文献类型: 外文期刊
作者: Kong, Yu 1 ; Zhang, Tieqiang 2 ; Guan, Yong 2 ; Wang, Ling 3 ; Gu, Xin 4 ; Yang, Shuai 5 ;
作者机构: 1.Baise Univ, Coll Agr & Food Engn, Baise 533000, Guangxi Provinc, Peoples R China
2.Heilongjiang Acad Land Reclamat Sci, Harbin 150030, Heilongjiang, Peoples R China
3.Heilongjiang Acad Agr Sci, Inst Crop Cultivat & Tillage, Harbin 150086, Heilongjiang, Peoples R China
4.Heilongjiang Acad Agr Sci, Jiamusi Branch, Jiamusi City 154007, Heilongjiang, Peoples R China
5.Heilongjiang Acad Agr Sci, Potato Res Inst, Xuefu Rd 368, Harbin 150086, Heilongjiang, Peoples R China
关键词: RNA-seq; Winter rye; Cold stress; Chitin; Oligosaccharides
期刊名称:ACTA PHYSIOLOGIAE PLANTARUM ( 影响因子:2.354; 五年影响因子:2.711 )
ISSN: 0137-5881
年卷期: 2020 年 42 卷 5 期
页码:
收录情况: SCI
摘要: Rye is an important economic crop with remarkable resistance to biotic and abiotic stresses and high nutrient utilization. Identification of genes related to cold stress response in winter rye to improve understanding of the molecular mechanism of low temperature response. We performed RNA-seq on winter rye transcriptome under four different cold stress conditions: CK (room temperature), 24 h (4 degrees C), 48 h (4 degrees C) and 72 h (4 degrees C). A total of 128,744 Unigenes were identified, of which 29,874 genes were differentially expressed, including genes related to photosynthesis, plasma membrane stability, glucose and energy metabolism, as well as cold-response transcription factors. GO and KEGG results showed that winter rye protects against low temperature damage by synthesizing extracellular components such as Cutin, suberine and wax. In addition, Oligosaccharides and chitin play a key role in cold resistance of winter rye and MNS1 and MNS3 were the candidate genes. The transcription factors (TFs) results showed that MYB and bHLH families showed a close relationship with cold resistance. In conclusion, the cold tolerance of winter rye is achieved through a variety of biological pathways, including "chitin binding", "glycolytic process", and "tricarboxylic acid cycle". Winter rye can also respond to cold stress by regulating cutin, suberine and wax synthesis. The expression of common cold stress genes such as HSPs, MYBs, bHLHs, NAC, bZIPs, C2H2 and CBF changed after cold stimulation. This study can provide a valuable resource for studies related to cold tolerance, helping to explore genes associated with cold stress and for genetic improvement of crops.
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