State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan 430072, China.
Int J Mol Sci. 2020 Jun 29;21(13):4615. doi: 10.3390/ijms21134615.
Rice ( L.) is a widely cultivated food crop around the world, especially in Asia. However, rice seedlings often suffer from cold stress, which affects their growth and yield. Here, RNA-seq analysis and Meta-QTLs mapping were performed to understand the molecular mechanisms underlying cold tolerance in the roots of 14-day-old seedlings of rice (RPY geng, cold-tolerant genotype). A total of 4779 of the differentially expressed genes (DEGs) were identified, including 2457 up-regulated and 2322 down-regulated DEGs. The GO, COG, KEEG, and Mapman enrichment results of DEGs revealed that DEGs are mainly involved in carbohydrate transport and metabolism, signal transduction mechanisms (plant hormone signal transduction), biosynthesis, transport and catabolism of secondary metabolites (phenylpropanoid biosynthesis), defense mechanisms, and large enzyme families mechanisms. Notably, the AP2/ERF-ERF, NAC, WRKY, MYB, C2H2, and bHLH transcription factors participated in rice's cold-stress response and tolerance. On the other hand, we mapped the identified DEGs to 44 published cold-stress-related genes and 41 cold-tolerant Meta-QTLs regions. Of them, 12 DEGs were the published cold-stress-related genes and 418 DEGs fell into the cold-tolerant Meta-QTLs regions. In this study, the identified DEGs and the putative molecular regulatory network can provide insights for understanding the mechanism of cold stress tolerance in rice. In addition, DEGs in KEGG term-enriched terms or cold-tolerant Meta-QTLs will help to secure key candidate genes for further functional studies on the molecular mechanism of cold stress response in rice.
水稻(L.)是一种在世界各地广泛种植的粮食作物,尤其是在亚洲。然而,水稻幼苗经常受到冷胁迫的影响,这会影响它们的生长和产量。在这里,我们进行了 RNA-seq 分析和 Meta-QTLs 作图,以了解水稻(RPY geng,耐冷基因型)14 日龄幼苗根系耐冷性的分子机制。共鉴定出 4779 个差异表达基因(DEGs),其中 2457 个上调,2322 个下调。DEGs 的 GO、COG、KEGG 和 Mapman 富集结果表明,DEGs 主要参与碳水化合物的运输和代谢、信号转导机制(植物激素信号转导)、生物合成、次生代谢物的运输和分解代谢(苯丙烷生物合成)、防御机制和大酶家族机制。值得注意的是,AP2/ERF-ERF、NAC、WRKY、MYB、C2H2 和 bHLH 转录因子参与了水稻的冷胁迫反应和耐受。另一方面,我们将鉴定出的 DEGs 映射到 44 个已发表的冷胁迫相关基因和 41 个耐冷 Meta-QTLs 区域。其中,有 12 个 DEGs 是已发表的冷胁迫相关基因,418 个 DEGs 位于耐冷 Meta-QTLs 区域内。在本研究中,鉴定出的 DEGs 和假定的分子调控网络可以为理解水稻耐冷胁迫机制提供见解。此外,KEGG 术语富集或耐冷 Meta-QTLs 中的 DEGs 将有助于确定关键候选基因,以进一步研究水稻冷胁迫反应的分子机制。