Wang Xiao-Na, Yang Fei, Zhang Jiu-Cheng, Ren Yi-Ran, An Jian-Ping, Chang Da-Yong, Wang Xiao-Fei, You Chun-Xiang
National Key Laboratory of Crop Biology, MOA Key Laboratory of Horticultural Crop Biology and Germplasm Innovation, College of Horticulture Science and Engineering, Shandong Agricultural University, Shandong, 271018, Tai-An, China.
Yantai Goodly Biological Technology Co., Ltd, Yan-Tai, 241003, Shandong, China.
Plant Cell Rep. 2023 Feb;42(2):433-448. doi: 10.1007/s00299-022-02969-5. Epub 2023 Jan 25.
Ectopic expression of MmCYP1A1 gene from Mus musculus in apple calli and Arabidopsis increased the levels of melatonin and 6-hydroxymelatonin, and improved their stress resistance. Melatonin occurs widely in organisms, playing a key regulatory role. CYP1A1 is a cytochrome P450 monooxygenase, involved in the melatonin metabolism, and is responsible for the synthesis of 6-hydroxymelatonin from melatonin. Melatonin and 6-hydroxymelatonin have strong antioxidant activities in animals. Here, we cloned MmCYP1A1 from Mus musculus and found that ectopic expression of MmCYP1A1 improved the levels of melatonin and 6-hydroxymelatonin in transgenic apple calli and Arabidopsis. Subsequently, we observed that MmCYP1A1 increased the tolerance of transgenic apple calli and Arabidopsis to osmotic stress simulated by polyethylene glycol 6000 (PEG 6000), as well as resistance of transgenic Arabidopsis to drought stress. Further, the number of lateral roots of MmCYP1A1 transgenic Arabidopsis were enhanced significantly after PEG 6000 treatment. The expression of MmCYP1A1 remarkably reduced malondialdehyde (MDA) content, electrolyte leakage, accumulation of HO and O during stress treatment. Moreover, MmCYP1A1 enhanced stress tolerance in apple calli and Arabidopsis by increasing the expression levels of resistance genes. MmCYP1A1 also promoted stomatal closure in transgenic Arabidopsis to reduce leaf water loss during drought. Our results indicate that MmCYP1A1 plays a key role in plant stress tolerance, which may provide a reference for future plant stress tolerance studies.
小家鼠MmCYP1A1基因在苹果愈伤组织和拟南芥中的异位表达增加了褪黑素和6-羟基褪黑素的水平,并提高了它们的抗逆性。褪黑素广泛存在于生物体中,发挥着关键的调节作用。CYP1A1是一种细胞色素P450单加氧酶,参与褪黑素代谢,负责将褪黑素合成6-羟基褪黑素。褪黑素和6-羟基褪黑素在动物体内具有很强的抗氧化活性。在此,我们从小家鼠中克隆了MmCYP1A1,发现MmCYP1A1的异位表达提高了转基因苹果愈伤组织和拟南芥中褪黑素和6-羟基褪黑素的水平。随后,我们观察到MmCYP1A1提高了转基因苹果愈伤组织和拟南芥对聚乙二醇6000(PEG 6000)模拟的渗透胁迫的耐受性,以及转基因拟南芥对干旱胁迫的抗性。此外,PEG 6000处理后,MmCYP1A1转基因拟南芥的侧根数量显著增加。MmCYP1A1的表达在胁迫处理期间显著降低了丙二醛(MDA)含量、电解质渗漏、HO和O的积累。此外,MmCYP1A1通过提高抗性基因的表达水平增强了苹果愈伤组织和拟南芥的胁迫耐受性。MmCYP1A1还促进了转基因拟南芥气孔关闭,以减少干旱期间叶片水分流失。我们的结果表明,MmCYP1A1在植物胁迫耐受性中起关键作用,这可能为未来植物胁迫耐受性研究提供参考。