Impact of Ozone Exposure on Chlorophyll Fluorescence, Pigment Content and Leaf Gas Exchange on Lonicera caerulea var. kamtschatica and Lonicera caerulea var. emphyllocalyx DOI Open Access
Oskar Basara, Józef Gorzelany

Sustainability, Journal Year: 2025, Volume and Issue: 17(7), P. 2820 - 2820

Published: March 22, 2025

Lonicera caerulea is a species known for its fruit with rich health-promoting composition and the high frost resistance of bushes. The increase in popularity this number area plantations increases risk diseases pests. However, use ozone gas may involve physiological damage to plant. In experiment, 2022–2023, response six varieties L. gaseous at concentration 5 ppm·1 min, ppm·3 min ppm·5 was determined. flavonoid–nitrogen index (NFI) remained unchanged 0.33 both non-ozonated leaves those exposed dose ozone. general, ozonation did not lead significant changes parameters observed most studied. mean performance (Pitotal) value ozonated decreased by 23.1% LE ‘Lori’ 23.8% ‘139-24’, after applying an 2022. A decrease 34.3% average transpiration rate (E) plants variety ‘21-17’ across years cultivation. different effects doses used indicate reactions depending on year Overall, study found that does have phytotoxic effect varieties, which differences between varieties. appropriate cause any disruption selected plants. absence phytotoxicity some allow treatments agriculture; however, further research long-term required.

Language: Английский

Impact of Ozone Exposure on Chlorophyll Fluorescence, Pigment Content and Leaf Gas Exchange on Lonicera caerulea var. kamtschatica and Lonicera caerulea var. emphyllocalyx DOI Open Access
Oskar Basara, Józef Gorzelany

Sustainability, Journal Year: 2025, Volume and Issue: 17(7), P. 2820 - 2820

Published: March 22, 2025

Lonicera caerulea is a species known for its fruit with rich health-promoting composition and the high frost resistance of bushes. The increase in popularity this number area plantations increases risk diseases pests. However, use ozone gas may involve physiological damage to plant. In experiment, 2022–2023, response six varieties L. gaseous at concentration 5 ppm·1 min, ppm·3 min ppm·5 was determined. flavonoid–nitrogen index (NFI) remained unchanged 0.33 both non-ozonated leaves those exposed dose ozone. general, ozonation did not lead significant changes parameters observed most studied. mean performance (Pitotal) value ozonated decreased by 23.1% LE ‘Lori’ 23.8% ‘139-24’, after applying an 2022. A decrease 34.3% average transpiration rate (E) plants variety ‘21-17’ across years cultivation. different effects doses used indicate reactions depending on year Overall, study found that does have phytotoxic effect varieties, which differences between varieties. appropriate cause any disruption selected plants. absence phytotoxicity some allow treatments agriculture; however, further research long-term required.

Language: Английский

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