College of Agronomy, Anhui Agricultural University, Hefei 230036, China.
Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Int J Mol Sci. 2024 Feb 11;25(4):2177. doi: 10.3390/ijms25042177.
In direct seeding, hypoxia is a major stress faced by rice plants. Therefore, dissecting the response mechanism of rice to hypoxia stress and the molecular regulatory network is critical to the development of hypoxia-tolerant rice varieties and direct seeding of rice. This review summarizes the morphological, physiological, and ecological changes in rice under hypoxia stress, the discovery of hypoxia-tolerant and germination-related genes/QTLs, and the latest research on candidate genes, and explores the linkage of hypoxia tolerance genes and their distribution in indica and japonica rice through population variance analysis and haplotype network analysis. Among the candidate genes, is a typical gene located on the MAPK cascade reaction for indica-japonica divergence; MHZ6 is involved in both the MAPK signaling and phytohormone transduction pathway. has three major haplotypes and one rare haplotype, with Hap3 being dominated by indica rice varieties, and promotes internode elongation in deep-water rice by activating the gene. and Adh1 have similar indica-japonica varietal differentiation, and are mainly present in indica varieties. There are three high-frequency haplotypes of , namely Hap1 (n = 1109), Hap2 (n = 1349), and Hap3 (n = 217); Hap2 is more frequent in japonica, and the genetic background of was derived from the japonica rice subpopulation. Further artificial selection, natural domestication, and other means to identify more resistance mechanisms of this gene may facilitate future research to breed superior rice cultivars. Finally, this study discusses the application of rice hypoxia-tolerant germplasm in future breeding research.
在直播中,缺氧是水稻植株面临的主要胁迫之一。因此,解析水稻对缺氧胁迫的响应机制和分子调控网络,对于培育耐缺氧水稻品种和发展直播稻具有重要意义。本综述总结了水稻在缺氧胁迫下的形态、生理和生态变化,发现了耐缺氧和萌发相关的基因/QTLs,以及最新的候选基因研究,并通过群体方差分析和单倍型网络分析探讨了耐缺氧基因的连锁及其在籼稻和粳稻中的分布。在候选基因中, 是一个典型的基因,位于 MAPK 级联反应中,用于 indica-japonica 分化;MHZ6 参与 MAPK 信号和植物激素转导途径。 有三个主要的单倍型和一个稀有的单倍型,Hap3 主要由籼稻品种组成,通过激活 基因促进深水稻节间伸长。 和 Adh1 具有相似的 indica-japonica 品种分化,主要存在于 indica 品种中。 有三个高频的单倍型,即 Hap1(n = 1109)、Hap2(n = 1349)和 Hap3(n = 217);Hap2 在粳稻中更为常见, 的遗传背景来源于粳稻亚群。进一步通过人工选择、自然驯化等手段识别该基因的更多抗性机制,可能有助于未来的研究,培育出优良的水稻品种。最后,本研究讨论了水稻耐缺氧种质在未来育种研究中的应用。