Cong Lin, Deng Lin, Yao Hongfei, Zhang Yaoyuan, Li Hongying, Wang Haigang, Zhang Bin, Han Yuanhuai, Wang Junjie
College of Agriculture, Shanxi Agricultural University, Taigu 030801, China.
Center for Agricultural Genetic Resources Research, Shanxi Agricultural University, Taiyuan 030031, China.
Genes (Basel). 2025 Mar 23;16(4):368. doi: 10.3390/genes16040368.
Broomcorn millet ( L.), a drought-tolerant C4 crop, is crucial for agricultural resilience in arid regions. Lipoxygenases (LOXs), key enzymes in plant stress responses, have not been studied in broomcorn millet. This study aimed to identify genes in broomcorn millet and elucidate their role in drought tolerance. We employed bioinformatics and physiological analyses to identify genes in broomcorn millet. Expression profiles were assessed in different organs, and drought stress responses were evaluated in tolerant (HSZ, YXDHM) and sensitive (YS10) varieties. Antioxidant enzyme activities (SOD, POD, CAT) and malondialdehyde (MDA) levels were measured. Twelve genes were identified, classified into three subfamilies, and mapped across seven chromosomes. These genes contained stress-responsive cis-elements and showed organ-specific expression, with exhibiting no detectable expression. Under drought stress, tolerant varieties showed elevated antioxidant activities and reduced MDA accumulation. , a homolog of Arabidopsis /, was significantly induced in tolerant varieties, correlating with enhanced antioxidant capacity and reduced oxidative damage. genes, particularly , play a pivotal role in drought tolerance by modulating ROS scavenging and membrane protection. This study provides a foundation for leveraging genes to improve drought resilience in broomcorn millet and related crops.
黍(L.)是一种耐旱的C4作物,对干旱地区的农业抗逆性至关重要。脂氧合酶(LOXs)是植物应激反应中的关键酶,尚未在黍中进行研究。本研究旨在鉴定黍中的LOX基因,并阐明它们在耐旱性中的作用。我们采用生物信息学和生理分析来鉴定黍中的LOX基因。在不同器官中评估表达谱,并在耐旱品种(HSZ、YXDHM)和敏感品种(YS10)中评估干旱胁迫反应。测量抗氧化酶活性(SOD、POD、CAT)和丙二醛(MDA)水平。鉴定出12个LOX基因,分为三个亚家族,并定位在七条染色体上。这些基因含有应激反应顺式元件,并表现出器官特异性表达,其中一个没有可检测到的表达。在干旱胁迫下,耐旱品种表现出抗氧化活性升高和MDA积累减少。AtLOX3的同源基因,即ZmLOX3,在耐旱品种中显著诱导,与增强的抗氧化能力和减少的氧化损伤相关。LOX基因,特别是ZmLOX3,通过调节ROS清除和膜保护在耐旱性中起关键作用。本研究为利用LOX基因提高黍和相关作物的耐旱性提供了基础。