4.6 Article

Integrative analysis of long non-coding RNA acting as ceRNAs involved in chilling injury in tomato fruit

期刊

GENE
卷 667, 期 -, 页码 25-33

出版社

ELSEVIER
DOI: 10.1016/j.gene.2018.05.030

关键词

Tomato fruit; Chilling injury; lncRNAs; ceRNAs; High-throughput sequencing; Regulatory network

资金

  1. National Natural Science Foundation of China [31772022]
  2. Natural Science Foundation of Beijing [6182016]
  3. National Key Research and Development Program of China [2016YFD0400901]
  4. China Agriculture Research System Project [CARS-23]
  5. Special innovation ability construction fund of Beijing Academy of Agricultural and Forestry Sciences [20180404]
  6. Young Investigator Fund of Beijing Academy of Agricultural and Forestry Sciences [201709]
  7. Beijing Academy of Agriculture and Forestry fruit and vegetable preservation and processing innovation team [201602]
  8. International Cooperation Fund Project of Beijing Academy of Agricultural and Forestry Sciences [2017HP001]

向作者/读者索取更多资源

Long-non-coding RNA (LncRNA) is a kind of non-coding endogenous RNA that plays essential roles in diverse biological processes and various stress responses. To identify and elucidate the intricate regulatory roles of lncRNAs in chilling injury in tomato fruit, deep sequencing and bioinformatics methods were performed here. After strict screening, a total of 1411 lncRNAs were identified. Among these lncRNAs, 239 of them were significantly differentially expressed. A large amount of target genes were identified and many of them were found to code chilling stress related proteins, including redox reaction related enzyme, important enzymes about cell wall degradation, membrane lipid peroxidation related enzymes, heat and cold shock protein, energy metabolism related enzymes, salicylic acid and abscisic acid metabolism related genes. Interestingly, 41 lncRNAs were found to be the precursor of 33 miRNAs, and 186 lncRNAs were targets of 45 miRNAs. These lncRNAs targeted by miRNAs might be potential ceRNAs. Particularly, a sophisticated regulatory model including miRNAs, lncRNAs and their targets was set up. This model revealed that some miRNAs and lncRNAs may be involved in chilling injury, which provided a new perspective of lncRNAs role.

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