National Key Laboratory of Wheat and Maize Crop Science, Laboratory of Regulating and Controlling Crop Growth and Development Ministry of Education, Henan Agricultural University, Zhengzhou, Henan, China.
State Key Laboratory of Crop Stress Adaptation and Improvement, State Key Laboratory of Cotton Biology, School of Life Sciences, Henan University, Kaifeng, China.
Plant Cell Environ. 2022 Feb;45(2):312-328. doi: 10.1111/pce.14243. Epub 2021 Dec 27.
Drought stress adversely impacts crop development and yield. Maize frequently encounters drought stress during its life cycle. Improvement of drought tolerance is a priority of maize breeding programs. Here, we identified a novel transcription factor encoding gene, APETALA2 (AP2)/Ethylene response factor (ERF), which is tightly associated with drought tolerance in maize seedlings. ZmERF21 is mainly expressed in the root and leaf and it can be highly induced by polyethylene glycol treatment. Genetic analysis showed that the zmerf21 mutant plants displayed a reduced drought tolerance phenotype, accompanied by phenotypical and physiological changes that are commonly observed in drought conditions. Overexpression of ZmERF21 in maize significantly increased the chlorophyll content and activities of antioxidant enzymes under drought conditions. RNA-Seq and DNA affinity purification sequencing analysis further revealed that ZmERF21 may directly regulate the expression of genes related to hormone (ethylene, abscisic acid) and Ca signaling as well as other stress-response genes through binding to the promoters of potential target genes. Our results thereby provided molecular evidence of ZmERF21 is involved in the drought stress response of maize.
干旱胁迫会对作物的生长和产量产生不利影响。玉米在其生命周期中经常会遇到干旱胁迫。提高玉米的耐旱性是玉米育种计划的首要任务。在这里,我们鉴定了一个与玉米幼苗耐旱性紧密相关的新型转录因子编码基因 APETALA2 (AP2)/Ethylene response factor (ERF)。ZmERF21 主要在根和叶中表达,并且可以被聚乙二醇处理高度诱导。遗传分析表明,zmerf21 突变体植物表现出耐旱性降低的表型,伴随着在干旱条件下常见的表型和生理变化。在玉米中过表达 ZmERF21 显著增加了干旱条件下叶绿素含量和抗氧化酶的活性。RNA-Seq 和 DNA 亲和纯化测序分析进一步表明,ZmERF21 可能通过与潜在靶基因的启动子结合,直接调节与激素(乙烯、脱落酸)和 Ca 信号以及其他应激响应基因相关的基因的表达。因此,我们的研究结果提供了分子证据,证明 ZmERF21 参与了玉米的干旱胁迫反应。