Nitric Oxide Enhances Desiccation Tolerance of Recalcitrant Antiaris toxicaria Seeds via Protein S-Nitrosylation and Carbonylation
Bai, Xuegui1; Yang, Liming3; Tian, Meihua1; Chen, Jinhui2; Shi, Jisen2; Yang, Yongping1; Hu, Xiangyang1
刊名PLOS ONE
2011-06-02
卷号6期号:6页码:e20714
关键词Hydrogen-peroxide Abscisic-acid Disease Resistance Hydroxyl Radicals Oxidative Stress Stomatal Closure Active Oxygen Cell-walls Zea-mays Arabidopsis
ISSN号1932-6203
DOI10.1371/journal.pone.0020714
通讯作者huxiangyang@mail.kib.ac.cn
文献子类Article
英文摘要The viability of recalcitrant seeds is lost following stress from either drying or freezing. Reactive oxygen species (ROS) resulting from uncontrolled metabolic activity are likely responsible for seed sensitivity to drying. Nitric oxide (NO) and the ascorbate-glutathione cycle can be used for the detoxification of ROS, but their roles in the seed response to desiccation remain poorly understood. Here, we report that desiccation induces rapid accumulation of H2O2, which blocks recalcitrant Antiaris toxicaria seed germination; however, pretreatment with NO increases the activity of antioxidant ascorbate-glutathione pathway enzymes and metabolites, diminishes H2O2 production and assuages the inhibitory effects of desiccation on seed germination. Desiccation increases the protein carbonylation levels and reduces protein S-nitrosylation of these antioxidant enzymes; these effects can be reversed with NO treatment. Antioxidant protein S-nitrosylation levels can be further increased by the application of S-nitrosoglutathione reductase inhibitors, which further enhances NO-induced seed germination rates after desiccation and reduces desiccation-induced H2O2 accumulation. These findings suggest that NO reinforces recalcitrant seed desiccation tolerance by regulating antioxidant enzyme activities to stabilize H2O2 accumulation at an appropriate concentration. During this process, protein carbonylation and S-nitrosylation patterns are used as a specific molecular switch to control antioxidant enzyme activities.
学科主题Biology
WOS关键词HYDROGEN-PEROXIDE ; ABSCISIC-ACID ; DISEASE RESISTANCE ; HYDROXYL RADICALS ; OXIDATIVE STRESS ; STOMATAL CLOSURE ; ACTIVE OXYGEN ; CELL-WALLS ; ZEA-MAYS ; ARABIDOPSIS
WOS研究方向Science & Technology - Other Topics
语种英语
WOS记录号WOS:000291310600027
资助机构CAS; National Science Foundation[30871704, 30971452, 30900871]
公开日期2012-03-16
内容类型期刊论文
源URL[http://ir.kib.ac.cn:8080/handle/151853/3832]  
专题昆明植物研究所_中国科学院东亚植物多样性与生物地理学重点实验室
作者单位1.Chinese Acad Sci, Inst Tibet Plateau Res Kunming, Kunming Inst Bot, Key Lab Biodivers & Biogeog, Kunming, Peoples R China
2.Nanjing Forestry Univ, Minist Educ, Key Lab Forest Genet & Biotechnol, Nanjing, Peoples R China
3.Huaiyin Normal Univ, Sch Life Sci, Huaian, Peoples R China
推荐引用方式
GB/T 7714
Bai, Xuegui,Yang, Liming,Tian, Meihua,et al. Nitric Oxide Enhances Desiccation Tolerance of Recalcitrant Antiaris toxicaria Seeds via Protein S-Nitrosylation and Carbonylation[J]. PLOS ONE,2011,6(6):e20714.
APA Bai, Xuegui.,Yang, Liming.,Tian, Meihua.,Chen, Jinhui.,Shi, Jisen.,...&Hu, Xiangyang.(2011).Nitric Oxide Enhances Desiccation Tolerance of Recalcitrant Antiaris toxicaria Seeds via Protein S-Nitrosylation and Carbonylation.PLOS ONE,6(6),e20714.
MLA Bai, Xuegui,et al."Nitric Oxide Enhances Desiccation Tolerance of Recalcitrant Antiaris toxicaria Seeds via Protein S-Nitrosylation and Carbonylation".PLOS ONE 6.6(2011):e20714.
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