1. Joseph P.C. Genetic diversity among varieties of Chia (Salvia hispanica L.) // Genet. Resour. Crop Evol. 2004. № 51. R. 773-781. EDN: https://elibrary.ru/RQLMMZ
2. Chibis S.P. Ispol'zovanie rasteniy na pischevye, lekarstvennye, tehnicheskie, kormovye, meliorativnye, ozelenitel'nye celi: teoreticheskie i prikladnye voprosy // Katalog nauchnyh i innovacionnyh razrabotok FGBOU VO Omskiy GAU: seriya "Agrotehnologicheskiy fakul'tet": sb. statey. Omsk: Omskiy gosudarstvennyy agrarnyy universitet imeni P.A. Stolypina, 2023. S. 103-107. EDN: https://elibrary.ru/EVRIJI
3. Gebremeskal Ye.H., Nadtochii L.A., Kazydub N.G., Chernov R.V., Lu W. Total phenolic content and antioxidant activity of Spanish Sage (Salvia hispanica L.) introduced in the Russian Federation // Polzunovskiy Vestnik. 2023. No. 4. P. 110-117. DOI:https://doi.org/10.25712/ASTU.2072-8921.2023.04.014 EDN: https://elibrary.ru/NUBPZV
4. Kazydub N.G., Pinkal A.V., Chernov R.V., Nadtochii L.A. Possibilities for the introduction and breeding of chia (Salvia hispanica L.) in the southern forest-steppe of Western Siberia // Siberian Journal of Life Sciences and Agriculture. 2022. Vol. 14, No. 4. P. 354-369. DOI:https://doi.org/10.12731/2658-6649-2022-14-4-354-369 EDN: https://elibrary.ru/FVEJVF
5. Ayerza R., Coates W. Influence of environment on growing period and yield, protein, oil and α-linolenic content of three chia (Salvia hispanica L.) selections // Ind. Crops Prod. 2009. № 30. R. 321-324.
6. Chernov R.V., Kazydub N.G. Introdukcii kul'tury chia (Salvia Hispanica L.) v usloviyah yuzhnoy lesostepi Zapadnoy Sibiri // Raznoobrazie i ustoychivoe razvitie agrobiocenozov Omskogo Priirtysh'ya: materialy Vseros. (nac.) konf., posvyasch. 95-letiyu botanicheskogo sada Omskogo GAU, Omsk, 24 marta 2022 goda. Omsk: Omskiy gosudarstvennyy agrarnyy universit, 2022. S. 48-51. EDN: https://elibrary.ru/MKPRDD
7. Grimes S.J., Phillips T.D., Hahn F. Capezzone V., Graeff-Hönninger Growth S. Yield Performance and Quality Parameters of Three Early Flowering Chia Genotypes Cultivated // Agriculture. 2018. № 8. 154 r.
8. Matthäus B., Özcan M.M. The lipid fraction of seeds from Salvia columbariae grown in Arizona // Qual. Assur. Saf. Crop. Foods. 2016. № 8. R. 73-79.
9. Coates W., Ayerza R. Production potential of chia in northwestern Argentina // Ind. Crops Prod. 1996. № 5. R. 229-233.
10. Kazydub N.G., Chernov R.V., Kocyubinskaya O.A. Razrabotka elementov tehnologii vozdelyvaniya novyh form shalfeya ispanskogo (Salvia hispanica L.), chia v Zapadnoy Sibiri // Katalog nauchnyh i innovacionnyh razrabotok FGBOU VO Omskiy GAU: seriya "Agrotehnologicheskiy fakul'tet": sb. statey. Omsk: Omskiy gosudarstvennyy agrarnyy universitet imeni P.A. Stolypina, 2023. S. 154-156. EDN: https://elibrary.ru/DFVXUF
11. Hernandez M. Mucilage from chia seeds (Salvia hispanica): microestructure, physico-chemical characterization and applications in food industry // Pontificia Universidad Catolica De Chile: Escuela De Ingenieria Santiago de Chile. 2012. 120 r.
12. Kaur S., Bains K. Chia (Salvia hispanica L.) A rediscovered ancient grain, from Aztecs to food laboratories // Nutr. Food Sci. 2019. № 50. R. 463-479. EDN: https://elibrary.ru/QGKRGV
13. Chernov R.V., Kazydub N.G., Pinkal' A.V. Biohimicheskiy sostav semyan i zelenoy massy chia (Salvia hispanica L.) v usloviyah yuzhnoy lesostepi Zapadnoy Sibiri // Vestnik Omskogo gosudarstvennogo agrarnogo universiteta. 2022. № 4(48). S. 71-78. DOI:https://doi.org/10.48136/2222-0364_2022_4_71 EDN: https://elibrary.ru/GVOIGC



