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      고온 스트레스 영향에 따른 홀스타인종 젖소의 반추위내 미생물 균총 변화 = Effects of Heat-stress on Rumen Bacterial Diversity and Composition of Holstein Cows

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      https://www.riss.kr/link?id=A106666021

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      다국어 초록 (Multilingual Abstract)

      This study was performed to investigate the effect of heat-stressed environment on rumen microbial diversity in Holstein cows. Rectal temperature and respiration rate were measured and rumen fluid was collected under normal environment (NE; Temperature humidity index (THI)=64.6) and heat-stressed environment (HE; THI=87.2) from 10 Holstein cows (60±17.7 months, 717±64.4 kg) fed on the basis of dairy feeding management in National Institute of Animal Science. The rumen bacteria diversity was analyzed by using the Illumina HiSeq<sup>TM</sup> 4000 platform. The rectal temperature and respiratory rate were increased by 1.5℃ and 53 breaths/min in HE compared to that in NE, respectively. In this study, HE exposure induced significant changes of ruminal microbe. At phylum level, Fibrobacteres were increased in HE. At genus level, Ruminococcaceae bacterium P7 and YAD3003, Butyrivibrio sp. AE2032, Erysipelotrichaceae bacterium NK3D112, Bifidobacterium pseudolongum, Lachnospiraceae bacterium FE2018, XBB2008, and AC2029, Eubacterium celulosolvens, Clostridium hathewayi, and Butyrivibrio hungatei were decreased in HE, while Choristoneura murinana nucleopolyhedrovirus, Calothrix parasitica, Nostoc sp. KVJ20, Anabaena sp. ATCC 33047, Fibrobacter sp. UWB13 and sp. UWB5, Lachnospiraceae bacterium G41, and Xanthomonas arboricola were increased in HE. In conclusion, HE might have an effect to change the rumen microbial community in Holstein cows.
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      This study was performed to investigate the effect of heat-stressed environment on rumen microbial diversity in Holstein cows. Rectal temperature and respiration rate were measured and rumen fluid was collected under normal environment (NE; Temperatur...

      This study was performed to investigate the effect of heat-stressed environment on rumen microbial diversity in Holstein cows. Rectal temperature and respiration rate were measured and rumen fluid was collected under normal environment (NE; Temperature humidity index (THI)=64.6) and heat-stressed environment (HE; THI=87.2) from 10 Holstein cows (60±17.7 months, 717±64.4 kg) fed on the basis of dairy feeding management in National Institute of Animal Science. The rumen bacteria diversity was analyzed by using the Illumina HiSeq<sup>TM</sup> 4000 platform. The rectal temperature and respiratory rate were increased by 1.5℃ and 53 breaths/min in HE compared to that in NE, respectively. In this study, HE exposure induced significant changes of ruminal microbe. At phylum level, Fibrobacteres were increased in HE. At genus level, Ruminococcaceae bacterium P7 and YAD3003, Butyrivibrio sp. AE2032, Erysipelotrichaceae bacterium NK3D112, Bifidobacterium pseudolongum, Lachnospiraceae bacterium FE2018, XBB2008, and AC2029, Eubacterium celulosolvens, Clostridium hathewayi, and Butyrivibrio hungatei were decreased in HE, while Choristoneura murinana nucleopolyhedrovirus, Calothrix parasitica, Nostoc sp. KVJ20, Anabaena sp. ATCC 33047, Fibrobacter sp. UWB13 and sp. UWB5, Lachnospiraceae bacterium G41, and Xanthomonas arboricola were increased in HE. In conclusion, HE might have an effect to change the rumen microbial community in Holstein cows.

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      참고문헌 (Reference)

      1 주용성, "한국 기상자료의 군집분석: 베이지안 모델기반 방법의 응용" 한국데이터정보과학회 20 (20): 57-64, 2009

      2 맹원재, "반추위 미생물과 소화작용" 향문사 75-, 1998

      3 Radostits, O., "Veterinary medicine: A textbook of the diseases of cattle, sheep, pigs, goats and horses" Elsevier Health Sciences 2006

      4 Nesengani, L. T., "Unravelling vaginal microbial genetic diversity and abundance between Holstein and Fleckvieh cattle" 7 : 56137-56143, 2017

      5 Malmuthuge, N., "Understanding host-microbial interactions in rumen : Searching the best opportunity for microbiota manipulation" 8 : 8-, 2017

      6 Stewart, C. S., "The rumen bacteria. In the rumen microbial ecosystem" Springer 10-72, 1997

      7 Kabuga, J. D., "The influence of thermal conditions on rectal temperature, respiration rate and pulse rate of lactating Holstein-Friesian cows in the humid tropics" 36 : 146-150, 1992

      8 Habeeb, A. A., "Temperature-humidity indices as indicators to heat stress of climatic conditions with relation to production and reproduction of farm animals" 1 : 35-50, 2018

      9 Bohmanova, J., "Temperature-Humidity Indices as Indicators of Milk Production Losses due to Heat Stress" 90 : 1947-1956, 2007

      10 Igono, M. O., "Spray cooling effects on milk production, milk, and rectal temperatures of cows during a moderate temperate summer season" 68 : 979-985, 1985

      1 주용성, "한국 기상자료의 군집분석: 베이지안 모델기반 방법의 응용" 한국데이터정보과학회 20 (20): 57-64, 2009

      2 맹원재, "반추위 미생물과 소화작용" 향문사 75-, 1998

      3 Radostits, O., "Veterinary medicine: A textbook of the diseases of cattle, sheep, pigs, goats and horses" Elsevier Health Sciences 2006

      4 Nesengani, L. T., "Unravelling vaginal microbial genetic diversity and abundance between Holstein and Fleckvieh cattle" 7 : 56137-56143, 2017

      5 Malmuthuge, N., "Understanding host-microbial interactions in rumen : Searching the best opportunity for microbiota manipulation" 8 : 8-, 2017

      6 Stewart, C. S., "The rumen bacteria. In the rumen microbial ecosystem" Springer 10-72, 1997

      7 Kabuga, J. D., "The influence of thermal conditions on rectal temperature, respiration rate and pulse rate of lactating Holstein-Friesian cows in the humid tropics" 36 : 146-150, 1992

      8 Habeeb, A. A., "Temperature-humidity indices as indicators to heat stress of climatic conditions with relation to production and reproduction of farm animals" 1 : 35-50, 2018

      9 Bohmanova, J., "Temperature-Humidity Indices as Indicators of Milk Production Losses due to Heat Stress" 90 : 1947-1956, 2007

      10 Igono, M. O., "Spray cooling effects on milk production, milk, and rectal temperatures of cows during a moderate temperate summer season" 68 : 979-985, 1985

      11 Fernando, S. C., "Rumen microbial population dynamics during adaptation to a high-grain diet" 76 : 7482-7490, 2010

      12 Nocek, J.E., "Protein and energy as an integrated system. Relationship of ruminal protein and carbohydrate availability to microbial synthesis and milk production" 71 : 2070-2107, 1988

      13 Lima, F. S., "Prepartum and postpartum rumen fluid microbiomes: Characterization and correlation with production traits in dairy cows" 81 : 1327-1337, 2015

      14 Jami, E., "Potential role of the bovine rumen microbiome in modulating milk composition and feed efficiency" 9 : e85423-, 2014

      15 de Menezes, A. B., "Microbiome analysis of dairy cows fed pasture or total mixed ration diets" 78 : 256-265, 2011

      16 Thomas, M., "Metagenomic characterization of the effect of feed additives on the gut microbiome and antibiotic resistome of feedlot cattle" 7 : 12257-, 2017

      17 Segata, N., "Metagenomic biomarker discovery and explanation" 12 : R60-, 2011

      18 "KneadDATA"

      19 Tajima, K., "Influence of high temperature and humidity on rumen bacterial diversity in Holstein heifers" 13 : 57-64, 2007

      20 McDowell, R. E., "Improvement of livestock production in warm climates" W. H. Freeman & Co 1972

      21 Mao, S. Y., "Impact of subacute ruminal acidosis(SARA)adaptation on rumen microbiota in dairy cattle using pyrosequencing" 24 : 12-19, 2013

      22 Hernandez-Sanabria, E., "Impact of feed efficiency and diet on adaptive variations in the bacterial community in the rumen fluid of cattle" 78 : 1203-1214, 2012

      23 Weimer, P. J., "Host specificity of the ruminal bacterial community in the dairy cow following near-total exchange of ruminal contents" 93 : 5902-5912, 2010

      24 McCann, J. C., "High-throughput methods redefine the rumen microbiome and its relationship with nutrition and metabolism" 8 : BBI-S15389-, 2014

      25 Armstrong, D.V., "Heat stress interaction with shade and cooling" 77 : 2044-2050, 1994

      26 Nguyen, T. T., "Genomic selection for tolerance to heat stress in Australian dairy cattle" 99 : 2849-2862, 2016

      27 "FastQC"

      28 Wenz, J. R., "Factors associated with the rectal temperature of Holstein dairy cows during the first 10 days in milk" 94 : 1864-1872, 2011

      29 Jami, E., "Exploring the bovine rumen bacterial community from birth to adulthood" 7 : 1069-, 2013

      30 Hansen, P.J., "Exploitation of genetic and physiological determinants of embryonic resistance to elevated temperature to improve embryonic survival in dairy cattle during heat stress" 68 : S242-S249, 2007

      31 Hammami, H., "Evaluation of heat stress effects on production traits and somatic cell score of Holsteins in a temperate environment" 96 : 1844-1855, 2013

      32 Guarner, F., "Enteric flora in health and disease" 73 : 5-12, 2006

      33 Golder, H. M., "Effects of partial mixed rations and supplement amounts on milk production and composition, ruminal fermentation, bacterial communities, and ruminal acidosis" 97 : 5763-5785, 2014

      34 Zhang, R., "Effect of dietary forage sources on rumen microbiota, rumen fermentation and biogenic amines in dairy cows" 94 : 1886-1895, 2014

      35 Akyuz, A., "Determination of critical period for dairy cows using temperature humidity index" 9 : 1824-1827, 2010

      36 Jami, E., "Composition and similarity of bovine rumen microbiota across individual animals" 7 : e33306-, 2012

      37 Prendiville, R., "Comparative grazing behavior of lactating Holstein-Friesian, Jersey, and Jersey x Holstein-Friesian dairy cows and its association with intake capacity and production efficiency" 93 : 764-774, 2010

      38 Petri, R. M., "Changes in the rumen epimural bacterial diversity of beef cattle as affected by diet and induced ruminal acidosis" 79 : 3744-3755, 2013

      39 Kim, D., "Centrifuge : rapid and sensitive classification of metagenomic sequences" 26 : 1721-1729, 2016

      40 Kou, R., "Benefits and challenges with applying unique molecular identifiers in next generation sequencing to detect low frequency mutations" 11 : e0146638-, 2016

      41 Bryant, M.P., "Bacterial species of the rumen" 23 : 125-, 1959

      42 National Research Council, "A guide to environmental research on animals"

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 선정 (계속평가) KCI등재
      2017-12-01 평가 등재후보로 하락 (계속평가) KCI등재후보
      2013-07-25 학술지명변경 한글명 : 한국초지학회지 -> 한국초지조사료학회지 KCI등재
      2013-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-05-11 학회명변경 한글명 : 한국초지학회 -> 한국초지조사료학회
      영문명 : The Korean Society Of Grassland Science -> The Korean Society of Grassland and Forage Science
      KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2004-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2003-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.52 0.52 0.5
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.53 0.53 0.572 0.04
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