Coriander cake as a functional component in the diets of lactating goats

Document Type : Research Paper

Authors

Russian State Agrarian University, Moscow Timiryazev Agricultural Academy, Moscow, Russian Federation

10.22124/cjes.2025.9214

Abstract

One of the most important factors influencing productivity in the dairy goat farming is the balanced animal feeding. The composition and structure of the diet influence not only the level of milk production in dairy goats, but also its functional properties. It is important to search for inexpensive feed products of plant origin that have high nutritional value and contain the biologically active substances with antioxidant, antimicrobial and anti-inflammatory effects. The introduction of by-products of agro-industrial production into the diets of farm animals allows us to expand the range of domestic inexpensive feed resources. Coriander cake can be considered as a feed product that meets all the above requirements, and therefore its use can serve as an effective alternative for providing goats with nutrients. An assessment was made of the digestibility of dietary nutrients, nitrogen balance and productivity in Saanen goats when different levels of coriander cake were introduced into the diet as a functional feed. It has been established that coriander cake can be used as an alternative feed with specified functional characteristics.

Keywords


Ahmed, AS, El‐Bassiony, T, Elmalt, LM & Ibrahim, HR 2015, Identification of potent antioxidant bioactive peptides from goat milk proteins. Food Research  International, 74: 80–88,  https://doi.org/10.1016/ j.foodres.2015.04.032.
Anaeigoudari, A 2024, Therapeutic effects of Coriandrum sativum extracts. Asian Pacific Journal of Tropical Biomedicine, 14(5): 181-186, https://doi.org/10.4103/apjtb.apjtb_160_24.
Ancuța, P, Sonia, A 2020, Oil press-cakes and meals valorization through circular economy approaches.  Applied Sciences. 10(21): 7432,  https://doi.org/10.3390/app10217432.
Bakir, SMHM, Al-Hiti Sdiq MA, Al-Naimi Rajiha AS, Ali Dina T 2024, Antidiabetic and antioxidant effects of sage tea, Salvia officinalis in male rats exposed to hydrogen peroxide as a source of reactive oxygen species. Caspian Journal of Environmental Sciences, 22(2): 453-457, https://doi.org/10.22124/ CJES.2024.7478.
Bodas, R, Prieto, N, García-González, R, Andrés, S, Giráldez, FJ, López, S 2012, Manipulation of rumen fermentation and methane production with plant secondary metabolites. Animal Feed Science and Technology, 176: 78-93, https://doi.org/10.1016/j.anifeedsci.2012.07.010.
Boudalia, S, Smeti, S, Dawit, M, Senbeta, EK, Gueroui, Y, Dotas, V, Bousbia, A, Symeon, GK 2024, Alternative approaches to feeding small ruminants and their potential benefits. Animals, 14(6): 904. https://doi.org/10.3390/ani14060904.
Buryakov, NP, Aleshin, DE, Buryakova, MA, Zaikina, AS, Medvedev, IK; Zemyachkovskaya, DA, Laptev, GY, Ilina, LA, El Sheikh, AI, Fathala, MM et al. 2023a, An investigation on the effects of partial replacement of rapeseed cake in Ayrshire Dairy heifers’ diets with by-product source of animal protein on body weight dynamics, nutrient balancing, and blood biochemical markers. Animals, 13: 1856.  [in Russ.] https://doi.org/10.3390/ani13111856.
Buryakov, NP, Sycheva, LV, Trukhachev VI, Zaikina, AS, Buryakova, MA, Nikonov, IN, Petrov, AS, Kravchenko, AV, Fathala, MM, Medvedev, IK et al. 2023b, Role of Dietary Inclusion of Phytobiotics and Mineral Adsorbent Combination on Dairy Cows′ Milk Production, Nutrient Digestibility, Nitrogen Utilization, and Biochemical Parameters. Veterinary Sciences, 10(3): 238. https://doi.org/10.3390/vetsci10030238.
Clark, S & García, MBM 2017, A 100-year review: Advances in goat milk research. Journal of Dairy Science, 100(12): 10026–10044, https://doi.org/10.3168/jds.2017-13287.
Daly, T, Jiwan, MA, O'Brien, NM, Aherne, SA 2010, Carotenoid content of commonly consumed herbs and assessment of their bio-accessibility using an in vitro digestion model. Plant Foods for Human Nutrition, 65(2):164-169, https://doi.org/10.1007/s11130-010-0167-3.
Goetsch, AL 2019, Recent advances in the feeding and nutrition of dairy goats. Asian-Australasian Journal of Animal Sciences, 32(8): 1296-1305, https://doi.org/10.5713/ajas.19.0255.
Golovin, AV, Anikin, AS, Pervov, NG, Nekrasov, RV, Strekozov, NI, Duborezov, VM, Chabaev, MG, Fomichev, YP, Gusev, IV 2016, Recommendations on detailed feeding of dairy cattle: A reference manual. L.K. Ernst Federal Research Center for Animal Husbandry: Moscow, Russia.
GOST R 2008, Natural Cow's Milk:  Raw Materials. Technical Conditions (52054-2003), Introduction, 22.05.2003, Moscow: Standard Form, Russia.
Heydari, P, Yavari, M, Adibi, P et al. 2019, Medicinal properties and active constituents of Dracocephalum kotschyi_ and its significance in Iran: a systematic review. Evidence-Based Complementary and Alternative Medicine, article 9465309:1-14. https://doi.org/10.1155/2019/9465309. 
ISO 27085 2009, Animal feeding stuffs-determination of calcium, sodium, phosphorus, magnesium, potassium, iron, zinc, copper, manganese, cobalt, molybdenum, arsenic, lead and cadmium by ICP-AES. International Organization for Standardization: Geneva, Switzerland.
Kazempour, MS, Shahangian, S & Sariri, R 2024, Dracocephalum kotschyi: Inhibition of critical enzyme relevant to type-2 diabetes, essential oil composition, bactericidal and anti-oxidant activity. Caspian Journal of Environmental Sciences, 22(2): 289-303. https://doi.org/ 10.22124/CJES.2023.6256.
Mayulu, H, Fauziah, N, Christiyanto, M, Sunarso, S, Haris, MI 2019, Digestibility Value and Fermentation Level of Local Feed-Based Ration for Sheep. Animal Production, 20: 95-102, DOI: http://dx.doi.org/10.20884/ 1.jap.2018.20.2.706.
OAC. Official Methods of Analysis 1994, 16th ed. Arlington, VA: Association of Official Analytical Chemists.
ISO 27085 2009, Animal feeding stuffs—Determination of calcium, sodium, phosphorus, magnesium, potassium, iron, zinc, copper, manganese, cobalt, molybdenum, arsenic, lead and cadmium by ICP-AES. International Organization for Standardization: Geneva, Switzerland.
Morand-Fehr, P 2005, Recent developments in goat nutrition and application: A review, Small Ruminant Research, 60(1–2): 25-43, DOI: https://doi.org/10.1016/j.smallrumres. 2005.06.004
Pandey, S, Kim, ES, Cho, JH, Song, M, Doo, H, Kim, S, Keum, GB, Kwak, J, Ryu, S, Choi, Y, Kang, J, Choe, J, Kim, HB 2023, Cutting-edge knowledge on the roles of phytobiotics and their proposed modes of action in swine, Frontiers Veterinary Science, 20(10) https://doi.org/10.3389/fvets.2023.1265689.
Puthusseri, B, Divya, P, Lokesh, V, Neelwarne, B 2013, Salicylic acid-induced elicitation of folates in coriander (Coriandrum sativum L.) improves bio-accessibility and reduces pro-oxidant status, Food Chemistry, 136(2): 569-575, https://doi.org/10.1016/j.foodchem.2012.09.005.
Rakita, S, Kokić, B, Manoni, M, Mazzoleni, S, Lin, P, Luciano, A, Ottoboni, M, Cheli, F, Pinotti, L 2023, Cold-pressed oilseed cakes as alternative and sustainable feed ingredients: A review, Foods, 12(3): 432. https://doi.org/10.3390/foods12030432.
Rao, M, Bast, A, de Boer, A 2021, Valorized food processing by-products in the EU: Finding the balance between safety, nutrition, and sustainability. Sustainability, 13(8): 4428.  ,https://doi.org/10.3390/ su13084428.
Romero-Huelva, M, Ramírez-Fenosa, MA, Planelles-González, R, García-Casado, P, Molina-Alcaide, E 2017, Can by-products replace conventional ingredients in concentrate of dairy goat diet?,   Journal of  Dairy Science, 100: 4500-4512,  https://doi.org/10.3168/jds.2016-11766.
Smeti, S, Jo, M, Hajji, H, Alabart, JL, Muñoz, F, Mahouachi, M, Atti, N 2015, Effects of Rosmarinus officinalis L. essential oils supplementation on digestion, colostrum production of dairy ewes and lamb mortality and growth, Animal Science Journal, 86(7): 679-88, https://doi.org/10.1111/asj.12352.
Trukhachev, VI, Oleinik, SA, Zlydnev, NZ, Morozov, VYu, 2015, Adaptation of the recommendations of the International Committee for Animal Recording (ICAR) in evaluating the quality of milk. Research Journal of Pharmaceutical, Biological and Chemical Sciences,6(6):1317-1320.
Trukhachev, VI, Chmykhalo, VK, Belanova, AA et al. 2021, Probiotic biomarkers and models upside down: From humans to animals. Veterinary Microbiology, 261: 109156-109156 https://doi.org/10.1016/j.vetmic. 2021.109156.