Plant Physiology and Biochemistry2022,Vol.17114.DOI:10.1016/j.plaphy.2021.11.042

Potential use of a novel actinobacterial species to ameliorate tungsten nanoparticles induced oxidative damage in cereal crops

Selim, Samy AbdElgawad, Hamada Reyad, Ahmed Mohamed Alowaiesh, Bassam F. Hagagy, Nashwa Al-Sanea, Mohammad M. Alsharari, Salam S. Madany, Mahmoud M. Y.
Plant Physiology and Biochemistry2022,Vol.17114.DOI:10.1016/j.plaphy.2021.11.042

Potential use of a novel actinobacterial species to ameliorate tungsten nanoparticles induced oxidative damage in cereal crops

Selim, Samy 1AbdElgawad, Hamada 2Reyad, Ahmed Mohamed 3Alowaiesh, Bassam F. 1Hagagy, Nashwa 4Al-Sanea, Mohammad M. 1Alsharari, Salam S. 1Madany, Mahmoud M. Y.5
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作者信息

  • 1. Jouf Univ
  • 2. Beni Suef Univ
  • 3. Jazan Univ
  • 4. Univ Jeddah
  • 5. Cairo Univ
  • 折叠

Abstract

Tungsten nanoparticles (WNPs) could induce hazard impact on plant growth and development; however, no study investigated their phytotoxicity. On the other hand, plant growth-promoting bacteria (PGPB) can effectively reduce WNPs toxicity. To this end, Nocardiopsis sp. was isolated and employed to mitigate the phytotoxic effect of WNPs on three crops (wheat, barley, and oat). Soil contamination with WPNs induced the W accumulation in all tested crops, inhibited both growth and photosynthesis and induced oxidative damage. On the other hand, pre-inoculation with Nocardiopsis sp. significantly reduced W level in treated plants. Concomitantly, Nocardiopsis sp. strikingly mitigated the inhibitory effect of WNPs by augmenting both growth and reactive oxygen species (ROS) homeostasis. To cope with heavy metal stress, all the tested species orchestrated their antioxidant homeostasis through enhancing the production of antioxidant metabolites (e.g., phenolics, flavonoids and tocopherols) and elevated the activities of ROS-scavenging enzymes (e.g., APX, POX, CAT, as well as the enzymes involved in AsA/GSH cycle). Moreover, pre-inoculation with Nocardiopsis sp. improved the detoxification metabolism by enhancing the accumulation of phytochelatins (PCs), metallothionein (MTC) and glutathione-S-transferase (GST) in grasses grown in WNPs-contaminated soils. Overall, restrained ROS homeostasis and improved WNPs detoxification systems were the bases underlie the WNPs stress mitigating impact of Nocardiopsis sp treatment.

Key words

Tungsten toxicity/Nanoparticles/Antioxidants/Heavy metals/Phytochelatins/Metallothionein/GROWTH-PROMOTING RHIZOBACTERIA/PLANT-GROWTH/OXIDE NANOPARTICLES/LIPID-PEROXIDATION/SILVER NANOPARTICLES/CADMIUM TOLERANCE/HEAVY-METALS/NITRIC-OXIDE/STRESS/PHYTOTOXICITY

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出版年

2022
Plant Physiology and Biochemistry

Plant Physiology and Biochemistry

SCI
ISSN:0981-9428
被引量2
参考文献量105
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