4.7 Review

Abiotic Stress in Plants; Stress Perception to Molecular Response and Role of Biotechnological Tools in Stress Resistance

Journal

AGRONOMY-BASEL
Volume 11, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/agronomy11081579

Keywords

heat stress; cold stress; drought stress; salinity; stress sensors; CRISPR-cas9

Funding

  1. Kyungpook National University Development Project Research Fund
  2. Basic Science Research Program through the National Research Foundation of Korea (NRF) - Ministry of Education [2020R1I1A3073247]

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Plants face various environmental adversities such as heat, cold, drought, heavy metals, and salinity, and have developed sophisticated mechanisms to cope with these stresses. The key lies in how plants perceive stress signals and the importance of biotechnological tools in developing stress-tolerant cultivars.
Plants, due to their sessile nature, face several environmental adversities. Abiotic stresses such as heat, cold, drought, heavy metals, and salinity are serious threats to plant production and yield. To cope with these stresses, plants have developed sophisticated mechanisms to avoid or resist stress conditions. A proper response to abiotic stress depends primarily on how plants perceive the stress signal, which in turn leads to initiation of signaling cascades and induction of resistance genes. New biotechnological tools such as RNA-seq and CRISPR-cas9 are quite useful in identifying target genes on a global scale, manipulating these genes to achieve tolerance, and helping breeders to develop stress-tolerant cultivars. In this review, we will briefly discuss the adverse effects of key abiotic stresses such as cold, heat, drought, and salinity. We will also discuss how plants sense various stresses and the importance of biotechnological tools in the development of stress-tolerant cultivars.

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