Jiangsu Key Laboratory of Crop Genomics and Molecular Breeding/Key Laboratory of Plant Functional Genomics of the Ministry of Education/ Jiangsu Key Laboratory of Crop Genetics and Physiology, Agricultural College of Yangzhou University, Yangzhou, 225009, China.
Jiangsu Co-Innovation Center for Modern Production Technology of Grain Crops, Yangzhou University, Yangzhou, 225009, China.
BMC Plant Biol. 2024 Nov 6;24(1):1048. doi: 10.1186/s12870-024-05763-5.
Heat stress has become one of the abiotic stresses that pose an increasing threat to maize production due to global warming. The Hsp20 gene family confers tolerance to various abiotic stresses in plants. However, very few Hsp20s have been identified in relation to maize thermotolerance. In this study, we conducted a comprehensive study of Hsp20s involved in thermotolerance in maize. A total of 33 maize Hsp20 genes (ZmHsp20s) were identified through scanning for a conserved α-crystalline domain (ACD), and they were categorized into 14 subfamilies based on phylogenetic analysis. These genes are distributed across all maize chromosomes and nine of them are in regions previously identified as heat-tolerance quantitative trait loci (hrQTL). These hrQTL-associated ZmHsp20s show variation in tissue-specific expression profiles under normal conditions, and seven of them possess 1-5 heat stress elements in their promoters. The integration of RNA-seq data with real-time RT-PCR analysis indicated that ZmHsp23.4, ZmHsp22.8B and ZmHsp18 were dramatically induced under heat stress. Additionally, these genes exhibited co-expression patterns with key ZmHsfs, which are crucial in the heat tolerance pathway. When a null mutant carrying a frame-shifted ZmHsp18 gene was subjected to heat stress, its survival rate decreased significantly, indicating a critical role of ZmHsp18 in maize thermotolerance. Our study lays the groundwork for further research into the roles of ZmHsp20s in enhancing maize's thermotolerance.
热应激已成为由于全球变暖对玉米生产造成的越来越大威胁的非生物胁迫之一。Hsp20 基因家族赋予植物耐受各种非生物胁迫的能力。然而,与玉米耐热性相关的 Hsp20 很少被鉴定出来。在这项研究中,我们对参与玉米耐热性的 Hsp20 进行了全面研究。通过扫描保守的α-晶状体结构域 (ACD),共鉴定出 33 个玉米 Hsp20 基因(ZmHsp20s),并根据系统发育分析将它们分为 14 个亚家族。这些基因分布在玉米所有染色体上,其中 9 个位于先前鉴定为耐热性数量性状位点(hrQTL)的区域。这些与 hrQTL 相关的 ZmHsp20s 在正常条件下具有组织特异性表达谱的变化,其中 7 个在其启动子中具有 1-5 个热应激元件。RNA-seq 数据与实时 RT-PCR 分析的整合表明,ZmHsp23.4、ZmHsp22.8B 和 ZmHsp18 在热应激下显著诱导。此外,这些基因与关键的 ZmHsfs 表现出共表达模式,ZmHsfs 在耐热性途径中至关重要。当携带移码 ZmHsp18 基因的 null 突变体受到热应激时,其存活率显著降低,表明 ZmHsp18 在玉米耐热性中起着关键作用。我们的研究为进一步研究 ZmHsp20s 在增强玉米耐热性中的作用奠定了基础。