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解析红花中的TEOSINTE BRANCHED1/ CYCLOIDEA/ PROLIFERATING CELL FACTOR转录因子:应激恢复力和代谢调控蓝图

Unraveling TEOSINTE BRANCHED1/CYCLOIDEA/PROLIFERATING CELL FACTOR Transcription Factors in Safflower: A Blueprint for Stress Resilience and Metabolic Regulation.

作者信息

Yu Lili, Ma Xintong, Dai Mingran, Chang Yue, Wang Nan, Zhang Jian, Zhang Min, Yao Na, Umar Abdul Wakeel, Liu Xiuming

机构信息

Engineering Research Center of the Chinese Ministry of Education for Bioreactor and Pharmaceutical Development, College of Life Sciences, Jilin Agricultural University, Changchun 130118, China.

Institute for Safflower Industry Research of Shihezi University/Pharmacy College of Shihezi University/Key Laborataty of Xinjiang Phytomedicine Resource and Utilization, Ministry of Education, Shihezi 832003, China.

出版信息

Molecules. 2025 Jan 10;30(2):254. doi: 10.3390/molecules30020254.

Abstract

Safflower ( L.), a versatile medicinal and economic crop, harbors untapped genetic resources essential for stress resilience and metabolic regulation. The TEOSINTE BRANCHED1/CYCLOIDEA/PROLIFERATING CELL FACTOR (TCP) transcription factors, exclusive to plants, are pivotal in orchestrating growth, development, and stress responses, yet their roles in safflower remain unexplored. Here, we report the comprehensive identification and characterization of 26 safflower genes (), categorized into Class I (PROLIFERATING CELL FACTOR, PCF) and Class II (CINCINNATA and TEOSINTE BRANCHED1/CYCLOIDEA, CIN and CYC/TB1) subfamilies. Comparative phylogenetics, conserved motif, and gene structure analyses revealed a high degree of evolutionary conservation and functional divergence within the gene family. Promoter analyses uncovered light-, hormone-, and stress-responsive cis-elements, underscoring their regulatory potential. Functional insights from qRT-PCR analyses demonstrated dynamic expression under abiotic stresses, including abscisic acid (ABA), Methyl Jasmonate (MeJA), Cold, and ultraviolet radiation b (UV-B) treatments. Notably, ABA stress triggered a significant increase in flavonoid accumulation, correlated with the upregulation of key flavonoid biosynthesis genes and select . These findings illuminate the complex regulatory networks underlying safflower's abiotic stress responses and secondary metabolism, offering a molecular framework to enhance crop resilience and metabolic engineering for sustainable agriculture.

摘要

红花(Carthamus tinctorius L.)是一种用途广泛的药用和经济作物,蕴藏着尚未开发的、对胁迫耐受性和代谢调节至关重要的遗传资源。植物特有的玉米分枝1/环化酶/增殖细胞因子(TCP)转录因子在协调生长、发育和胁迫反应中起着关键作用,但其在红花中的作用尚未得到探索。在这里,我们报告了26个红花TCP基因(CtTCPs)的全面鉴定和表征,这些基因分为I类(增殖细胞因子,PCF)和II类(辛纳塔和玉米分枝1/环化酶,CIN和CYC/TB1)亚家族。比较系统发育、保守基序和基因结构分析揭示了该基因家族内高度的进化保守性和功能差异。启动子分析发现了光、激素和胁迫响应顺式元件,突出了它们的调控潜力。qRT-PCR分析的功能见解表明,在非生物胁迫下,包括脱落酸(ABA)、茉莉酸甲酯(MeJA)、低温和紫外线辐射b(UV-B)处理下,CtTCPs表达动态变化。值得注意的是,ABA胁迫引发了类黄酮积累的显著增加,这与关键类黄酮生物合成基因和选定的CtTCPs的上调相关。这些发现阐明了红花非生物胁迫反应和次生代谢背后的复杂调控网络,为增强作物耐受性和可持续农业的代谢工程提供了一个分子框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c5f/11767934/2e7382eb9676/molecules-30-00254-g001.jpg

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