National Institute for Plant Genome Research, New Delhi, India.
Physiol Plant. 2022 Mar;174(2):e13649. doi: 10.1111/ppl.13649.
Under stress conditions, the overproduction of different reactive oxygen species (ROS) and reactive nitrogen species (RNS) causes imbalance in the redox homeostasis of the cell leading to nitro-oxidative stress in plants. Alternative oxidase (AOX) is a conserving terminal oxidase of the mitochondrial electron transport chain, which can minimize the ROS. Still, the role of AOX in the regulation of RNS during nitro-oxidative stress imposed by salinity stress is not known. Here, we investigated the role of AOX in minimizing ROS and RNS induced by 150 mM NaCl in Arabidopsis using transgenic plants overexpressing (AOX OE) and antisense lines (AOX AS) of AOX. Imposing NaCl treatment leads to a 4-fold enhanced expression of AOX accompanied by enhanced AOX capacity in WT Col-0. Further AOX-OE seedlings displayed enhanced growth compared with the AOX-AS line under stress. Examination of NO levels by DAF-FM fluorescence and chemiluminescence revealed that AOX overexpression leads to reduced levels of NO. The total NR activity was elevated under NaCl, but no significant change was observed in wild-type (WT), AOX OE, and AS lines. The total ROS, superoxide, H O levels, and lipid peroxidation were higher in the AOX-AS line than in WT and AOX-OE lines. The peroxynitrite levels were also higher in the AOX-AS line than in WT and AOX-OE lines; further, the expression of antioxidant genes was elevated in AOX-AS. Taken together, our results suggest that AOX plays an important role in the mitigation of ROS and RNS levels and enhances plant growth, thus providing tolerance against nitro-oxidative stress exerted by NaCl.
在应激条件下,不同活性氧(ROS)和活性氮(RNS)的过度产生导致细胞氧化还原平衡失调,从而导致植物的氮氧化应激。交替氧化酶(AOX)是线粒体电子传递链的保守末端氧化酶,它可以最大程度地减少 ROS。然而,AOX 在盐胁迫引起的氮氧化应激过程中调节 RNS 的作用尚不清楚。在这里,我们使用过表达(AOX OE)和反义(AOX AS)的拟南芥 AOX 转基因植物研究了 AOX 在最小化 150 mM NaCl 诱导的 ROS 和 RNS 中的作用。施加 NaCl 处理会导致 AOX 的表达增加 4 倍,同时 WT Col-0 的 AOX 能力增强。进一步的 AOX-OE 幼苗在胁迫下的生长比 AOX-AS 线增强。通过 DAF-FM 荧光和化学发光检测 NO 水平表明,AOX 过表达会导致 NO 水平降低。总 NR 活性在 NaCl 下升高,但在 WT、AOX OE 和 AS 系中没有观察到显著变化。在 AOX-AS 系中,总 ROS、超氧阴离子、H2O2 水平和脂质过氧化作用高于 WT 和 AOX-OE 系。过氧亚硝酸盐水平在 AOX-AS 系中也高于 WT 和 AOX-OE 系,并且 AOX-AS 系中的抗氧化基因表达升高。综上所述,我们的结果表明 AOX 在降低 ROS 和 RNS 水平以及增强植物生长方面发挥着重要作用,从而提供对 NaCl 施加的氮氧化应激的耐受性。