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Review
. 2020 Sep:168:104641.
doi: 10.1016/j.pestbp.2020.104641. Epub 2020 Jun 26.

Silicon-mediated plant defense against pathogens and insect pests

Affiliations
Review

Silicon-mediated plant defense against pathogens and insect pests

Waqar Islam et al. Pestic Biochem Physiol. 2020 Sep.

Abstract

Plant diseases and insect pests are one of the major limiting factors that reduce crop production worldwide. Silicon (Si) is one of the most abundant elements in the lithosphere and has a positive impact on plant health by effectively mitigating biotic and abiotic stresses. It also enhances plant resistance against insect pests and fungal, bacterial, and viral diseases. Therefore, this review critically converges its focus upon Si-mediated physical, biochemical, and molecular mechanisms in plant defense against pathogens and insect pests. It further explains Si-modulated interactive phytohormone signaling and enzymatic production and their involvement in inducing resistance against biotic stresses. Furthermore, this review highlights the recent research accomplishments which have successfully revealed the active role of Si in protecting plants against insect herbivory and various viral, bacterial, and fungal diseases. The article explores the potential in enhancing Si-mediated plant resistance against various economically important diseases and insect pests, further shedding light upon future issues regarding the role of Si in defense against pathogens and insect pests.

Keywords: Defense mechanism; Elements; Fertilizer application; Insect pest; Plant diseases; Soil nutrition.

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Conflict of interest statement

Declaration of Competing Interest The authors have no conflicts of interest.

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