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ROS Are Good.

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TLDR
This Opinion focuses on the possibility that ROS are beneficial to plants, supporting cellular proliferation, physiological function, and viability, and that maintaining a basal level of ROS in cells is essential for life.
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This article is published in Trends in Plant Science.The article was published on 2017-01-01 and is currently open access. It has received 1828 citations till now.

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The Superoxide Dismutase Gene Family in Nicotiana tabacum: Genome-Wide Identification, Characterization, Expression Profiling and Functional Analysis in Response to Heavy Metal Stress

TL;DR: The qPCR results indicated specific spatial and temporal expression patterns of the NtSOD gene family in different tissues and developmental stages, and this gene family played an important role in protecting against heavy metal stress.
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Molecular Mechanisms of Autophagy Regulation in Plants and Their Applications in Agriculture.

TL;DR: In this article, the authors summarized recent progress in research on the molecular mechanisms of autophagy regulation, including the roles of protein kinases, phytohormones, second messengers, and transcriptional and epigenetic control, as well as the relationship between autophag and the 26S proteasome in model plants and crop species.
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The role of auxin in developmentally regulated programmed cell death in lace plant

TL;DR: It is concluded that auxin signaling is important for developmentally regulated PCD in lace plant leaves by disrupting several downstream features of the lace plant PCD signaling cascade and results in fewer or no perforations.
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Pharmacological inhibition of p38 potentiates antimicrobial peptide TP4-induced cell death in glioblastoma cells.

TL;DR: It is demonstrated for the first time that combinations of TP4 and p38 inhibitors have the potential to preferentially target glioblastoma cells, while sparing noncancerous neural cells.
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Pogostemon benghalensis essential oil inhibited the weed growth via causing oxidative damage

TL;DR: In this article, the authors evaluated the phytotoxic potential of Pogostemon oil in terms of oxidative stress on two weeds, viz. Avena fatua L. and Phalaris minor Retz.
References
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REACTIVE OXYGEN SPECIES: Metabolism, Oxidative Stress, and Signal Transduction

TL;DR: The mechanisms of ROS generation and removal in plants during development and under biotic and abiotic stress conditions are described and the possible functions and mechanisms for ROS sensing and signaling in plants are compared with those in animals and yeast.
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Reactive oxygen gene network of plants

TL;DR: In Arabidopsis, a network of at least 152 genes is involved in managing the level of ROS, and this network is highly dynamic and redundant, and encodes ROS-scavenging and ROS-producing proteins.
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ROS Function in Redox Signaling and Oxidative Stress

TL;DR: It is argued that redox biology, rather than oxidative stress, underlies physiological and pathological conditions.
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Regulation of cancer cell metabolism

TL;DR: Interest in the topic of tumour metabolism has waxed and waned over the past century, but it has become clear that many of the signalling pathways that are affected by genetic mutations and the tumour microenvironment have a profound effect on core metabolism, making this topic once again one of the most intense areas of research in cancer biology.
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Reactive Oxygen Species in Inflammation and Tissue Injury

TL;DR: The current review compiles the past and current research in the area of inflammation with particular emphasis on oxidative stress-mediated signaling mechanisms that are involved in inflammation and tissue injury.
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