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ROS-induced dramatic lipid changes in . | LitMetric

ROS-induced dramatic lipid changes in .

Redox Rep

Engineering Research Center of Ecology and Agricultural Use of Wetland, Ministry of Education/Hubei Key Laboratory of Waterlogging Disaster and Wetland Agriculture, Jingzhou, People's Republic of China.

Published: December 2021

The beneficial role of ROS was probably in promoting intercellular communication by modifying membrane constituents [Liang D. A salutary role of reactive oxygen species in intercellular tunnel-mediated communication. Front Cell Dev Biol. 2018;6:2]. We investigated how the membrane lipids were responding to ROS and ROS inhibitors. To examine how ROS affected the lipid profiles, we used thin-layer chromatography to characterize lipid profiles in plants. Then, the confocal microscopy imaging was used to confirm the change of membrane lipid in a plasma membrane marker line exposed to ROS and ROS inhibitors. We found the relative contents of most lipids in HO-treated plants were increased in roots, rather than in shoots. The increased fluorescent signal of membrane marker induced by HO was mainly enriched in the conductive parts of roots. Several ROS inhibitors also strongly affected the lipid profiles. Among them, diethyldithiocarbamate (DDC) can progressively change the lipid profiles with treatment going on. Membrane marker signal was mainly accumulated in the root tips and epidermal cells after treatment by DDC. HO may enhance intercellular communication by inducing different lipid species in the conductive parts of roots. The lipid profiles were widely responding to various ROS reagents and might play a role in intercellular signaling.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8583927PMC
http://dx.doi.org/10.1080/13510002.2021.2002001DOI Listing

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