Adaptation Strategies to Improve the Resistance of Oilseed Crops to Heat Stress Under a Changing Climate: An Overview

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dc.contributor.author Ahmad, Muhammad
dc.contributor.author Waraich, Ejaz Ahmad
dc.contributor.author Skalicky, Milan
dc.contributor.author Hussain, Saddam
dc.contributor.author Zulfiqar, Usman
dc.contributor.author Anjum, Muhammad Zohaib
dc.contributor.author Rahman, Muhammad Habib ur
dc.contributor.author Brestic, Marian
dc.contributor.author Ratnasekera, Disna
dc.contributor.author Lamilla-Tamayo, Laura
dc.contributor.author EL Sabagh, Ayman
dc.date.accessioned 2022-11-01T10:23:18Z
dc.date.available 2022-11-01T10:23:18Z
dc.date.issued 2021
dc.identifier.citation Ahmad, M., Waraich, E. A., Skalicky, M., Hussain, S., Zulfiqar, U., Anjum, M. Z., ... & Sabagh, A. E. (2021). Adaptation strategies to improve the resistance of oilseed crops to heat stress under a changing climate: An overview. Frontiers in Plant Science, 12. en_US
dc.identifier.uri http://ir.lib.ruh.ac.lk/xmlui/handle/iruor/9085
dc.description.abstract Temperature is one of the decisive environmental factors that is projected to increase by 1. 5◦C over the next two decades due to climate change that may affect various agronomic characteristics, such as biomass production, phenology and physiology, and yield-contributing traits in oilseed crops. Oilseed crops such as soybean, sunflower, canola, peanut, cottonseed, coconut, palm oil, sesame, safflower, olive etc., are widely grown. Specific importance is the vulnerability of oil synthesis in these crops against the rise in climatic temperature, threatening the stability of yield and quality. The natural defense system in these crops cannot withstand the harmful impacts of heat stress, thus causing a considerable loss in seed and oil yield. Therefore, a proper understanding of underlying mechanisms of genotype-environment interactions that could affect oil synthesis pathways is a prime requirement in developing stable cultivars. Heat stress tolerance is a complex quantitative trait controlled by many genes and is challenging to study and characterize. However, heat tolerance studies to date have pointed to several sophisticated mechanisms to deal with the stress of high temperatures, including hormonal signaling pathways for sensing heat stimuli and acquiring tolerance to heat stress, maintaining membrane integrity, production of heat shock proteins (HSPs), removal of reactive oxygen species (ROS), assembly of antioxidants, accumulation of compatible solutes, modified gene expression to enable changes, intelligent agricultural technologies, and several other agronomic techniques for thriving and surviving. Manipulation of multiple genes responsible for thermo-tolerance and exploring their high expressions greatly impacts their potential application using Ahmad et al. Heat Stress Tolerance in Oilseed Crops CRISPR/Cas genome editing and OMICS technology. This review highlights the latest outcomes on the response and tolerance to heat stress at the cellular, organelle, and whole plant levels describing numerous approaches applied to enhance thermos tolerance in oilseed crops. We are attempting to critically analyze the scattered existing approaches to temperature tolerance used in oilseeds as a whole, work toward extending studies into the field, and provide researchers and related parties with useful information to streamline their breeding programs so that they can seek new avenues and develop guidelines that will greatly enhance ongoing efforts to establish heat stress tolerance in oilseeds. en_US
dc.language.iso en en_US
dc.subject antioxidants en_US
dc.subject CRISPR/Cas9 technology en_US
dc.subject heat stress en_US
dc.subject oilseeds en_US
dc.subject omics technology en_US
dc.subject signaling en_US
dc.subject smart technologies en_US
dc.subject tolerance en_US
dc.title Adaptation Strategies to Improve the Resistance of Oilseed Crops to Heat Stress Under a Changing Climate: An Overview en_US
dc.type Article en_US


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