Literature DB >> 23523465

Silicon decreases chloride transport in rice (Oryza sativa L.) in saline conditions.

Yu Shi1, Yichao Wang, Timothy J Flowers, Haijun Gong.   

Abstract

Silicon can alleviate salt damage to plants, although the mechanism(s) still remains to be elucidated. In this paper, we report the effect of silicon on chloride transport in rice (Oryza sativa L.) seedlings in saline conditions. In the absence of salinity, silicon enhanced the growth of shoots, but not roots in three cultivars (cv. GR4, IR36, and CSR10). Salinity reduced the growth of both shoots and roots in all three genotypes. In saline conditions, addition of silicon to the culture solution again improved the growth of shoots, but not of roots. Under these saline conditions, the concentrations of chloride in the shoot were markedly decreased by adding silicon and the ratio of K(+)/Cl(-) was significantly increased, while the concentration of chloride in the roots was unchanged. The decrease in chloride concentration in the shoot was correlated with the decrease in transpirational bypass flow in rice, as shown by the transport of the apoplastic tracer trisodium-8-hydroxy-1,3,6-pyrenetrisulphonic acid (PTS). Addition of silicon increased the net photosynthetic rate, stomata conductance, and transpiration of salt-stressed plants in cv. IR36, indicating that the reduction of chloride (and sodium) uptake by silicon was not through a reduction in transpiration rate. Silicon addition also increased the instantaneous water use efficiency of salt-stressed plants, while it did not change the relative growth rate of shoots. The results suggest that silicon addition decreased transpirational bypass flow in the roots, and therefore decreased the transport of chloride to the shoot.
Copyright © 2013 Elsevier GmbH. All rights reserved.

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Year:  2013        PMID: 23523465     DOI: 10.1016/j.jplph.2013.01.018

Source DB:  PubMed          Journal:  J Plant Physiol        ISSN: 0176-1617            Impact factor:   3.549


  23 in total

1.  Modulation of growth, ascorbate-glutathione cycle and thiol metabolism in rice (Oryza sativa L. cv. MTU-1010) seedlings by arsenic and silicon.

Authors:  Susmita Das; Barsha Majumder; Asok K Biswas
Journal:  Ecotoxicology       Date:  2018-11-08       Impact factor: 2.823

2.  Silicon improves salt tolerance by increasing root water uptake in Cucumis sativus L.

Authors:  Yong-Xing Zhu; Xuan-Bin Xu; Yan-Hong Hu; Wei-Hua Han; Jun-Liang Yin; Huan-Li Li; Hai-Jun Gong
Journal:  Plant Cell Rep       Date:  2015-05-29       Impact factor: 4.570

Review 3.  Mechanisms of silicon-mediated alleviation of drought and salt stress in plants: a review.

Authors:  Muhammad Rizwan; Shafaqat Ali; Muhammad Ibrahim; Mujahid Farid; Muhammad Adrees; Saima Aslam Bharwana; Muhammad Zia-Ur-Rehman; Muhammad Farooq Qayyum; Farhat Abbas
Journal:  Environ Sci Pollut Res Int       Date:  2015-09-03       Impact factor: 4.223

4.  How do rice seedlings of landrace Pokkali survive in saline fields after transplantation? Physiology, biochemistry, and photosynthesis.

Authors:  Manjari Mishra; Silas Wungrampha; Gautam Kumar; Sneh Lata Singla-Pareek; Ashwani Pareek
Journal:  Photosynth Res       Date:  2020-07-06       Impact factor: 3.573

5.  Silicon Mitigates Salinity Stress by Regulating the Physiology, Antioxidant Enzyme Activities, and Protein Expression in Capsicum annuum 'Bugwang'.

Authors:  Abinaya Manivannan; Prabhakaran Soundararajan; Sowbiya Muneer; Chung Ho Ko; Byoung Ryong Jeong
Journal:  Biomed Res Int       Date:  2016-03-20       Impact factor: 3.411

Review 6.  The Role of Silicon in Higher Plants under Salinity and Drought Stress.

Authors:  Devrim Coskun; Dev T Britto; Wayne Q Huynh; Herbert J Kronzucker
Journal:  Front Plant Sci       Date:  2016-07-18       Impact factor: 5.753

Review 7.  Coping with the Challenges of Abiotic Stress in Plants: New Dimensions in the Field Application of Nanoparticles.

Authors:  Vishnu D Rajput; Tatiana Minkina; Arpna Kumari; Vipin Kumar Singh; Krishan K Verma; Saglara Mandzhieva; Svetlana Sushkova; Sudhakar Srivastava; Chetan Keswani
Journal:  Plants (Basel)       Date:  2021-06-15

Review 8.  Interactions of Silicon With Essential and Beneficial Elements in Plants.

Authors:  Jelena Pavlovic; Ljiljana Kostic; Predrag Bosnic; Ernest A Kirkby; Miroslav Nikolic
Journal:  Front Plant Sci       Date:  2021-06-23       Impact factor: 5.753

9.  Silicon Promotes Exodermal Casparian Band Formation in Si-Accumulating and Si-Excluding Species by Forming Phenol Complexes.

Authors:  Alexander T Fleck; Sascha Schulze; Martin Hinrichs; André Specht; Friedrich Waßmann; Lukas Schreiber; Manfred K Schenk
Journal:  PLoS One       Date:  2015-09-18       Impact factor: 3.240

10.  Plant Growth Promoting Rhizobacteria and Silicon Synergistically Enhance Salinity Tolerance of Mung Bean.

Authors:  Sajid Mahmood; Ihsanullah Daur; Samir G Al-Solaimani; Shakeel Ahmad; Mohamed H Madkour; Muhammad Yasir; Heribert Hirt; Shawkat Ali; Zahir Ali
Journal:  Front Plant Sci       Date:  2016-06-17       Impact factor: 5.753

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