025. Identification and candidate gene analysis of Brcl1, a novel gene confers a leaf curled phenotype in Brassica rapa L. |
| [11] |
Michelmore RW, Paran I, Kesseli RV. 1991. Identification of markers linked to disease-resistance genes by bulked segregant analysis: a rapid method to detect markers in specific genomic regions by using segregating populations. |
| [12] |
Wang H, Han T, Bai Y, Yuan S, Xu H, et al. 2025. The regulatory landscape of β-caryophyllene biosynthesis in pak choi. |
| [13] |
Si J, Zhou X, Chen X, Ming H, Liu H, et al. 2025. Identification and characterization of a key gene controlling purple leaf coloration in non-heading Chinese cabbage (Brassica rapa). |
| [14] |
Zhou Q, Qu T, Li D, Zheng Y, Zhang L, et al. 2025. Bcwf regulates the white petal color in pak choi [Brassica campestris (syn. Brassica rapa) ssp. chinensis]. |
| [15] |
Huo Z, Xu Y, Yuan S, Chang J, Li S, et al. 2022. The AP2 transcription factor BrSHINE3 regulates wax accumulation in nonheading Chinese cabbage. |
| [16] |
McKenna A, Hanna M, Banks E, Sivachenko A, Cibulskis K, et al. 2010. The Genome Analysis Toolkit: a MapReduce framework for analyzing next-generation DNA sequencing data. |
| [17] |
Hill JT, Demarest BL, Bisgrove BW, Gorsi B, Su YC, et al. 2013. MMAPPR: mutation mapping analysis pipeline for pooled RNA-seq. |
| [18] |
Livak KJ, Schmittgen TD. 2001. Analysis of relative gene expression data using real-time quantitative PCR and the 2−ΔΔCᴛ Method. |
| [19] |
Yu J, Yang XD, Wang Q, Gao LW, Yang Y, et al. 2018. Efficient virus-induced gene silencing in Brassica rapa using a turnip yellow mosaic virus vector. |
| [20] |
Baumberger N, Doesseger B, Guyot R, Diet A, Parsons RL, et al. 2003. Whole-genome comparison of leucine-rich repeat extensins in Arabidopsis and rice. A conserved family of cell wall proteins form a vegetative and a reproductive clade. |
| [21] |
Zhang Q, Wang Z, Lu X, Yan H, Zhang H, et al. 2023. DDT-RELATED PROTEIN4-IMITATION SWITCH alters nucleosome distribution to relieve transcriptional silencing in Arabidopsis. |
| [22] |
Boisson B, Giglione C, Meinnel T. 2003. Unexpected protein families including cell defense components feature in the N-myristoylome of a higher eukaryote. |
| [23] |
Harshavardhan TV, Son LV, Seiler C, Junker A, Weigelt-Fischer K, et al. 2014. AtRD22 and AtUSPL1, members of the plant-specific BURP domain family involved in Arabidopsis thaliana drought tolerance. |
| [24] |
Cha JY, Kim MR, Jung IJ, Kang SB, Park HJ, et al. 2016. The thiol reductase activity of YUCCA6 mediates delayed leaf senescence by regulating genes involved in auxin redistribution. |
| [25] |
Barakat A, Szick-Miranda K, Chang IF, Guyot R, Blanc G, et al. 2001. The organization of cytoplasmic ribosomal protein genes in the Arabidopsis genome. |
| [26] |
Won C, Shen X, Mashiguchi K, Zheng Z, Dai X, et al. 2011. Conversion of tryptophan to indole-3-acetic acid by tryptophan aminotransferases of Arabidopsis and YUCCAs in Arabidopsis. |
| [27] |
Ye X, Chen J, Yao X, Quan X, Huang L. 2024. Genetic analysis of leaf wrinkling traits in non-heading Chinese cabbage. |
| [28] |
Zhao T, Bai A, Wang X, Zhang F, Yang M, et al. 2024. Genetic mapping for leaf shape and leaf size in non-heading Chinese cabbage by a RIL population. |
| [29] |
Chen Z, Bai A, Wang X, Zhao T, Zhang F, et al. 2025. QTL mapping for petiole shape in non-heading Chinese cabbage. |
| [30] |
Ali S, Khan N, Xie L. 2020. Molecular and hormonal regulation of leaf morphogenesis in Arabidopsis. |
| [31] |
Chen J, Cai X, Tian Y, Ye X, Liu R, et al. 2025. Brassinosteroid promotes leaf wrinkling in Brassica campestris by regulating a key transcription factor and its downstream genes. |
| [32] |
Wu W, Du K, Kang X, Wei H. 2021. The diverse roles of cytokinins in regulating leaf development. |
| [33] |
Ye X, Sun J, Tian Y, Chen J, Yao X, et al. 2024. Identification of YUC genes associated with leaf wrinkling trait in Tacai variety of Chinese cabbage. |
| [34] |
de Pater BS, de Kam RJ, Hoge JH, Schilperoort RA. 1987. Effects of mutations in the TATA box region of the Agrobacterium T-cyt gene on its transcription in plant tissues. |
| [35] |
Porto MS, Pinheiro MPN, Batista VGL, dos Santos RC, de Albuquerque Melo Filho P, et al. 2014. Plant promoters: an approach of structure and function. |