| [1] |
Hu Y, Yan Z. 2025. Comprehensive advances in phytochemical components, bioactive functionality, and processing applications of mustard (Brassica juncea (L.) Czern.): a review. |
| [2] |
Rai PK, Yadav P, Kumar A, Sharma A, Kumar V, et al. 2022. Brassica juncea: a crop for food and health. In The Brassica juncea Genome, eds. Kole C, Mohapatra T. Cham: Springer. pp. 1−13 doi: 10.1007/978-3-030-91507-0_1 |
| [3] |
Paritosh K, Gupta V, Yadava SK, Singh P, Pradhan AK, et al. 2014. RNA-seq based SNPs for mapping in Brassica juncea (AABB): synteny analysis between the two constituent genomes A (from B. rapa) and B (from B. nigra) shows highly divergent gene block arrangement and unique block fragmentation patterns. |
| [4] |
Dai C, Li Y, Li L, Du Z, Lin S, et al. 2020. An efficient Agrobacterium-mediated transformation method using hypocotyl as explants for Brassica napus. |
| [5] |
Gribova TN, Kamionskaya AM, Skryabin KG. 2006. Optimization of the protocol for constructing transgenic plants of the cabbage Brassica oleracea var capitata. |
| [6] |
Li X, Li H, Zhao Y, Zong P, Zhan Z, et al. 2021. Establishment of a simple and efficient Agrobacterium-mediated genetic transformation system to Chinese cabbage (Brassica rapa L. ssp. pekinensis). |
| [7] |
Porter JR, Flores H. 1991. Host range and implications of plant infection by Agrobacterium rhizogenes. |
| [8] |
Fernández-Piñán S, López J, Armendariz I, Boher P, Figueras M, et al. 2019. Agrobacterium tumefaciens and Agrobacterium rhizogenes-mediated transformation of potato and the promoter activity of a suberin gene by GUS staining. |
| [9] |
Wang H, Zheng Y, Zhou Q, Li Y, Liu T, et al. 2024. Fast, simple, efficient Agrobacterium rhizogenes-mediated transformation system to non-heading Chinese cabbage with transgenic roots. |
| [10] |
Wang TZ, Zhang WH. 2020. Agrobacterium rhizogenes-mediated transformation of hairy roots in Medicago ruthenica. |
| [11] |
Wei M, Huang Y, Zhang H, Liu Y, Zhao Y, et al. 2026. Efficient Agrobacterium rhizogenes-mediated transformation of poplar via transgenic hairy root shoot regeneration. |
| [12] |
Wang M, Qin YY, Wei NN, Xue HY, Dai WS. 2023. Highly efficient Agrobacterium rhizogenes-mediated hairy root transformation in citrus seeds and its application in gene functional analysis. |
| [13] |
Kirienko DR, Luo A, Sylvester AW. 2012. Reliable transient transformation of intact maize leaf cells for functional genomics and experimental study. |
| [14] |
Huai D, Wu J, Xue X, Hu M, Zhi C, et al. 2023. Red fluorescence protein (DsRed2) promotes the screening efficiency in peanut genetic transformation. |
| [15] |
Bai J, Luo Y, Wang X, Li S, Luo M, et al. 2020. A protein-independent fluorescent RNA aptamer reporter system for plant genetic engineering. |
| [16] |
Stewart C. 2001. The utility of green fluorescent protein in transgenic plants. |
| [17] |
Azeredo HMC. 2009. Betalains: properties, sources, applications, and stability – a review. |
| [18] |
He Y, Zhang T, Sun H, Zhan H, Zhao Y. 2020. A reporter for noninvasively monitoring gene expression and plant transformation. |
| [19] |
Yang H, Zhang Y, Fu Q, Jia X, Zhao T, et al. 2023. The DR5 and E8 reporters are suitable systems for studying the application of the Ruby reporter gene in tomato. |
| [20] |
Ge X, Wang P, Wang Y, Wei X, Chen Y, et al. 2023. Development of an eco-friendly pink cotton germplasm by engineering betalain biosynthesis pathway. |
| [21] |
Wang Y, Yang X, Wang W, Wang Y, Chen X, et al. 2025. Efficient genetic transformation and gene editing of Chinese cabbage using Agrobacterium rhizogenes. |
| [22] |
Polturak G, Aharoni A. 2018. 'La Vie en Rose': biosynthesis, sources, and applications of betalain pigments. |
| [23] |
Lee K, Kang M, Ji Q, Grosic S, Wang K. 2023. New T-DNA binary vectors with NptII selection and RUBY reporter for efficient maize transformation and targeted mutagenesis. |
| [24] |
Deng YJ, Duan AQ, Liu H, Wang YH, Zhang RR, et al. 2023. Generating colorful carrot germplasm through metabolic engineering of betalains pigments. |
| [25] |
Li X, Mitchell M, Rolland V, Allen S, MacMillan C, et al. 2023. 'Pink cotton candy' − a new dye-free cotton. |
| [26] |
Khan MI, Polturak G. 2025. Biotechnological production and emerging applications of betalains: a review. |