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جستجوی مقالات
چهارشنبه 21 مرداد 1405
مهندسی اکوسیستم بیابان
، جلد ۷، شماره ۱ انگلیسی، صفحات ۶۰-۵۳
عنوان فارسی
Comparative Functioning of Photosynthetic Apparatus and Leaf Water Potential in Zygophyllum eurypterum (Boiss & Bushe) During Phenological Phases and Summer Drought
چکیده فارسی مقاله
Background: In arid regions, seasons are often marked by differences in rainfall, with life-history events, along with phenological stages. Materials and Methods: Three phenological phases were distinguished as vegetative phase (VP), flowering phase (FP) and seeding phase (SP). Chlorophyll fluorescence parameters (Chl. FPs) such as maximum quantum yield of PSII photochemistry (F
v
/F
m
), photochemical efficiency of photosystem II (ΦPSII), effective quantum yield (F
v
'/F
m
'), photochemical dissipation of absorbed energy (qP) and non-photochemical dissipation of the absorbed energy (NPQ) along with pigment contents and predawn leaf water potential (ΨL) were determined. Results:All Chl. FPs changed along drought stress gradient and phenological phases, with significant changes at SP. Discussion: A significant change in the mentioned parameters explains the happening of severe photoinhibition because of photo-inactivation of the PSII reaction centers, or expresses thermal dispersion from the antenna pigment-protein compound. A remarkable alteration in pigment content was noticed at the SP. Decrease in the chlorophyll content under drought stress can be due to a reduction in synthesis of pigment complexes encoded by the
cab
gene family or destruction of light harvesting chlorophyll ‘
a
’ or ‘
b
’ pigment protein systems. Conclusions: we can say that
Z. eurypterum
can protects the PSII reaction center from damage at the middle stage of drought stress (end of July) and can be qualified as a drought tolerant species.
کلیدواژههای فارسی مقاله
عنوان انگلیسی
Comparative Functioning of Photosynthetic Apparatus and Leaf Water Potential in Zygophyllum eurypterum (Boiss & Bushe) During Phenological Phases and Summer Drought
چکیده انگلیسی مقاله
Background: In arid regions, seasons are often marked by differences in rainfall, with life-history events, along with phenological stages. Materials and Methods: Three phenological phases were distinguished as vegetative phase (VP), flowering phase (FP) and seeding phase (SP). Chlorophyll fluorescence parameters (Chl. FPs) such as maximum quantum yield of PSII photochemistry (F
v
/F
m
), photochemical efficiency of photosystem II (ΦPSII), effective quantum yield (F
v
'/F
m
'), photochemical dissipation of absorbed energy (qP) and non-photochemical dissipation of the absorbed energy (NPQ) along with pigment contents and predawn leaf water potential (ΨL) were determined. Results:All Chl. FPs changed along drought stress gradient and phenological phases, with significant changes at SP. Discussion: A significant change in the mentioned parameters explains the happening of severe photoinhibition because of photo-inactivation of the PSII reaction centers, or expresses thermal dispersion from the antenna pigment-protein compound. A remarkable alteration in pigment content was noticed at the SP. Decrease in the chlorophyll content under drought stress can be due to a reduction in synthesis of pigment complexes encoded by the
cab
gene family or destruction of light harvesting chlorophyll ‘
a
’ or ‘
b
’ pigment protein systems. Conclusions: we can say that
Z. eurypterum
can protects the PSII reaction center from damage at the middle stage of drought stress (end of July) and can be qualified as a drought tolerant species.
کلیدواژههای انگلیسی مقاله
phenophase, Photoinhibition, photosystem, pigment, quenching, Water deficit
نویسندگان مقاله
ابوالفضل رنجبر فردویی |
Department of desert control and management
نشانی اینترنتی
https://deej.kashanu.ac.ir/article_114053_8ad375355f8d5a08c1a908ee5d354d21.pdf
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