Department of Cell Biology, School of Life Sciences, Central South University, Changsha, Hunan, China.
State Key Laboratory of Hybrid Rice, Wuhan University, Wuhan City, Hubei Province, China.
PeerJ. 2024 Apr 30;12:e17255. doi: 10.7717/peerj.17255. eCollection 2024.
Studies on (rice) are crucial for improving agricultural productivity and ensuring global sustenance security, especially considering the increasing drought and heat stress caused by extreme climate change. Currently, the genes and mechanisms underlying drought and heat resistance in rice are not fully understood, and the scope for enhancing the development of new strains remains considerable. To accurately identify the key genes related to drought and heat stress responses in rice, multiple datasets from the Gene Expression Omnibus (GEO) database were integrated in this study. A co-expression network was constructed using a Weighted Correlation Network Analysis (WGCNA) algorithm. We further distinguished the core network and intersected it with differentially expressed genes and multiple expression datasets for screening. Differences in gene expression levels were verified using quantitative real-time polymerase chain reaction (PCR). , and were found to be associated with the heat stress response, and it is also possible that and , although not directly related, are affected by drought stress. This study offers significant insights into the molecular mechanisms underlying stress responses in rice, which could promote the development of stress-tolerant rice breeds.
(水稻)的研究对于提高农业生产力和确保全球粮食安全至关重要,尤其是考虑到气候变化导致的干旱和热应激日益加剧。目前,水稻抗旱和耐热的基因和机制尚未完全阐明,提高新菌株开发的空间仍然很大。为了准确鉴定与水稻干旱和热应激反应相关的关键基因,本研究整合了来自基因表达综合数据库(GEO)的多个数据集。使用加权相关网络分析(WGCNA)算法构建了一个共表达网络。我们进一步区分了核心网络,并与差异表达基因和多个表达数据集进行了交叉筛选。使用定量实时聚合酶链反应(PCR)验证了基因表达水平的差异。研究发现,与热应激反应相关的基因是 ,而 虽然与干旱应激没有直接关系,但也可能受到干旱应激的影响。本研究为水稻应激反应的分子机制提供了重要的见解,这可能有助于开发抗应激水稻品种。