Genome-wide transcriptome profiling revealed biological macromolecules respond to low temperature stress in Brassica napus L
文献类型: 外文期刊
第一作者: Hussain, Muhammad Azhar
作者: Hussain, Muhammad Azhar;Luo, Dan;Zeng, Liu;Ding, Xiaoyu;Cheng, Yong;Zou, Xiling;Lv, Yan;Lu, Guangyuan
作者机构:
关键词: abiotic stress; low temperature stress; RNA sequencing; DEGs; transcription factors; photosynthesis; antioxidants
期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:5.6; 五年影响因子:6.8 )
ISSN: 1664-462X
年卷期: 2022 年 13 卷
页码:
收录情况: SCI
摘要: Brassica napus L. (B. napus) is a vital oilseed crop cultivated worldwide; low temperature (LT) is one of the major stress factors that limit its growth, development, distribution, and production. Even though processes have been developed to characterize LT-responsive genes, only limited studies have exploited the molecular response mechanisms in B. napus. Here the transcriptome data of an elite B. napus variety with LT adaptability was acquired and applied to investigate the gene expression profiles of B. napus in response to LT stress. The bioinformatics study revealed a total of 79,061 unigenes, of which 3,703 genes were differentially expressed genes (DEGs), with 2,129 upregulated and 1,574 downregulated. The Gene Ontology and Kyoto Encyclopedia of Genes and Genomes enrichment analysis pinpointed that the DEGs were enriched in LT-stress-responsive biological functions and metabolic pathways, which included sugar metabolism, antioxidant defense system, plant hormone signal transduction, and photosynthesis. Moreover, a group of LT-stress-responsive transcription factors with divergent expression patterns under LT was summarized. A combined protein interaction suggested that a complex interconnected regulatory network existed in all detected pathways. RNA-seq data was verified using real-time quantitative polymerase chain reaction analysis. Based on these findings, we presented a hypothesis model illustrating valuable information for understanding the LT response mechanisms in B. napus.
分类号:
- 相关文献
作者其他论文 更多>>
-
Identification and Pathogenicity Analysis of Feline Calicivirus in Shanghai and Guangdong, China
作者:Luo, Dan;Xie, Weile;Zhou, Xinchu;Wang, Zhe;Luo, Dan;Xie, Weile;Wang, Zhe;Li, Na;Peng, Xueyan;Li, Kai
关键词:broad-spectrum neutralization; challenge experiments; enteritis; feline calicivirus; phylogenetic analysis; VP1
-
Enhanced polylactic acid plastic biodegradation during aerobic composting of cattle manure and wheat straw by nanobubble water
作者:Wang, Tianfeng;Zhang, Yuqian;Zhang, Yu;Peng, Cheng;Chen, Jianghe;Zhang, Yuxin;Xu, Ziying;Luo, Dan;Zhang, Jining
关键词:N 2 -nanobubble; CO 2 -nanobubble; Urease activity; Pseudomonadota; Hydrolysis
-
DNA Methylation and Transcriptome Profiling Reveal the Role of the Antioxidant Pathway and Lipid Metabolism in Plectropomus leopardus Skin Color Formation
作者:Liu, Yang;Wang, Linna;Li, Zhentong;Li, Linlin;Ding, Tangtang;Chen, Shuai;Duan, Pengfei;Wang, Xinyi;Qiu, Yishu;Ding, Xiaoyu;Tian, Yongsheng;Liu, Yang;Wang, Linna;Li, Zhentong;Li, Linlin;Tian, Yongsheng;Liu, Yang;Wang, Linna;Li, Zhentong;Li, Linlin;Tian, Yongsheng;Ding, Tangtang
关键词:
Plectropomus leopardus ; body color; methylome; transcriptome; antioxidant pathway; lipid metabolism -
Mechanism of polyphenol-pea starch complexes on reducing fat accumulation in Caenorhabditis elegans
作者:Luo, Dan;Jin, Manqin;Zhang, Xuemei;Fan, Jiaxing;Xue, Wentong;Wang, Wei;Yang, Yingkang;Zhai, Chen;Rao, Huan
关键词:Pea starch; Caenorhabditis elegans; Lipid-lowering effect; Polyphenol-starch complexes; MDT-15; ROS
-
Computational 1H nuclear magnetic resonance chemical shifts for furan fatty acid discovering in oxidation process of plant oil
作者:Pan, Yin-Xu;Xiao, Hua-Ming;Pan, Yin-Xu;Xu, Qiu-Hui;Hussain, Dilshad;Zhang, Qin-Feng;Chen, Jian-Li;Luo, Dan
关键词:Plant oil; Furan fatty acids; Density functional theory; 1 H NMR; Oxidative stability
-
ABA Enhances Drought Resistance During Rapeseed (Brassica napus L.) Seed Germination Through the Gene Regulatory Network Mediated by ABA Insensitive 5
作者:Chen, Manyi;Lu, Guangyuan;Luo, Dan;Lv, Yan;Huang, Qian;Li, Haibo;Feng, Huimin
关键词:
Brassica napus L.;ABI5 ; CRISPR-CAS9; transcriptome; drought tolerance; seed germination -
Enhancing aerobic composting of cow dung and wheat straw with nanobubble water: Improved lignocellulose degradation and nutrient enrichment for increased crop biomass
作者:Zhang, Yu;Wang, Tianfeng;Zhang, Yuqian;Liu, Zifan;Zhong, Mudan;Huang, Haizhou;Guo, Peilin;Luo, Dan;Chen, Jixiang;Wang, Lingying;Zhang, Jining;Xu, Yuanshun
关键词:Moisture content; Enzyme activity; Bacterial community; Plant nutrient; Total biomass