Εμφανίζονται 1 - 20 Αποτελέσματα από 20 για την αναζήτηση '"ФОТОСИСТЕМА II"', χρόνος αναζήτησης: 1,20δλ Περιορισμός αποτελεσμάτων
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    Academic Journal

    Πηγή: Problems of Cryobiology and Cryomedicine; Vol. 33 No. 1 (2023): Probl Cryobiol Cryomed; 025–037 ; Проблемы криобиологии и криомедицины; Том 33 № 1 (2023): Probl Cryobiol Cryomed; 025–037 ; Проблеми кріобіології і кріомедицини; Том 33 № 1 (2023): Probl Cryobiol Cryomed; 025–037 ; 2518-7376 ; 2307-6143

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    Academic Journal

    Συνεισφορές: The research was funded by Russian Science Foundation, project number 22-11-00009., Исследование выполнено при финансовой поддержке Российского научного фонда (проект № 22-11-00009).

    Πηγή: Vestnik Moskovskogo universiteta. Seriya 16. Biologiya; Том 78, № 3 (2023); 186-194 ; Вестник Московского университета. Серия 16. Биология; Том 78, № 3 (2023); 186-194 ; 0137-0952

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    Relation: https://vestnik-bio-msu.elpub.ru/jour/article/view/1260/632; Van Doorslaer X., Dewulf J., Van Langenhove H., Demeestere K. Fluoroquinolone antibiotics: An emerging class of environmental micropollutants. Sci. Total Environ. 2014;500–501:250–269.; Eregowda T., Mohapatra S. Fate of micropollutants in engineered and natural environment. Resilience, response, and risk in water systems. Eds. M. Kumar, F. Munoz-Arriola, H. Furumai, and T. Chaminda. Singapore: Springer; 2020:283–301.; Omuferen L.O., Maseko B., Olowoyo J.O. Occurrence of antibiotics in wastewater from hospital and convectional wastewater treatment plants and their impact on the effluent receiving rivers: current knowledge between 2010 and 2019. Environ. Monit. Assess. 2022;194(4):306.; Lalumera G.M., Calamari D., Galli P. Preliminary investigation on the environmental occurrence and effects of antibiotics used in aquaculture in Italy. Chemosphere. 2004;54(5):661–668.; Yang S., Carlson K.H. Solid-phase extraction-high performance liquid chromatography-ion trap mass spectrometry for analysis of trace concentrations of macrolide antibiotics in natural and wastewater matrices. J. Chromatogr. A. 2004;1038(1–2):141–155.; Santos L.H.M.L.M., Araujo A.N., Fachini A., Pena A., Delerue-Matos C., Montenegro M.C.B.S.M. Ecotoxicological aspects related to the presence of pharmaceuticals in the aquatic environment. J. Hazard. Mater. 2010;175(1–3):45–95.; Kümmerer K. Drugs in the environment, emission of drugs, diagnostic aids and disinfectants into wastewater by hospitals in relation to other sources review. Chemosphere. 2001;45(6–7):957–969.; Kovalakova P., Cizmas L., McDonald T.J., Marsalek B., Feng M., Sharma V.K. Occurrence and toxicity of antibiotics in the aquatic environment: A review. Chemosphere. 2020;251:126351.; Vannini C., Domingo G., Marsoni M., Mattia F.D., Labra M., Castiglioni S., Bracale M. Effects of a complex mixture of therapeutic drugs on unicellular algae Pseudokirchneriella subcapitata. Aquat. Toxicol. 2011;101(2):459–465.; Karampela I., Dalamaga M. Could respiratory fluoroquinolones, levofloxacin and moxifloxacin, prove to be beneficial as an adjunct treatment in COVID-19? Arch. Med. Res. 2020;51(7):741–742.; Hughes S.R., Kay P., Brown L.E. Global synthesis and critical evaluation of pharmaceutical data sets collected from river systems. Environ. Sci. Technol. 2013;47(2):661–677.; Liu B.Y., Nie X.P., Liu W.Q., Snoeijs P., Guan C., Tsui M.T.K. Toxic effects of erythromycin, ciprofloxacin and sulfamethoxazole on photosynthetic apparatus in Selenastrum capricornutum. Ecotoxicol. Environ. Saf. 2011;74(4):1027–1035.; Nie X.P., Liu B.Y., Yu H.J., Liu W.Q., Yang Y.F. Toxic effects of erythromycin, ciprofloxacin and sulfamethoxa- zole exposure to the antioxidant system in Pseudokirchneriella subcapitata. Environ. Pollut. 2013;172:23–32.; Xiong J., Kurade M.B., Kim J.R., Roh H., Jeon B. Ciprofloxacin toxicity and its co-metabolic removal by a freshwater microalga Chlamydomonas mexicana. J. Hazard. Mater. 2017;323(Part A):212–219.; Strasser R.J., Tsimilli-Michael M., Srivasta A. Analysis of the chlorophyll a fluorescence transient. Chloro- phyll a fluorescence. Advances in photosynthesis and respira- tion, vol. 19. Eds. G. Papageorgiou and R. Govindjee. Dordrecht: Springer; 2004:321–362.; Schreiber U. Pulse-Amplitude-Modulation (PAM) fluorometry and saturation pulse method: an overview. Chlorophyll a fluorescence. Advances in photosynthesis and respiration, vol. 19. Eds. G. Papageorgiou and R. Govindjee. Dordrecht: Springer; 2004:279–319.; Stewart R.R.C., Bewley J.D. Lipid peroxidation associated with accelerated aging of soybean axes. Plant Physiol. 1980;65(2):245–248.; Yang L.H., Ying G.G., Su H.C., Stauber J.L., Adams M.S., Binet M.T. Growth-inhibiting effects of 12 antibacterial agents and their mixtures on the freshwater microalga Pseudokirchneriella subcapitata. Environ. Toxicol. Chem. 2008;27(5):1201–1208.; Chen Q., Zhang L., Han Y., Fang J., Wang H. Degradation and metabolic pathways of sulfamethazine and enrofloxacin in Chlorella vulgaris and Scenedesmus obliquus treatment systems. Environ. Sci. Pollut. Res. 2020;27:28198–28208.; Genty B., Briantais J.M., Baker N.R. The relation- ship between the quantum yield of photosynthetic electron-transport and quenching of chlorophyll fluorescence. Biochim. Biophys. Acta. 1989;990(1):87–92.; Антал Т.К., Гpаевcкая Е.Э., Матоpин Д.Н., Волгушева А.А., Оcипов В.А., Кpенделева Т.Е., Pубин А.Б. Исследование влияния ионов метилртути и меди на первичные процессы фотосинтеза у зеленой водоросли Chlamydomonas moewusii с использованием параметров кинетических кривых переменной флуоресценции хлорофилла. Биофизика. 2009;54(4):681–687.; Pan X., Zhang D., Chen X., Mu G., Li L., Bao A. Effects of levofloxacin hydrochlordie on photosystem II activity and heterogeneity of Synechocystis sp. Chemosphere. 2009;77(3):413–418.; Kalaji H.M., Jajoo A., Oukarroum A., Brestic M., Zivcak M., Samborska I.A., Cetner M.D., Łukasik I., Goltsev V., Ladle, R.J. Chlorophyll a fluorescence as a tool to monitor physiological status of plants under abiotic stress conditions. Acta Physiol. Plant. 2016;38:102.; Joshi M.K., Mohanty P. Chlorophyll a fluorescence as a probe of heavy metal Ion toxicity in plants. Chlorophyll a fluorescence. Advances in photosynthesis and respiration, vol. 19. Eds. G. Papageorgiou and R. Govindjee. Dordrecht: Springer; 2004:637–661.; Lazár D. The polyphasic chlorophyll a fluorescence rise measured under high intensity of exciting light. Funct. Plant Biol. 2006;33(1):9–30.; Aristilde L., Melis A., Sposito G. Inhibition of photosynthesis by a fluoroquinolone antibiotic. Environ. Sci. Technol. 2010;44(4):1444–1450.; Murata N., Takahashi S., Nishiyama Y., Allakhverdiev S.I. Photoinhibition of photosystem II under environmental stress. Biochim. Biophys. Acta. 2007;1767(6):414–421.; Tyystjärvi E. Photoinhibition of Photosystem II. Int. Rev. Cell Mol. Biol. 2013;300:243–303.; Pätsikkä E., Aro E.-M., Tyystjärvi E. Increase in the quantum yield of photoinhibition contributes to copper toxicity in vivo. Plant Physiol. 1998;117(2):619–627.; Rintamäki E., Salo R., Lehtonen E., Aro E.-M. Regulation of D1-protein degradation during photoinhibition of photosystem II in vivo: phosphorylation of the D1 protein in various plant groups. Planta. 1995;195(3):379–386.; Pinto E., Sigaud-kutner T.K.S., Leitão M.A.S., Okamoto O.K., Morse D., Colepicolo P. Heavy metal–induced oxidative stress in algae. J. Phycol. 2003;39(6):1008–1018.

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    Academic Journal

    Πηγή: Doklady of the National Academy of Sciences of Belarus; Том 61, № 6 (2017); 66-72 ; Доклады Национальной академии наук Беларуси; Том 61, № 6 (2017); 66-72 ; 2524-2431 ; 1561-8323 ; undefined

    Περιγραφή αρχείου: application/pdf

    Relation: https://doklady.belnauka.by/jour/article/view/475/476; Кабашникова, Л. Ф. Фотосинтетический аппарат и стресс у растений / Л. Ф. Кабашникова. – Минск: Беларус. навука, 2014. – 267 с.; Кабашникова, Л. Ф. Методика оценки состояния злаковых растений в условиях засухи / Л. Ф. Кабашникова, Н. Л. Пшибытко, Л. М. Абрамчик. – Минск: Белорус. наука, 2007. – 42 с.; Пшибытко, Н. Л. Состояние фотосинтетического аппарата в процессе фузариозного увядания томата / Н. Л. Пшибытко, Л. А. Зеневич, Л. Ф. Кабашникова // Физиология растений. – 2006. – Т. 53, № 1. – С. 31–37.; Vlot, A. C. Systemic acquired resistance: the elusive signal(s) / A. C. Vlot, D. F. Klessig, S.-W. Park // Current Opinion in Plant Biology. − 2008. − Vol. 11, N 4. − P. 436–442. doi.org/10.1016/j.pbi.2008.05.003; Brown, G. D. Immune recognition. A new receptor for beta-glucans / G. D. Brown, S. Gordon // Nature. – 2001. – Vol. 413(6851). – P. 36–37. doi.org/10.1038/35092620; Distinct expression patterns of β-1,3-glucanases and chitinases during the germination of Solanaceous seeds / L. Petruzzelli [et al.] // Seed Science Research. − 2003. − Vol. 13, N 2. − P. 139–153. doi.org/10.1079/ssr2003132; Fesel, Ph. H. β-glucan: Crucial component of the fungal cell wall and elusive MAMP in plants / Ph. H. Fesel, A. Zuccaro // Fungal Genetics and Biology. − 2016. − Vol. 90. − P. 53–60.; Шлык, А. А. Определение хлорофилла и каротиноидов в экстрактах зеленых листьев / А. А. Шлык // Биохимические методы в физиологии растений / под ред. О. А. Павлиновой. − М.: Наука, 1971. – С. 154–170.; Krause, G. N. Chlorophyll fluorescence and photosynthesis: the basics / G. N. Krause, E. Weis // Ann. Rev. Plant Physiol. Plant Mol. Biol. – 1991. – Vol. 42, N 1. – P. 313–349. doi.org/10.1146/annurev.pp.42.060191.001525; Roháček, K. Technique of the modulated chlorophyll fluorescence: basic concepts, useful parameters, and some application / K. Roháček, M. Barták // Photosynthetica. − 1999. − Vol. 37. − P. 339–363. doi.org/10.1023/a:1007172424619; Корнеев, Д. Ю. Информационные возможности метода индукции флуоресценции / Д. Ю. Корнеев. − Киев: Альтерпрес, 2002. – 188 с.; Продукты перекисного окисления липидов как возможные посредники между воздействием повышенной температуры и развитием стресс-реакции у растений / Л. Н. Курганова [и др.] // Физиология растений. – 1999. – Т. 46, № 2. – С. 218–222.; Genty, B. Regulation of light utilization for photosynthetic electron transport / B. Genty, J. Harbinson // Photosynthesis and the Environment / ed. N. R. Baker. – Dordrecht: Kluwer Acad. Pablishers, 1996. – P. 67–99. doi.org/10.1007/0-306-481359_3; Maxwell, K. Chlorophyll fluorescence – a practical guide / K. Maxwell, G. N. Johnson // J. Exp. Bot. – 2000. – Vol. 51, N 345. – P. 659–668. doi.org/10.1093/jxb/51.345.659; Placinta, C. M. A review of world-wide contamination of cereal and animal feed with Fusarium mycotoxins / C. M. Placinta, J. P. F. D’Mello, A. M. C. Macdonald // Animal feed science and technology. – 1999. – Vol. 78, N 1–2. – P. 21–37. doi.org/10.1016/s0377-8401(98)00278-8; Колупаев, Ю. Е. Активные формы кислорода и стрессовый сигналинг у растений / Ю. Е. Колупаев, Ю. В. Карпец // Украинский биохимический журн. – 2014. – Т. 86, N 4. – С. 18–35; https://doklady.belnauka.by/jour/article/view/475; undefined

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    Academic Journal

    Συγγραφείς: HÄNßGEN, Ilka

    Πηγή: Наукові праці. Екологія; Том 132, № 119 (2010)

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    Σύνδεσμος πρόσβασης: http://ecology.chdu.edu.ua/article/view/64890

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