Ren Zhenzhen, Fu Jiaxu, Abou-Elwafa Salah Fatouh, Ku Lixia, Xie Xiaowen, Liu Zhixue, Shao Jing, Wen Pengfei, Al Aboud Nora M, Su Huihui, Wang Tongchao, Wei Li
College of Agronomy, Henan Agricultural University, Zhengzhou, 450046, China.
Henna Technology Innovation Centre of Wheat, Henan Agricultural University, Zhengzhou, 450046, China.
Plant Physiol Biochem. 2024 Feb;207:108292. doi: 10.1016/j.plaphy.2023.108292. Epub 2023 Dec 22.
Drought stress is one of the most limiting factors of maize productivity and can lead to a sharp reduction in the total biomass when it occurs at the seedling stage. Improving drought tolerance at the seedling stage is of great importance for maize breeding. The AP2/ERF transcription factor family plays a critical role in plant response to abiotic stresses. Here, we used a preliminary previously-generated ranscriptomic dataset to identify a highly drought-stress-responsive AP2 gene, i.e., ZmEREB24. Compared to the wild type, the overexpression of ZmEREB24 in maize significantly promotes drought tolerance of transgenic plants at the seedling stage. CRISPR/Cas9-based ZmEREB24-knockout mutants showed a drought-sensitive phenotype. RNA-seq analysis and EMSA assay revealed AATGG.CT and GTG.T.GCC motifs as the main binding sites of ZmEREB24 to the promoters of downstream target genes. DAP-seq identified four novel target genes involved in proline and sugar metabolism and hormone signal transduction of ZmEREB24. Our data indicate that ZmEREB24 plays important biological functions in regulating drought tolerance by binding to the promoters of drought stress genes and modulating their expression. The results further suggest a role of ZmEREB24 in regulating drought adaptation in maize, indicating its potential importance for employing molecular breeding in the development of high-yield drought-tolerant maize cultivars.
干旱胁迫是限制玉米产量的最主要因素之一,在幼苗期发生时会导致生物总量急剧减少。提高幼苗期的耐旱性对玉米育种至关重要。AP2/ERF转录因子家族在植物对非生物胁迫的响应中起关键作用。在此,我们利用之前初步生成的转录组数据集鉴定出一个对干旱胁迫高度响应的AP2基因,即ZmEREB24。与野生型相比,ZmEREB24在玉米中的过表达显著提高了转基因植株在幼苗期的耐旱性。基于CRISPR/Cas9的ZmEREB24基因敲除突变体表现出干旱敏感表型。RNA测序分析和电泳迁移率变动分析实验揭示了AATGG.CT和GTG.T.GCC基序是ZmEREB24与下游靶基因启动子的主要结合位点。DNA亲和纯化测序鉴定出四个与脯氨酸和糖代谢以及ZmEREB24激素信号转导相关的新靶基因。我们的数据表明,ZmEREB24通过与干旱胁迫基因的启动子结合并调节其表达,在调控耐旱性方面发挥重要生物学功能。结果进一步表明ZmEREB24在调节玉米干旱适应性方面的作用,表明其在高产耐旱玉米品种分子育种中的潜在重要性。