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201por Zhou, Haiying, Hwarari, Delight, Ma, Hongyu, Xu, Haibin, Yang, Liming, Luo, Yuming“…The TEOSINTE BRANCHED1 (TBI1), CYCLOIDEA (CYC), and PROLIFERATING CELL NUCLEAR ANTIGEN FACTORS (PCF1 and PCF2) proteins truncated as TCP transcription factors carry conserved basic-helix-loop-helix (bHLH) structure, related to DNA binding functions. …”
Publicado 2022
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202por Willig, Jaap‐Jan, Guarneri, Nina, van Steenbrugge, Joris J. M., de Jong, Willem, Chen, Jingrong, Goverse, Aska, Lozano Torres, José L., Sterken, Mark G., Bakker, Jaap, Smant, Geert“…Here, we show that the transcription factor TEOSINTE BRANCHED/CYCLOIDEA/PROLIFERATING CELL FACTOR‐9 (TCP9) modulates root system architectural plasticity in Arabidopsis thaliana in response to infections by the endoparasitic cyst nematode Heterodera schachtii. …”
Publicado 2022
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203“…They can achieve this by modulating polar auxin transport to interrupt auxin canalisation, and independently of auxin by acting directly within buds by promoting the key branching inhibitor TEOSINTE BRANCHED1. Buds will grow out in optimal conditions; however, when conditions are sub-optimal, SL levels increase to restrict branching. …”
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204por Hao, Juan, Zheng, Lijun, Han, Yidie, Zhang, Hongshan, Hou, Kailin, Liang, Xueshuang, Chen, Cheng, Wang, Zhijing, Qian, Jiayi, Lin, Zhihao, Wang, Zitong, Zeng, Houqing, Shen, Chenjia“…INTRODUCTION: The anti-tumor vindoline and catharanthine alkaloids are naturally existed in Catharanthus roseus (C. roseus), an ornamental plant in many tropical countries. Plant-specific TEOSINTE BRANCHED1/CYCLOIDEA/PCF (TCP) transcription factors play important roles in various plant developmental processes. …”
Publicado 2023
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205por Orlovskis, Zigmunds, Canale, Maria Cristina, Haryono, Mindia, Lopes, João Roberto Spotti, Kuo, Chih-Horng, Hogenhout, Saskia A.“…MBSP and its insect vector Dalbulus maidis (Hemiptera: Cicadellidae) are restricted to maize; both are thought to have coevolved with maize during its domestication from a teosinte-like ancestor. MBSP-infected maize plants show a diversity of symptoms. and it is likely that MBSP is under strong selection for increased virulence and insect transmission on maize hybrids that are widely grown in Brazil. …”
Publicado 2017
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206por Gao, Xue, Cui, Qi, Cao, Qin-Zheng, Liu, Qiang, He, Heng-Bin, Zhang, Dong-Mei, Jia, Gui-Xia“…Most target genes for elliptica-responsive miRNAs were involved in metabolic processes, few encoding different transcription factors, including ELONGATION FACTOR 1 ALPHA (EF1a) and TEOSINTE BRANCHED1/CYCLOIDEA/PROLIFERATING CELL FACTOR 2 (TCP2). …”
Publicado 2017
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207por Guan, Peizhu“…A direct molecular link between nitrate signaling and cell cycle progression was revealed with TEOSINTE BRANCHED1/CYCLOIDEA/PROLIFERATING CELL FACTOR1-20 (TCP20) – NIN-LIKE PROTEIN 6/7 (NLP6/7) regulatory nexus. …”
Publicado 2017
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208por Li, Min, Chen, Huan, Chen, Jian, Chang, Ming, Palmer, Ian A., Gassmann, Walter, Liu, Fengquan, Fu, Zheng Qing“…In Arabidopsis, TEOSINTE BRANCHED 1, CYCLOIDEA, PCF1 (TCP) transcription factors (TF) play critical functions in developmental processes. …”
Publicado 2018
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209por Shapulatov, Umidjon, van Hoogdalem, Mark, Schreuder, Marielle, Bouwmeester, Harro, Abdurakhmonov, Ibrokhim Y., van der Krol, Alexander R.“…After adjusting the insertion cloning strategy, the ffgLUC(aimiR-319a) gene showed dual functionality with correct splicing of ffgLUC and efficient silencing of TEOSINTE BRANCHED1/CYCLOIDEA/PROLIFERATING CELL FACTOR1 transcription factor genes targeted in-trans by aimiR-319a or targeting the transgene ffLUC in-cis by an aimiR-LUC. …”
Publicado 2018
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210por Ma, Ya-Nan, Xu, Dong-Bei, Li, Ling, Zhang, Fei, Fu, Xue-Qing, Shen, Qian, Lyu, Xue-Ying, Wu, Zhang-Kuanyu, Pan, Qi-Fang, Shi, Pu, Hao, Xiao-Long, Yan, Ting-Xiang, Chen, Ming-Hui, Liu, Pin, He, Qian, Xie, Li-Hui, Zhong, Yi-Jun, Tang, Yue-Li, Zhao, Jing-Ya, Zhang, Li-Da, Sun, Xiao-Fen, Tang, Ke-Xuan“…Here, we report that AaORA forms a transcriptional activator complex with AaTCP14 (TEOSINTE BRANCHED 1/CYCLOIDEA/PROLIFERATING CELL FACTOR 14), which is also predominantly expressed in trichomes. …”
Publicado 2018
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211por Wang, Jinyu, Li, Xianran, Do Kim, Kyung, Scanlon, Michael J., Jackson, Scott A., Springer, Nathan M., Yu, Jianming“…RESULTS: Here, we investigate the genome-wide base-composition patterns by analyzing millions of SNPs segregating among 100 accessions from a teosinte-maize comparison set and among 302 accessions from a wild-domesticated soybean comparison set. …”
Publicado 2019
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212por Hu, Ying, Colantonio, Vincent, Müller, Bárbara S. F., Leach, Kristen A., Nanni, Adalena, Finegan, Christina, Wang, Bo, Baseggio, Matheus, Newton, Carter J., Juhl, Emily M., Hislop, Lillian, Gonzalez, Juan M., Rios, Esteban F., Hannah, L. Curtis, Swarts, Kelly, Gore, Michael A., Hennen-Bierwagen, Tracie A., Myers, Alan M., Settles, A. Mark, Tracy, William F., Resende, Marcio F. R.“…Phylogenetic analysis of 5,381 diverse maize and teosinte accessions reveals genetic relationships between sweet corn and other types of maize. …”
Publicado 2021
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213por Luo, Chen, Wang, Shenglin, Ning, Kang, Chen, Zijing, Wang, Yixin, Yang, Jingjing, Wang, Qian“…LsAP2 physically interacted with the CINCINNATA (CIN)-like TEOSINTE BRANCHED1/CYCLOIDEA/PROLIFERATING CELL FACTOR (TCP) transcription factors and inhibited their transcriptional activation activity. …”
Publicado 2021
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214por Jia, Pei, Tang, Ye, Hu, Guang, Quan, Yonggang, Chen, Aimin, Zhong, Naiqin, Peng, Qingzhong, Wu, Jiahe“…Teosinte branched1/Cincinnata/proliferating cell factor (TCP) transcription factors play important roles in plant growth and defense. …”
Publicado 2022
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215por Wu, Hao, Li, Guosheng, Zhan, Junpeng, Zhang, Shanshan, Beall, Brandon D., Yadegari, Ramin, Becraft, Philip W.“…Among annotated genomes of teosinte and maize varieties, the nkd2 and r1 loci showed conserved overall gene structures, similar to the B73 reference genome, suggesting that the nkd2‐r1 rearrangement may be a recent event.…”
Publicado 2022
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216por Ganal, Martin W., Durstewitz, Gregor, Polley, Andreas, Bérard, Aurélie, Buckler, Edward S., Charcosset, Alain, Clarke, Joseph D., Graner, Eva-Maria, Hansen, Mark, Joets, Johann, Le Paslier, Marie-Christine, McMullen, Michael D., Montalent, Pierre, Rose, Mark, Schön, Chris-Carolin, Sun, Qi, Walter, Hildrun, Martin, Olivier C., Falque, Matthieu“…The array was tested with a set of maize germplasm including North American and European inbred lines, parent/F1 combinations, and distantly related teosinte material. A total of 49,585 markers, including 33,417 within 17,520 different genes and 16,168 outside genes, were of good quality for genotyping, with an average failure rate of 4% and rates up to 8% in specific germplasm. …”
Publicado 2011
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217por Bao, Sarina, Owens, Robert A., Sun, Qinghua, Song, Hui, Liu, Yanan, Eamens, Andrew Leigh, Feng, Hao, Tian, Hongzhi, Wang, Ming-Bo, Zhang, Ruofang“…Here we report that PSTVd sRNAs direct RNA silencing in potato against StTCP23, a member of the TCP (teosinte branched1/Cycloidea/Proliferating cell factor) transcription factor family genes that play an important role in plant growth and development as well as hormonal regulation, especially in responses to gibberellic acid (GA). …”
Publicado 2019
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218por Ma, Ya‐Nan, Xu, Dong‐Bei, Yan, Xin, Wu, Zhang‐Kuanyu, Kayani, Sadaf Ilyas, Shen, Qian, Fu, Xue‐Qing, Xie, Li‐Hui, Hao, Xiao‐Long, Hassani, Danial, Li, Ling, Liu, Hang, Pan, Qi‐Fang, Lv, Zong‐You, Liu, Pin, Sun, Xiao‐Fen, Tang, Ke‐Xuan“…Here we report AaTCP15, a JA and ABA dual‐responsive teosinte branched1/cycloidea/proliferating (TCP) TF, which is essential for JA and ABA‐induced artemisinin biosynthesis by directly binding to and activating the promoters of DBR2 and ALDH1, two genes encoding enzymes for artemisinin biosynthesis. …”
Publicado 2021
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219por Huang, Yumin, Huang, Wei, Meng, Zhuang, Braz, Guilherme Tomaz, Li, Yunfei, Wang, Kai, Wang, Hai, Lai, Jinsheng, Jiang, Jiming, Dong, Zhaobin, Jin, Weiwei“…Interestingly, by analyzing the sequence of this PAV, we not only reveal the domestication trace from teosinte to modern maize, but also the footprints of its origin from Tripsacum, shedding light on a previously unknown contribution from Tripsacum to the speciation of Zea species. …”
Publicado 2021
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220por Li, Yongli, Hou, Zhihong, Li, Weiwei, Li, Haiyang, Lu, Sijia, Gan, Zhuoran, Du, Hao, Li, Tai, Zhang, Yuhang, Kong, Fanjiang, Cheng, Yuhan, He, Milan, Ma, Lixin, Liao, Chunmei, Li, Yaru, Dong, Lidong, Liu, Baohui, Cheng, Qun“…Our results indicate that E1 binds to the promoters of the leaf- development-related CINCINNATA (CIN)-like TEOSINTE BRANCHED1/CYCLOIDEA/PROLIFERATING CELL FACTOR (TCP) transcription factor genes to negatively regulate their expression. …”
Publicado 2021
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