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  5. One Hundred Candidate Genes and Their Roles in Drought and Salt Tolerance in Wheat

One Hundred Candidate Genes and Their Roles in Drought and Salt Tolerance in Wheat

Author(s)
Urbanavičiūtė, Ieva
Bonfiglioli, Luca
Pagnotta, Mario Augusto  
Date Issued
2021
Type
article
Volume
22
Issue
12
Start Page
1
End Page
25
DOI
10.3390/ijms22126378
Journal
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES  
Abstract
Drought and salinity are major constraints to agriculture. In this review, we present an overview of the global situation and the consequences of drought and salt stress connected to climatic changes. We provide a list of possible genetic resources as sources of resistance or tolerant traits, together with the previous studies that focused on transferring genes from the germplasm to cultivated varieties. We explained the morphological and physiological aspects connected to hydric stresses, described the mechanisms that induce tolerance, and discussed the results of the main studies. Finally, we described more than 100 genes associated with tolerance to hydric stresses in the Triticeae. These were divided in agreement with their main function into osmotic adjustment and ionic and redox homeostasis. The understanding of a given gene function and expression pattern according to hydric stress is particularly important for the efficient selection of new tolerant genotypes in classical breeding. For this reason, the current review provides a crucial reference for future studies on the mechanism involved in hydric stress tolerance and the use of these genes in mark assistance selection (MAS) to select the wheat germplasm to face the climatic changes.
Subjects

osmotic adjustment;

ionic

redox homeostasis

transcription factors...

salt-responsive genes...

Handle
http://hdl.handle.net/2067/43708
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Project(s)
European Union’s Horizon 2020 research and innovation programme under grant agreement No 771367 (ECOBREED project).

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