Literature DB >> 28504920

Silicon's Role in Abiotic and Biotic Plant Stresses.

Daniel Debona1, Fabrício A Rodrigues1, Lawrence E Datnoff2.   

Abstract

Silicon (Si) plays a pivotal role in the nutritional status of a wide variety of monocot and dicot plant species and helps them, whether directly or indirectly, counteract abiotic and/or biotic stresses. In general, plants with a high root or shoot Si concentration are less prone to pest attack and exhibit enhanced tolerance to abiotic stresses such as drought, low temperature, or metal toxicity. However, the most remarkable effect of Si is the reduction in the intensities of a number of seedborne, soilborne, and foliar diseases in many economically important crops that are caused by biotrophic, hemibiotrophic, and necrotrophic plant pathogens. The reduction in disease symptom expression is due to the effect of Si on some components of host resistance, including incubation period, lesion size, and lesion number. The mechanical barrier formed by the polymerization of Si beneath the cuticle and in the cell walls was the first proposed hypothesis to explain how this element reduced the severity of plant diseases. However, new insights have revealed that many plant species supplied with Si have the phenylpropanoid and terpenoid pathways potentiated and have a faster and stronger transcription of defense genes and higher activities of defense enzymes. Photosynthesis and the antioxidant system are also improved for Si-supplied plants. Although the current understanding of how this overlooked element improves plant reaction against pathogen infections, pest attacks, and abiotic stresses has advanced, the exact mechanism(s) by which it modulates plant physiology through the potentiation of host defense mechanisms still needs further investigation at the genomic, metabolomic, and proteomic levels.

Entities:  

Keywords:  disease management; drought; foliar diseases; host defense mechanisms; metal toxicity; pest control; plant nutrition; salt stress; soilborne diseases

Mesh:

Substances:

Year:  2017        PMID: 28504920     DOI: 10.1146/annurev-phyto-080516-035312

Source DB:  PubMed          Journal:  Annu Rev Phytopathol        ISSN: 0066-4286            Impact factor:   13.078


  45 in total

1.  Effects of supplying silicon nutrient on utilization rate of nitrogen and phosphorus nutrients by rice and its soil ecological mechanism in a hybrid rice double-cropping system.

Authors:  Min Liao; Zhi-Ping Fang; Yu-Qi Liang; Xiao-Hui Huang; Xu Yang; Shu-Sen Chen; Xiao-Mei Xie; Chang-Xu Xu; Jia-Wen Guo
Journal:  J Zhejiang Univ Sci B       Date:  2020-06       Impact factor: 3.066

2.  When resistance is futile, tolerate instead: silicon promotes plant compensatory growth when attacked by above- and belowground herbivores.

Authors:  Scott N Johnson; Olivia L Reynolds; Geoff M Gurr; Jessica L Esveld; Ben D Moore; Gavin J Tory; Andrew N Gherlenda
Journal:  Biol Lett       Date:  2019-07-31       Impact factor: 3.703

3.  Plant physical and chemical defence variation along elevation gradients: a functional trait-based approach.

Authors:  Alan Kergunteuil; Patrice Descombes; Gaetan Glauser; Loïc Pellissier; Sergio Rasmann
Journal:  Oecologia       Date:  2018-05-17       Impact factor: 3.225

Review 4.  The role of silicon in plant biology: a paradigm shift in research approach.

Authors:  Adam Frew; Leslie A Weston; Olivia L Reynolds; Geoff M Gurr
Journal:  Ann Bot       Date:  2018-06-08       Impact factor: 4.357

5.  Contrasting effects of Miocene and Anthropocene levels of atmospheric CO2 on silicon accumulation in a model grass.

Authors:  Fikadu N Biru; Christopher I Cazzonelli; Rivka Elbaum; Scott N Johnson
Journal:  Biol Lett       Date:  2020-11-25       Impact factor: 3.703

6.  Isolation and functional characterization of CsLsi2, a cucumber silicon efflux transporter gene.

Authors:  Hao Sun; Yaoke Duan; Xiaocui Qi; Liyang Zhang; Heqiang Huo; Haijun Gong
Journal:  Ann Bot       Date:  2018-09-24       Impact factor: 4.357

7.  Metabolomic analysis of date palm seedlings exposed to salinity and silicon treatments.

Authors:  Gerry Aplang Jana; Latifa Al Kharusi; Ramanjulu Sunkar; Rashid Al-Yahyai; Mahmoud W Yaish
Journal:  Plant Signal Behav       Date:  2019-09-11

8.  Exogenous Application of Zinc to Mitigate the Salt Stress in Vigna radiata (L.) Wilczek-Evaluation of Physiological and Biochemical Processes.

Authors:  Hassan S Al-Zahrani; Hesham F Alharby; Khalid Rehman Hakeem; Reiaz Ul Rehman
Journal:  Plants (Basel)       Date:  2021-05-18

Review 9.  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

Review 10.  Exploration of silicon functions to integrate with biotic stress tolerance and crop improvement.

Authors:  Xiu-Peng Song; Krishan K Verma; Dan-Dan Tian; Xiao-Qiu Zhang; Yong-Jian Liang; Xing Huang; Chang-Ning Li; Yang-Rui Li
Journal:  Biol Res       Date:  2021-07-08       Impact factor: 5.612

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