Zhang Tao, Wang Yong, Ma Xiaojing, Ouyang Zhaopeng, Deng Lei, Shen Shunshan, Dong Xiaoxing, Du Nanshan, Dong Han, Guo Zhixin, Meng Geng, Piao Fengzhi, Sun Kaile
College of Horticulture, Henan Agricultural University, Zhengzhou 450002, China.
College of Plant Protection, Henan Agricultural University, Zhengzhou 450002, China.
Antioxidants (Basel). 2022 Apr 11;11(4):758. doi: 10.3390/antiox11040758.
The excessive accumulation of copper (Cu) has become a threat to worldwide crop production. Recently, it was revealed that melatonin (MT) could play a crucial role against heavy metal (HM) stresses in plants. However, the underlying mechanism of MT function acted upon by Cu stress (CS) has not been substantiated in tomatoes. In the present work, we produced MT-rich tomato plants by foliar usage of MT, and MT-deficient tomato plants by employing a virus-induced gene silencing methodology and exogenous foliar application of MT synthesis inhibitor para-chlorophenylalanine (pCPA). The obtained results indicate that exogenous MT meaningfully alleviated the dwarf phenotype and impeded the reduction in plant growth caused by excess Cu. Furthermore, MT effectively restricted the generation of reactive oxygen species (ROS) and habilitated cellular integrity by triggering antioxidant enzyme activities, especially via CAT and APX, but not SOD and POD. In addition, MT increased nonenzymatic antioxidant activity, including FRAP and the GSH/GSSG and ASA/DHA ratios. MT usage improved the expression of several defense genes (, , and ) and MT biosynthesis-related genes (, and ). Taken together, our results preliminarily reveal that MT alleviates Cu toxicity via ROS scavenging, enhancing antioxidant capacity when subjected to excessive Cu. These results build a solid foundation for developing new insights to solve problems related to CS.
铜(Cu)的过度积累已成为全球作物生产的一大威胁。最近有研究表明,褪黑素(MT)在植物抵御重金属(HM)胁迫方面可能发挥关键作用。然而,Cu胁迫(CS)作用下MT功能的潜在机制在番茄中尚未得到证实。在本研究中,我们通过叶面喷施MT培育出富含MT的番茄植株,并采用病毒诱导基因沉默方法以及叶面外源喷施MT合成抑制剂对氯苯丙氨酸(pCPA)培育出MT缺陷型番茄植株。所得结果表明,外源MT显著缓解了矮化表型,并抑制了过量Cu导致的植株生长减缓。此外,MT通过触发抗氧化酶活性,尤其是通过CAT和APX而非SOD和POD,有效限制了活性氧(ROS)的产生并恢复了细胞完整性。此外,MT提高了非酶抗氧化活性,包括FRAP以及GSH/GSSG和ASA/DHA比值。施用MT改善了几个防御基因(、、和)以及MT生物合成相关基因(、和)的表达。综上所述,我们的结果初步揭示,MT通过清除ROS来缓解Cu毒性,在受到过量Cu胁迫时增强抗氧化能力。这些结果为深入了解解决与CS相关的问题奠定了坚实基础。