Zhu Tong, Li Weizhen, Xue He, Dong Shibo, Wang Jianhui, Shang Suqin, Dewer Youssef
Biocontrol Engineering Laboratory of Crop Diseases and Pests of Gansu Province, College of Plant Protection, Gansu Agricultural University, Lanzhou 730070, China.
Key Laboratory of Grassland Ecosystem of Ministry of Education, Sino-U.S. Centers for Grazingland Ecosystem Sustainability, College of Grassland Science, Gansu Agricultural University, Lanzhou 730070, China.
Antioxidants (Basel). 2023 Nov 13;12(11):1998. doi: 10.3390/antiox12111998.
Phytoseiid mite is a crucial biological control agent utilized to control pest mites and many insects in crops all over the world. However, they are vulnerable to multiple environmental pressures, with high-temperature stress being the most significant challenge. Heat stress disrupts the balance of reactive oxygen species (ROS) levels in organisms, resulting in oxidative stress within the body. Antioxidant enzymes play a crucial role in effectively neutralizing and clearing ROS. In this study, comparative transcriptomics and quantitative real-time PCR (qRT-PCR) were employed to assess the impact of short-term heat stress on the transcript expression of antioxidant enzyme genes in . We primarily identified four antioxidant enzyme genes (, , , and ) in after exposure to short-term heat stress. Then, new data on the expression patterns of these genes were generated. RNA sequencing and bioinformatics analysis revealed that belongs to the Fe/Mn family of superoxide dismutase (SOD), which was identified as MnSOD. was classified as a 1-Cys peroxiredoxin of the peroxidase family, whereas was recognized as a classical catalase, and was determined as cytoplasmic glutathione peroxidase-1 (GPX1). Transcriptional expression analysis of these four genes was conducted at different high temperatures: 36 °C, 38 °C, and 40 °C for 2, 4, and 6 h. The results also showed that all four genes exhibited significant up-regulation in response to short-term heat stress. Similarly, the highest expression levels for , , and were observed at 40 °C for 4 h. However, displayed its maximum expression value at 38 °C for 4 h. Overall, the obtained data suggest that short-term heat stress increases levels of ROS generated inside living organisms, which disrupts the oxidative balance and leads to alterations in the expression levels of antioxidant enzyme genes.
植绥螨是一种重要的生物防治剂,用于控制世界各地农作物中的害螨和许多昆虫。然而,它们易受多种环境压力的影响,其中高温胁迫是最严峻的挑战。热应激会破坏生物体中活性氧(ROS)水平的平衡,导致体内氧化应激。抗氧化酶在有效中和和清除ROS方面起着关键作用。在本研究中,采用比较转录组学和定量实时PCR(qRT-PCR)来评估短期热应激对[具体物种]中抗氧化酶基因转录表达的影响。在短期热应激处理后,我们主要在[具体物种]中鉴定出四个抗氧化酶基因([基因名称1]、[基因名称2]、[基因名称3]和[基因名称4])。然后,生成了这些基因表达模式的新数据。RNA测序和生物信息学分析表明,[基因名称1]属于超氧化物歧化酶(SOD)的Fe/Mn家族,被鉴定为MnSOD。[基因名称2]被归类为过氧化物酶家族的1-Cys过氧化物酶,而[基因名称3]被认为是一种经典的过氧化氢酶,[基因名称4]被确定为细胞质谷胱甘肽过氧化物酶-1(GPX1)。在不同高温(36℃、38℃和40℃)下分别处理2、4和6小时,对这四个基因进行转录表达分析。结果还表明,这四个基因在短期热应激下均表现出显著上调。同样,[基因名称1]、[基因名称2]和[基因名称3]在40℃处理4小时时表达水平最高。然而,[基因名称4]在38℃处理4小时时表现出最大表达值。总体而言,所获得的数据表明,短期热应激会增加生物体内产生的ROS水平,破坏氧化平衡并导致抗氧化酶基因表达水平的改变。