• 제목/요약/키워드: Mixed substrate

검색결과 613건 처리시간 0.022초

옥수수 사일리지와 대두 사일리지의 혼합급여가 In Vitro 반추위 발효성상 및 거세한우의 성장과 육질등급에 미치는 영향 (Effect of Corn Silage and Soybean Silage Mixture on Rumen Fermentation Characteristics In Vitro, and Growth Performance and Meat Grade of Hanwoo Steers)

  • 강주희;이기환;타비타 다메리아 마분;송재용;권찬호;윤두학;서진동;조영민;김진열;김은중
    • 한국초지조사료학회지
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    • 제42권2호
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    • pp.61-72
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    • 2022
  • 옥수수사일리지와 대두 사일리지를 다양한 수준으로 혼합한 사일리지의 in vitro 반추위 발효성상을 평가하는 실험(실험 1)에서 가스발생량은 대두 사일리지의 혼합비율이 증가할수록 배양 48시간을 제외한 모든 발효시간에서 증가하는 경향을 보였다. 암모니아태 질소의 발생량은 배양 24시간에 대두 사일리지 대체율이 증가할수록 높게 나타났다(p<0.05). 건물소화율은 배양 6시간을 제외한 전 배양시간에서 대두 사일리지의 첨가량이 감소함에 따라 낮은 경향을 보였고, acetate와 propionate를 비롯한 총 휘발성 지방산 생성량은 대두 사일리지의 함량이 증가할수록 증가하는 경향을 보였다. 두번째 실험인 옥수수와 대두 혼합사일리지(4%, 원물기준)를 급여한 육성기 거세한우 사양실험에서 육성기에 옥수수-대두 혼합사일리지 급여구의 증체량과 사료효율이 대조구 및 옥수수 사일리지 처리구와 비교하여 높았다(p<0.05). 또한, 육질등급은 처리구별 유의차가 없었지만 옥수수-대두 혼합사일리지의 급여구에서 가장 우수한 육질등급을 나타내었다. 이상의 결과를 종합하면 옥수수 사일리지에 대두 사일리지의 첨가는 반추위 발효에 긍정적인 영향을 미치는 것으로 나타났다. 또한, 옥수수 사일리지를 급여하는 육성기 거세 한우에게 4% 수준의 대두 사일리지 혼합급여는 증체량 및 사료효율에 영향을 미치며, 육질등급의 증가로 고급육 생산에 도움이 될 것으로 판단된다.

Brief Introduction of Research Progresses in Control and Biocontrol of Clubroot Disease in China

  • He, Yueqiu;Wu, Yixin;He, Pengfei;Li, Xinyu
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2015년도 춘계학술대회 및 임시총회
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    • pp.45-46
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    • 2015
  • Clubroot disease of crucifers has occurred since 1957. It has spread to the whole China, especially in the southwest and nourtheast where it causes 30-80% loss in some fields. The disease has being expanded in the recent years as seeds are imported and the floating seedling system practices. For its effective control, the Ministry of Agriculture of China set up a program in 2010 and a research team led by Dr. Yueqiu HE, Yunnan Agricultural University. The team includes 20 main reseachers of 11 universities and 5 institutions. After 5 years, the team has made a lot of progresses in disease occurrence regulation, resources collection, resistance identification and breeding, biological agent exploration, formulation, chemicals evaluation, and control strategy. About 1200 collections of local and commercial crucifers were identified in the field and by artificiall inoculation in the laboratories, 10 resistant cultivars were breeded including 7 Chinese cabbages and 3 cabbages. More than 800 antagostic strains were isolated including bacteria, stretomyces and fungi. Around 100 chemicals were evaluated in the field and greenhouse based on its control effect, among them, 6 showed high control effect, especially fluazinam and cyazofamid could control about 80% the disease. However, fluzinam has negative effect on soil microbes. Clubroot disease could not be controlled by bioagents and chemicals once when the pathogen Plasmodiophora brassicae infected its hosts and set up the parasitic relationship. We found the earlier the pathogent infected its host, the severer the disease was. Therefore, early control was the most effective. For Chinese cabbage, all controlling measures should be taken in the early 30 days because the new infection could not cause severe symptom after 30 days of seeding. For example, a biocontrol agent, Bacillus subtilis Strain XF-1 could control the disease 70%-85% averagely when it mixed with seedling substrate and was drenching 3 times after transplanting, i.e. immediately, 7 days, 14 days. XF-1 has been deeply researched in control mechanisms, its genome, and development and application of biocontrol formulate. It could produce antagonistic protein, enzyme, antibiotics and IAA, which promoted rhizogenesis and growth. Its The genome was sequenced by Illumina/Solexa Genome Analyzer to assembled into 20 scaffolds then the gaps between scaffolds were filled by long fragment PCR amplification to obtain complet genmone with 4,061,186 bp in size. The whole genome was found to have 43.8% GC, 108 tandem repeats with an average of 2.65 copies and 84 transposons. The CDSs were predicted as 3,853 in which 112 CDSs were predicted to secondary metabolite biosynthesis, transport and catabolism. Among those, five NRPS/PKS giant gene clusters being responsible for the biosynthesis of polyketide (pksABCDEFHJLMNRS in size 72.9 kb), surfactin(srfABCD, 26.148 kb, bacilysin(bacABCDE 5.903 kb), bacillibactin(dhbABCEF, 11.774 kb) and fengycin(ppsABCDE, 37.799 kb) have high homolgous to fuction confirmed biosynthesis gene in other strain. Moreover, there are many of key regulatory genes for secondary metabolites from XF-1, such as comABPQKX Z, degQ, sfp, yczE, degU, ycxABCD and ywfG. were also predicted. Therefore, XF-1 has potential of biosynthesis for secondary metabolites surfactin, fengycin, bacillibactin, bacilysin and Bacillaene. Thirty two compounds were detected from cell extracts of XF-1 by MALDI-TOF-MS, including one Macrolactin (m/z 441.06), two fusaricidin (m/z 850.493 and 968.515), one circulocin (m/z 852.509), nine surfactin (m/z 1044.656~1102.652), five iturin (m/z 1096.631~1150.57) and forty fengycin (m/z 1449.79~1543.805). The top three compositions types (contening 56.67% of total extract) are surfactin, iturin and fengycin, in which the most abundant is the surfactin type composition 30.37% of total extract and in second place is the fengycin with 23.28% content with rich diversity of chemical structure, and the smallest one is the iturin with 3.02% content. Moreover, the same main compositions were detected in Bacillus sp.355 which is also a good effects biocontol bacterial for controlling the clubroot of crucifer. Wherefore those compounds surfactin, iturin and fengycin maybe the main active compositions of XF-1 against P. brassicae. Twenty one fengycin type compounds were evaluate by LC-ESI-MS/MS with antifungal activities, including fengycin A $C_{16{\sim}C19}$, fengycin B $C_{14{\sim}C17}$, fengycin C $C_{15{\sim}C18}$, fengycin D $C_{15{\sim}C18}$ and fengycin S $C_{15{\sim}C18}$. Furthermore, one novel compound was identified as Dehydroxyfengycin $C_{17}$ according its MS, 1D and 2D NMR spectral data, which molecular weight is 1488.8480 Da and formula $C_{75}H_{116}N_{12}O_{19}$. The fengycin type compounds (FTCPs $250{\mu}g/mL$) were used to treat the resting spores of P. brassicae ($10^7/mL$) by detecting leakage of the cytoplasm components and cell destruction. After 12 h treatment, the absorbencies at 260 nm (A260) and at 280 nm (A280) increased gradually to approaching the maximum of absorbance, accompanying the collapse of P. brassicae resting spores, and nearly no complete cells were observed at 24 h treatment. The results suggested that the cells could be lyzed by the FTCPs of XF-1, and the diversity of FTCPs was mainly attributed to a mechanism of clubroot disease biocontrol. In the five selected medium MOLP, PSA, LB, Landy and LD, the most suitable for growth of strain medium is MOLP, and the least for strains longevity is the Landy sucrose medium. However, the lipopeptide highest yield is in Landy sucrose medium. The lipopeptides in five medium were analyzed with HPLC, and the results showed that lipopeptides component were same, while their contents from B. subtilis XF-1 fermented in five medium were different. We found that it is the lipopeptides content but ingredients of XF-1 could be impacted by medium and lacking of nutrition seems promoting lipopeptides secretion from XF-1. The volatile components with inhibition fungal Cylindrocarpon spp. activity which were collect in sealed vesel were detected with metheds of HS-SPME-GC-MS in eight biocontrol Bacillus species and four positive mutant strains of XF-1 mutagenized with chemical mutagens, respectively. They have same main volatile components including pyrazine, aldehydes, oxazolidinone and sulfide which are composed of 91.62% in XF-1, in which, the most abundant is the pyrazine type composition with 47.03%, and in second place is the aldehydes with 23.84%, and the third place is oxazolidinone with 15.68%, and the smallest ones is the sulfide with 5.07%.

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${\beta}-Tyrosinase$에 관한 연구 -제2보 ${\beta}-Tyrosinase$에 의한 Halogen화(化) Tyrosine의 합성(合成)- (Studies on the ${\beta}-Tyrosinase$ -Part 2. On the Synthesis of Halo-tyrosine by ${\beta}-Tyrosinase$-)

  • 김찬조;장택투;곡길수;산전수명
    • Applied Biological Chemistry
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    • 제22권4호
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    • pp.198-209
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    • 1979
  • Esherichia intermedia A-21의 균체(菌體)에서 얻은 ${\beta}-tyrosinase$${\alpha},{\beta}$-탈리작용(脫離作用)의 역(逆)반응을 이용하여 L-tyrosine, 2-chloro-L-tyrosine, 2-bromo-L-tyrosine 및 2-iodo-L-tyrosine을 효소합성하고 그들의 원소분석(元素分析)과 NMR-spectrum, Mass-spectrum 및 IR-spectrum을 측정하여 그 구조해석(構造解析)을 하였다. 또한 ${\beta}-tyrosinase$에 의한 각(各) halogen화(化) tyrosine의 합성속도와 분해속도 그리고 halogen화(化) phenol의 ${\beta}-tyrosinase$에 대한 저해작용(阻害作用) 및 2-bromotyrosine의 합성에서 m-bromophenol의 경시적(經時的) 첨가효과 등을 검토하여 다음과 같은 결과를 얻었다. 1) ${\beta}-tyrosinase$를 이용하여 pyruvin산(酸), $NH_3$ 그리고 m-chlorophenol, m-bromophenol 및 m-iodophenol 등을 기질로 한 각(各) halogen화(化) tyrosine의 효소합성에서 m-chlorophenol에서 2-chloro-tyrosine은 약 15%, m-bromophenol에서 2-bromotyrosine은 약 13.8% 그리고 m-iodophenol에서 2-iodotyrosine은 약 9.8%의 회수율(回收率)로 각각 얻어졌었다. 2) ${\beta}-tyrosinase$에 의한 tyrosine 및 halogen화(化) tyrosine의 합성에서 tyrosine의 합성속도를 100으로 하였을 때 2-chlorotyrosine은 28.2, 2-bromotyrosine은 8.13 그리고 2-iodotyrosine은 0.98의 상대속도를 보여 halogen화(化) tyrosine의 합성속도가 느렸다. 특히 Cl, Br, I의 순(順)으로 원자반경(原子半經)이 증가(增加)함에 따라서 halogen화(化) tyrosine의 합성속도가 저하(低下)되는 것이 인정(認定)되었다. 한편 3-iodotyrosine은 합성이 되지 않았다. 3) ${\beta}-tyrosinase$에 의한 tyrosine의 분해속도를 100으로 하였을 때 2-chlorotyrosine은 70.7, 2-bromotyrosine은 39.0, 2-iodotyrosine은 12.6의 상대적인 분해속도를 보였다. 즉 Cl, Br, I의 순(順)으로 원자반경(原子半經)이 크고 전기음성도(電氣陰性度)가 적어짐에 따라서 분해속도가 저하(低下)되는 것이 분명(分明)하였다 그리고 역시 3-iodotyrosine은 분해를 받지 않았다. 4) ${\beta}-tyrosinase$의 활성(活性)에 대하여 phenol은 현저한 조해작용(阻害作用)을 보였으며 o- 및 m-chlorophenol와 o-bromophenol의 조해(阻害)도 현저하였다. 반면 iodophenol의 조해(阻害)는 근소(僅少)하였으며 이들의 조해작용(阻害作用)을 Lineweaver-Burk plot법에 따라 측정한 결과 m-chlorophenol은 혼합형(混合型)의 조해작용(阻害作用)을 보였으며 그 Ki값은 $5.46{\times}10^{-4}M$이였다. 5) ${\beta}-tyrosinase$에 의한 2-bromotyrosine의 합성에서 기질인 m-bromophenol은 경시적(經時的)으로 소량(少量)씩 첨가하는 것이 효과적이었다. 6) ${\beta}-tyrosinase$를 이용하여 pyruvin산(酸), $NH_3$ 및 각(各) halogen화(化) phenol에서 합성한 2-halogen화(化) tyrosine들을 각각(各各) 원소분석(元素分析)하고 또한 NMR-spectrum, Mass-spectrum 그리고 IR-spectrum 등으로 측정하여 그들의 구조(構造)를 해석(解析)한 결과 각각(各各) 2-chloro-L-tyrosine, 2-bromo-L-tyrosine 및 2-iodo-L-tyrosine 임을 인정(認定)할 수 있었다.

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