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      Biochemical adaptations of four submerged macrophytes under combined exposure to hypoxia and hydrogen sulphide

      research-article
      1 , 2 , 3 , * , 2 , 4
      PLoS ONE
      Public Library of Science

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          Abstract

          A hydroponic experiment was performed to investigate the stress responses and biochemical adaptations of four submerged macrophytes, Potamogeton crispus, Myriophyllum spicatum, Egeria densa, and Potamogeton oxyphyllus, to the combined exposure of hypoxia and hydrogen sulfide (H 2S, provided by NaHS). The investigated plants were subjected to a control, hypoxia, 0.1mM NaHS, 0.5 mM NaHS, 0.1 mM NaHS+hypoxia and 0.5 mM NaHS+hypoxia conditions. All experimental plants grew optimally under control, hypoxic and NaHS conditions in comparison to that grown in the combined exposure of hypoxia and hydrogen sulfide. For P. crispus and M. spicatum, significant decreases of total chlorophyll and increases in oxidative stress (measured by hydrogen peroxide, H 2O 2, and malondialdehyde, MDA) were observed with exposure to both sulfide concentrations. However, the decrease in catalase (CAT) and ascorbate peroxidase (APX) from exposure to 0.5 mM NaHS suggests that the function of the protective enzymes reached their limit under these conditions. In contrast, for E. densa and P. oxyphyllus, the higher activities of the three antioxidative enzymes and their anaerobic respiration abilities (ADH activity) resulted in higher tolerance and susceptibility under high sulfide concentrations.

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          Most cited references52

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          The water culture method of growing plants without soil

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            Oxidative modifications to cellular components in plants.

            Reactive oxygen species (ROS) and reactive nitrogen species (RNS) are produced in many places in living cells and at an increased rate during biotic or abiotic stress. ROS and RNS participate in signal transduction, but also modify cellular components and cause damage. We first look at the most common ROS and their properties. We then consider the ways in which the cell can regulate their production and removal. We critically assess current knowledge about modifications of polyunsaturated fatty acids (PUFAs), DNA, carbohydrates, and proteins and illustrate this knowledge with case stories wherever possible. Some oxidative breakdown products, e.g., from PUFA, can cause secondary damage. Other oxidation products are secondary signaling molecules. We consider the fate of the modified components, the energetic costs to the cell of replacing such components, as well as strategies to minimize transfer of oxidatively damaged components to the next generation.
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              Understanding oxidative stress and antioxidant functions to enhance photosynthesis.

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                Author and article information

                Contributors
                Role: ConceptualizationRole: Data curationRole: Formal analysisRole: InvestigationRole: MethodologyRole: Writing – original draftRole: Writing – review & editing
                Role: ConceptualizationRole: Data curationRole: Funding acquisitionRole: MethodologyRole: ResourcesRole: SupervisionRole: Writing – original draftRole: Writing – review & editing
                Role: ConceptualizationRole: Data curationRole: Formal analysisRole: MethodologyRole: SupervisionRole: Writing – original draftRole: Writing – review & editing
                Role: Editor
                Journal
                PLoS One
                PLoS ONE
                plos
                plosone
                PLoS ONE
                Public Library of Science (San Francisco, CA USA )
                1932-6203
                4 August 2017
                2017
                : 12
                : 8
                : e0182691
                Affiliations
                [1 ] Graduate School of Science and Engineering, Saitama University, 255 Shimo-okubo, Sakura-ku, Saitama, Japan
                [2 ] Department of Environmental Science and Technology, Saitama University, 255 Shimo-okubo, Sakura-ku, Saitama, Japan
                [3 ] Research Institute of Chuo University, Kasuga, Bunkyo, Tokyo, Japan
                [4 ] Department of Agronomy, Bangladesh Agricultural University, Mymensingh, Bangladesh
                Universidade de Lisboa Instituto Superior de Agronomia, PORTUGAL
                Author notes

                Competing Interests: The authors have declared that no competing interests exist.

                Author information
                http://orcid.org/0000-0002-1491-0481
                Article
                PONE-D-17-16364
                10.1371/journal.pone.0182691
                5544214
                28777815
                6fb6377d-173e-4267-ad30-6bdd7455c4dd
                © 2017 Parveen et al

                This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

                History
                : 27 April 2017
                : 21 July 2017
                Page count
                Figures: 2, Tables: 2, Pages: 12
                Funding
                Funded by: funder-id http://dx.doi.org/10.13039/501100001691, Japan Society for the Promotion of Science;
                Award ID: 15H04045
                Award Recipient :
                The author(s) received no specific funding for this work.
                Categories
                Research Article
                Physical Sciences
                Chemistry
                Chemical Compounds
                Sulfides
                Biology and Life Sciences
                Cell Biology
                Hypoxia
                Biology and Life Sciences
                Cell Biology
                Cellular Structures and Organelles
                Chloroplasts
                Chlorophyll
                Biology and Life Sciences
                Cell Biology
                Plant Cell Biology
                Chloroplasts
                Chlorophyll
                Biology and Life Sciences
                Plant Science
                Plant Cell Biology
                Chloroplasts
                Chlorophyll
                Biology and Life Sciences
                Cell Biology
                Cellular Types
                Plant Cells
                Chloroplasts
                Chlorophyll
                Biology and Life Sciences
                Cell Biology
                Plant Cell Biology
                Plant Cells
                Chloroplasts
                Chlorophyll
                Biology and Life Sciences
                Plant Science
                Plant Cell Biology
                Plant Cells
                Chloroplasts
                Chlorophyll
                Physical Sciences
                Materials Science
                Materials by Attribute
                Pigments
                Organic Pigments
                Chlorophyll
                Physical Sciences
                Chemistry
                Chemical Compounds
                Acids
                Ketones
                Pyruvate
                Physical Sciences
                Chemistry
                Chemical Elements
                Hydrogen
                Biology and Life Sciences
                Biochemistry
                Enzymology
                Enzymes
                Peroxidases
                Biology and Life Sciences
                Biochemistry
                Proteins
                Enzymes
                Peroxidases
                Earth Sciences
                Marine and Aquatic Sciences
                Water Quality
                Dissolved Oxygen
                Biology and Life Sciences
                Biochemistry
                Antioxidants
                Custom metadata
                All relevant data are within the paper.

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