文献类型: 外文期刊
作者: Cao; Kefan;Wang; Sijing;Zhang; Huimin;Ma; Yiming;Wu; Qian;Huang; Fan;Wang; Mingjiu
期刊名称: AGRONOMY-BASEL
ISSN:
年卷期: 2025 年 15 卷 5 期
页码:
收录情况: SCIE(2025版)
摘要: Isoflavones are important secondary metabolites in leguminous plants with significant physiological functions and economic value. However, the genetic variation, transcriptional regulation, and metabolic pathways governing isoflavone biosynthesis in Trifolium pratense remain largely unexplored. In this study, we systematically analyzed 500 accessions of T. pratense for isoflavone content and performed RNA-seq-based transcriptomic profiling to investigate the molecular mechanisms underlying isoflavone biosynthesis. Cluster analysis revealed significant genetic variation, with distinct transcriptional profiles between high- (H1, H2, H3) and low-isoflavone (L1, L2, L3) groups. GO and KEGG pathway enrichment analyses identified key metabolic pathways, including phenylpropanoid metabolism, flavonoid biosynthesis, carbohydrate metabolism, and hormone signaling, which play crucial roles in isoflavone regulation. Weighted gene co-expression network analysis (WGCNA) identified three key gene modules-MEblue, MEturquoise, and MEyellow-strongly correlated with isoflavone content. The MEturquoise and MEyellow modules were upregulated in high-isoflavone groups and were enriched in phenylpropanoid biosynthesis, lipid metabolism, and transcriptional regulation, suggesting that these pathways actively promote isoflavone accumulation. Conversely, the MEblue module, highly expressed in low-isoflavone groups, was enriched in sugar metabolism and MAPK signaling, indicating a potential metabolic flux shift away from secondary metabolism. Moreover, key rate-limiting enzymes (PAL, C4H, 4CL, CHS, and IFS) exhibited higher expression in high-isoflavone groups, highlighting their importance in precursor supply and enzymatic catalysis. Additionally, transcription factors such as MYB, WRKY, and NAC were identified as potential regulators of isoflavone biosynthesis, indicating a complex interplay between hormonal, circadian, and environmental signals. This study provides a comprehensive molecular framework for understanding isoflavone biosynthesis in T. pratense and identifies key regulatory genes and metabolic pathways that could be targeted for genetic improvement, metabolic engineering, and molecular breeding. The findings offer valuable insights into enhancing isoflavone production in legumes for agricultural, nutritional, and pharmaceutical applications.
分类号:
- 相关文献
作者其他论文 更多>>
-
Fast-forwarding plant breeding with deep learning-based genomic prediction
作者:Gao; Shang;Yu; Tingxi;Rasheed; Awais;Wang; Jiankang;Crossa; Jose;Hearne; Sarah;Li; Huihui
关键词:artificial intelligence;deep learning;genomic prediction;plant breeding
-
Phenotypic plasticity and genetic variation of Prosopis juliflora (Sw.) DC. across diverse rangelands in northeastern Ethiopia
作者:Tilahun; Minyahel;Angassa; Ayana;Bora; Zinabu;Mengistu; Shimelis;Wu; Jianshuang
关键词:Dry rangeland;Ecological balance;Functional trait;Invasive species;Reproductive fitness
-
Glucocorticoid promotes metastasis of colorectal cancer via co-regulation of glucocorticoid receptor and TET2
作者:Song; Yanwei;Ren; Shuqiang;Wu; Shumei;Liu; Weidong;Hu; Chenghao;Feng; Siting;Chen; Xinyu;Tu; Rui;Gao; Fei
关键词:(1-1-1)colorectal cancer;drug repositioning;glucocorticoid receptor;TET2
-
Efficient Control of Fusarium Head Blight and Reduction of Deoxynivalenol Accumulation by a Novel Nanopartner-Based Strategy
作者:Ma; Dicheng; Zhou; Zhentao; Wang; Guoxian; Xu; Chunli; Cao; Lidong; Dong; Fengshou; Zheng; Yongquan; Li; Yuanbo
关键词:MgO NPs; plants; nanotechnology; crop protection; agriculture
-
Rice black-streaked dwarf virus-encoded P6 protein impairs OsPelota-mediated antiviral RNA decay defense via promoting OsSCE1b ubiquitination and degradation in rice
作者:谢奕;;;;曾铭;;;;王丹;;;;高士博;;;;Li; Liyan;;;;Zheng; Lianshun;;;;Zhang; Yunge;;;;Fei; Shifang;;;;张翠;;;;王亚琴;;;;周雪平;;;;吴建祥
关键词:OsPelota;OsSCE1b;P6 protein;rice;rice black-streaked dwarf virus;RNA decay;SUMOylation;ubiquitination
-
Development and validation of signature peptide-based isotope dilution liquid chromatography-mass spectrometry for bovine lactoferrin purity assessment
作者:Yan; Jingjing;Yang; Mengrui;Wang; Min;Han; Yiyi;Zhou; Jian;Ma; Yingqing;Wang; Tongtong;Li; Liang
关键词:Bovine lactoferrin;Signature peptide;Isotope dilution mass spectrometry;Protein quantification;Active concentration
-
A novel transcription factor OsMYB73 affects grain size and chalkiness by regulating endosperm storage substances' accumulation-mediated auxin biosynthesis signalling pathway in rice
作者:Liu; Song;Wu; Jiamin;Mawia; Amos Musyoki;Wei; Xiangjin;Cao; Ruijie;Jiao; Guiai;Wu; Yawen;Zhang; Jian;Xie; Lihong;Sheng; Zhonghua;Hu; Shikai;Li; Sanfeng;Lv; Yusong;Lu; Feifei;Chen; Yujuan;Fiaz; Sajid;Tabassum; Javaria;Du; Zhimin;Gao; Fangyuan;Ren; Guangjun;Shao; Gaoneng;Hu; Peisong;Tang; Shaoqing
关键词:OsMYB73;endosperm starch and lipid biosynthesis;auxin biosynthesis;grain filling and endosperm development;grain size and chalkiness;yield and quality