De novo assembly and analysis of the transcriptome of Rumex patientia L. during cold stress
文献类型: 外文期刊
作者: Liu, Jianxin 1 ; Xu, Yongqing 1 ; Zhang, Liguo 1 ; Li, Wei 1 ; Cai, Zhenxue 1 ; Li, Fei 1 ; Peng, Mu 3 ; Li, Fenglan 1 ; Hu, 1 ;
作者机构: 1.Northeast Agr Univ, Coll Life Sci, Harbin, Heilongjiang, Peoples R China
2.Heilongjiang Acad Agr Sci, Harbin, Heilongjiang, Peoples R China
3.Northeast Forestry Univ, Alkali Soil Nat Environm Sci Ctr, Harbin, Peoples R China
4.Harbin Univ, Harbin, Heilongjiang, Peoples R China
期刊名称:PLOS ONE ( 影响因子:3.24; 五年影响因子:3.788 )
ISSN: 1932-6203
年卷期: 2017 年 12 卷 10 期
页码:
收录情况: SCI
摘要: Background Rumex patientia L. is consumed as a green vegetable in several parts of the world, and can withstand extremely low temperatures(-35 degrees C). However, little or no available genomic data for this species has been reported to date. Here, we used Illumina Hiseq technology for transcriptome assembly in R. patientia under normal and cold conditions to evaluate how it responds to cold stress. Results After an in-depth RNA-Seq analysis, 115,589 unigenes were produced from the assembled transcripts. Based on similarity search analysis with seven databases, we obtained and annotated 60,157 assembled unigenes to at least one database. In total, 1,179 unigenes that were identified as differentially expressed genes (DEGs), including up-regulated (925) and down-regulated ones (254), were successfully assigned GO annotations and classified into three major metabolic pathways. Ribosome, carbon metabolism, oxidative phosphorylation and biosynthesis of amino acids were the most highly enriched pathways according to KEGG analysis. Overall, 66 up-regulated genes were identified as putatively involved in the response to cold stress, including members of MYB, AP2/ERF, CBF, Znf, bZIP, NAC and COR families. Conclusion To our knowledge, this investigation was the first to provide a cold-responsive (COR) transcriptome assembly in R. patientia. A large number of potential COR genes were identified, suggesting that this species is suitable for cultivation in northern China. In summary, these data provide valuable information for future research and genomic studies in R. patientia.
- 相关文献
作者其他论文 更多>>
-
Effects of essential oils on calf growth, ruminal fermentation, and antioxidative status: a meta-analysis
作者:Li, Wei;Han, Yongsheng;Sun, Fang;Zhu, Yuanfang;Zhong, Peng;Wang, Fang;Liu, Chunhai
关键词:meta-analysis; essential oil; calves; ruminal fermentation; anti-oxidative status
-
Repair Effects of Scenedesmus obliquus on Cucumber Seedlings Under Saline-Alkali Stress
作者:Liu, Zhao;Dong, Yanlong;Jin, Xiaoxia;Liu, Yan;Yue, Zhonghui;Li, Wei;Dong, Yanlong
关键词:
Scenedesmus obliquus ; cucumber; saline-alkali stress; microstructure; ultrastructure -
Lipidomic remodeling in Cannabis sativa L. under cold tolerance
作者:Yan, Bowei;Sui, Yue;Zheng, Nan;Fang, Yuyan;Zhang, Yuanye;Zhang, Ming;Zhang, Liguo;Chang, Chuanyi;Gu, Yingnan;Xu, Jingyu
关键词:Cannabis sativa L.; Cold stress; Lipidomics; Lipid remodeling; Transcriptomics
-
Transcriptomic and Lipidomic Analysis Reveals the Regulatory Network of Lipid Metabolism in Cannabis sativa
作者:Yan, Bowei;Sui, Yue;Zheng, Nan;Fang, Yuyan;Zhang, Yuanye;Zhang, Ming;Zhang, Liguo;Chang, Chuanyi;He, Dan
关键词:
Cannabis sativa L.; lipid metabolic; lipidomic; transcriptomic; regulatory network -
Cloning and Functional Validation of the Candidate Gene LuWRKY39 Conferring Resistance to Septoria linicola (Speg.) Garassini from Flax
作者:Chen, Si;Yuan, Hongmei;Wu, Guangwen;Liu, Dandan;Chen, Jing;Liu, Yan;Yin, Weiping;Li, Cen;Wu, Linlin;Ma, Jun;Bian, Daolin;Zhang, Liguo;Yang, Xue;Chen, Le
关键词:flax;
Septoria linicola ; WRKY transcription factor; resistance-related genes; functional validation -
Identification and expression analysis of cinnamyl CoA reductase gene family and function of StCCR6 in potato (Solanum tuberosum L.)
作者:Du, Chong;Che, Yunzhu;Zhang, Zengli;He, Fumeng;Zhang, Xinqi;Han, Yujie;Yang, Zelin;Wang, Jiaqi;Qi, Tianshuai;Wang, Yingnan;Li, Fenglan;Lan, Ying
关键词:potato; gene family; CCR; abiotic stress; gene expression; VIGS
-
A major latex protein, GsMLP328, modulates seed traits in soybean
作者:Yang, Zhongyi;Lu, Shaoqi;Wang, Zhen;Hu, Dezhou;Su, Xiaoyue;Wu, Fei;Dong, Shupeng;Cui, Xuan;Zhang, Yu;Zhang, Yidan;Li, Xiao;Song, Qingxin;Yu, Deyue;Kan, Guizhen;Huang, Fang;Li, Wei;Hu, Dezhou
关键词:



