Centre for Plant Sciences, School of Biology, Faculty of Biological Sciences, University of Leeds, Leeds, LS2 9JT, UK.
College of Forestry, Henan Agricultural University, Zhengzhou, 450002, China.
Plant Cell Environ. 2018 May;41(5):1083-1097. doi: 10.1111/pce.12960. Epub 2017 May 23.
The redox state of the apoplast is largely determined by ascorbate oxidase (AO) activity. The influence of AO activity on leaf acclimation to changing irradiance was explored in wild-type (WT) and transgenic tobacco (Nicotiana tobaccum) lines containing either high [pumpkin AO (PAO)] or low [tobacco AO (TAO)] AO activity at low [low light (LL); 250 μmol m s ] and high [high light (HL); 1600 μmol m s ] irradiance and following the transition from HL to LL. AO activities changed over the photoperiod, particularly in the PAO plants. AO activity had little effect on leaf ascorbate, which was significantly higher under HL than under LL. Apoplastic ascorbate/dehydroascorbate (DHA) ratios and threonate levels were modified by AO activity. Despite decreased levels of transcripts encoding ascorbate synthesis enzymes, leaf ascorbate increased over the first photoperiod following the transition from HL to LL, to much higher levels than LL-grown plants. Photosynthesis rates were significantly higher in the TAO leaves than in WT or PAO plants grown under HL but not under LL. Sub-sets of amino acids and fatty acids were lower in TAO and WT leaves than in the PAO plants under HL, and following the transition to LL. Light acclimation processes are therefore influenced by the apoplastic as well as chloroplastic redox state.
质外体的氧化还原状态在很大程度上取决于抗坏血酸氧化酶 (AO) 活性。研究了 AO 活性对野生型 (WT) 和含有高 [南瓜 AO (PAO)] 或低 [烟草 AO (TAO)] AO 活性的转基因烟草 (Nicotiana tobaccum) 系叶片对不断变化的光照适应的影响,这些系在低光 [低光 (LL); 250 μmol m ² s ] 和高光 [高光 (HL); 1600 μmol m ² s ] 辐照度下,并在从 HL 到 LL 的过渡后。AO 活性在光周期中发生变化,特别是在 PAO 植物中。AO 活性对叶片抗坏血酸几乎没有影响,HL 下的抗坏血酸明显高于 LL。质外体抗坏血酸/脱氢抗坏血酸 (DHA) 比和 threonate 水平受 AO 活性的影响。尽管编码抗坏血酸合成酶的转录物水平降低,但在从 HL 到 LL 的过渡后的第一个光周期中,叶片抗坏血酸增加,比在 LL 下生长的植物增加更多。在 HL 下生长的 TAO 叶片中的光合作用速率明显高于 WT 或 PAO 植物,但在 LL 下则不然。与 PAO 植物相比,HL 下 TAO 和 WT 叶片中的氨基酸和脂肪酸亚组较低,并且在过渡到 LL 后也是如此。因此,光适应过程受质外体和叶绿体氧化还原状态的影响。