• RESEARCH ARTICLES • Previous Articles Next Articles
Jingyu Chen1, Wenqing Wang1,
Shiyu Luo2, Luxiang Yang1, Huijun Wang1,
Tianyu Wu1, Qiankun Zhu1*
1College of Life Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China; 2Chengdu Shishi High School of Sichuan Province, Chengdu 610041, China
Received:
2025-01-16
Revised:
2025-04-22
Online:
2025-05-14
Published:
2025-05-14
Contact:
Zhu Qiankun
Jingyu Chen, Wenqing Wang, Shiyu Luo, Luxiang Yang, Huijun Wang, Tianyu Wu, Qiankun Zhu. Expression Pattern and Metabolic Correlation Analysis of TCP Gene Family in Bergenia purpurascens[J]. Chinese Bulletin of Botany, DOI: 10.11983/CBB25008.
Agnihotri V, Sati P, Jantwal A, Pandey A (2015). Antimicrobial and antioxidant phytochemicals in leaf extracts of Bergenia ligulata: a Himalayan herb of medicinal value. Nat Prod Res 29, 1074-1077.Aguilar-Martinez J A, Sinha N (2013). Analysis of the role of Arabidopsis class I TCP genes AtTCP7, AtTCP8, AtTCP22, and AtTCP23 in leaf development. Front Plant Sci 4, 406.Braun N, de Saint Germain A, Pillot J P, Boutet-Mercey S, Dalmais M, Antoniadi I, Li X, Maia-Grondard A, Le Signor C, Bouteiller N, Luo D, Bendahmane A, Turnbull C, Rameau C (2012). The pea TCP transcription factor PsBRC1 acts downstream of Strigolactones to control shoot branching. Plant Physiol 158, 225-238.Chen C, Chen H, Zhang Y, Thomas H R, Frank M H, He Y, Xia R (2020). TBtools: An Integrative Toolkit Developed for Interactive Analyses of Big Biological Data. Molecular Plant 13, 1194-1202.Cubas P, Lauter N, Doebley J, Coen E (1999). The TCP domain: a motif found in proteins regulating plant growth and development. Plant J 18, 215-222.Herve C, Dabos P, Bardet C, Jauneau A, Auriac M C, Ramboer A, Lacout F, Tremousaygue D (2009). In vivo interference with AtTCP20 function induces severe plant growth alterations and deregulates the expression of many genes important for development. Plant Physiol 149, 1462-1477.Kosugi S, Ohashi Y (1997). PCF1 and PCF2 specifically bind to cis elements in the rice proliferating cell nuclear antigen gene. The Plant Cell 9, 1607-1619.Koyama T, Mitsuda N, Seki M, Shinozaki K, Ohme-Takagi M (2010). TCP transcription factors regulate the activities of ASYMMETRIC LEAVES1 and miR164, as well as the auxin response, during differentiation of leaves in Arabidopsis. Plant Cell 22, 3574-3588.Liu Y J, An J P, Gao N, Wang X, Chen X X, Wang X F, Zhang S, You C X (2022). MdTCP46 interacts with MdABI5 to negatively regulate ABA signalling and drought response in apple. Plant Cell Environ 45, 3233-3248.Manassero N G U, Viola I L, Welchen E, Gonzalez D H (2013). TCP transcription factors: architectures of plant form. 4, 111-127.Martin-Trillo M, Cubas P (2010). TCP genes: a family snapshot ten years later. Trends Plant Sci 15, 31-39.Nag A, King S, Jack T (2009). miR319a targeting of TCP4 is critical for petal growth and development in Arabidopsis. Proc Natl Acad Sci USA 106, 22534-22539.Panche A N, Diwan A D, Chandra S R (2016). Flavonoids: an overview. Journal of Nutritional Science 5, e47.Perez M, Guerringue Y, Ranty B, Pouzet C, Jauneau A, Robe E, Mazars C, Galaud J P, Aldon D (2019). Specific TCP transcription factors interact with and stabilize PRR2 within different nuclear sub-domains. Plant Science 287, 110197.Takeda T, Amano K, Ohto M A, Nakamura K, Sato S, Kato T, Tabata S, Ueguchi C (2006). RNA interference of the Arabidopsis putative transcription factor TCP16 gene results in abortion of early pollen development. Plant Mol Biol 61, 165-177.Tatematsu K, Nakabayashi K, Kamiya Y, Nambara E (2008). Transcription factor AtTCP14 regulates embryonic growth potential during seed germination in Arabidopsis thaliana. Plant J 53, 42-52.Uberti-Manassero N G, Lucero L E, Viola I L, Vegetti A C, Gonzalez D H (2011). The class I protein AtTCP15 modulates plant development through a pathway that overlaps with the one affected by CIN-like TCP proteins. Journal of Experimental Botany 63, 809-823.Viola I L, Gonzalez D H (2023). TCP Transcription Factors in Plant Reproductive Development: Juggling Multiple Roles. Biomolecules 13, 750.Wang M Y, Zhao P M, Cheng H Q, Han L B, Wu X M, Gao P, Wang H Y, Yang C L, Zhong N Q, Zuo J R, Xia G X (2013). The cotton transcription factor TCP14 functions in auxin-mediated epidermal cell differentiation and elongation. Plant Physiol 162, 1669-1680.Wu J F, Tsai H L, Joanito I, Wu Y C, Chang C W, Li Y H, Wang Y, Hong J C, Chu J W, Hsu C P, Wu S H (2016). LWD-TCP complex activates the morning gene CCA1 in Arabidopsis. Nat Commun 7, 13181.Xie J, Chen Y, Cai G, Cai R, Hu Z, Wang H (2023). Tree Visualization By One Table (tvBOT): a web application for visualizing, modifying and annotating phylogenetic trees. Nucleic Acids Res 51, W587-W592.Yan R, Xie B, Xie K, Liu Q, Sui S, Wang S, Chen D, Liu J, Chen R, Dai J, Yang L (2024). Unravelling and reconstructing the biosynthetic pathway of bergenin. Nat Commun 15, 3539.Yongsi Z, Changmin L, Xiaohong L J L, Shoumin F, Yunxiang L, Daowen H (2011). Biological advances in Bergenia genus plant. African Journal of Biotechnology 10, 8166-8169.Zhang G, Zhao H, Zhang C, Li X, Lyu Y, Qi D, Cui Y, Hu L, Wang Z, Liang Z, Cui S (2019). TCP7 functions redundantly with several Class I TCPs and regulates endoreplication in Arabidopsis. Journal of Integrative Plant Biology 61, 1151-1170.Zhang S, Gai Z, Gui T, Chen J, Chen Q, Li Y (2021). Antioxidant Effects of Protocatechuic Acid and Protocatechuic Aldehyde: Old Wine in a New Bottle. Evidence-Based Complementary and Alternative Medicine 2021, 6139308.Zhang S S, Liao Z X, Huang R Z, Gong C C, Ji L J, Sun H F (2018). A new aromatic glycoside and its anti-proliferative activities from the leaves of Bergenia purpurascens. Nat Prod Res 32, 668-675.Zhang X, Yu F, Lyu X, Chen J, Zeng H, Xu N, Wu Y, Zhu Q (2023). Transcriptome profiling of Bergenia purpurascens under cold stress. BMC Genomics 24, 754.Zhu Q, Wu Y, Zhang X, Xu N, Chen J, Lyu X, Zeng H, Yu F (2024). Metabolomic and transcriptomic analyses reveals candidate genes and pathways involved in secondary metabolism in Bergenia purpurascens. BMC Genomics 25, 1083. |
[1] | Li Yang, Zihang Chen, Xitong Qu, Tingting Zou, Quanhua Wang, Xiaoli Wang. Identification of Spinach AT-hook Gene Family and Analysis of Salicylic acid-responsive Expression Profiles [J]. Chinese Bulletin of Botany, 2025, 60(3): 377-392. |
[2] | Cong Xu, Feiyu Zhang, Daoyuan Yu, Xin Sun, Feng Zhang. Performance evaluation of molecular taxonomy assignment tools for soil invertebrates [J]. Biodiv Sci, 2022, 30(12): 22252-. |
[3] | Yuhui Zhao, Xiuxiu Li, Zhuo Chen, Hongwei Lu, Yucheng Liu, Zhifang Zhang, Chengzhi Liang. An Overview of Genome-wide Association Studies in Plants [J]. Chinese Bulletin of Botany, 2020, 55(6): 715-732. |
[4] | Liu Wei, Tong Yong’ao, Bai Jie. Bioinformatics Analysis of tRNA-derived Fragments in Rice Male Gametophyte Development [J]. Chinese Bulletin of Botany, 2018, 53(5): 625-633. |
[5] | Jia Ledong, Li Shimeng, Xu Daixiang, Qu Cunmin, Li Jiana, Wang Rui. Bioinformatics Analysis of BnMYB80 Genes in Brassica napus [J]. Chinese Bulletin of Botany, 2016, 51(5): 620-630. |
[6] | Tian Cheng, Qiang Wei, Guanglin Li. Bioinformatics Analysis of the TPS Gene Family in Coffee canephora [J]. Chinese Bulletin of Botany, 2016, 51(2): 235-250. |
[7] | Xiaoting Xu, Zhiheng Wang, Dimitar Dimitrov, Carsten Rahbek. Using NCBIminer to search and download nucleotide sequences from GenBank [J]. Biodiv Sci, 2015, 23(4): 550-555. |
[8] | Changqing Zhang, Lingfei Shangguan, Hailing Li, Jin Wang. An Online, Batch, and Real-time Retrieval Platform for Genomic Sequences and Annotation of Horticultural Plants [J]. Chinese Bulletin of Botany, 2015, 50(3): 388-393. |
[9] | Guiwei Zhang, Jue Zeng, Wei Guo, Qiong Luo. Bioinformatics Analysis of the AT-hook Gene Family in Rice [J]. Chinese Bulletin of Botany, 2014, 49(1): 49-62. |
[10] | Ru Huang, Jing Cang, Jing Yu, Baowei Lu, Lijie Liu, Jianfei Wang, Renming Guo, Chen Xu. Solexa Sequencing and Bioinformatics Analysis of Small RNA in Winter Wheat [J]. Chinese Bulletin of Botany, 2014, 49(1): 8-18. |
[11] | Xin Sun,Ying Gao,Yunfeng Yang. Recent advancement in microbial environmental research using metagenomics tools [J]. Biodiv Sci, 2013, 21(4): 393-400. |
[12] | Peng Cheng;Zhigang Huang;Yahui Hong;Xia Liu;Langtao Xiao;Ruozhong Wang*. Construction and Application of a Secondary Database for Phytohormone-related Nucleotides and Proteins [J]. Chinese Bulletin of Botany, 2010, 45(02): 258-264. |
[13] | Liying Geng, Chuansheng Zhang, Lixin Du. Single nucleotide polymorphisms in chicken genomic pre-microRNA [J]. Biodiv Sci, 2009, 17(3): 248-256. |
[14] | Zhigang Huang;Huang Hu;Xuanzhi Zhao;Ruozhong Wang;Langtao Xiao *. Cloning and Bioinformatics Analysis of TIR1 cDNA from Super Hybrid Rice Parental Line 1S [J]. Chinese Bulletin of Botany, 2008, 25(06): 695-700. |
[15] | Zhihua Huang;Qingzhong Xue. Composition and Distribution of Pseudogenes and Their Molecular Evolution [J]. Chinese Bulletin of Botany, 2006, 23(4): 402-408. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||