Comparative physiology and transcriptome response patterns in cold-tolerant and cold-sensitive varieties of Solanum melongena
文献类型: 外文期刊
作者: Cai, Peng 1 ; Lan, Yanhong 1 ; Gong, Fangyi 1 ; Li, Chun 1 ; Xia, Feng 1 ; Li, Yifan 1 ; Fang, Chao 1 ;
作者机构: 1.Sichuan Acad Agr Sci, Hort Res Inst, Chengdu 610066, Peoples R China
2.Vegetable Germplasm Innovat & Variety Improvement, Chengdu 610066, Peoples R China
3.Sichuan Prov Engn Technol Res Ctr Vegetables, Chengdu 611934, Peoples R China
关键词: Solanum melongena; Cold stress; Transcriptome; Chemometrics analysis; Response model co-expression network
期刊名称:BMC PLANT BIOLOGY ( 影响因子:5.3; 五年影响因子:5.9 )
ISSN: 1471-2229
年卷期: 2024 年 24 卷 1 期
页码:
收录情况: SCI
摘要: Background Climate change has led to severe cold events, adversely impacting global crop production. Eggplant (Solanum melongena L.), a significant economic crop, is highly susceptible to cold damage, affecting both yield and quality. Unraveling the molecular mechanisms governing cold resistance, including the identification of key genes and comprehensive transcriptional regulatory pathways, is crucial for developing new varieties with enhanced tolerance. Results In this study, we conducted a comparative analysis of leaf physiological indices and transcriptome sequencing results. The orthogonal partial least squares discriminant analysis (OPLS-DA) highlighted peroxidase (POD) activity and soluble protein as crucial physiological indicators for both varieties. RNA-seq data analysis revealed that a total of 7024 and 6209 differentially expressed genes (DEGs) were identified from variety "A" and variety "B", respectively. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment of DEGs demonstrated that the significant roles of starch and sucrose metabolism, glutathione metabolism, terpenoid synthesis, and energy metabolism (sucrose and starch metabolism) were the key pathways in eggplant. Weighted gene co-expression network analysis (WGCNA) shown that the enrichment of numerous cold-responsive genes, pathways, and soluble proteins in the MEgrep60 modules. Core hub genes identified in the co-expression network included POD, membrane transporter-related gene MDR1, abscisic acid-related genes, growth factor enrichment gene DELLA, core components of the biological clock PRR7, and five transcription factors. Among these, the core transcription factor MYB demonstrated co-expression with signal transduction, plant hormone, biosynthesis, and metabolism-related genes, suggesting a pivotal role in the cold response network. Conclusion This study integrates physiological indicators and transcriptomics to unveil the molecular mechanisms responsible for the differences in cold tolerance between the eggplant cold-tolerant variety "A" and the cold-sensitive variety "B". These mechanisms include modulation of reactive oxygen species (ROS), elevation in osmotic carbohydrate and free proline content, and the expression of terpenoid synthesis genes. This comprehensive understanding contributes valuable insights into the molecular underpinnings of cold stress tolerance, ultimately aiding in the improvement of crop cold tolerance.
- 相关文献
作者其他论文 更多>>
-
Codon Usage Bias Analysis in the Chloroplast Genomes of Diatoms Within the Family Thalassiosiraceae and Skeletonemataceae
作者:Yao, Huiying;Xu, Yi;Xiang, Dongyou;Jiao, Pengrui;Xu, Hui;Qiao, Dairong;Cao, Yi;Lan, Yanhong
关键词:Diatom; Codon usage bias; Chloroplast genome; Natural selection pressure
-
Characterization of MADS-Box Gene Family in Isatis indigotica and Functional Study of IiAP1 in Regulating Floral Transition and Formation
作者:Ma, Yanqin;Lan, Yanhong;Li, Ju;Long, Haicheng;Zhou, Yujie;Li, Zhi;Miao, Mingjun;Zhong, Jian;Wang, Haie;Yang, Liang;Ma, Yanqin;Lan, Yanhong;Li, Ju;Long, Haicheng;Zhou, Yujie;Li, Zhi;Miao, Mingjun;Zhong, Jian;Wang, Haie;Yang, Liang;Ma, Yanqin;Lan, Yanhong;Li, Ju;Long, Haicheng;Zhou, Yujie;Li, Zhi;Miao, Mingjun;Zhong, Jian;Wang, Haie;Yang, Liang;Ma, Yanqin;Xu, Ziqin;Chang, Wei
关键词:
Isatis indigotica ; MADS-box gene; transcription factors;IiAP1 ; floral transition; floral formation -
Genome-Wide Analysis of Mlo Genes and Functional Characterization of Cm-mlo38 and Cm-mlo44 in Regulating Powdery Mildew Resistance in Melon
作者:Gong, Fangyi;Lan, Yanhong;Zhang, Tian;Li, Chun;Li, Yifan;Xia, Feng;Liu, Xiaojun;Liu, Duchen;Liang, Genyun;Cai, Peng;Fang, Chao;Gong, Fangyi;Lan, Yanhong;Zhang, Tian;Li, Chun;Li, Yifan;Xia, Feng;Liu, Xiaojun;Liu, Duchen;Liang, Genyun;Cai, Peng;Fang, Chao
关键词:
Cucurbitaceae ; powdery mildew resistance; Mlo -
Genome-wide characterization of the cytochrome P450 gene family in Solanum melongena and functional analysis of SmCYP82C1 under cold stress
作者:Lan, Yanhong;Gong, Fangyi;Liu, Xiaojun;Liu, Duchen;Liang, Genyun;Li, Chun;Xia, Feng;Li, Yifan;Fang, Chao;Cai, Peng;Lan, Yanhong;Gong, Fangyi;Liu, Xiaojun;Liu, Duchen;Liang, Genyun;Li, Chun;Xia, Feng;Li, Yifan;Fang, Chao;Cai, Peng;Lan, Yanhong;Gong, Fangyi;Liu, Xiaojun;Liu, Duchen;Liang, Genyun;Li, Chun;Xia, Feng;Li, Yifan;Fang, Chao;Cai, Peng
关键词:Genome-wide analysis;
CYP450 gene family;Solanum melongena ; Cold stress -
Chromosome-level genome assembly of the Adonis ladybird Hippodamia variegata
作者:Liu, Hong-Ling;Yong, Yan-Ping;Wu, Xing-Long;Pu, De-Qiang;Chen, Zhi-Teng;Wei, Shu-Jun;Cai, Peng
关键词:
-
Genome-wide identification, phylogenetic, structural and functional evolution of the core components of ABA signaling in plant species: a focus on rice
作者:Lan, Yanhong;Liu, Mengjia;Lan, Yanhong;Song, Yao;Liu, Mengjia;Luo, Dening
关键词:Collinearity analysis; Divergence; Evolution; Expansion; Phylogenetic analysis; Whole-genome replication
-
New insights into the evolution analysis of trihelix gene family in eggplant (Solanum melongena L.) and expression analysis under abiotic stress
作者:Lan, Yanhong;Gong, Fangyi;Li, Chun;Xia, Feng;Li, Yifan;Liu, Xiaojun;Liu, Duchen;Liang, Genyun;Fang, Chao;Cai, Peng;Lan, Yanhong;Gong, Fangyi;Li, Chun;Xia, Feng;Li, Yifan;Liu, Xiaojun;Liu, Duchen;Liang, Genyun;Fang, Chao;Cai, Peng
关键词:
Solanum melongena ;Trihelix gene family; Transcription factor; Phylogenetic analysis; Abiotic stress; Expression profile




