Comparative Transcriptomic Analyses Reveal Key Pathways in Response to Cold Stress at the Germination Stage of Quinoa (Chenopodium quinoa Willd.) Seeds
文献类型: 外文期刊
作者: Fu, Rao 1 ; Liang, Xiaoyan 1 ; Li, Jiajia 1 ; Song, Yanjing 1 ; Yi, Kuihua 1 ; Nie, Wenjing 1 ; Ma, Lan 1 ; Li, Junlin 1 ; Li, Meng 1 ; Wang, Xiangyu 1 ; Zhang, Haiyang 1 ; Zhang, Hongxia 1 ;
作者机构: 1.Shandong Inst Sericulture, Yantai Engn Res Ctr Plant Stem Cell Targeted Breed, Yantai Key Lab Evaluat & Utilizat Silkworm Funct S, 5 Qingdao Ave, Yantai 265503, Peoples R China
2.Shandong Acad Agr Sci, Inst Agr Resources & Environm, State Key Lab Nutrient Use & Management, 23788 Gongye North Rd, Jinan 250100, Peoples R China
3.Natl Ctr Technol Innovat Comprehens Utilizat Salin, Dongying 257345, Peoples R China
4.Ludong Univ, Engn Res Inst Agr & Forestry, 186 Hongqizhong Rd, Yantai 264025, Peoples R China
关键词: cold stress; quinoa; transcriptomic analysis; MAPK signaling; reactive oxygen species
期刊名称:PLANTS-BASEL ( 影响因子:4.1; 五年影响因子:4.5 )
ISSN: 2223-7747
年卷期: 2025 年 14 卷 8 期
页码:
收录情况: SCI
摘要: Quinoa (Chenopodium quinoa Willd.) has been widely grown as a cash crop. However, the molecular mechanism by which it responds to cold stress at the seed germination stage is still largely unknown. In this study, we performed a comparative transcriptomic analysis between the cold-tolerant cultivar XCq and cold-sensitive cultivar QCq in response to cold stress. A total number of 4552 and 4845 differentially expressed genes (DEGs) were identified in XCq and QCq upon the treatment of cold stress, respectively. Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis demonstrated that the mitogen-activated protein kinase (MAPK) signaling pathway was identified only among the up-regulated DEGs in XCq.The expression of DEGs, which encoding transcription factors, such as AP2/ERF, bHLH, bZIP, MYB, ICEs, and CORs related to cold response, were higher in XCq than in QCq in response to cold stress. Weighted gene co-expression network analysis (WGCNA) showed that DEGs clustered in the co-expression modules positively correlated with the factors of quinoa variety and temperature were significantly enriched in the oxidative phosphorylation metabolic pathway. Further physiochemical analyses showed that the activities of superoxide dismutase and peroxidase as well as the contents of soluble protein and sugar, were significantly higher in XCq than in QCq. In summary, MAPK signaling and oxidative metabolism were the key pathways in quinoa upon cold stress. Our findings revealed that the enhanced activities of antioxidant enzymes alleviate the lipid peroxidation of membranes and promote the accumulation of osmotic adjustment substances, thereby enabling seeds to better resist oxidative damage under cold stress.
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