SR-XRFA in botanical research: the element composition of the Altai Mountain plants (family Fabaceae)
- Authors: Khramova E.P.1, Syeva S.Y.2, Rakshun Y.V.3, Sorokoletov D.S.3
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Affiliations:
- Central Siberian Botanical Garden of the Siberian Branch of the Russian Academy of Sciences
- Federal Altai Scientific Center of Agrobiotechnologies
- Budker Institute of Nuclear Physics of the Siberian Branch of the Russian Academy of Sciences
- Issue: Vol 87, No 5 (2023)
- Pages: 733-737
- Section: Articles
- URL: https://journals.rcsi.science/0367-6765/article/view/135390
- DOI: https://doi.org/10.31857/S0367676522701265
- EDN: https://elibrary.ru/ABLTMT
- ID: 135390
Cite item
Abstract
A study has been made for the first time on the element composition of both the plants of three species, growing in the Chuyskaya Basin of Altai Mountain, and the samples of soil from their habitat using the method of X-ray fluorescence analysis, involving synchrotron radiation (SR-XRFA). The accumulation of elements depends on plant species, life form and growing conditions. The data obtained on the elemental composition of plant samples and soils can be included in databases.
About the authors
E. P. Khramova
Central Siberian Botanical Garden of the Siberian Branch of the Russian Academy of Sciences
Author for correspondence.
Email: khramova@ngs.ru
Russia, 630090, Novosibirsk
S. Ya. Syeva
Federal Altai Scientific Center of Agrobiotechnologies
Email: khramova@ngs.ru
Russia, 656910, Barnaul
Ya. V. Rakshun
Budker Institute of Nuclear Physics of the Siberian Branch of the Russian Academy of Sciences
Email: khramova@ngs.ru
Russia, 630090, Novosibirsk
D. S. Sorokoletov
Budker Institute of Nuclear Physics of the Siberian Branch of the Russian Academy of Sciences
Email: khramova@ngs.ru
Russia, 630090, Novosibirsk
References
- Суртаева Л.И., Федоров Ю.Н., Шевченко С.А. и др. // Мат. VIII Междунар. научно-практ. конф. “Актуальные проблемы сельского хозяйства горных территорий” (Горно-Алтайск, 2021). С. 34.
- Васильева И.Е., Шабанова Е.В. // Эталоны. Стандарт. образцы. 2021. Т. 17. № 2. С. 33.
- Красноборов И.М., Артемов И.А. Определитель растений Республики Алтай. Новосибирск: Изд-во СО РАН, 2012. 701 с.
- Lombi E., Susini J. // Plant Soil. 2009. V. 320. P. 1.
- Vanhoof C., Bacon J.R., Ellis A.T. et al. // J. Analyt. Atom. Spectrom. 2019. V. 34. P. 1750.
- Singh V.K., Kawai J., Tripathi D.K. X-ray fluorescence in biological sciences: Principles, instrumentation, and applications. Wiley, 2022. 688 p.
- Ендонова Г.Б., Анцупова Т.П., Чупарина Е.В., Айсуева Т.С. // Изв. Иркутск. гос. ун-та. Сер. Биология. Экология. 2016. Т. 16. С. 37.
- Ревенко А.Г., Шарыкина Д.С. // Аналитика и контроль. 2019. Т. 23. № 1. С. 6.
- Rodrigues E.S., Gomes M.H.F., Duran N.M. et al. // Front. Plant Sci. 2018. V. 9. Art. No. 1588.
- Montanha G.S., Rodrigues E.S., Marques J.P.R. et al. // Metallomics. 2020. V. 12. P. 183.
- Васильева И.Е., Шабанова Е.В. // ЖАХ. 2021. Т. 76. № 2. С. 99; Vasil’eva I.E., Shabanova E.V. // J. Analyt. Chem. 2021. V. 76. No. 2. P. 137.
- Trunova V.A., Sidorina A.V., Zolotarev K.V. // X-ray Spectrometry. 2015. V. 44. No. 4. P. 226.
- Piminov P.A., Baranov G.N., Bogomyagkov A.V. et al. // Phys. Procedia. 2016. V. 84. P. 19.
- Дарьин А.В., Ракшун Я.В. // Науч. вестн. Новосиб. гос. техн. ун-та. 2013. № 2(51). С. 112.
- Арнаутов Н.А. Стандартные образцы химического состава природных минеральных веществ. Методические рекомендации. Новосибирск, 1990. 220 с.
- Kabata-Pendias A. Trace elements in soils and plants. Boca Raton: CRC Press/Taylor & Francis Group, 2010. 548 p.
- Васильева И.Е., Шабанова Е.В. // Аналитика и контроль. 2019. Т. 23. № 3. С. 298.
- Битюцкий Н.П. Микроэлементы высших растений. СПб: СПбГУ, 2020. 368 с.
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