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  1. Buch ; Online ; E-Book: Nitric oxide in plant biology

    Singh, Vijay Pratap

    an ancient molecule with emerging roles

    2022  

    Verfasserangabe edited by Vijay Pratap Singh [und 4 weiteren]
    Sprache Englisch
    Umfang 1 Online-Ressource (xxxiv, 813 Seiten), Illustrationen
    Erscheinungsort London ; Elsevier Academic Press
    Erscheinungsland Vereinigtes Königreich
    Dokumenttyp Buch ; Online ; E-Book
    Bemerkung Zugriff für angemeldete ZB MED-Nutzerinnen und -Nutzer
    HBZ-ID HT021087772
    ISBN 978-0-128-18798-2 ; 9781128187975 ; 0-128-18798-0 ; 1128187973
    Datenquelle ZB MED Katalog Medizin, Gesundheit, Ernährung, Umwelt, Agrar

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  2. Buch ; Online ; E-Book: Plant Responses to Nanomaterials

    Singh, Vijay Pratap

    Recent Interventions, and Physiological and Biochemical Responses

    (Nanotechnology in the Life Sciences,)

    2021  

    Abstract: The population of the world continues to increase at an alarming rate. The trouble linked with overpopulation ranges from food and water scarcity to inadequacy of space for organisms. Overpopulation is also linked with several other demographic hazards, ... ...

    Verfasserangabe edited by Vijay Pratap Singh, Samiksha Singh, Durgesh Kumar Tripathi, Sheo Mohan Prasad, Devendra Kumar Chauhan
    Serientitel Nanotechnology in the Life Sciences,
    Abstract The population of the world continues to increase at an alarming rate. The trouble linked with overpopulation ranges from food and water scarcity to inadequacy of space for organisms. Overpopulation is also linked with several other demographic hazards, for instance, population blooming will not only result in exhaustion of natural repositories, but it will also induce intense pressure on the world economy. Today nanotechnology is often discussed as a key discipline of research but it has positive and negative aspects. Also, due to industrialization and ever-increasing population, nano-pollution has been an emerging topic among scientists for investigation and debate. Nanotechnology measures any substance on a macromolecular scale, molecular scale, and even atomic scale. More importantly, nanotechnology deals with the manipulation and control of any matter at the dimension of a single nanometer. Nanotechnology and nanoparticles (NPs) play important roles in sustainable development and environmental challenges as well. NPs possess both harmful and beneficial effects on the environment and its harboring components, such as microbes, plants, and humans. There are many beneficial impacts exerted by nanoparticles, however, including their role in the management of waste water and soil treatment, cosmetics, food packaging, agriculture, biomedicines, pharmaceuticals, renewable energies, and environmental remedies. Conversely, NPs also show some toxic effects on microbes, plants, as well as human beings. It has been reported that use of nanotechnological products leads to the more accumulation of NPs in soil and aquatic ecosystems, which may be detrimental for living organisms. Further, toxic effects of NPs on microbes, invertebrates, and aquatic organisms including algae, has been measured. Scientists have also reported on the negative impact of NPs on plants by discussing the delivery of NPs in plants. Additionally, scientists have also showed that NPs interact with plant cells, which results in alterations in growth, biological function, gene expression, and development. Thus, there has been much investigated and reported on NPs and plant interactions in the last decade. This book discusses the most recent work on NPs and plant interaction, which should be useful for scientists working in nanotechnology across a wide variety of disciplines.
    Schlagwörter Plant biotechnology ; Plants/Development ; Plant diseases ; Nanotechnology ; Plant Biotechnology ; Plant Development ; Plant Pathology ; Materials nanoestructurats ; Nanopartícules ; Fitoquímica ; Fisiologia vegetal
    Thema/Rubrik (Code) 297.05
    Sprache Englisch
    Umfang 1 online resource (339 pages) :, illustrations
    Ausgabenhinweis 1st ed. 2021.
    Verlag Springer International Publishing ; Imprint: Springer
    Erscheinungsort Cham
    Dokumenttyp Buch ; Online ; E-Book
    Bemerkung Zugriff für angemeldete ZB MED-Nutzerinnen und -Nutzer
    ISBN 3-030-36740-1 ; 3-030-36739-8 ; 978-3-030-36740-4 ; 978-3-030-36739-8
    DOI 10.1007/978-3-030-36740-4
    Datenquelle ZB MED Katalog Medizin, Gesundheit, Ernährung, Umwelt, Agrar

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  3. Buch ; Online ; E-Book: Plant ionomics

    Singh, Vijay Pratap / Siddiqui, Manzer H.

    sensing, signaling and regulation

    2023  

    Verfasserangabe edited by Vijay Pratap Singh and Manzer H. Siddiqui
    Schlagwörter Plant molecular biology ; Plants/Nutrition
    Thema/Rubrik (Code) 572.82
    Sprache Englisch
    Umfang 1 online resource (273 pages)
    Verlag John Wiley & Sons, Inc
    Erscheinungsort Hoboken, New Jersey
    Dokumenttyp Buch ; Online ; E-Book
    Bemerkung Zugriff für angemeldete ZB MED-Nutzerinnen und -Nutzer
    ISBN 1-119-80304-7 ; 1-119-80302-0 ; 9781119803010 ; 978-1-119-80304-1 ; 978-1-119-80302-7 ; 1119803012
    Datenquelle ZB MED Katalog Medizin, Gesundheit, Ernährung, Umwelt, Agrar

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  4. Buch: Mechanisms behind phytohormonal signalling and crop abiotic stress tolerance

    Singh, Vijay Pratap

    (Environmental science, engineering and technology)

    2017  

    Verfasserangabe Vijay Pratap Singh, Samiksha Singh and Sheo Mohan Prasad, editors
    Serientitel Environmental science, engineering and technology
    Sprache Englisch
    Umfang xii, 391 Seiten
    Verlag Nova Science Publishers
    Erscheinungsort New York
    Erscheinungsland Vereinigte Staaten
    Dokumenttyp Buch
    HBZ-ID HT019210388
    ISBN 978-1-53610-695-4 ; 9781536107135 ; 1-53610-695-X ; 1536107131
    Datenquelle Katalog ZB MED Ernährung, Umwelt, Agrar

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  5. Buch ; Online ; E-Book: Pesticides in crop production

    Srivastava, Prabhat Kumar / Singh, Vijay Pratap / Singh, Anita / Tripathi, Durgesh Kumar / Singh, Samiksha / Prasad, Sheo Mohan / Chauhan, Devendra Kumar

    physiological and biochemical action

    2020  

    Verfasserangabe edited by Prabhat Kumar Srivastava, Vijay Pratap Singh, Anita Singh, Durgesh Kumar Tripathi, Samiksha Singh, Sheo Mohan Prasad, Devendra Kumar Chauhan
    Schlagwörter Pesticides / Analysis ; Pesticides / Environmental aspects ; Pesticides / Toxicology ; Agricultural pests / Control ; Pflanzenproduktion ; Pestizid
    Schlagwörter Biozid ; Pflanzen
    Sprache Englisch
    Umfang 1 Online-Ressource (xx, 293 Seiten), Illustrationen
    Verlag Wiley
    Erscheinungsort Hoboken, NJ
    Erscheinungsland Vereinigte Staaten
    Dokumenttyp Buch ; Online ; E-Book
    Anmerkung Includes bibliographical references and index
    Bemerkung Zugriff für angemeldete ZB MED-Nutzerinnen und -Nutzer
    HBZ-ID HT020548145
    ISBN 978-1-119-43220-3 ; 9781119432197 ; 1-119-43220-0 ; 1119432197
    DOI 10.1002/9781119432241
    Datenquelle ZB MED Katalog Medizin, Gesundheit, Ernährung, Umwelt, Agrar

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  6. Buch: Reactive oxygen species in plants

    Singh, Vijay Pratap / Singh, Samiksha / Tripathi, Durgesh Kumar / Prasad, Sheo Mohan / Chauhan, Devendra Kumar

    boon or bane - revisiting the role of ROS

    2018  

    Verfasserangabe edited by Vijay Pratap Singh (Govt. Ramanuj Pratap Singhdev Post Graduate College, Chhattisgarh, India), Samiksha Singh (Ranjan Plant Physiology and Biochemistry Laboratory, Department of Botany, University of Allahabad, Allahabad, India), Durgesh Kumar Tripathi (Centre of Advanced Study in Botany, Banaras Hindu University, Varanasi, India), Sheo Mohan Prasad (Ranjan Plant Physiology and Biochemistry Laboratory, Department of Botany, University of Allahabad, Allahabad, India), Devendra Kumar Chauhan (D.D. Pant Interdisciplinary Research Laboratory, Department of Botany, University of Allahabad, Allahabad, India)
    Sprache Englisch
    Umfang ix, 339 Seiten, Illustrationen, Diagramme
    Ausgabenhinweis First edition
    Verlag Wiley
    Erscheinungsort Hoboken, NJ
    Erscheinungsland Vereinigte Staaten
    Dokumenttyp Buch
    HBZ-ID HT019214091
    ISBN 978-1-119-28729-2 ; 1-119-28729-4
    Datenquelle Katalog ZB MED Ernährung, Umwelt, Agrar

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  7. Artikel ; Online: Nitric oxide acts upstream of indole-3-acetic acid in ameliorating arsenate stress in tomato seedlings.

    Singh, Pooja / Jaiswal, Saumya / Tripathi, Durgesh Kumar / Singh, Vijay Pratap

    Plant physiology and biochemistry : PPB

    2024  Band 208, Seite(n) 108461

    Abstract: After their discovery, nitric oxide (NO) and indole-3-acetic acid (IAA) have been reported as game-changing cellular messengers for reducing abiotic stresses in plants. But, information regarding their shared signaling in regulating metal stress is still ...

    Abstract After their discovery, nitric oxide (NO) and indole-3-acetic acid (IAA) have been reported as game-changing cellular messengers for reducing abiotic stresses in plants. But, information regarding their shared signaling in regulating metal stress is still unclear. Herein, we have investigated about the joint role of NO and IAA in mitigation of arsenate [As(V)] toxicity in tomato seedlings. Arsenate being a toxic metalloid increases the NPQ level and cell death while decreasing the biomass accumulation, photosynthetic pigments, chlorophyll a fluorescence, endogenous NO content in tomato seedlings. However, application of IAA or SNP to the As(V) stressed seedlings improved growth together with less accumulation of arsenic and thus, preventing cell death. Interestingly, addition of c-PTIO, {2-(4-carboxyphenyl)-4, 4, 5, 5-tetramethylimidazoline-1-oxyl-3-oxide, a scavenger of NO} and 2, 3, 5-triidobenzoic acid (TIBA, an inhibitor of polar auxin transport) further increased cell death and inhibited activity of GST, leading to As(V) toxicity. However, addition of IAA to SNP and TIBA treated seedlings reversed the effect of TIBA resulting into decreased As(V) toxicity. These findings demonstrate that IAA plays a crucial and advantageous function in NO-mediated reduction of As(V) toxicity in seedlings of tomato. Overall, this study concluded that IAA might be acting as a downstream signal for NO-mediated reduction of As(V) toxicity in tomato seedlings.
    Mesh-Begriff(e) Nitric Oxide/metabolism ; Arsenates/toxicity ; Seedlings/metabolism ; Solanum lycopersicum ; Chlorophyll A/metabolism ; Indoleacetic Acids/metabolism ; Antioxidants/metabolism ; Triiodobenzoic Acids
    Chemische Substanzen Nitric Oxide (31C4KY9ESH) ; 2,3,5-triiodobenzoic acid (H575A4059Q) ; arsenic acid (N7CIZ75ZPN) ; Arsenates ; indoleacetic acid (6U1S09C61L) ; Chlorophyll A (YF5Q9EJC8Y) ; Indoleacetic Acids ; Antioxidants ; Triiodobenzoic Acids
    Sprache Englisch
    Erscheinungsdatum 2024-02-22
    Erscheinungsland France
    Dokumenttyp Journal Article
    ZDB-ID 742978-2
    ISSN 1873-2690 ; 0981-9428
    ISSN (online) 1873-2690
    ISSN 0981-9428
    DOI 10.1016/j.plaphy.2024.108461
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  8. Artikel ; Online: Unlocking a 'lock-key' mechanism governing pollen-pistil interactions.

    Gupta, Ravi / Tripathi, Durgesh Kumar / Singh, Vijay Pratap

    Trends in plant science

    2023  Band 29, Heft 4, Seite(n) 394–396

    Abstract: Pollen-pistil interactions ensure genetic diversity and shape the reproductive success of plants. Lan et al. recently revealed that the interaction among various receptor-like kinases, cell-wall proteins, and stigmatic RALF peptides (sRALFs) or pollen ... ...

    Abstract Pollen-pistil interactions ensure genetic diversity and shape the reproductive success of plants. Lan et al. recently revealed that the interaction among various receptor-like kinases, cell-wall proteins, and stigmatic RALF peptides (sRALFs) or pollen RALF peptides (pRALFs) on the stigma surface govern the penetration of pollen tubes in members of the Brassicaceae.
    Mesh-Begriff(e) Brassicaceae ; Pollen/genetics ; Pollen/metabolism ; Pollen Tube ; Reproduction ; Peptides/metabolism ; Flowers/genetics ; Flowers/metabolism
    Chemische Substanzen Peptides
    Sprache Englisch
    Erscheinungsdatum 2023-12-16
    Erscheinungsland England
    Dokumenttyp Journal Article
    ZDB-ID 1305448-x
    ISSN 1878-4372 ; 1360-1385
    ISSN (online) 1878-4372
    ISSN 1360-1385
    DOI 10.1016/j.tplants.2023.12.002
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  9. Artikel ; Online: Implication of nitric oxide and hydrogen sulfide signalling in alleviating arsenate stress in rice seedlings.

    Mishra, Vipul / Singh, Vijay Pratap

    Environmental pollution (Barking, Essex : 1987)

    2021  Band 291, Seite(n) 117958

    Abstract: Nitric oxide (NO) and hydrogen sulfide ( ... ...

    Abstract Nitric oxide (NO) and hydrogen sulfide (H
    Mesh-Begriff(e) Arsenates ; Hydrogen Sulfide/toxicity ; Nitric Oxide ; Oryza ; Seedlings
    Chemische Substanzen Arsenates ; Nitric Oxide (31C4KY9ESH) ; Hydrogen Sulfide (YY9FVM7NSN)
    Sprache Englisch
    Erscheinungsdatum 2021-08-13
    Erscheinungsland England
    Dokumenttyp Journal Article
    ZDB-ID 280652-6
    ISSN 1873-6424 ; 0013-9327 ; 0269-7491
    ISSN (online) 1873-6424
    ISSN 0013-9327 ; 0269-7491
    DOI 10.1016/j.envpol.2021.117958
    Datenquelle MEDical Literature Analysis and Retrieval System OnLINE

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  10. Artikel: Implication of nitric oxide and hydrogen sulfide signalling in alleviating arsenate stress in rice seedlings

    Mishra, Vipul / Singh, Vijay Pratap

    Environmental pollution. 2021 Dec. 15, v. 291

    2021  

    Abstract: Nitric oxide (NO) and hydrogen sulfide (H₂S) since their discovery have proven to be game changing molecules in alleviating abiotic stress. They individually play role in plant stress management while the pathways of stress regulation through their ... ...

    Abstract Nitric oxide (NO) and hydrogen sulfide (H₂S) since their discovery have proven to be game changing molecules in alleviating abiotic stress. They individually play role in plant stress management while the pathways of stress regulation through their crosstalk remain elusive. The current study focuses on investigating the interplay of NO and H₂S signalling in the amelioration of arsenate As(V) toxicity in rice seedlings and managing its growth, photosynthesis, sucrose and proline metabolism. Results show that As(V) exposure declined fresh weight (biomass) due to induced cell death in root tips. Moreover, a diminished RuBisCO activity, decline in starch content with high proline dehydrogenase activity and increased total soluble sugars content was observed which further intensified in the presence of Nω-nitro-L-arginine methyl ester hydrochloride (L-NAME, an inhibitor of nitric oxide synthase-like activity), and DL-propargylglycine (PAG, an inhibitor of cysteine desulfhydrase activity). These results correlate with lower endogenous level of NO and H₂S. Addition of L-NAME increased As(V) toxicity. Interestingly, addition of SNP reverses effect of L-NAME suggesting that endogenous NO has a role in mitigating As(V) toxicity. Similarly, exogenous H₂S also significantly alleviated As(V) stress, while PAG further stimulated As(V) toxicity. Furthermore, application of H₂S in the presence of L – NAME and NO in the presence of PAG could still mitigate As(V) toxicity, suggesting that endogenous NO and H₂S could independently mitigate As(V) stress.
    Schlagwörter abiotic stress ; arsenates ; biomass ; cell death ; cystathionine gamma-lyase ; decline ; hydrogen sulfide ; nitric oxide ; oxidoreductases ; photosynthesis ; plant stress ; pollution ; proline ; ribulose-bisphosphate carboxylase ; rice ; starch ; stress management ; sucrose ; toxicity
    Sprache Englisch
    Erscheinungsverlauf 2021-1215
    Erscheinungsort Elsevier Ltd
    Dokumenttyp Artikel
    ZDB-ID 280652-6
    ISSN 1873-6424 ; 0013-9327 ; 0269-7491
    ISSN (online) 1873-6424
    ISSN 0013-9327 ; 0269-7491
    DOI 10.1016/j.envpol.2021.117958
    Datenquelle NAL Katalog (AGRICOLA)

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