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      KCI등재 SCIE SCOPUS

      Nutritional composition of various insects and potential uses as alternative protein sources in animal diets

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      https://www.riss.kr/link?id=A108002457

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      다국어 초록 (Multilingual Abstract)

      The aim of the present investigation is to determine the nutritional composition of various insects and their potential uses as alternative protein sources in animal diets. The feeding industry requires production systems that use accessible resources...

      The aim of the present investigation is to determine the nutritional composition of various insects and their potential uses as alternative protein sources in animal diets.
      The feeding industry requires production systems that use accessible resources, such as feed resources, and concentrates on the potential impacts on production yield and nutritional quality. Invertebrate insects, such as black soldier flies, grasshoppers, mealworms, housefly larvae, and crickets, have been used as human food and as feed for nonruminants and aqua culture while for ruminants their use has been limited. Insects can be massproduced, participating in a circular economy that minimizes or eliminates food- and feed-waste through bioconversion. Although the model for formula-scale production of insects as feed for domestic animals has been explored for a number of years, significant production and transformation to being a conventional protein resource remains to be deeply investigated. This review will focus on the nutritional composition of various insects and their potential use as alternative protein sources, as well as their potential use to promote and support sustainable animal production. Furthermore, nutritional compositions, such as high protein, lauric acid omega 6, and omega 3, and bioactive compounds, such as chitin, are of great potential use for animal feeding.

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      다국어 초록 (Multilingual Abstract)

      The aim of the present investigation is to determine the nutritional composition of various insects and their potential uses as alternative protein sources in animal diets. The feeding industry requires production systems that use accessible resources...

      The aim of the present investigation is to determine the nutritional composition of various insects and their potential uses as alternative protein sources in animal diets. The feeding industry requires production systems that use accessible resources, such as feed resources, and concentrates on the potential impacts on production yield and nutritional quality. Invertebrate insects, such as black soldier flies, grasshoppers, mealworms, housefly larvae, and crickets, have been used as human food and as feed for nonruminants and aqua culture while for ruminants their use has been limited. Insects can be mass-produced, parti­cipating in a circular economy that minimizes or eliminates food- and feed-waste through bioconversion. Although the model for formula-scale production of insects as feed for domestic animals has been explored for a number of years, significant production and transformation to being a conventional protein resource remains to be deeply investigated. This review will focus on the nutritional composition of various insects and their potential use as alternative protein sources, as well as their potential use to promote and support sustainable animal production. Furthermore, nutritional compositions, such as high protein, lauric acid omega 6, and omega 3, and bioactive compounds, such as chitin, are of great potential use for animal feeding.

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      참고문헌 (Reference)

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      3 Matin N, "True metabolizable energy and amino acid digestibility in black soldier fly larvae meals, cricket meal, and mealworms using a precision-fed rooster assay" 100 : 101146-, 2021

      4 Čičková H, "The use of fly larvae for organic waste treatment" 35 : 68-80, 2015

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      10 Gugołek A, "The effect of fish and mealworm larvae meals as alternative dietary protein sources on nutrient digestibility and gastrointestinal function in Chinchilla lanigera" 69 : 70-79, 2020

      1 Hwangbo J, "Utilization of house flymaggots, a feed supplement in the production of broiler chickens" 30 : 609-614, 2009

      2 Bovera F, "Use of Tenebrio molitor larvae meal as protein source in broiler diet : Effect on growth performance, nutrient digestibility, and carcass and meat traits" 94 : 639-647, 2016

      3 Matin N, "True metabolizable energy and amino acid digestibility in black soldier fly larvae meals, cricket meal, and mealworms using a precision-fed rooster assay" 100 : 101146-, 2021

      4 Čičková H, "The use of fly larvae for organic waste treatment" 35 : 68-80, 2015

      5 Barroso FG, "The potential of various insect species for use as food for fish" 422 : 193-201, 2014

      6 Arru B, "The introduction of insect meal into fish diet : the first economic analysis on European sea bass farming" 11 : 1697-, 2019

      7 Patterson PH, "The impact of dietary Black Soldier Fly larvae oil and meal on laying hen performance and egg quality" 100 : 101272-, 2021

      8 Ahmed S, "The first report of prostacyclin and its physiological roles in insects" 301 : 113659-, 2021

      9 Van Huis A, "The environmental sustainability of insects as food and feed. A review" 37 : 43-, 2017

      10 Gugołek A, "The effect of fish and mealworm larvae meals as alternative dietary protein sources on nutrient digestibility and gastrointestinal function in Chinchilla lanigera" 69 : 70-79, 2020

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      35 Schiavone A, "Nutrient digestibility of Hermetia illucens and Tenebrio molitor meal in broiler chickens" 84-, 2014

      36 Jayanegara A, "Nutrient Content, Protein Fractionation, and Utilization of Some Beans as Potential Alternatives to Soybean for Ruminant Feeding" 39 : 195-202, 2016

      37 "Mordor Intelligence Insect Feed Market Growth Trends and Forecasts (2020–2025)"

      38 Zhang L, "Locust and grasshopper management" 64 : 15-34, 2019

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      40 Gahukar RT, "Insects as sustainable food ingredients" Academic Press 85-111, 2016

      41 Khusro M, "Insects as poultry feed : a scoping study for poultry production systems in Australia" 68 : 435-446, 2012

      42 Van Huis A, "Insects as food and feed, a new emerging agricultural sector : a review" 6 : 27-44, 2020

      43 Yen AL, "Insects as food and feed in the Asia Pacific region : Current perspectives and future directions" 1 : 33-55, 2015

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      45 Józefiak D, "Insects a natural nutrient source for poultry a review" 16 : 297-313, 2016

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      47 Madau FA, "Insect farming for feed and food production from a circular business model perspective" 12 : 5418-, 2020

      48 Patton RS, "In vivo digestibility evaluation of chitinous materials" 58 : 397-403, 1975

      49 Marono S, "In vitro crude protein digestibility of tenebrio molitor and hermetia illucens insect meals and its correlation with chemical composition traits" 14 : 3389-, 2015

      50 Campbell M, "Impact of thermal and high-pressure treatments on the microbiological quality and in vitro digestibility of black soldier fly (Hermetia illucens) Larvae" 10 : 682-, 2020

      51 Boushy AR, "House-fly pupae as poultry manure converters for animal feed : a review" 38 : 45-49, 1991

      52 Brah N, "Grasshopper meal(Ornithacris cavroisi)in broiler diets in Niger : Bioeconomic performance" 17 : 126-133, 2018

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      54 St-Hilaire S, "Fly prepupae as a feedstufffor rainbow trout Oncorhynchus mykiss" 38 : 59-67, 2007

      55 송용수 ; 김민우 ; 문채영 ; 서동준 ; 한연수 ; 조용훈 ; 노미영 ; 박영규 ; 김선암 ; 김영욱 ; 정우진, "Extraction of chitin and chitosan from larval exuvium and whole body of edible mealworm, Tenebrio molitor" 한국곤충학회 48 (48): 227-233, 2018

      56 Straub P, "Experimental feeding studies with crickets and locusts on the use of feed mixtures composed of storable feed materials commonly used in livestock production" 255 : 114215-, 2019

      57 Jayanegara A, "Evaluation of some insects as potential feed ingredients for ruminants : chemical composition, in vitro rumen fermentation and methane emissions" 42 : 247-254, 2017

      58 Ghosh S, "Evaluation of nutrient quality of a short horned grasshopper Oxya hyla hyla Serville (Orthoptera: Acrididae) in search of new protein source" 4 : 193-197, 2016

      59 Nginya ES, "Evaluation of grasshoppers as a protein source for improved indigenous chicken growers" 62 : 1-45, 2019

      60 Oonincx DGAB, "Environmental impact of the production of mealworms as a protein source for humans-a life cycle assessment" 7 : e51145-, 2012

      61 Ukanwoko AI, "Effects of source and time of harvest on the proximate composition of maggot(Musca Domestica)larva meal" 5 : 84-90, 2015

      62 Opstvedt J, "Effect on protein digestibility of different processing conditions in the production of fish mealand fish feed" 83 : 775-782, 2003

      63 Meneguz M, "Effect of rearing substrate on growth performance, waste reduction efficiency and chemical composition of black soldier fly (Hermetia illucens) larvae" 98 : 5776-5784, 2018

      64 Kinyuru JN, "Effect of processing methods on the in vitro protein digestibility and vitamin content of edible winged termite (Macrotermes subhylanus) and grasshopper (Ruspolia differens)" 3 : 778-782, 2010

      65 Ojewola GS, "Effect of inclusion of grasshopper meal on performance nutrient utilization and organ of broiler chicken" 5 : 19-25, 2003

      66 Gasco L, "Effect of dietary supplementation with insect fats on growth performance, digestive efficiency and health of rabbits" 10 : 4-, 2019

      67 Falade KO, "Effect of Processing Methods on physical, chemical, rheological, and sensory properties of Okra (Abelmoschus esculentus)" 3 : 387-394, 2010

      68 Preteseille N, "Edible insects in sustainable food systems" Springer 435-442, 2018

      69 Derrien C, "Edible insects in sustainable food systems" Springer 471-479, 2018

      70 Feng Y, "Edible insects in China : Utilization and prospects" 25 : 184-198, 2018

      71 Da-Silva Lucas AJ, "Edible insects : An alternative of nutritional, functional and bioactive compounds" 311 : 126022-, 2020

      72 김태경 ; 용해인 ; 김영붕 ; 김현욱 ; 최윤상, "Edible Insects as a Protein Source: A Review of Public Perception, Processing Technology, and Research Trends" 한국축산식품학회 39 (39): 521-540, 2019

      73 International Platform Insects for Food & Feed, "EU Legislation"

      74 Jayanegara AG, "Divergence between purified hydrolysable and condensed tannin effects on methane emission rumen fermentation and microbial population in vitro" 209 : 60-68, 2015

      75 Arango Gutierrez GP, "Compositional microbiological and protein digestibility analysis of larval meal of Hermetia illucens (Diptera:Stratiomyidae)at Angelopolis-Antioquia Colombia" 57 : 2491-2499, 2004

      76 Gasco L, "Can diets containing insects promote animal health?" 4 : 1-4, 2018

      77 Schiavone A, "Black soldier fly larva fat inclusion in finisher broiler chicken diet as an alternative fat source" 12 : 2032-2039, 2018

      78 Cullere M, "Black soldier fly as dietary protein source for broiler quails : apparent digestibility, excreta microbial load, feed choice, performance, carcass and meat traits" 10 : 1923-1930, 2016

      79 Diener S, "Biological treatment of municipal organic waste using black soldier fly larvae" 2 : 357-363, 2011

      80 Imathiu S, "Benefits and food safety concerns associated with consumption of edible insects" 18 : 1-11, 2020

      81 Secci G, "Barbary partridge meat quality as affected by Hermetia illucens and Tenebrio molitor larva meals in feeds" 112 : 291-298, 2018

      82 Owens FN, "Applied protein nutrition of ruminants current status and future directions" 30 : 150-179, 2014

      83 P. Miech, "Apparent faecal digestibility and nitrogen retention in piglets fed whole and peeled Cambodian field cricket meal" Wageningen Academic Publishers 3 (3): 279-288, 2017

      84 Moula N, "A meta-analysis of the effects of insects in feed on poultry growth performances" 9 : 201-, 2019

      85 Mlcek J, "A Comprehensive look at the possibilities of edible insects as food in Europe a review" 64 : 147-157, 2014

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      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2021-01-01 학술지명변경 한글명 : ASIAN-AUSTRALASIAN JOURNAL OF ANIMAL SCIENCES -> Animal Bioscience
      외국어명 : ASIAN-AUSTRALASIAN JOURNAL OF ANIMAL SCIENCES -> Animal Bioscience
      KCI등재
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2013-10-01 평가 SCI 등재 (등재유지) KCI등재
      2013-10-01 평가 SCOPUS 등재 (등재유지) KCI등재
      2012-01-01 평가 등재후보학술지 유지 (기타) KCI등재후보
      2011-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2009-12-29 학회명변경 한글명 : 아세아ㆍ태평양축산학회 -> 아세아·태평양축산학회 KCI등재후보
      2005-09-28 학술지명변경 한글명 : 아세아태평양축산학회지 -> ASIAN-AUSTRALASIAN JOURNAL OF ANIMAL SCIENCES KCI등재후보
      2003-01-01 평가 SCIE 등재 (신규평가) KCI등재후보
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      2016 1.03 0.23 0.76
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.6 0.5 0.367 0.04
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