Different patterns of the photosynthetic apparatus recovery during early rehydration following drought stress in two types of intergeneric hybrid of triticale

The study aimed to reveal the activity of the photosynthetic apparatus during early rehydration in double haploid (DH) lines of triticale with different types of flag leaf rolling in response to soil drought. Two DH lines, showing full (Type O) and limited (Type V) flag leaf rolling, were investigat...

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Vydáno v:Environmental and experimental botany Ročník 214; s. 105475
Hlavní autoři: Ostrowska, Agnieszka, Hura, Katarzyna, Hura, Tomasz
Médium: Journal Article
Jazyk:angličtina
Vydáno: Elsevier B.V 01.10.2023
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ISSN:0098-8472
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Abstract The study aimed to reveal the activity of the photosynthetic apparatus during early rehydration in double haploid (DH) lines of triticale with different types of flag leaf rolling in response to soil drought. Two DH lines, showing full (Type O) and limited (Type V) flag leaf rolling, were investigated. The measurements of chlorophyll fluorescence, analysis of red/far-red fluorescence excitation spectra, as well as detection of selected PSII proteins (PsbA/D1, PsbS) and transmembrane cytochrome complex b6f (PetC/Rieske protein) were performed. The measurements were carried out on the last day of drought and after 1 h, 3 h, and 5 h of rehydration. The physiological condition of flag leaves was studied based on measurements of water relations, the progress of leaf senescence, histochemical detection of reactive oxygen species, and the content of sugars and phenolic compounds. In Type O, as compared with Type V, a further decline in the activity of the photosynthetic apparatus was observed during the post-drought rehydration period. This was accompanied by the accumulation of reactive oxygen species and more advanced senescence of flag leaves. Fluorescence excitation spectra revealed disorders in photosynthetic light conversion in Type O flag leaves during drought and rehydration over the entire range of excitation wavelengths corresponding to UVC, UVB, and UVA radiation. Type V flag leaves developed an effective UV protection mechanism in the form of increased accumulation of cell wall-bound phenolics, which efficiently absorbed UV radiation. Both types differed in the level of accumulation of PsbA, PsbS, and PetC proteins during drought and early rehydration. Soil drought caused a similar reduction in grain yield in both types. However, in Type O, the largest share in the grain yield was ascribed to the ears of lateral stems, while in Type V to the ears of the main stems. Our research has shown that the limited rolling of flag leaves under drought stress corresponds to the effective photoprotection of the photosynthetic apparatus in the first hours of rehydration. •The activity of the photosynthetic apparatus was analyzed during drought and early rehydration.•Studied genotypes exhibited full (Type O) or limited (Type V) flag leaf rolling under drought stress.•Fluorescence excitation spectra revealed disorders in photosynthetic light conversion in Type O.•Type V flag leaves developed an effective protection mechanism against UVC, UVB, and UVA radiation.•Differences in the accumulation of PSII proteins and cytochrome b6f complex were observed.
AbstractList The study aimed to reveal the activity of the photosynthetic apparatus during early rehydration in double haploid (DH) lines of triticale with different types of flag leaf rolling in response to soil drought. Two DH lines, showing full (Type O) and limited (Type V) flag leaf rolling, were investigated. The measurements of chlorophyll fluorescence, analysis of red/far-red fluorescence excitation spectra, as well as detection of selected PSII proteins (PsbA/D1, PsbS) and transmembrane cytochrome complex b6f (PetC/Rieske protein) were performed. The measurements were carried out on the last day of drought and after 1 h, 3 h, and 5 h of rehydration. The physiological condition of flag leaves was studied based on measurements of water relations, the progress of leaf senescence, histochemical detection of reactive oxygen species, and the content of sugars and phenolic compounds. In Type O, as compared with Type V, a further decline in the activity of the photosynthetic apparatus was observed during the post-drought rehydration period. This was accompanied by the accumulation of reactive oxygen species and more advanced senescence of flag leaves. Fluorescence excitation spectra revealed disorders in photosynthetic light conversion in Type O flag leaves during drought and rehydration over the entire range of excitation wavelengths corresponding to UVC, UVB, and UVA radiation. Type V flag leaves developed an effective UV protection mechanism in the form of increased accumulation of cell wall-bound phenolics, which efficiently absorbed UV radiation. Both types differed in the level of accumulation of PsbA, PsbS, and PetC proteins during drought and early rehydration. Soil drought caused a similar reduction in grain yield in both types. However, in Type O, the largest share in the grain yield was ascribed to the ears of lateral stems, while in Type V to the ears of the main stems. Our research has shown that the limited rolling of flag leaves under drought stress corresponds to the effective photoprotection of the photosynthetic apparatus in the first hours of rehydration. •The activity of the photosynthetic apparatus was analyzed during drought and early rehydration.•Studied genotypes exhibited full (Type O) or limited (Type V) flag leaf rolling under drought stress.•Fluorescence excitation spectra revealed disorders in photosynthetic light conversion in Type O.•Type V flag leaves developed an effective protection mechanism against UVC, UVB, and UVA radiation.•Differences in the accumulation of PSII proteins and cytochrome b6f complex were observed.
The study aimed to reveal the activity of the photosynthetic apparatus during early rehydration in double haploid (DH) lines of triticale with different types of flag leaf rolling in response to soil drought. Two DH lines, showing full (Type O) and limited (Type V) flag leaf rolling, were investigated. The measurements of chlorophyll fluorescence, analysis of red/far-red fluorescence ᵉˣᶜⁱᵗᵃᵗⁱᵒⁿ ˢᵖᵉᶜᵗʳᵃ, ᵃˢ ʷᵉˡˡ ᵃˢ ᵈᵉᵗᵉᶜᵗⁱᵒⁿ ᵒᶠ ˢᵉˡᵉᶜᵗᵉᵈ ᴾSᴵᴵ ᵖʳᵒᵗᵉⁱⁿˢ ⁽ᴾˢᵇᴬ/ᴰ₁, ᴾˢᵇS⁾ ᵃⁿᵈ ᵗʳᵃⁿˢᵐᵉᵐᵇʳᵃⁿᵉ ᶜʸᵗᵒᶜʰʳᵒᵐᵉ ᶜᵒᵐᵖˡᵉˣ ᵇ₆ᶠ ⁽ᴾᵉᵗC/ᴿⁱᵉˢᵏᵉ ᵖʳᵒᵗᵉⁱⁿ⁾ ʷᵉʳᵉ ᵖᵉʳᶠᵒʳᵐᵉᵈ. ᵀʰᵉ ᵐᵉᵃˢᵘʳᵉᵐᵉⁿᵗˢ ʷᵉʳᵉ ᶜᵃʳʳⁱᵉᵈ ᵒᵘᵗ on the last day of drought and after 1h, 3h, and 5h of rehydration. The physiological condition of flag leaves was studied based on measurements of water relations, the progress of leaf senescence, histochemical detection of reactive oxygen species, and the content of sugars and phenolic compounds. In Type O, as compared with Type V, a further decline in the activity of the photosynthetic apparatus was observed during the post-drought rehydration period. This was accompanied by the accumulation of reactive oxygen species and more advanced senescence of flag leaves. Fluorescence excitation spectra revealed disorders in photosynthetic light conversion in Type O flag leaves during drought and rehydration over the entire range of excitation wavelengths corresponding to UVC, UVB, and UVA radiation. Type V flag leaves developed an effective UV protection mechanism in the form of increased accumulation of cell wall-bound phenolics, which efficiently absorbed UV radiation. Both types differed in the level of accumulation of PsbA, PsbS, and PetC proteins during drought and early rehydration. Soil drought caused a similar reduction in grain yield in both types. However, in Type O, the largest share in the grain yield was ascribed to the ears of lateral stems, while in Type V to the ears of the main stems. Our research has shown that the limited rolling of flag leaves under drought stress corresponds to the effective photoprotection of the photosynthetic apparatus in the first hours of rehydration.
ArticleNumber 105475
Author Ostrowska, Agnieszka
Hura, Tomasz
Hura, Katarzyna
Author_xml – sequence: 1
  givenname: Agnieszka
  surname: Ostrowska
  fullname: Ostrowska, Agnieszka
  email: a.ostrowska@ifr-pan.edu.pl
  organization: Polish Academy of Sciences, The Franciszek Górski Institute of Plant Physiology, Niezapominajek 21, 30-239 Kraków, Poland
– sequence: 2
  givenname: Katarzyna
  surname: Hura
  fullname: Hura, Katarzyna
  organization: Department of Plant Breeding, Physiology and Seed Science, Faculty of Agriculture and Economics, Agricultural University, Podłużna 3, 30-239 Kraków, Poland
– sequence: 3
  givenname: Tomasz
  orcidid: 0000-0001-8537-4455
  surname: Hura
  fullname: Hura, Tomasz
  organization: Polish Academy of Sciences, The Franciszek Górski Institute of Plant Physiology, Niezapominajek 21, 30-239 Kraków, Poland
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Keywords PetC
O2
DH
F440
gS
F740
Early rehydration
SC
CWPh
DIo/CSm
Cell wall-bound phenolics
ETo/CSm
Drought
PsbA
Photosynthetic apparatus
F690
ΨO
SPh
Flag leaf rolling
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UV radiation
PsbS
TRo/CSm
Fv/Fm
ROS
PI
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Snippet The study aimed to reveal the activity of the photosynthetic apparatus during early rehydration in double haploid (DH) lines of triticale with different types...
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SubjectTerms Cell wall-bound phenolics
chlorophyll
doubled haploids
Drought
Early rehydration
Flag leaf rolling
fluorescence
grain yield
hybrids
leaves
phenolic compounds
photosynthesis
Photosynthetic apparatus
radiation resistance
reactive oxygen species
rehydration
soil
triticale
ultraviolet radiation
UV radiation
water stress
Title Different patterns of the photosynthetic apparatus recovery during early rehydration following drought stress in two types of intergeneric hybrid of triticale
URI https://dx.doi.org/10.1016/j.envexpbot.2023.105475
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