Increase in the levels of air pollution due to the increase in industrial and agricultural technology has prompted investigation of mechanisms that contribute to air pollution tolerance in plants. Pollen grains of Thuja orientalis were collected from controlled (less polluted) and polluted areas (mainly SO2, NO2, CO, HC and APM). Thuja pollen is considered inaperturate and granulate. The exine is shed during rehydration, leaving the male gametophyte naked. The pollen grains collected from polluted areas are smaller and more fragile compared to control ones. The exine splitting is faster and higher in polluted pollen grains. SDS-PAGE (sodium dodecyl sulphate-polyacrylamide gel electrophoresis) pattern do not show significant differences in polluted pollen than those in the control group. HPLC (high pressure liquid chromatography) analysis demonstrates that air pollution induces flavonoids accumulation to significantly higher levels in polluted pollen than in controlled ones. These observations suggest that plants try to respond suitably by adjusting their metabolism so that minimum damage is done due to air pollutants. Their protective responses may include an increase in antioxidant enzymes and metabolites and induction of protection-related secondary metabolite genes especially flavonoids.
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Laboratory of Cytology, Department of Biology, Teach. Train. Univ., Tehran, IranLaboratory of Cytology, Department of Biology, Teach. Train. Univ., Tehran, Iran
Majd A.
Chehregani A.
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Department of Biology, BuAli Sina University, Hamadan, IranLaboratory of Cytology, Department of Biology, Teach. Train. Univ., Tehran, Iran
Chehregani A.
Moin M.
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Asthma and Allergy Research Center, Tehran, IranLaboratory of Cytology, Department of Biology, Teach. Train. Univ., Tehran, Iran
Moin M.
Gholami M.
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Department of Biology, BuAli Sina University, Hamadan, IranLaboratory of Cytology, Department of Biology, Teach. Train. Univ., Tehran, Iran
Gholami M.
Kohno S.
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Department of Pharmacology, Kyoto Pharmaceutical University, Kyoto, JapanLaboratory of Cytology, Department of Biology, Teach. Train. Univ., Tehran, Iran
Kohno S.
Nabe T.
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Department of Pharmacology, Kyoto Pharmaceutical University, Kyoto, JapanLaboratory of Cytology, Department of Biology, Teach. Train. Univ., Tehran, Iran
Nabe T.
Shariatzade M.A.
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Faculty of Health, Urmia University, IranLaboratory of Cytology, Department of Biology, Teach. Train. Univ., Tehran, Iran
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Univ Barcelona, Dept Bot, Fac Pharm, Av Diagonal S-N, E-08028 Barcelona, SpainUniv Barcelona, Dept Bot, Fac Pharm, Av Diagonal S-N, E-08028 Barcelona, Spain
Suarez-Cervera, Maria
Castells, Teresa
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Univ Barcelona, Dept Bot, Fac Pharm, Av Diagonal S-N, E-08028 Barcelona, SpainUniv Barcelona, Dept Bot, Fac Pharm, Av Diagonal S-N, E-08028 Barcelona, Spain
Castells, Teresa
Vega-Maray, Ana
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Univ Leon, Fac Biol, Dept Biodivers & Environm Management Bot, E-24071 Leon, SpainUniv Barcelona, Dept Bot, Fac Pharm, Av Diagonal S-N, E-08028 Barcelona, Spain
Vega-Maray, Ana
Civantos, Esther
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Jimenez Diaz Fdn Capio, Dept Immunol, Madrid, SpainUniv Barcelona, Dept Bot, Fac Pharm, Av Diagonal S-N, E-08028 Barcelona, Spain
Civantos, Esther
del Pozo, Victoria
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Jimenez Diaz Fdn Capio, Dept Immunol, Madrid, SpainUniv Barcelona, Dept Bot, Fac Pharm, Av Diagonal S-N, E-08028 Barcelona, Spain
del Pozo, Victoria
Fernandez-Gonzalez, Delia
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Univ Leon, Fac Biol, Dept Biodivers & Environm Management Bot, E-24071 Leon, SpainUniv Barcelona, Dept Bot, Fac Pharm, Av Diagonal S-N, E-08028 Barcelona, Spain