538
Views
52
CrossRef citations to date
0
Altmetric
Articles

Effect of silicon nutrition on lipid peroxidation and antioxidant response of cucumber plants exposed to salinity stress

, &
Pages 639-653 | Received 03 Apr 2013, Accepted 29 Jun 2013, Published online: 06 Sep 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Sameen Salman, Laila Shahzad, Waqas-Ud-Din Khan, Umair Riaz, Faiza Sharif, Arifa Tahir, Muhammad Umar Hayyat, Abid Hussain & Muhammad Tariq Saeed. (2023) Influence of silicon doped biochar on germination and defense mechanisms of pea (Pisum sativum L.) under copper and salinity stresses. Journal of Plant Nutrition 46:16, pages 3933-3953.
Read now
Saber Avestan, Mahmood Ghasemnezhad, Masoud Esfahani & Allen V. Barker. (2021) Effects of nanosilicon dioxide on leaf anatomy, chlorophyll fluorescence, and mineral element composition of strawberry under salinity stress. Journal of Plant Nutrition 44:20, pages 3005-3019.
Read now
Susana Silva Conceição, Cândido Ferreira de Oliveira Neto, Elton Camelo Marques, Antonio Vinícius Correa Barbosa, Jessivaldo Rodrigues Galvão, Tamires Borges de Oliveira, Ricardo Shigueru Okumura, Jéssica Taynara da Silva Martins, Thays Correa Costa & Enéas Gomes-Filho. (2019) Silicon modulates the activity of antioxidant enzymes and nitrogen compounds in sunflower plants under salt stress. Archives of Agronomy and Soil Science 65:9, pages 1237-1247.
Read now
Waqas–ud–Din Khan, Tariq Aziz, Imran Hussain, Pia Muhammad Adnan Ramzani & Thomas G. Reichenauer. (2017) Silicon: a beneficial nutrient for maize crop to enhance photochemical efficiency of photosystem II under salt stress. Archives of Agronomy and Soil Science 63:5, pages 599-611.
Read now

Articles from other publishers (48)

Hongyang Wang, Junhua Li, Hao Liu, Shengnan Chen, Qamar uz Zaman, Muzammal Rehman, Khaled El-Kahtany, Shah Fahad, Gang Deng & Jing Yang. (2023) Variability in morpho-biochemical, photosynthetic pigmentation, enzymatic and quality attributes of potato for salinity stress tolerance. Plant Physiology and Biochemistry 203, pages 108036.
Crossref
Tâmela Larissa Silva Xavier, Vanessa dos Santos Pereira, Ycaro Yuri Gonçalves do Nascimento, Vespasiano Borges de Paiva Neto, Rafaela Ribeiro de Souza, Raphael Reis da Silva & Márkilla Zunete Beckmann-Cavalcante. (2023) Kaolin, boron, and zinc increase photosynthetic activity and mitigate the effects of light stress in heliconia grown under semi-arid conditions. Scientia Horticulturae 319, pages 112134.
Crossref
Anju Sogarwal, Nilima Kumari & Vinay Sharma. (2023) Silicon Alleviates Fluoride Induced Oxidative Damage in Wheat Cultivars by Improving Antioxidants Defense System and Reducing Fluoride Uptake. Silicon 15:12, pages 5121-5132.
Crossref
Muhammad Salim Akhter, Sibgha Noreen, Seema Mahmood, Muhammad Aqeel, Zafar Ullah Zafar, Muhammad Rashid, Muhammad Naveed Arshad, Muhammad Owais, Javid Ahmad & Kausar Hussain Shah. (2023) Silicon Supplement Improves Growth and Yield Under Salt Stress by Modulating Ionic Homeostasis and Some Physiological Indices in Hordeum vulgare L. Journal of Soil Science and Plant Nutrition 23:2, pages 1694-1712.
Crossref
Hassan Etesami & Byoung Ryong Jeong. 2023. Plant Stress Mitigators. Plant Stress Mitigators 359 402 .
Mahima Misti Sarkar, Soumya Mukherjee, Piyush Mathur & Swarnendu Roy. (2022) Exogenous nano-silicon application improves ion homeostasis, osmolyte accumulation and palliates oxidative stress in Lens culinaris under NaCl stress. Plant Physiology and Biochemistry 192, pages 143-161.
Crossref
M. Tebini, D. T. Luu, K. Mguis, H. Ben Ahmed, A. Meddich, F. Zribi & A. Chalh. (2022) Physiological Exploration of Intra-Specific Variability in Salinity Tolerance of Amaranth. Russian Journal of Plant Physiology 69:3.
Crossref
Albert Premkumar, Muhammad Tariq Javed, Katharina Pawlowski & Sylvia M. Lindberg. (2022) Silicate Inhibits the Cytosolic Influx of Chloride in Protoplasts of Wheat and Affects the Chloride Transporters, TaCLC1 and TaNPF2.4/2.5. Plants 11:9, pages 1162.
Crossref
Abdel Wahab M. Mahmoud, Mahmoud M. Samy, Hoda Sany, Rasha R. Eid, Hassan M. Rashad & Emad A. Abdeldaym. (2022) Nanopotassium, Nanosilicon, and Biochar Applications Improve Potato Salt Tolerance by Modulating Photosynthesis, Water Status, and Biochemical Constituents. Sustainability 14:2, pages 723.
Crossref
M.L. Ahire, P.S. Mundada, T.D. Nikam, V.A. Bapat & Suprasanna Penna. (2021) Multifaceted roles of silicon in mitigating environmental stresses in plants. Plant Physiology and Biochemistry 169, pages 291-310.
Crossref
Anshu Rastogi, Saurabh Yadav, Sajad Hussain, Sunita Kataria, Shokoofeh Hajihashemi, Pragati Kumari, Xinghong Yang & Marian Brestic. (2021) Does silicon really matter for the photosynthetic machinery in plants…?. Plant Physiology and Biochemistry 169, pages 40-48.
Crossref
El-Sayed M. Desoky, Elsayed Mansour, El-Sayed E. A. El-Sobky, Mohamed I. Abdul-Hamid, Taha F. Taha, Hend A. Elakkad, Safaa M. A. I. Arnaout, Rania S. M. Eid, Khaled A. El-Tarabily & Mohamed A. T. Yasin. (2021) Physio-Biochemical and Agronomic Responses of Faba Beans to Exogenously Applied Nano-Silicon Under Drought Stress Conditions. Frontiers in Plant Science 12.
Crossref
Muhammad Younas, Huasong Zou, Tasmia Laraib, Waseem Abbas, Muhammad Waqar Akhtar, Muhammad Naveed Aslam, Luqman Amrao, Shoukat Hayat, Tariq Abdul Hamid, Akhtar Hameed, Ghalib Ayaz Kachelo, Mona M. Elseehy, Ahmed M. El-Shehawi, Ali Tan Kee Zuan, Yunzhou Li & Muhammad Arif. (2021) The influence of vermicomposting on photosynthetic activity and productivity of maize (Zea mays L.) crop under semi-arid climate. PLOS ONE 16:8, pages e0256450.
Crossref
Boris Bokor, Carla S. Santos, Dominik Kostoláni, Joana Machado, Marta Nunes da Silva, Susana M.P. Carvalho, Marek Vaculík & Marta W. Vasconcelos. (2021) Mitigation of climate change and environmental hazards in plants: Potential role of the beneficial metalloid silicon. Journal of Hazardous Materials 416, pages 126193.
Crossref
Zahra Souri, Kanika Khanna, Naser Karimi & Parvaiz Ahmad. (2020) Silicon and Plants: Current Knowledge and Future Prospects. Journal of Plant Growth Regulation 40:3, pages 906-925.
Crossref
Pallavi Dhiman, Nitika Rajora, Shubham Bhardwaj, Sreeja S. Sudhakaran, Amit Kumar, Gaurav Raturi, Koushik Chakraborty, Om Prakash Gupta, B.N. Devanna, Durgesh Kumar Tripathi & Rupesh Deshmukh. (2021) Fascinating role of silicon to combat salinity stress in plants: An updated overview. Plant Physiology and Biochemistry 162, pages 110-123.
Crossref
Alexander Calero Hurtado, Denise Aparecida Chiconato, Renato de Mello Prado, Gilmar da Silveira Sousa Junior, Dilier Olivera Viciedo, Yanery Pérez Díaz, Kolima Peña Calzada & Priscila Lupino Gratão. (2020) Silicon Alleviates Sodium Toxicity in Sorghum and Sunflower Plants by Enhancing Ionic Homeostasis in Roots and Shoots and Increasing Dry Matter Accumulation. Silicon 13:2, pages 475-486.
Crossref
Pankaj S. Mundada, Suchita V. Jadhav, Supriya S. Salunkhe, Swati T. Gurme, Suraj D. Umdale, Rajkumar B. Barmukh, Tukaram D. Nikam & Mahendra L. Ahire. 2021. Plant Performance Under Environmental Stress. Plant Performance Under Environmental Stress 357 385 .
Rushil Mandlik, Vandana Thakral, Gaurav Raturi, Suhas Shinde, Miroslav Nikolić, Durgesh K Tripathi, Humira Sonah & Rupesh Deshmukh. (2020) Significance of silicon uptake, transport, and deposition in plants. Journal of Experimental Botany 71:21, pages 6703-6718.
Crossref
Ayalew Ligaba-Osena, Wanli Guo, Sang Chul Choi, Matthew Alan Limmer, Angelia L. Seyfferth & Bertrand B. Hankoua. (2020) Silicon Enhances Biomass and Grain Yield in an Ancient Crop Tef [Eragrostis tef (Zucc.) Trotter]. Frontiers in Plant Science 11.
Crossref
Khaled A. A. Abdelaal, Yasser S.A. Mazrou & Yaser M. Hafez. (2020) Silicon Foliar Application Mitigates Salt Stress in Sweet Pepper Plants by Enhancing Water Status, Photosynthesis, Antioxidant Enzyme Activity and Fruit Yield. Plants 9:6, pages 733.
Crossref
Libia Iris Trejo-Téllez, Atonaltzin García-Jiménez, Hugo Fernando Escobar-Sepúlveda, Sara Monzerrat Ramírez-Olvera, Jericó Jabín Bello-Bello & Fernando Carlos Gómez-Merino. (2020) Silicon induces hormetic dose-response effects on growth and concentrations of chlorophylls, amino acids and sugars in pepper plants during the early developmental stage. PeerJ 8, pages e9224.
Crossref
Hassan Etesami, Byoung Ryong Jeong & Muhammad Rizwan. 2020. Metalloids in Plants. Metalloids in Plants 381 431 .
Rinny Swain & Gyana Ranjan Rout. (2020) Silicon Mediated Alleviation of Salinity Stress Regulated by Silicon Transporter Genes (Lsi1 and Lsi2) in Indica Rice. Brazilian Archives of Biology and Technology 63.
Crossref
Adil Khan, Abdul Latif Khan, Sowbiya Muneer, Yoon-Ha Kim, Ahmed Al-Rawahi & Ahmed Al-Harrasi. (2019) Silicon and Salinity: Crosstalk in Crop-Mediated Stress Tolerance Mechanisms. Frontiers in Plant Science 10.
Crossref
Asma A. Al-Huqail, Abdulaziz A. Alqarawi, Abeer Hashem, Jahangir Ahmad Malik & Elsayed Fathi Abd_Allah. (2019) Silicon supplementation modulates antioxidant system and osmolyte accumulation to balance salt stress in Acacia gerrardii Benth. Saudi Journal of Biological Sciences 26:7, pages 1856-1864.
Crossref
Alexander Calero Hurtado, Denise Aparecida Chiconato, Renato de Mello Prado, Gilmar da Silveira Sousa Junior & Guilherme Felisberto. (2019) Silicon attenuates sodium toxicity by improving nutritional efficiency in sorghum and sunflower plants. Plant Physiology and Biochemistry 142, pages 224-233.
Crossref
Prashant Kaushik & Dinesh Kumar Saini. (2019) Silicon as a Vegetable Crops Modulator—A Review. Plants 8:6, pages 148.
Crossref
Parvaiz Ahmad, Mohammad Abass Ahanger, Pravej Alam, Mohammed Nasser Alyemeni, Leonard Wijaya, Sajad Ali & Mohammad Ashraf. (2018) Silicon (Si) Supplementation Alleviates NaCl Toxicity in Mung Bean [Vigna radiata (L.) Wilczek] Through the Modifications of Physio-biochemical Attributes and Key Antioxidant Enzymes. Journal of Plant Growth Regulation 38:1, pages 70-82.
Crossref
Mirza Hasanuzzaman, K. Nahar, M. M. Rohman, T. I. Anee, Y. Huang & M. Fujita. (2018) Exogenous Silicon Protects Brassica napus Plants from Salinity-Induced Oxidative Stress Through the Modulation of AsA-GSH Pathway, Thiol-Dependent Antioxidant Enzymes and Glyoxalase SystemsExogenes Silizium schützt Brassica-napus-Pflanzen vor salzinduziertem oxidativen Stress durch die Modulation des AsA-GSH-Zyklus, thiolabhängiger antioxidativer Enzyme und der Glyoxalase-Systeme. Gesunde Pflanzen 70:4, pages 185-194.
Crossref
Syed Azhar Hussain, Muhammad Ansar Farooq, Javaid Akhtar & Zulfiqar Ahmad Saqib. (2018) Silicon-mediated growth and yield improvement of sunflower (Helianthus annus L.) subjected to brackish water stress. Acta Physiologiae Plantarum 40:10.
Crossref
Prabal Das, Indrani Manna, Asok K. Biswas & Maumita Bandyopadhyay. (2018) Exogenous silicon alters ascorbate-glutathione cycle in two salt-stressed indica rice cultivars (MTU 1010 and Nonabokra). Environmental Science and Pollution Research 25:26, pages 26625-26642.
Crossref
Julia Medrano-Macías, Rosalinda Mendoza-Villarreal, Valentín Robledo-Torres, Laura Olivia Fuentes-Lara, Francisca Ramírez-Godina, Miguel Ángel Pérez-Rodríguez & Adalberto Benavides-Mendoza. 2018. Antioxidants in Foods and Its Applications. Antioxidants in Foods and Its Applications.
Yahya Alzahrani, Alpaslan Kuşvuran, Hesham F. Alharby, Sebnem Kuşvuran & Mostafa M. Rady. (2018) The defensive role of silicon in wheat against stress conditions induced by drought, salinity or cadmium. Ecotoxicology and Environmental Safety 154, pages 187-196.
Crossref
Daoud A.M.Hemada M.M.Saber N.El-Araby A.A.Moussa L.. (2018) Effect of Silicon on the Tolerance of Wheat (Triticum aestivum L.) to Salt Stress at Different Growth Stages: Case Study for the Management of Irrigation Water. Plants 7:2, pages 29.
Crossref
Hassan Etesami & Byoung Ryong Jeong. (2018) Silicon (Si): Review and future prospects on the action mechanisms in alleviating biotic and abiotic stresses in plants. Ecotoxicology and Environmental Safety 147, pages 881-896.
Crossref
Abbu Zaid, Fahima Gul, Mohammad A. Ahanger & Parvaiz Ahmad. 2018. Plant Metabolites and Regulation Under Environmental Stress. Plant Metabolites and Regulation Under Environmental Stress 377 387 .
Aditya Banerjee & Aryadeep Roychoudhury. 2018. Plant Nutrients and Abiotic Stress Tolerance. Plant Nutrients and Abiotic Stress Tolerance 377 390 .
Shuming Ju, Liping Wang, Ningning Yin, Dan Li, Yukun Wang & Cuiying Zhang. (2017) Silicon alleviates simulated acid rain stress of Oryza sativa L. seedlings by adjusting physiology activity and mineral nutrients. Protoplasma 254:6, pages 2071-2081.
Crossref
Juan J. Rios, Maria C. Martínez-Ballesta, Juan M. Ruiz, Begoña Blasco & Micaela Carvajal. (2017) Silicon-mediated Improvement in Plant Salinity Tolerance: The Role of Aquaporins. Frontiers in Plant Science 8.
Crossref
Sofía Pontigo, Karina Godoy, Héctor Jiménez, Ana Gutiérrez-Moraga, María de la Luz Mora & Paula Cartes. (2017) Silicon-Mediated Alleviation of Aluminum Toxicity by Modulation of Al/Si Uptake and Antioxidant Performance in Ryegrass Plants. Frontiers in Plant Science 8.
Crossref
Richard J. Haynes. 2017. 83 166 .
Durgesh Kumar Tripathi, Gausiya Bashri, Shweta  , Swati Singh, Parvaiz Ahmad, Vijay Pratap Singh, Sheo Mohan Prasad, Nawal Kishore Dubey & Devendra Kumar Chauhan. 2016. Silicon in Plants. Silicon in Plants 355 366 .
Julia Cooke & Michelle R. Leishman. (2016) Consistent alleviation of abiotic stress with silicon addition: a meta‐analysis. Functional Ecology 30:8, pages 1340-1357.
Crossref
Devrim Coskun, Dev T. Britto, Wayne Q. Huynh & Herbert J. Kronzucker. (2016) The Role of Silicon in Higher Plants under Salinity and Drought Stress. Frontiers in Plant Science 7.
Crossref
Dimitrios Savvas & Georgia Ntatsi. (2015) Biostimulant activity of silicon in horticulture. Scientia Horticulturae 196, pages 66-81.
Crossref
Muhammad Rizwan, Shafaqat Ali, Muhammad Ibrahim, Mujahid Farid, Muhammad Adrees, Saima Aslam Bharwana, Muhammad Zia-ur-Rehman, Muhammad Farooq Qayyum & Farhat Abbas. (2015) Mechanisms of silicon-mediated alleviation of drought and salt stress in plants: a review. Environmental Science and Pollution Research 22:20, pages 15416-15431.
Crossref
Yongchao Liang, Miroslav Nikolic, Richard Bélanger, Haijun Gong & Alin SongYongchao Liang, Miroslav Nikolic, Richard Bélanger, Haijun Gong & Alin Song. 2015. Silicon in Agriculture. Silicon in Agriculture 123 142 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.