| Literature DB >> 28473838 |
Saurabh Pandey1,2, Dhirendra Fartyal1, Aakrati Agarwal1,3, Tushita Shukla4, Donald James1, Tanushri Kaul1, Yogesh K Negi5, Sandeep Arora6, Malireddy K Reddy1.
Abstract
One of the most significant manifestations of environmental stress in plants is the increased production of Reactive Oxygen Species (ROS). These ROS, if allowed to accumulate unchecked, can lead to cellular toxicity. A battery of antioxidant molecules is present in plants for keeping ROS levels under check and to maintain the cellular homeostasis under stress. Ascorbate peroxidase (APX) is a key antioxidant enzyme of such scavenging systems. It catalyses the conversion of H2O2 into H2O, employing ascorbate as an electron donor. The expression of APX is differentially regulated in response to environmental stresses and during normal plant growth and development as well. Different isoforms of APX show differential response to environmental stresses, depending upon their sub-cellular localization, and the presence of specific regulatory elements in the upstream regions of the respective genes. The present review delineates role of APX isoforms with respect to different types of abiotic stresses and its importance as a key antioxidant enzyme in maintaining cellular homeostasis.Entities:
Keywords: APX; ASC–GSH pathway; ROS; abiotic stress; antioxidant
Year: 2017 PMID: 28473838 PMCID: PMC5397514 DOI: 10.3389/fpls.2017.00581
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
Figure 1Localization of APX enzymes and detoxification of ROS in subcellular compartments.
Localization of different APX isoforms in .
| OsAPx1 | Cytosolic | Os03g17690 | 3 | Cellular response to oxidative stress, ROS salinity stress tolerance, pathogen attack | Mittler and Zilinskas, |
| OsAPx2 | Os07g49400 | 7 | |||
| OsAPx3 | Peroxisomal | Os04g14680 | 4 | Salinity and drought tolerance | Teixeira et al., |
| OsAPx4 | Os08g43560 | 8 | |||
| OsAPx5 | Stromal | Os12g07830 | 12 | Response to salinity stress | Yoshimura et al., |
| OsAPx6 | Os12g07820 | 12 | |||
| OsAPx7 | Os04g35520 | 4 | |||
| OsAPx8 | Thylakoid | Os02g34810 | 2 | Involve in water- water cycle | Hong et al., |
Role of different APX isoforms in plant abiotic stress tolerance.
| 1 | NA | Salt/Chilling | Wang et al., | ||||
| 2 | Salt/Paraquat | APX was up-regulated in multiple stresses | Lee Y. P. et al., | ||||
| 3 | Salt | APX was up-regulated in salt stress | Lu et al., | ||||
| 4 | Drought/Salt | Drought and salt tolerance during vegetative stage | Li et al., | ||||
| 5 | Salt | Protection against salt stress | Li et al., | ||||
| 6 | Salt/Drought | Qian et al., | |||||
| 7 | NA | Salt | Enhances the tolerance to salinity | Diaz-Vivancos et al., | |||
| 8 | Salt | Enhances the tolerance to salinity | Liu et al., | ||||
| 9 | Salt | Chen et al., | |||||
| 10 | NA | Salt | Yan et al., | ||||
| 11 | Heat stress | APX up-regulated in heat stress | Shi et al., | ||||
| 12 | NA | Heat/M-V | Up-regulated in multiple environment stresses | Tang et al., | |||
| 13 | High temperature | Up-regulated during Heat stress | Hirooka et al., | ||||
| 14 | Heat Stress | Chiang et al., | |||||
| 15 | NA | Cold | Kornyeyev et al., | ||||
| 16 | Chilling stress. | Tolerance against chilling stress. | Duan et al., | ||||
| 17 | NA | Cold | Improved tolerance against cold stress. | Xu et al., | |||
| 18 | Water stress | Stronger resistance to flood tolerance | Chiang et al., | ||||
| 19 | NA | Oxidative stress | Wang et al., | ||||
| 20 | NA | Photo-oxidative | Up-regulated | Yabuta et al., | |||
| 21 | M-V stress | Kwon et al., | |||||
| 22 | NA | High light stress | Role in removal of H2O2 generated during photosynthesis | Danna et al., | |||
| 23 | Photo-oxidation | Resistance to photo-oxidative and nitric oxide stresses | Murgia et al., | ||||
| 24 | NA | M-V and Chilling | APX highly up-regulated in chloroplast | Lim et al., | |||
| 25 | NA | Oxidative stress | Camillo et al., | ||||
| 26 | NA | Biotic | Tolerance to bacterial blight | Jiang et al., | |||
| 27 | NA | NA | Does not provide protection against ozone | Torsethaugen et al., | |||
| 28 | NA | NA | Dispensable for | Narendra et al., | |||
Figure 2Schematic representation of Foyer-Halliwell-Asada Pathway.