Meta-Analysis of Salt Stress Transcriptome Responses in Different Rice Genotypes at the Seedling Stage.
Weilong KongHua ZhongZiyun GongXinyi FangTong SunXiaoxiao DengYangsheng LiPublished in: Plants (Basel, Switzerland) (2019)
Rice (Oryza sativa L.) is one of the most important staple food crops worldwide, while its growth and productivity are threatened by various abiotic stresses, especially salt stress. Unraveling how rice adapts to salt stress at the transcription level is vital. It can provide valuable information on enhancing the salt stress tolerance performance of rice via genetic engineering technologies. Here, we conducted a meta-analysis of different rice genotypes at the seedling stage based on 96 public microarray datasets, aiming to identify the key salt-responsive genes and understand the molecular response mechanism of rice under salt stress. In total, 5559 genes were identified to be differentially expressed genes (DEGs) under salt stress, and 3210 DEGs were identified during the recovery process. The Gene Ontology (GO) enrichment results revealed that the salt-response mechanisms of shoots and roots were different. A close-knit signaling network, consisting of the Ca2+ signal transduction pathway, the mitogen-activated protein kinase (MAPK) cascade, multiple hormone signals, transcription factors (TFs), transcriptional regulators (TRs), protein kinases (PKs), and other crucial functional proteins, plays an essential role in rice salt stress response. In this study, many unreported salt-responsive genes were found. Besides this, MapMan results suggested that TNG67 can shift to the fermentation pathway to produce energy under salt stress and may enhance the Calvin cycle to repair a damaged photosystem during the recovery stage. Taken together, these findings provide novel insights into the salt stress molecular response and introduce numerous candidate genes for rice salt stress tolerance breeding.
Keyphrases
- genome wide
- transcription factor
- systematic review
- stress induced
- genome wide identification
- gene expression
- emergency department
- heat stress
- oxidative stress
- randomized controlled trial
- mental health
- drug delivery
- cancer therapy
- single molecule
- signaling pathway
- meta analyses
- genome wide analysis
- binding protein
- cell proliferation
- human health
- dna binding
- quantum dots
- adverse drug