Identification of Genes/Proteins Related to Submergence Tolerance by Transcriptome and Proteome Analyses in Soybean
文献类型: 外文期刊
作者: Lin, Yanhui 1 ; Li, Wei 1 ; Zhang, Yanwei 1 ; Xia, Changjian 3 ; Liu, Yun 5 ; Wang, Caijie 1 ; Xu, Ran 1 ; Zhang, Lifeng 1 ;
作者机构: 1.Shandong Acad Agr Sci, Crop Res Inst, Jinan, Shandong, Peoples R China
2.Hainan Acad Agr Sci, Inst Food Crops, Haikou, Hainan, Peoples R China
3.China Natl Tobacco Corp, Haikou Cigar Res Inst, Hainan Prov Branch, Haikou, Hainan, Peoples R China
4.Chinese Acad Agr Sci, State Key Lab Biol Plant Dis & Insect Pests, Inst Plant Protect, Beijing, Peoples R China
5.Yangtze Univ, Coll Agr, Jingzhou, Peoples R China
期刊名称:SCIENTIFIC REPORTS ( 影响因子:4.379; 五年影响因子:5.133 )
ISSN: 2045-2322
年卷期: 2019 年 9 卷
页码:
收录情况: SCI
摘要: Flooding can lead to yield reduction of soybean. Therefore, identification of flooding tolerance genes has great significance in production practice. In this study, Qihuang 34, a highly-resistant variety to flooding stress, was selected for submergence treatments. Transcriptome and proteome analyses were conducted, by which twenty-two up-regulated differentially expressed genes (DEGs)/differentially expressed proteins (DEPs) associated with five KEGG pathways were isolated. The number of the DEGs/DEPs enriched in glycolysis/gluconeogenesis was the highest. Four of these genes were confirmed by RT-qPCR, suggesting that glycolysis/gluconeogenesis may be activated to generate energy for plant survival under anaerobic conditions. Thirty-eight down-regulated DEGs/DEPs associated with six KEGG pathways were identified under submergence stress. Eight DEGs/DEPs enriched in phenylpropanoid biosynthesis were assigned to peroxidase, which catalyzes the conversion of coumaryl alcohol to hydroxy-phenyl lignin in the final step of lignin biosynthesis. Three of these genes were confirmed by RT-qPCR. The decreased expression of these genes led to the inhibition of lignin biosynthesis, which may be the cause of plant softening under submergence stress for a long period of time. This study revealed a number of up-/down-regulated pathways and the corresponding DEGs/DEPs, by which, a better understanding of the mechanisms of submergence tolerance in soybean may be achieved.
- 相关文献
作者其他论文 更多>>
-
Protein homeostasis and cell wall remodeling in response to jasmonate and gibberellin signals improve flood tolerance in soybean ( Glycine max L.)
作者:Wang, Xin;Li, Fei;Zhou, Shunli;Sun, Lianjun;Komatsu, Setsuko;Yan, Long;Xu, Ran
关键词:Soybean seedling; Flooding tolerance; Root tips; Proteomics; Quantitative trait loci
-
Transcriptomic analysis of ncRNAs and mRNAs interactions during drought stress in switchgrass
作者:Li, Wei;Zhang, Jinglei;Zhang, Jinhong;Jia, Chunlin;Zhang, Jinglei;Zhang, Jinhong;Jia, Chunlin;Zhang, Jinglei;Zhang, Jinhong;Jia, Chunlin;Li, Wei
关键词:Switchgrass; Starch and sucrose metabolism pathway; Starch synthase 4 (PvSS4); Novel_miRNA122; Novel_miRNA14; Drought stress; CeRNA networks
-
A novel miR160a-GmARF16-GmMYC2 module determines soybean salt tolerance and adaptation
作者:Wang, Chaofan;Li, Xiaoming;Zhuang, Yongbin;Sun, Wancai;Cao, Hongxiang;Zhang, Dajian;Xu, Ran;Kong, Fanjiang
关键词:artificial selection; GmARF16; proline; salt stress; soybean
-
Analysis of allelic variation of TaNCED1-5B and functional marker development for drought resistance in wheat
作者:Song, Guoqi;Zhang, Shujuan;Li, Wei;Zhang, Rongzhi;Li, Yulian;Gao, Jie;Li, Jihu;Chen, Mingli;Liu, Min;Li, Genying
关键词:Allelic variation; drought resistance; KASP; TaNCED1; wheat
-
Characterization of the pyruvate kinase gene family in soybean and identification of a putative salt responsive gene GmPK21
作者:Liu, Wei;Wang, Yubin;Zhang, Yanwei;Li, Wei;Wang, Caijie;Xu, Ran;Dai, Haiying;Zhang, Lifeng;Liu, Wei;Wang, Yubin;Zhang, Yanwei;Li, Wei;Wang, Caijie;Xu, Ran;Dai, Haiying;Zhang, Lifeng
关键词:Soybean; Pyruvate Kinase gene family; Genome identification; Salt stress Overexpression
-
Integrative analysis of metabolome and transcriptome reveals regulatory mechanisms of flavonoid biosynthesis in soybean under salt stress
作者:Wang, Yubin;Liu, Wei;Li, Wei;Wang, Caijie;Dai, Haiying;Xu, Ran;Zhang, Yanwei;Zhang, Lifeng;Wang, Yubin;Liu, Wei;Li, Wei;Wang, Caijie;Dai, Haiying;Xu, Ran;Zhang, Yanwei;Zhang, Lifeng
关键词:soybean; salt stress; metabolome; transcriptome; flavonoid; regulatory mechanism
-
Applications of CRISPR/Cas9 Technology in Ornamental Plants
作者:Liu, Hetong;Liu, Yun;Wei, Yamiao;Zheng, Chengshu;Liu, Hetong;Hu, Zongxia;Wu, Xiang;Wang, Chengpeng;Wang, Zhenzhen;Wang, Zhenzhen;Liu, Hetong;Liu, Yun;Wei, Yamiao;Zheng, Chengshu
关键词:CRISPR/Cas9; Ornamental plants; Applications



