Genome-Wide Identification of GmPIF Family and Regulatory Pathway Analysis of GmPIF3g in Different Temperature Environments
文献类型: 外文期刊
第一作者: Liang, Xuefeng
作者: Liang, Xuefeng;Zhao, Caitong;Cui, Jiayang;Chen, Qingshan;Yang, Mingliang;Jiang, Zhenfeng;Liu, Zhihua;Han, Dezhi
作者机构:
关键词: soybean; PIF; bioinformatics analysis; biofilm interference; interacting protein
期刊名称:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES ( 影响因子:4.9; 五年影响因子:5.7 )
ISSN: 1661-6596
年卷期: 2025 年 26 卷 2 期
页码:
收录情况: SCI
摘要: Phytochrome-interacting factors (PIFs) play a crucial role in regulating plant growth and development. However, studies on soybean PIFs are limited. Here, we identified 22 GmPIF genes from the soybean genome and classified the GmPIF proteins into 13 subfamilies based on amino acid sequence homology, secondary and tertiary structures, protein structure, and conserved motifs. Genome-wide collinearity analysis revealed that fragment duplication events play a dominant role in expanding the GmPIF gene family. Cis-acting element analysis revealed that the GmPIF gene family is involved in light response, hormone response, biotic-abiotic stress response elements, and plant growth and development. Gene expression analysis in different temperature environments showed that the GmPIF family was found to be induced by phytohormone treatments, with a significant increase in the expression level of GmPIF3g. GmPIF3g plays a key role in the regulation of the entire network, and in addition, 30 proteins interacting with the GmPIF3g promoter were identified through the use of a novel biofilm interference technique. This technique showed that the transcription factor Dof (DNA binding with one finger) binds to the GmPIF3g promoter, and Y1H assays indicated that Dof regulates its expression by binding to the PIF promoter. These results provide a theoretical basis for further studies on the regulatory network of GmPIF genes to improve the structure of soybean plants under shade environments, as well as a new method for analyzing regulatory elements that interact with gene promoters.
分类号:
- 相关文献
作者其他论文 更多>>
-
GmWRKY33a is a hub gene responsive to brassinosteroid signaling that suppresses nodulation in soybean (Glycine max)
作者:Yang, Mingliang;Lei, Chengjun;Ma, Chao;Hou, Xiuming;Yao, Mingming;Mi, Liang;Wang, Shukun;Liu, Chunyan;Chen, Qingshan;Xin, Dawei;Xu, Chang;Wang, Jinhui;Yang, Mingliang;Lei, Chengjun;Ma, Chao;Hou, Xiuming;Yao, Mingming;Mi, Liang;Wang, Shukun;Liu, Chunyan;Chen, Qingshan;Xin, Dawei;Xu, Chang;Wang, Jinhui;Liu, Enliang;Xu, Linli
关键词:soybean; symbiosis; brassinosteroids (BRs); RNA-Seq; WGCNA; GmWRKY33a
-
A comparison of Chinese soybean collection with European soybean collections on genetic diversity by genome-wide scan
作者:Xu, Jiangyuan;Lu, Yuqing;Gu, Yongzhe;Gao, Huawei;Liu, Zhangxiong;Qiu, Lijuan;Yao, Xindong;Yao, Xindong;Leopold, Rittler;Yuan, Ming;Zhang, Yong;Sun, Rujian;Xue, Yongguo;Liu, Yeli;Han, Dezhi;Wang, Jinxing;Qiu, Lijuan
关键词:Chinese soybean; European soybean; Genetic diversity; Selective sweep analysis; Selected region
-
Lactylome Profiling Reveals the Potential Role of Lysine Lactylation in Regulating Soybean Seed Quality
作者:Xu, Chang;Li, Jun;Dong, Chang;Zhang, Yu;Li, Hui;Li, Tianshu;Han, Xue;Yang, Mingliang;Chen, Qingshan;Qi, Zhaoming;Song, Zhen;Zhang, Mingming;Li, Candong
关键词:lysine lactylation; soybean; seedoil content; seed protein content; metabolism pathways
-
Soybean yield estimation and lodging discrimination based on lightweight UAV and point cloud deep learning
作者:Zhou, Longyu;Feng, Puyu;Ma, Yuntao;Han, Dezhi;Yan, Xiaofei;Jia, Hongchang;Sun, Guangyao;Liu, Yaling;Yan, Long;Li, Yinghui;Qiu, Lijuan
关键词:Remote sensing; 3D reconstruction; Point cloud; Multi-task learning; Digital image
-
Comparative Metabolomics Analysis of Seed Composition Accumulation in Soybean (Glycine max L.) Differing in Protein and Oil Content
作者:Cui, Yifan;Wang, Zhiyang;Li, Mingyang;Wang, Sihui;Liu, Chunyan;Xin, Dawei;Qi, Zhaoming;Chen, Qingshan;Yang, Mingliang;Zhao, Ying;Li, Xin
关键词:metabolomics; seed oil; seed protein; soybean (Glycine max (Linn.) Merr.)
-
Genome-wide characterization of soybean malate dehydrogenase genes reveals a positive role for GmMDH2 in the salt stress response
作者:Liu, Peiyan;Cui, Yifan;Wu, Xiaoxia;Zhao, Ying;Hu, Zhenbang;Liu, Chunyan;Zhang, Zhanguo;Yang, Mingliang;Chen, Qingshan;Li, Xin
关键词:soybean ( Glycine max (Linn.) Merr.); malate dehydrogenase; expression profile; salt stress
-
Genome-Wide Characterization and Haplotype Module Stacking Analysis of the KTI Gene Family in Soybean (Glycine max L. Merr.)
作者:Tian, Huilin;Zhang, Zhanguo;Feng, Shaowei;Song, Jia;Han, Xue;Chen, Xin;Yang, Mingliang;Chen, Qingshan;Wu, Xiaoxia;Qi, Zhaoming;Zhang, Zhanguo;Li, Candong;Liu, Enliang;Xu, Linli
关键词:kunitz trypsin inhibitor; seed storage protein content; paralogous genes; haplotype module stacking; soybean