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  5. The response of chromosomally engineered durum wheat-Thinopyrum ponticum recombinant lines to the application of heat and water-deficit stresses: effects on physiological, biochemical and yield-related traits

The response of chromosomally engineered durum wheat-Thinopyrum ponticum recombinant lines to the application of heat and water-deficit stresses: effects on physiological, biochemical and yield-related traits

Author(s)
Giovenali, Gloria
Kuzmanović, Ljiljana  
Capoccioni, Alessandra
Ceoloni, Carla  
Date Issued
2023
Type
article
Volume
12
Issue
4
DOI
10.3390/ plants12040704
Journal
PLANTS  
Abstract
Abiotic stress occurrence and magnitude are alarmingly intensifying worldwide. In the Mediterranean basin, heat waves and precipitation scarcity heavily affect major crops such as durum wheat (DW). In the search for tolerant genotypes, the identification of genes/QTL in wild wheat relatives, naturally adapted to harsh environments, represents a useful strategy. We tested three DW-Thinopyrum ponticum recombinant lines (R5+, R112+, R23+), their control sibs lacking any alien introgression, and the heat-tolerant cv. Margherita for their physiological, biochemical and yield response to heat stress (HS) application at anthesis, also in combination with water-deficit stress applied from booting until maturity. Under HS, R5+ and R112+ (23%- and 28%-long 7el1L Th. ponticum chromosome segment distally inserted on DW 7AL, respectively) showed remarkable stability of the yield-related traits; in turn, R23+ (40%-long 7el1L segment), despite a decreased grain yield, exhibited a greater spike fertility index and proline content in spike than its control sib. Under water-deficit + HS, R5+ showed the highest increment in water use efficiency and in flag leaf proline content, accompanied by the lowest yield penalty even vs. Margherita. This research confirms the value of harnessing wild gene pools to enhance DW stress tolerance and represents a starting point for elucidating the mechanisms of Thinopyrum spp. contribution to this relevant breeding target.
Handle
http://hdl.handle.net/2067/49417
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2023_Giovenali et al_Plants.pdf

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4.68 MB

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c5fc8eb10ed873bb856d4f580c00756a

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