文献类型: 外文期刊
作者: Xiang, Xiaoli 1 ; Hu, Binhua 1 ; Pu, Zhigang 1 ; Wang, Lanying 1 ; Leustek, Thomas 3 ; Li, Changsheng 2 ;
作者机构: 1.Sichuan Acad Agr Sci, Inst Biotechnol & Nucl Technol, Chengdu, Peoples R China
2.Anhui Agr Univ, Natl Engn Lab Crop Stress Resistance Breeding, Hefei, Peoples R China
3.Rutgers State Univ, Dept Plant Biol, New Brunswick, NJ USA
关键词: methionine; serine acetyltransferase1; 3'-phosphoadenosine-5'-phosphosulfate reductase; transcriptome profiling analysis; protein-protein interaction
期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:6.627; 五年影响因子:7.255 )
ISSN: 1664-462X
年卷期: 2022 年 13 卷
页码:
收录情况: SCI
摘要: Maize seeds synthesize insufficient levels of the essential amino acid methionine (Met) to support animal and livestock growth. Serine acetyltransferase1 (SAT1) and 3'-phosphoadenosine-5'-phosphosulfate reductase (PAPR) are key control points for sulfur assimilation into Cys and Met biosynthesis. Two high-MET maize lines pRbcS:AtSAT1 and pRbcS:EcPAPR were obtained through metabolic engineering recently, and their total Met was increased by 1.4- and 1.57-fold, respectively, compared to the wild type. The highest Met maize line, pRbcS:AtSAT1-pRbcS:EcPAPR, was created by stacking the two transgenes, causing total Met to increase 2.24-fold. However, the pRbcS:AtSAT1-pRbcS:EcPAPR plants displayed progressively severe defects in plant growth, including early senescence, stunting, and dwarfing, indicating that excessive sulfur assimilation has an adverse effect on plant development. To explore the mechanism of correlation between Met biosynthesis in maize leaves and storage proteins in developing endosperm, the transcriptomes of the sixth leaf at stage V9 and 18 DAP endosperm of pRbcS:AtSAT1, pRbcS:AtSAT1-pRbcS:EcPAPR, and the null segregants were quantified and analyzed. In pRbcS:AtSAT1-pRbcS:EcPAPR, 3274 genes in leaves (1505 up- and 1769 downregulated) and 679 genes in the endosperm (327 up- and 352 downregulated) were differentially expressed. Gene ontology (GO) and KEGG (Kyoto encyclopedia of genes and genomes) analyses revealed that many genes were associated with Met homeostasis, including transcription factors and genes involved in cysteine and Met metabolism, glutathione metabolism, plant hormone signal transduction, and oxidation-reduction. The data from gene network analysis demonstrated that two genes, serine/threonine-protein kinase (CCR3) and heat shock 70 kDa protein (HSP), were localized in the core of the leaves and endosperm regulation networks, respectively. The results of this study provide insights into the diverse mechanisms that underlie the ideal establishment of enhanced Met levels in maize seeds.
- 相关文献
作者其他论文 更多>>
-
OsHARBI1-1 enhances cadmium tolerance in yeast through YAP1 mediated modulation of cell wall integrity genes and catalase genes
作者:Shi, Yang;Jiang, Nan;Jiang, Wenjun;Jiao, Yuan;Zhou, Yingxu;Wu, Longying;Huang, Jin;Shi, Yang;Chen, Ji;Wu, Lijuan;Huang, Yanyan;Li, Deqiang;Kumar, Vinod;Hu, Binhua;Huang, Jin
关键词:antioxidant; cadmium tolerance; cell wall;
HARBI1 ;Saccharomyces cerevisiae ;YAP1 -
Allelic variation in the promoter of WRKY22 enhances humid adaptation of Arabidopsis thaliana
作者:Liang, Ruyun;Tan, Luna;Guo, Xiang;Lou, Shangling;Dan, Xuming;Han, Yu;Zeng, Cheng;Zhang, Han;Yang, Kai;Chen, Liyang;Liang, Xin;Liu, Meng;Guo, Mengyun;Yin, Kangqun;Tang, Si;Song, Yan;Gao, Xuemeng;Gu, Shaobo;Hou, Jing;Yao, Yingjun;Zhang, Ruijia;Yan, Jin;Fu, Wensen;Li, Xuerui;Hu, Yongqi;Liu, Yao;Liu, Wei;Wu, Qiusai;Yan, Zhen;Wang, Jing;Liu, Jianquan;Liu, Huanhuan;Liang, Ruyun;Tan, Luna;Guo, Xiang;Lou, Shangling;Dan, Xuming;Han, Yu;Zeng, Cheng;Zhang, Han;Yang, Kai;Chen, Liyang;Liang, Xin;Liu, Meng;Guo, Mengyun;Yin, Kangqun;Tang, Si;Song, Yan;Gao, Xuemeng;Gu, Shaobo;Hou, Jing;Yao, Yingjun;Zhang, Ruijia;Yan, Jin;Fu, Wensen;Li, Xuerui;Hu, Yongqi;Liu, Yao;Liu, Wei;Wu, Qiusai;Yan, Zhen;Wang, Jing;Liu, Jianquan;Liu, Huanhuan;Hu, Binhua;Jia, Weitao
关键词:WRKY22; RAP2.12; WRKY70; ARRs; natural variation; submergence tolerance
-
Bioinformatics and Functional Analysis of OsASMT1 Gene in Response to Abiotic Stress
作者:Li, Mingyu;Wu, Longying;Shi, Yang;Afzal, Farhan;Jia, Yanru;Huang, Jin;Wu, Lijuan;Chen, Ji;Huang, Yanyan;Hu, Binhua
关键词:Abiotic stress; Rice gene; Bioinformatics analysis; Function
-
Functional analysis of a rice 12-oxo-phytodienoic acid reductase gene (OsOPR1) involved in Cd stress tolerance
作者:Wu, Longying;Wang, Ruolin;Li, Mingyu;Du, Zhiye;Jin, Yufan;Shi, Yang;Jiang, Wenjun;Jiao, Yuan;Huang, Jin;Chen, Ji;Hu, Binhua
关键词:Cadmium; Rice; Yeast; Cadmium tolerance; Jasmonic acid
-
Chromosomal Localization and Diversity Analysis of 5S and 18S Ribosomal DNA in 13 Species from the Genus Ipomoea
作者:Wu, Jingyu;Lang, Tao;Zhang, Cong;Yang, Fan;Yang, Feiyang;Qu, Huijuan;Feng, Junyan;Pu, Zhigang
关键词:5S rDNA; 18S rDNA; fluorescence in situ hybridization; phylogenetic analysis;
Ipomoea genus -
SNP loci identification and KASP marker development system for genetic diversity, population structure, and fingerprinting in sweetpotato (Ipomoea batatas L.)
作者:Yang, Feiyang;Lang, Tao;Wu, Jingyu;Zhang, Cong;Qu, Huijuan;Pu, Zhigang;Yang, Fan;Feng, Junyan;Yang, Feiyang;Yu, Ma
关键词:Sweetpotato; RAD-seq; SNP; KASP marker; DNA fingerprinting
-
Comparative Analysis of Nutrients, Phytochemicals, and Minerals in Colored Sweet Potato (Ipomoea batatas L.) Roots
作者:Zhao, Shan;Zhong, Lingli;Li, Xi;Qin, Lin;Zhou, Ya;Lei, Xinyu;Zheng, Xingguo;Jin, Keting;Hou, Xue;Song, Jun;Pu, Zhigang;Lang, Tao;Zhang, Cong;Feng, Junyan
关键词:sweet potato roots; flesh colors; nutrients; phytochemicals; minerals




