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17篇 您的检索式:作者名="R.Y"
    题名 作者 年代 出处 被引量
1查看详情显示文摘Yang R.Q Tian R.Y Yah J.G Zhang Y Yang J Hou Q Yang W Zhang C Cao Y 0,,:1
2Volatility Persistence and Stock Valuations:Some Empirical Evidence Using Garch显示文摘Chou R.Y 0,,04:1
3Effects of dietary vitamin E supplementation on antioxidant enzyme activities in Litopenaeus vannamei(Boone,1931)exposed to acute salinity changes显示文摘Liu Y Wang W.N Wang A.L Wang J.M Sun R.Y 0,,:1
4AIMQ:A methodology for information quality assessment显示文摘Lee Y.W Strong D.M Kahn B.K Wang R.Y 0,,:1
5查看详情显示文摘Qu J.M Liu G Wang Y.M Hong R.Y 0,,:1
6Simplified dynamic method for pile-driving control显示文摘Liang R.Y Husein A.I 0,,04:1
7Effect of chlorpropham (CIPC) on carbohydrate metabolism of potato tubers during storage显示文摘R.W Blenkinsop L.J Copp R.Y Yada A.G Marangoni 2002Food Research International2002,,7:1
8Shareholding Structure,Depoliticization and Firm Performance:Lessons from China's Listed Firms显示文摘Wong S.M.L Opper S Hu R.Y 0,,1:1
9Biochemistry mutagenesis and oligomerization of DsRed a red fluorescent protein from coral显示文摘Baird G.S Zacharias D.A Tsien R.Y 0,,:1
10Prey availability and selective foraging in shorebirds显示文摘PATRICIA R.Y BACKWELL PATRICK D O’HARA JOHN H CHRISTY 1998Animal Behaviour1998,,:1
11Anterior cingulate conflict monitoring and adjustments in control显示文摘Kems J.G Cohen J.D MacDonald A.W 3rd Cho R.Y Stenger V.A & Carter C.S 0,,5660:1
12Replication of gross cutaneous Marek's disease virus genome in synchronized nonproducer显示文摘Lau R.Y M. Nonoyama 0,,:1
13A scatter search for multi-depot vehicle routing problem with weight-related cost显示文摘Zhang J Tang J.F Fung R.Y K 0,,03:1
14查看详情显示文摘Lv G Chen Z. X Zheng J Wei F.D Jiang H Zhang R.Y Wang X.M.J 0,,:1
15Mapping of leaf and neck blast resistance genes with resistance gene analog RAPD and RFLP in rice显示文摘Zhuang J.Y Ma W.B Wu J.L Chai R.Y Lu J Fan Y.Y Jin M.Z Leung H and Zheng K.L 0,,03:1
16查看详情显示文摘Li X Wu B.L Wang R.Y Zhang H.Y. Niu C.Y. Niu Y.Y. Hou H.W 0,,:1
17Rumen microbial degradation of bromoform from red seaweed(Asparagopsis taxiformis)and the impact on rumen fermentation and methanogenic archaea显示文摘Background The red macroalgae Asparagopsis is an effective methanogenesis inhibitor due to the presence of halogenated methane(CH_(4))analogues,primarily bromoform(CHBr_(3)).This study aimed to investigate the degradation process of CHBr3 from A taxiformis in the rumen and whether this process is diet-dependent.An in vitro batch culture system was used according to a 2×2 factorial design,assessing two A taxiformis inclusion rates[0(CTL)and 2%DM diet(AT)]and two diets[high-concentrate(HC)and high-forage diet(HF)].Incubations lasted for 72 h and samples of headspace and fermentation liquid were taken at 0,0.5,1,3,6,8,12,16,24,48 and 72 h to assess the pattern of degradation of CHBr_(3) into dibromomethane(CH_(2)Br_(2))and fermentation parameters.Additionally,an in vitro experiment with pure cultures of seven methanogens strains(Methanobrevibacter smithii,Methanobrevibacter ruminantium,Methanosphaera stadtmanae,Methanosarcina barkeri,Methanobrevibacter millerae,Methanorhermobacter wolfei and Methanobacterium mobile)was conducted to test the effects of increasing concentrations of CHBr3(0.4,2,10and 50μmol/L).Results The addition of AT significantly decreased CH_(4) production(P=0.002)and the acetate:propionate ratio(P=0.003)during a 72-h incubation.The concentrations of CHBr_(3) showed a rapid decrease with nearly 90%degraded within the first 3 h of incubation.On the contrary,CH_(2)Br_(2) concentration quickly increased during the first 6 h and then gradually decreased towards the end of the incubation.Neither CHBr_(3) degradation nor CH_(2)Br_(2) synthesis were affected by the type of diet used as substrate,suggesting that the fermentation rate is not a driving factor involved in CHBr_(3)degradation.The in vitro culture of methanogens showed a dose-response effect of CHBr3 by inhibiting the growth of M.smithii,M.ruminantium,M.stadtmanae,M.barkeri,M.millerae,M.wolfei,and M.mobile.Conclusions The present work demonstrated that CHBr_(3) from A.taxiformis is quickly degraded to CH_(2)Br_(2)in the rumen and that the fermentation rate promoted by different diets is not a driving factor involved in CHBr_(3)degradation.Pedro Romero Alejandro Belanche Elisabeth Jiménez Rafael Hueso Eva Ramos-Morales Joan King Salwen Ermias Kebreab David R.Yáñez-Ruiz 2024Journal of Animal Science and Biotechnology2024,15,1:0
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