KR20230133178A - Breeding method of catfish comprising Rhus verniciflua STOKES trunk extract - Google Patents
Breeding method of catfish comprising Rhus verniciflua STOKES trunk extract Download PDFInfo
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- KR20230133178A KR20230133178A KR1020220154651A KR20220154651A KR20230133178A KR 20230133178 A KR20230133178 A KR 20230133178A KR 1020220154651 A KR1020220154651 A KR 1020220154651A KR 20220154651 A KR20220154651 A KR 20220154651A KR 20230133178 A KR20230133178 A KR 20230133178A
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- fatty acids
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- 235000018291 probiotics Nutrition 0.000 description 1
- 238000010298 pulverizing process Methods 0.000 description 1
- 238000000746 purification Methods 0.000 description 1
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- QZZGJDVWLFXDLK-UHFFFAOYSA-N tetracosanoic acid Chemical compound CCCCCCCCCCCCCCCCCCCCCCCC(O)=O QZZGJDVWLFXDLK-UHFFFAOYSA-N 0.000 description 1
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Classifications
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- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23K—FODDER
- A23K10/00—Animal feeding-stuffs
- A23K10/30—Animal feeding-stuffs from material of plant origin, e.g. roots, seeds or hay; from material of fungal origin, e.g. mushrooms
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23K—FODDER
- A23K50/00—Feeding-stuffs specially adapted for particular animals
- A23K50/80—Feeding-stuffs specially adapted for particular animals for aquatic animals, e.g. fish, crustaceans or molluscs
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P60/00—Technologies relating to agriculture, livestock or agroalimentary industries
- Y02P60/60—Fishing; Aquaculture; Aquafarming
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- Polymers & Plastics (AREA)
- Engineering & Computer Science (AREA)
- Food Science & Technology (AREA)
- Animal Husbandry (AREA)
- Zoology (AREA)
- Molecular Biology (AREA)
- Mycology (AREA)
- Physiology (AREA)
- Botany (AREA)
- Biotechnology (AREA)
- Health & Medical Sciences (AREA)
- Insects & Arthropods (AREA)
- Marine Sciences & Fisheries (AREA)
- Birds (AREA)
- Fodder In General (AREA)
Abstract
본 발명은 민물어류용 사료 첨가제에 관한 것으로 옻나무(Rhus verniciflua STOKES) 줄기 추출물을 유효성분으로 함유함으로써, 민물어류의 수조 내 저장기간을 향상시킬 수 있으며, 조지방의 함량을 증가시켜 관능성을 향상시키고, 지방산의 함량(특히 불포화지방산의 함량)을 증가시켜 섭취자의 건강을 증진시킬 수 있다. The present invention relates to a feed additive for freshwater fish. By containing Rhus verniciflua STOKES stem extract as an active ingredient, the storage period in the aquarium of freshwater fish can be improved, and the sensory properties are improved by increasing the crude fat content. , it can improve the health of consumers by increasing the content of fatty acids (especially the content of unsaturated fatty acids).
Description
본 발명은 민물어류의 수조 내 저장기간을 향상시킬 수 있으며, 조지방 및 지방산의 함량을 증진시킬 수 있는 민물어류용 사료 첨가제에 관한 것이다.The present invention relates to a feed additive for freshwater fish that can improve the storage period of freshwater fish in an aquarium and increase the content of crude fat and fatty acids.
최근 웰니스(wellness)라는 단어가 유행하고 있는데, 웰빙과 행복 또는 웰빙과 건강(fitneness)의 합성어인 이 단어는 신체, 정신 및 사회적으로 건강한 상태를 의미한다. Recently, the word wellness has become popular. This word, a compound word of well-being and happiness or well-being and health, refers to a state of physical, mental and social health.
이처럼 건강을 유지하면서 삶의 질을 높이기 위한 노력이 큰 관심을 받고 있으며 우리나라 사람의 평균 수명이 80세에 근접함에 따라 건강과 관련된 의약품, 식료품, 화장품 등의 관심과 수요, 공급이 급증하고 있는 실정이다. 이렇게 웰빙 식품에 대한 선호도와 경제성장으로 인해 국민의 생활수준이 향상되면서, 서구화된 식생활 패턴의 변화로 인해 육상 고기의 소비가 증가하여 각종 성인병(동맥경화, 혈압, 당뇨병 및 혈관계 질환 등)이 매년 증가됨에 따라 내수면 수산물이 건강식품으로 새롭게 인식되고 있다.Efforts to improve the quality of life while maintaining health are receiving great attention, and as the average lifespan of Koreans approaches 80 years, interest, demand, and supply of health-related medicines, foods, and cosmetics are rapidly increasing. am. As the people's standard of living improves due to the preference for well-being foods and economic growth, the consumption of land-based meat increases due to changes in westernized eating patterns, which increases the incidence of various adult diseases (arteriosclerosis, blood pressure, diabetes, and vascular diseases, etc.) every year. As the number of marine products increases, inland marine products are being recognized as health foods.
육식 중심의 식생활 습관에서 생선 등 수산생물 위주의 식탁문화로 변화되고 있지만 가까운 이웃나라의 원전 오염수 방류와 미세 플라스틱 등의 환경문제로 인체에 안전하고 안정적인 내수면 민물양식 수산물 소비가 점차 늘어날 가능성이 높다. There is a shift from meat-centered eating habits to a table culture centered on fish and other aquatic life, but due to environmental issues such as discharge of contaminated water from nuclear power plants in neighboring countries and microplastics, it is highly likely that consumption of freshwater aquaculture products from inland waters that are safe and stable for the human body will gradually increase. .
내수면 민물어류 양식업은 바다수산자원의 고갈에 대응할 수 있는 혁신적인 방법으로서 1980년대부터 장어 및 잉어 양식을 시작으로 1990년대 초반에 가두리 양식업의 비약적인 발전과 팽창에 힘입어 현재, 내수면 민물어류 양식업에 의한 수산물의 연간 생산량은 총 3만 4천 톤이며, 이중에서 메기의 생산량은 약 4천 톤(약 11.6%, 2020년도 통계청)으로서 전체 내수면 민물어류 양식업에 의한 생산량 중에서 많은 비중을 차지하고 있다. Inland freshwater fish aquaculture is an innovative method to respond to the depletion of marine fish resources. Starting with eel and carp farming in the 1980s, thanks to the rapid development and expansion of cage aquaculture in the early 1990s, marine products from inland freshwater fish aquaculture are currently growing. The annual production is a total of 34,000 tons, of which the production of catfish is about 4,000 tons (about 11.6%, Statistics Korea, 2020), accounting for a large proportion of the total production from freshwater fish aquaculture in inland waters.
그러나, 현재 양식 폐사율이 연간 15~20%를 상회하며, 그 주요 원인으로 수온상승으로 인한 난치성 질병 발생 및 혼합감염(바이러스, 세균, 기생충), 약제 치료효과의 저감으로 내수면 민물어류 양식업에 커다란 문제를 일으키고 있다. 더욱이, 내수면 민물어류 양식업은 대부분 수족관에서 저장한 후 최종 소비자에게 유통되고 있으나 저장 중에 많게는 40%의 수산물이 폐기되는 실정이다.However, the current aquaculture mortality rate exceeds 15-20% per year, and the main causes are the occurrence of incurable diseases and mixed infections (viruses, bacteria, parasites) due to increased water temperature, and the reduction of drug treatment effectiveness, which is a major problem for inland freshwater fish aquaculture. is causing Moreover, most inland freshwater fish aquaculture is stored in aquariums and then distributed to end consumers, but as much as 40% of marine products are discarded during storage.
한편, 인체에 악영향을 미치지 않으면서 다양한 생리활성 작용을 발휘하는 천연물의 소비욕구가 높아지면서 직·간접적으로 이들을 섭취하려는 노력이 증가하고 있다. 또한 천연물로부터 생리활성 물질을 찾아내어 보다 기능성이 뛰어난 고기능성 물질로 전환시키기 위한 노력이 각광을 받고 있다. Meanwhile, as the desire to consume natural products that exert various physiological activities without adversely affecting the human body increases, efforts to consume them directly or indirectly are increasing. In addition, efforts to discover physiologically active substances from natural products and convert them into highly functional substances with superior functionality are receiving attention.
따라서 내수면 민물어류 양식 과정에서 저장기간이 길지 않는 등의 문제점을 해결하기 위하여 천연원료를 이용한 고기능성 사료 첨가제 개발이 요구되고 있다. Therefore, there is a need to develop highly functional feed additives using natural raw materials to solve problems such as short storage period during inland freshwater fish farming.
본 발명의 목적은 민물어류의 수조 내 저장기간을 향상시킬 수 있으며, 조지방 및 지방산의 함량을 증진시킬 수 있는 민물어류용 사료 첨가제를 제공하는데 있다.The purpose of the present invention is to provide a feed additive for freshwater fish that can improve the storage period of freshwater fish in an aquarium and increase the content of crude fat and fatty acids.
상기한 목적을 달성하기 위한 본 발명의 민물어류용 사료 첨가제는 옻나무(Rhus verniciflua STOKES) 줄기 추출물을 유효성분으로 함유할 수 있다.The feed additive for freshwater fish of the present invention to achieve the above object may contain Rhus verniciflua STOKES stem extract as an active ingredient.
상기 사료 첨가제를 섭취 시 민물어류 내의 조지방 함량은 40 내지 50%로 높을 수 있다.When the feed additive is consumed, the crude fat content in freshwater fish can be as high as 40 to 50%.
상기 사료 첨가제를 섭취 시 민물어류에 함유된 지방산 중에서 불포화지방산은 일반 사료를 섭취한 민물어류에 비하여 20-28% 향상될 수 있다. When consuming the above feed additive, unsaturated fatty acids among the fatty acids contained in freshwater fish can be improved by 20-28% compared to freshwater fish consuming regular feed.
상기 사료 첨가제를 섭취 시 일반 사료만 섭취 시 보다 민물어류의 수조 내 저장기간이 9일 내지 20일 증가할 수 있다.When consuming the above feed additive, the storage period in the aquarium of freshwater fish can be increased by 9 to 20 days compared to when consuming only regular feed.
상기 사료 첨가제를 섭취 시 민물어류에 함유된 지방산 중에서 라우르산(Lauric acid)의 함량은 6.0 내지 10.0 mg/100g, 올레산(Oleic acid)의 함량은 14.0 내지 18.0 g/100g, 리놀레산(Linoleic acid)의 함량은 6.0 내지 9.0 g/100g 및 시스-8, 11, 14-에이코자트리에노익산(cis-8,11,14-Eicosatrienoic acid)의 함량은 200 내지 400 mg/100g일 수 있다. When consuming the above feed additive, the content of lauric acid among the fatty acids contained in freshwater fish is 6.0 to 10.0 mg/100g, the content of oleic acid is 14.0 to 18.0 g/100g, and linoleic acid. The content of may be 6.0 to 9.0 g/100g and the content of cis-8, 11, 14-eicosatrienoic acid (c is -8,11,14-Eicosatrienoic acid) may be 200 to 400 mg/100g.
상기 옻나무 줄기 추출물은 물, 탄소수 1 내지 4의 저급알코올 또는 이들의 혼합용매로 추출된 것일 수 있다.The lacquer tree stem extract may be extracted with water, a lower alcohol having 1 to 4 carbon atoms, or a mixed solvent thereof.
상기 혼합용매는 20 내지 80 부피%의 메탄올, 에탄올, 부탄올 또는 프로판올 수용액일 수 있다.The mixed solvent may be a 20 to 80% by volume aqueous solution of methanol, ethanol, butanol, or propanol.
상기 민물어류는 메기, 송어, 향어, 민물장어, 잉어, 붕어, 연어, 빙어, 은어 또는 미꾸라지일 수 있다.The freshwater fish may be catfish, trout, perch, freshwater eel, carp, crucian carp, salmon, smelt, silverfish, or loach.
상기 사료 첨가제는 일반 사료 100 중량부에 대하여 5 내지 20 중량부로 사용될 수 있다. The feed additive may be used in an amount of 5 to 20 parts by weight based on 100 parts by weight of general feed.
본 발명의 옻나무 줄기 추출물을 유효성분으로 함유하는 사료 첨가제는 수조 내의 민물어류에 투여 시 병증 또는 괴양 증상이 늦게 나타나므로 민물어류를 수조에 저장할 수 있는 기간을 늘릴 수 있다.When the feed additive containing the sumac tree stem extract of the present invention as an active ingredient is administered to freshwater fish in an aquarium, symptoms of disease or ulcers appear late, so the period during which freshwater fish can be stored in the aquarium can be increased.
또한, 본 발명의 사료 첨가제는 조지방의 함량을 증가시켜 관능성을 향상시키고, 지방산의 함량(특히 불포화지방산의 함량)을 증가시켜 섭취자의 건강을 증진시킬 수 있다.In addition, the feed additive of the present invention can improve sensory properties by increasing the content of crude fat and improve the health of consumers by increasing the content of fatty acids (particularly the content of unsaturated fatty acids).
도 1은 수조 내에 저장 중에서 메기에 발생한 병증 또는 괴양 증상을 촬영한 사진이다.Figure 1 is a photograph of symptoms or symptoms that occurred in a catfish while stored in a water tank.
본 발명은 민물어류의 수조 내 저장기간을 향상시킬 수 있으며, 조지방 및 지방산의 함량을 증진시킬 수 있는 민물어류용 사료 첨가제에 관한 것이다.The present invention relates to a feed additive for freshwater fish that can improve the storage period of freshwater fish in an aquarium and increase the content of crude fat and fatty acids.
즉, 본 발명의 사료 첨가제는 수조에서 양식되는 민물어류용으로 사용된다.That is, the feed additive of the present invention is used for freshwater fish cultured in aquariums.
이하, 본 발명을 상세하게 설명한다. Hereinafter, the present invention will be described in detail.
본 발명의 민물어류용 사료 첨가제는 옻나무(Rhus verniciflua STOKES) 줄기 추출물을 유효성분으로 함유한다.The feed additive for freshwater fish of the present invention contains Rhus verniciflua STOKES stem extract as an active ingredient.
상기 옻나무(Rhus verniciflua STOKES)는 옻나무과에 속하는 낙엽활엽교목으로서, 유독물질인 우루시올(Urushiol)이 있어 옻을 유발시킨다. 한방에서는 파어(破瘀), 소적(消積), 살균의 효능이 있다고 하여 주로 어혈제증(瘀血諸症), 경폐(經閉), 심통(心痛), 충적(蟲積) 등에 사용한다.The lacquer tree ( Rhus verniciflua STOKES) is a deciduous broad-leaved tree belonging to the lacquer family and contains the toxic substance urushiol, which causes lacquer. In oriental medicine, it is said to have the effect of removing blood clots, removing red blood cells, and sterilizing blood, and is mainly used for blood clots, hard lungs, heart pain, and blood clots.
본 발명에서는 옻나무 줄기를 이용하는 것으로서, 옻나무 줄기가 아니라 뿌리, 잎, 수액 등을 이용하는 경우에는 수조 내 저장기간, 조지방 및 지방산의 함량이 향상되지 못할 수 있다.In the present invention, lacquer tree stems are used, and if roots, leaves, sap, etc. are used instead of lacquer tree stems, the storage period in the water tank and the content of crude fat and fatty acid may not be improved.
상기 옻나무 줄기는 추출용매와 1 : 10 내지 50의 중량비, 바람직하게는 1 : 20 내지 30의 중량비로 혼합하여 70 내지 110 ℃, 바람직하게는 80 내지 90 ℃에서 5 내지 15시간, 바람직하게는 10 내지 13시간 동안 추출한 후 감압농축을 수행하여 추출물을 제조한다. 상기 옻나무 줄기와 추출용매의 중량비가 상기 범위를 벗어나는 경우에는 추출물에 옻나무 줄기의 유효성분이 적은 양으로 추출될 수 있다.The lacquer tree stems are mixed with the extraction solvent at a weight ratio of 1:10 to 50, preferably 1:20 to 30, and incubated at 70 to 110°C, preferably 80 to 90°C, for 5 to 15 hours, preferably 10. The extract is prepared by extracting for 13 hours and then concentrating under reduced pressure. If the weight ratio of the lacquer tree stem and the extraction solvent is outside the above range, the active ingredient of the lacquer tree stem may be extracted in a small amount in the extract.
추출온도 및 추출시간이 상기 하한치 미만인 경우에는 옻나무 줄기의 유효성분이 적은 양으로 추출될 수 있으며, 수조 내 저장기간, 조지방 및 지방산의 함량이 향상되지 못할 수 있다.If the extraction temperature and extraction time are below the above lower limits, the active ingredients of sumac tree stems may be extracted in small amounts, and the storage period in the water tank and the content of crude fat and fatty acids may not be improved.
상기 각 추출물을 추출하는 추출용매는 물, 탄소수 1 내지 4의 저급알코올 또는 이들의 혼합용매로서, 상기 저급알코올로는 20 내지 80%의 메탄올, 에탄올, 부탄올 또는 프로판올을 들 수 있다.The extraction solvent for extracting each extract is water, a lower alcohol having 1 to 4 carbon atoms, or a mixed solvent thereof. The lower alcohol may include 20 to 80% methanol, ethanol, butanol, or propanol.
상기 추출용매로는 특별히 한정하는 것은 아니지만 물로 추출된 추출물이 수조 내 저장기간, 조지방 및 지방산 함량의 향상에 바람직하게 작용한다. The extraction solvent is not particularly limited, but extracts extracted with water are preferred for improving the storage period in the water tank and the crude fat and fatty acid content.
이와 같이 추출된 옻나무 줄기 추출물에는 갈산 0.8 내지 1.5 중량%, 푸스틴 2 내지 5 중량% 및 피세틴 1 내지 2 중량%가 함유될 수 있다.The sumac stem extract extracted in this way may contain 0.8 to 1.5% by weight of gallic acid, 2 to 5% by weight of fustin, and 1 to 2% by weight of fisetin.
상기 민물어류로는 특별히 한정되지 않지만 바람직하게는 메기, 송어, 향어, 민물장어, 잉어, 붕어, 연어, 빙어, 은어 또는 미꾸라지일 수 있다.The freshwater fish is not particularly limited, but is preferably catfish, trout, perch, freshwater eel, carp, crucian carp, salmon, smelt, silverfish, or loach.
또한, 본 발명의 사료 첨가제는 일반 민물어류용 사료 100 중량부에 대하여 5 내지 20 중량부, 바람직하게는 10 내지 15 중량부로 사용된다. 사료 첨가제의 함량이 상기 하한치 미만인 경우에는 원하는 효과를 기대할 수 없으며, 상기 상한치 초과인 경우에는 수조 내 조장기간이 오히려 감소되고 조지방의 함량이 증가되지 못할 수 있다.In addition, the feed additive of the present invention is used in an amount of 5 to 20 parts by weight, preferably 10 to 15 parts by weight, based on 100 parts by weight of feed for general freshwater fish. If the content of the feed additive is less than the lower limit, the desired effect cannot be expected, and if it exceeds the upper limit, the growing period in the tank may be reduced and the crude fat content may not be increased.
본 발명의 사료 첨가제를 섭취한 민물어류 내의 조지방 함량은 40 내지 50%, 바람직하게는 42 내지 46%로서, 일반 사료만 섭취한 민물어류에 비하여 12 내지 15% 향상된 조지방을 갖는다.The crude fat content in freshwater fish fed with the feed additive of the present invention is 40 to 50%, preferably 42 to 46%, and has a 12 to 15% improved crude fat compared to freshwater fish fed only regular feed.
또한, 본 발명의 사료 첨가제를 섭취한 민물어류 내의 지방산 중에서 라우르산(Lauric acid), 올레산(Oleic acid), 리놀레산(Linoleic acid) 및 시스-8, 11, 14-에이코자트리에노익산(cis-8,11,14-Eicosatrienoic acid)의 함량 더욱 향상된다. 구체적으로, 라우르산(Lauric acid)의 함량은 6.0 내지 10.0 mg/100g, 올레산(Oleic acid)의 함량은 14.0 내지 18.0 g/100g, 리놀레산(Linoleic acid)의 함량은 6.0 내지 9.0 g/100g 및 시스-8, 11, 14-에이코자트리에노익산(cis-8,11,14-Eicosatrienoic acid)의 함량은 200 내지 400 mg/100g으로서, 일반 사료만 섭취한 민물어류에 비하여 2 내지 10배 향상된다. In addition, among the fatty acids in freshwater fish that consumed the feed additive of the present invention, lauric acid, oleic acid, linoleic acid, and cis-8, 11, 14-eicozatrienoic acid ( c is -8,11,14-Eicosatrienoic acid) content is further improved. Specifically, the content of lauric acid is 6.0 to 10.0 mg/100g, the content of oleic acid is 14.0 to 18.0 g/100g, the content of linoleic acid is 6.0 to 9.0 g/100g, and The content of cis-8, 11, 14-eicosatrienoic acid (c is -8,11,14-Eicosatrienoic acid) is 200 to 400 mg/100g, which is 2 to 10% compared to freshwater fish that consumed only regular feed. It improves twice.
본 발명에서 사용되는 용어 ‘추출물’은 상기 용매를 이용하여 옻나무 줄기에 포함된 성분을 추출한 추출물, 이들로부터 분획한 분획물, 이들 추출물 또는 분획물을 추가적으로 농축한 농축물, 이를 정제 또는 분리한 정제물도 포함하고, 상기 추출물, 분획물, 농축물 또는 정제물을 건조한 건조물 또는 그를 분쇄한 분말을 포함하는 의미로 사용된다. The term 'extract' used in the present invention also includes extracts obtained by extracting components contained in sumac tree stems using the above solvent, fractions separated from them, concentrates obtained by additionally concentrating these extracts or fractions, and purified products obtained by purifying or separating them. And, it is used to include the dried product of the extract, fraction, concentrate or purified product or the powder obtained by pulverizing the same.
상기 정제물의 제조를 위해 분자량 컷-오프 값을 갖는 한외 여과막을 통과시키거나, 또는 다양한 크로마토그래피(크기, 전하, 소수성 또는 친화성에 따른 분리를 위해 제작된 것)에 의한 분리 등, 추가적으로 실시된 다양한 정제 방법을 부가할 수 있다.For the preparation of the purified product, various additional methods are used, such as passage through an ultrafiltration membrane with a molecular weight cut-off value, or separation by various chromatographs (designed for separation according to size, charge, hydrophobicity or affinity). Purification methods can be added.
사료 첨가제는 영양적 또는 특정 목적을 위하여 사료에 미량으로 첨가되는 물질을 총칭하는 것으로, 상기 사료 첨가제가 함유되는 사료 조성물은 민물어류에 공급되는 모든 식품을 총칭하는 의미로 사용될 수 있다.Feed additives are a general term for substances added in small amounts to feed for nutritional or specific purposes, and feed compositions containing the feed additives can be used to collectively refer to all foods supplied to freshwater fish.
상기 사료 첨가제가 함유되는 사료 조성물은 유효성분으로 옻나무 줄기 추출물이 유효성분으로 함유하는 사료 첨가제 이외에, 식품의 기준 및 규격(‘식품공전’)에 기재된 식품으로 사용가능한 식품 원료, 식품첨가물 공전에 기재된 식품첨가물을 사용할 수 있고, 식품으로 사용가능한 식품 원료 또는 식품첨가물이 아니더라도 ‘사료 등의 기준 및 규격’ 별표 1의 단미사료의 범위에 해당하는 원료, 별표 2의 보조사료의 범위에 해당하는 원료를 사용할 수 있다.The feed composition containing the above feed additive contains, in addition to the feed additive containing sumac tree stem extract as an active ingredient, food raw materials usable as food as described in the Food Standards and Specifications ('Food Code'), and food additives as described in the Food Additive Code. Food additives can be used, and even if they are not food raw materials or food additives that can be used as food, raw materials that fall within the scope of sweet feed in Annex Table 1 of the 'Standards and Specifications for Feed, etc.' and raw materials that fall within the scope of supplementary feed in Annex Table 2 can be used. You can use it.
구체적으로, 사료 조성물에는 품질 저하를 방지하기 위해 첨가되는 결착제, 유화제, 보존제 등을 추가로 포함할 수 있고, 효용 증대를 위하여 첨가되는 아미노산제, 비타민제, 효소제, 생균제, 향미제, 비단백태 질소화합물, 규산염제, 완충제, 착색제, 추출제, 올리고당 등을 추가로 포함할 수 있으며, 그 외에도 사료 혼합제 등을 추가로 포함할 수 있으며, 이에 한정된 것은 아니다.Specifically, the feed composition may additionally include binders, emulsifiers, preservatives, etc. added to prevent quality deterioration, and amino acids, vitamins, enzymes, probiotics, flavoring agents, and non-protein nitrogen added to increase utility. It may additionally include compounds, silicate agents, buffers, colorants, extractants, oligosaccharides, etc. In addition, it may additionally include feed mixtures, etc., but is not limited thereto.
특히, 민물어류용 사료 조성물에 통상적으로 사용되는 배합사료로는 어분, 카제인, 육골분, 새우분말 중에서 선택되는 어느 하나 이상의 단백질원 또는 고구마 전분, 감자전분, 밀 전분 중에서 선택되는 어느 하나 이상의 탄수화물원 또는 채종유, 대두유, 옥수수유, 명태간유, 오징어간유 중에서 선택되는 어느 하나 이상의 지질원 등이 있으나, 이에 한정되는 것은 아니다.In particular, compounded feeds commonly used in feed compositions for freshwater fish include one or more protein sources selected from fish meal, casein, meat and bone meal, and shrimp powder, or one or more carbohydrate sources selected from sweet potato starch, potato starch, and wheat starch, or There may be one or more lipid sources selected from rapeseed oil, soybean oil, corn oil, pollack liver oil, and squid liver oil, but it is not limited thereto.
상기 옻나무 줄기 추출물은 섭취 민물어류의 상태, 체중, 질병의 유무나 정도 및 기간에 따라 다르지만, 통상의 기술자에 의해 적절하게 선택될 수 있다. 예들 들어 1일 투여량을 기준으로 민물어류 1 kg 당 10 내지 960 mg, 바람직하게는 100 내지 500 mg일 수 있고, 투여 횟수는 특별히 한정할 필요는 없으나 1일 3회 내지 1주일에 1회의 범위 내에서 통상의 기술자가 조절할 수 있다. 건강 및 위생을 목적으로 하거나 또는 건강 조절을 목적으로 하는 장기간의 섭취의 경우에는 상기 범위 이하일 수 있다.The sumac stem extract varies depending on the condition, weight, presence, degree, and duration of the freshwater fish consumed, but can be appropriately selected by a person skilled in the art. For example, the daily dosage may be 10 to 960 mg, preferably 100 to 500 mg, per 1 kg of freshwater fish, and the frequency of administration does not need to be particularly limited, but ranges from 3 times a day to once a week. It can be adjusted by a skilled technician. In the case of long-term intake for health and hygiene purposes or health control, it may be below the above range.
이하, 본 발명의 이해를 돕기 위하여 바람직한 실시예를 제시하나, 하기 실시예는 본 발명을 예시하는 것일 뿐 본 발명의 범주 및 기술사상 범위 내에서 다양한 변경 및 수정이 가능함은 당업자에게 있어서 명백한 것이며, 이러한 변형 및 수정이 첨부된 특허청구범위에 속하는 것도 당연한 것이다.Hereinafter, preferred embodiments are presented to aid understanding of the present invention. However, the following examples are merely illustrative of the present invention, and it is clear to those skilled in the art that various changes and modifications are possible within the scope and spirit of the present invention. It is natural that such variations and modifications fall within the scope of the attached patent claims.
실시예 1. Example 1.
건조한 옻나무 줄기와 물을 1 : 30의 중량비로 혼합하여 85 ℃에서 12시간 동안 추출하여 옻나무 줄기 추출물을 수득하였다.Dry lacquer tree stems and water were mixed at a weight ratio of 1:30 and extracted at 85°C for 12 hours to obtain lacquer tree stem extract.
<시험예> <Test example>
일반 사료 100 중량부에 상기 실시예 1에서 제조된 옻나무 줄기 추출물 10 중량부를 혼합하여 옻나무 줄기 사료 조성물을 제조하였다.A lacquer tree stem feed composition was prepared by mixing 10 parts by weight of the lacquer tree stem extract prepared in Example 1 with 100 parts by weight of general feed.
상기 옻나무 줄기 사료 조성물 및 일반 사료 조성물을 각각 20일 동안 섭취시킨 메기(민물어류) 및 넙치(바다어류)를 비교하였다.Catfish (freshwater fish) and flounder (marine fish) that were each fed the sumac stem feed composition and the general feed composition for 20 days were compared.
시험예 1. 수조 내 저장기간 측정Test Example 1. Measurement of storage period in water tank
15±2 ℃의 물이 담긴 수조 내에서 옻나무 줄기 사료 조성물 또는 일반 사료 조성물을 섭취한 메기 또는 넙치(각 군당 10마리)의 수조 내 저장기간을 확인하였다.The storage period in the tank of catfish or flounder (10 in each group) that consumed sumac tree stem feed composition or general feed composition in a tank containing water at 15 ± 2 ℃ was confirmed.
하기 표 1에는 잎, 눈, 몸에 병증 또는 괴양 증상(도 1)을 보이는 개체의 수를 나타내었다.Table 1 below shows the number of individuals showing symptoms of disease or ulcers on the leaves, eyes, and body (Figure 1).
위 표 1에 나타낸 바와 같이, 본 발명의 옻나무 줄기 추출물을 함유한 사료 조성물을 민물어류인 메기가 섭취한 경우에 잎, 눈, 몸에 병증 또는 괴양 증상을 보이는 개체들이 있었으나 20일 동안 폐사한 메기는 한 마리도 없었다. 더욱이 20일 동안 병증 또는 괴양 증상을 보이지 않는 메기가 1마리 있는 것을 확인되므로 다른 군에 비하여 수조 내 저장기간이 증가한 것을 확인하였다.As shown in Table 1 above, when catfish, a freshwater fish, ingested the feed composition containing the sumac tree stem extract of the present invention, there were individuals showing symptoms of disease or ulcers on the leaves, eyes, and body, but the catfish died within 20 days. There wasn't a single one. Furthermore, it was confirmed that there was one catfish that did not show symptoms of disease or ulcers for 20 days, so it was confirmed that the storage period in the tank was increased compared to the other groups.
반면, 본 발명의 옻나무 줄기 추출물을 함유한 사료 조성물을 바닷물고기인 넙치가 섭취한 경우에는 12일째에 6마리의 개체에서 병증 또는 괴양 증상을 보였으며 15일 이후에 폐사하는 개체가 발생하는 것을 확인하였다.On the other hand, when flounder, a saltwater fish, ingested the feed composition containing the sumac stem extract of the present invention, six individuals showed symptoms of illness or ulcers on the 12th day, and it was confirmed that some individuals died after 15 days. did.
또한, 일반 사료 조성물을 섭취한 메기 및 넙치는 9일 이후에 폐사하는 개체가 발생하는 것을 확인하였다.In addition, it was confirmed that catfish and flounder that consumed the general feed composition died after 9 days.
시험예 2. 조지방 함량 측정 Test Example 2. Measurement of crude fat content
옻나무 줄기 사료 조성물 및 일반 사료 조성물을 각각 10일 동안 섭취시킨 메기 및 넙치의 뼈와 내장을 제거한 살과 껍질을 동결건조시킨 후 상기 동결건조된 시료를 일반상법(Lee 등 2008)으로 측정하였으며, 용매로는 에테르(1급, 벽산약품)를 단독 용매로 사용하여 조지방 함량을 정량하였다. After lyophilizing the flesh and skin from which the bones and intestines of catfish and flounder were removed, which were fed with the sumac stem feed composition and the general feed composition for 10 days, the freeze-dried samples were measured by the general method (Lee et al. 2008), and the solvent The crude fat content was quantified using ether (grade 1, Byucksan Pharmaceuticals) as the sole solvent.
위 표 2에 나타낸 바와 같이, 본 발명의 옻나무 줄기 추출물을 함유한 사료 조성물을 섭취한 메기는 다른 군에 비하여 조지방 함량이 높은 것을 확인하였으며, 특히 옻나무 줄기 추출물을 함유한 사료 조성물을 섭취한 넙치에 비해서도 현저히 높은 것을 확인하였다. As shown in Table 2 above, it was confirmed that the catfish that consumed the feed composition containing the sumac tree stem extract of the present invention had a higher crude fat content than the other groups. In particular, the flounder that consumed the feed composition containing the sumac tree stem extract had a higher crude fat content than the other groups. It was confirmed that it was significantly higher than that.
시험예 3. 지방산 측정Test Example 3. Fatty acid measurement
지방산의 분석은 식품공전의 일반분석법 중에서 “1.1.5.4지방산”에 기초하여 gas chromatography(GC)로 측정하였다. 지방산 표준용액은 지방산 메틸에스터 혼합(37종) 표준품 FAME Mix C4-C24 (Supelco Inc, bellefonte, PA, USA) 100 mg을 isooctane 1 ml에 녹여 조제하였다. 지방산의 정량을 위해 gas chromatography (Agilent FID-7890B)를 이용하였으며, CSO는 standard fatty acid mix의 retardation time을 기준으로 지방산의 종류를 분석하고, 지방산 함량은 상기 조지방을 대상으로 분석하였다.Analysis of fatty acids was measured by gas chromatography (GC) based on “1.1.5.4 fatty acids” among the general analysis methods of the Food Code. The fatty acid standard solution was prepared by dissolving 100 mg of FAME Mix C4-C24 (Supelco Inc, bellefonte, PA, USA), a standard mixture of fatty acid methyl esters (37 types), in 1 ml of isooctane. Gas chromatography (Agilent FID-7890B) was used to quantify fatty acids. CSO analyzed the types of fatty acids based on the retardation time of the standard fatty acid mix, and the fatty acid content was analyzed for the crude fat.
(단위:g/100g)fatty acid
(Unit: g/100g)
(C20:3n6)c is -8,11,14-Eicosatrienoic acid
(C20:3n6)
라우르산(Lauric acid)은 좋은 콜레스테롤(HDL)을 증가시키고 나쁜 콜레스테롤(LDL)을 감소시키며, 올레산(Oleic acid)은 상처치료, 면역, 염증 질환 및 암에 효능이 있고, 리놀레산(Linoleic acid)은 항염증 효과가 있으며, 시스-8, 11, 14-에이코자트리에노익산(cis-8,11,14-Eicosatrienoic acid)는 신체에 유익한 지방산이다.Lauric acid increases good cholesterol (HDL) and reduces bad cholesterol (LDL), oleic acid is effective in wound healing, immunity, inflammatory diseases and cancer, and linoleic acid has an anti-inflammatory effect, and cis-8,11,14-eicosatrienoic acid (c is -8,11,14-Eicosatrienoic acid) is a fatty acid that is beneficial to the body.
위 표 3에 나타낸 바와 같이, 이러한 지방산이 본 발명의 옻나무 줄기 추출물을 함유한 사료 조성물을 섭취한 메기에서 다량 분석되었으며, 이는 다른 군에 비하여 높은 것을 확인하였다.As shown in Table 3 above, a large amount of these fatty acids was analyzed in catfish that consumed the feed composition containing the sumac tree stem extract of the present invention, and it was confirmed that it was higher than that of the other groups.
또한, 본 발명의 옻나무 줄기 추출물을 함유한 사료 조성물을 섭취한 메기는 일반 사료 조성물을 섭취한 메기에 비하여 불포화지방산이 약 24% 향상되었으나, 옻나무 줄기 추출물을 함유한 사료 조성물을 섭취한 납치는 일반 사료 조성물을 섭취한 넙치에 비하여 약 6% 향상되므로 민물어류인 메기에서 불포화지방산이 더욱 향상되는 것을 확인하였다.In addition, the catfish that consumed the feed composition containing the sumac tree stem extract of the present invention had an improvement of about 24% in unsaturated fatty acids compared to the catfish that consumed the general feed composition, but the catfish that consumed the feed composition containing the sumac tree stem extract had a general It was confirmed that unsaturated fatty acids were further improved in catfish, a freshwater fish, as it was improved by about 6% compared to flounder that consumed the feed composition.
더욱이, 옻나무 줄기 추출물을 함유한 사료 조성물을 섭취한 메기에서 불포화지방산 중에서도 중요한 불포화지방산인 올레산(Oleic acid) 및 리놀레산(Linoleic acid)의 함량이 다른 군에 비하여 높은 것을 확인하였다.Moreover, it was confirmed that the content of oleic acid and linoleic acid, which are important unsaturated fatty acids among unsaturated fatty acids, in catfish that consumed a feed composition containing sumac stem extract was higher than that of other groups.
시험예 4. 관능평가Test Example 4. Sensory evaluation
관능평가는 사료를 10일 동안 섭취한 메기 및 납치의 살을 관능검사 패널들에게 제공하였다. 이때 시료에 대한 편견이 없도록 난수표에서 추출한 세자리 숫자를 샘플 용기에 표기하도록 하였고, 평가 시 입안을 헹굴 수 있도록 물과 뱉는 컵을 함께 제공하였다. For sensory evaluation, the flesh of catfish and kidnapping that had been fed for 10 days was provided to the sensory test panel. At this time, to avoid bias regarding the sample, a three-digit number extracted from a random number table was written on the sample container, and water and a spitting cup were provided to rinse the mouth during evaluation.
관능평가는 담백함, 쫄깃함, 비린맛 및 종합적인 기호도 등에 대한 기호도를 7점 척도법으로 평가하도록 하였고, 기호도가 높을수록 높은 점수를 부여하도록 하였다. Sensory evaluation was conducted to evaluate the preference for lightness, chewiness, fishy taste, and overall preference using a 7-point scale. The higher the preference, the higher the score.
위 표 4에 나타낸 바와 같이, 본 발명의 옻나무 줄기 추출물을 함유한 사료 조성물을 섭취한 메기는 다른 군에 비하여 담백함, 쫄깃함 및 종합적인 기호도가 우수하며, 비린맛이 거의 없는 것을 확인하였다. As shown in Table 4 above, it was confirmed that catfish that consumed the feed composition containing sumac stem extract of the present invention had superior lightness, chewiness, and overall preference compared to other groups, and had almost no fishy taste.
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