| Literature DB >> 27200043 |
Ina Saxena1, Sandhya Srikanth1, Zhong Chen1.
Abstract
It is well established that oxidative stress is an important cause of cellular damage. During stress conditions, plants have evolved regulatory mechanisms to adapt to various environmental stresses. One of the consequences of stress is an increase in the cellular concentration of reactive oxygen species, which is subsequently converted to H2O2. H2O2 is continuously produced as the byproduct of oxidative plant aerobic metabolism. Organelles with a high oxidizing metabolic activity or with an intense rate of electron flow, such as chloroplasts, mitochondria, or peroxisomes are major sources of H2O2 production. H2O2 acts as a versatile molecule because of its dual role in cells. Under normal conditions, H2O2 immerges as an important factor during many biological processes. It has been established that it acts as a secondary messenger in signal transduction networks. In this review, we discuss potential roles of H2O2 and other signaling molecules during various stress responses.Entities:
Keywords: H2O2; ROS; abscisic acid; biotic/abiotic stress; nitric oxide; phytohormones
Year: 2016 PMID: 27200043 PMCID: PMC4848386 DOI: 10.3389/fpls.2016.00570
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
Recent studies showing the interrelation between H2O2 and its interaction with signaling molecules.
| Hormone and interacting molecule | Plant | Interaction with H2O2 | Reference |
|---|---|---|---|
| Nitric oxide | Elicitation of SA for either H2O2 or NO was independent, and the elicited H2O2 or NO could act independently or synergistically to induce Sal B accumulation in SA-elicited cells. | ||
| Salicylic acid | Mung bean | Pretreatment of mung bean explants with N, | |
| Ethylene | Tomato | Ethylene is a potentiator of the camptothecin-induced oxidative burst and subsequent PCD in tomato cells. | |
| Abscisic acid | Maize | H2O2 pretreatment may alleviate water loss and induce osmotic stress resistance by increasing the levels of soluble sugars, proline, and polyamines thus ABA and H2O2 production slightly decrease in maize seedlings under osmotic stress. | |
| Salicylic acid and nitric oxide | Wheat | SA and NO pretreatment reduces H2O2 level in wheat | |
| Jasmonate | Not applicable | Among the jasmonates, only 12-oxo phytodienoic acid (OPDA) suppressed H2O2-induced cytotoxicity. OPDA pretreatment also inhibited the H2O2-induced ROS increase and mitochondrial membrane potential decrease. | |
| Ethylene | H2O2 and ethylene interplay has an effect on AtERF73/HRE1 and ADH1 expression during the early stages of hypoxia signaling. | ||
| Abscisic acid and Calcium | ABA, H2O2, and Ca2+-induced stomatal closing were impaired in |