Milk-clotting activity of Withania coagulans hairy root extracts
- Авторлар: Mikhaylova E.V.1, Palkina I.M.2, Slinkin A.A.3
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Мекемелер:
- Institute of Biochemistry and Genetics of Ufa Federal Research Center RAS
- Ufa State Petroleum Technological University
- Bashkir State Agrarian University
- Шығарылым: Том 15, № 1 (2025)
- Беттер: 24-31
- Бөлім: Physico-chemical biology
- URL: https://journals.rcsi.science/2227-2925/article/view/365938
- DOI: https://doi.org/10.21285/achb.957
- EDN: https://elibrary.ru/CGBHDA
- ID: 365938
Дәйексөз келтіру
Толық мәтін
Аннотация
This article presents data on the effect of fruit and hairy root extracts of Withania coagulans Dunal on the process of milk coagulation with a view to its potential application in cheese making. Cheese curd can be obtained by the action of milk-clotting enzymes on the protein fraction of milk. To that end, animal-derived enzymes are widely used. However, the as-produced cheeses may not suit some population groups. In this regard, studying the possibility of using plant proteases in cheese making, as well as their production in plant tissue cultures, appears to be a relevant research task. Hairy roots bioreactor-cultivated using the Agrobacterium rhizogenes soil bacterium contain, as a rule, not only root-specific metabolites but also compounds characteristic of other plant tissues. In this work, protein was extracted from Withania coagulans fruits and hairy roots using various buffers followed by assessing the milk-clotting activity of the extracts using fresh and powdered full cream milk. An animal milk-clotting enzyme was used as a control. The activity of Withania coagulans fruit extract was found to be 5 U/mg of protein. Coagulation carried out with hairy root extracts lasted for at least 6 hours, indicating the presence of a low concentration of milk-clotting enzyme. Since hairy roots of Withania coagulans have been studied in this respect for the first time, further optimization of their cultivation parameters, enzyme extraction, and its application is required.
Негізгі сөздер
Авторлар туралы
E. Mikhaylova
Institute of Biochemistry and Genetics of Ufa Federal Research Center RAS
Хат алмасуға жауапты Автор.
Email: mikhele@list.ru
ORCID iD: 0000-0001-7374-8405
I. Palkina
Ufa State Petroleum Technological University
Email: palkinaim@yandex.ru
ORCID iD: 0009-0001-7433-7533
A. Slinkin
Bashkir State Agrarian University
Email: s-artemk@yandex.ru
ORCID iD: 0009-0007-1717-3177
Әдебиет тізімі
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Михайлова Ю.А. Мягкий сыр с использованием растительного фермента из цветков чертополоха курчавого (Carduus Crispus) // Молочнохозяйственный вестник. 2023. N 1. С. 163–181. doi: 10.52231/2225-4269_2023_1_163. EDN: MBZGFS. Шляпникова С.В., Батырова Э.Р. Особенности коагуляции молока: сычужный ферментный препарат и его аналоги // Biomics. 2017. Т. 9. N 1. С. 33–41. EDN: ZAXQYV. Troncoso F.D., Sánchez D.A., Ferreira M.L. Production of plant proteases and new biotechnological applications: an updated review // ChemistryOpen. 2022. Vol. 11, no. 3. P. e202200017. doi: 10.1002/open.202200017. Nicosia F.D., Puglisi I., Pino A., Caggia C., Randazzo C.L. Plant milk-clotting enzymes for cheesemaking // Foods. 2022. Vol. 11, no. 6. P. 871. doi: 10.3390/foods11060871. Mozzon M., Foligni R., Mannozzi C., Zamporlini F., Raffaelli N., Aquilanti L. Clotting properties of Onopordum tauricum (Willd.) aqueous extract in milk of different species // Foods. 2020. Vol. 9, no. 6. P. 692. doi: 10.3390/foods9060692. Foligni R., Mannozzi C., Gasparrini M., Raffaelli N., Zamporlini F., Tejada L., at al. Potentialities of aqueous extract from cultivated Onopordum tauricum (Willd.) as milk clotting agent for cheesemaking // Food Research International. 2022. Vol. 158. P. 111592. doi: 10.1016/j.foodres.2022.111592. Ben Amira A., Besbes S., Attia H., Blecker C. Milk-clotting properties of plant rennets and their enzymatic, rheological, and sensory role in cheese making: a review // International Journal of Food Properties. 2017. Vol. 20, no. sup1. P. S76–S93. doi: 10.1080/10942912.2017.1289959. Стурова Ю.Г., Гришкова А.В., Коньшин В.В., Просеков А.Ю. Влияние физико-химических факторов на специфическую активность протеаз, применяемых в биотехнологии сыров // Известия вузов. Прикладная химия и биотехнология. 2024. Т. 14. N 3. С. 352–361. (In Russian). doi: 10.21285/achb.935. EDN: GEWFBW. Folgado A., Pires A.S., Figueiredo A.C., Pimentel C., Abranches R. Toward alternative sources of milk coagulants for cheese manufacturing: establishment of hairy roots culture and protease characterization from Cynara cardunculus L. // Plant Cell Reports. 2020. Vol. 39. P. 89–100. doi: 10.1007/s00299-019-02475-1. Naz S., Masud T., Nawaz M.A. Characterization of milk coagulating properties from the extract of Withania coagulans // International Journal of Dairy Technology. 2009. Vol. 62, no. 3. P. 315–320. doi: 10.1111/j.1471-0307.2009.00492.x. Khan R.S., Masud T. Comparison of buffalo cottage cheese made from aqueous extract of Withania coagulans with commercial calf rennet // International Journal of Dairy Technology. 2013. Vol. 66, no. 3. P. 396–401. doi: 10.1111/1471-0307.12048. Khan M.I., Maqsood M., Saeed R.A., Alam A., Sahar A., Kieliszek M., et al. Phytochemistry, food application, and therapeutic potential of the medicinal plant (Withania coagulans): a review // Molecules. 2021. Vol. 26, no. 22. P. 6881. doi: 10.3390/molecules26226881. Salehi M., Aghamaali M.R., Sajedi R.H., Asghari S.M., Jorjani E. Purification and characterization of a milk-clotting aspartic protease from Withania coagulans fruit // International Journal of Biological Macromolecules. 2017. Vol. 98. P. 847–854. doi: 10.1016/j.ijbiomac.2017.02.034. Kazemipour N., Salehi Inchebro M., Valizadeh J., Sepehrimanesh M. Clotting characteristics of milk by Withania coagulans: proteomic and biochemical study // International Journal of Food Properties. 2017. Vol. 20, no. 6. P. 1290–1301. doi: 10.1080/10942912.2016.1207664. Ahmadi S., Salehi M., Ausi S. Kinetic and thermodynamic study of aspartic protease extracted from Withania coagulans // International Dairy Journal. 2021. Vol. 116. P. 104960. doi: 10.1016/j.idairyj.2020.104960. Михайлова Е.В., Панфилова М.А., Федяев В.В., Кулуев Б.Р. Влияние содержания макро- и микроэлементов в питательной среде на продуктивность культур волосовидных корней Withania coagulans // Биотехнология. 2024. Т. 40. N 1. С. 15–23. doi: 10.56304/S0234275824010083. EDN: LDMFXF. Beigomi M., Mohammadifar M.A., Hashemi M., Rohani M.G., Senthil K., Valizadeh M. Biochemical and rheological characterization of a protease from fruits of Withania coagulans with a milk-clotting activity // Food Science and Biotechnology. 2014. Vol. 23. P. 1805–1813. doi: 10.1007/s10068-014-0247-5. Rocha G.F., Cotabarren J., Obregón W.D., Fernández G., Rosso A.M., Parisi M.G. Milk-clotting and hydrolytic activities of an aspartic protease from Salpichroa origanifolia fruits on individual caseins // International Journal of Biological Macromolecules. 2021. Vol. 192. P. 931–938. doi: 10.1016/j.ijbiomac.2021.10.004. Senthilkumar S., Ramasamy D., Subramanian S. Isolation and partial characterisation of milk-clotting aspartic protease from Streblus asper // Food Science and Technology International. 2006. Vol. 12, no. 2. P. 103–109. doi: 10.1177/1082013206063839. Pagthinathan M., Ghazali H.M., Yazid A.M., Foo H.L. Extraction, purification and characterisation of a milkclotting protease from ‘kesinai’ (Streblus asper Lour.) leaves // International Food Research Journal. 2019. Vol. 26, no. 3. P. 913–922.
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