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    题名 作者 年代 出处 被引量
1玉米DDGS饲粮添加木聚糖酶或β-葡聚糖酶对保育猪生产性能和养分利用率的影响显示文摘本试验开展保育猪玉米DDGS饲粮添加木聚糖酶和β-葡聚糖酶对生产性能和养分消化的影响研究。135只(起始体重7.2±0.2kg)保育猪随机分成5个处理组,每个处理组6个重复,每个重复4~5只,分别为正对照组(PC,玉米/豆粕+0%玉米DDGS)、负对照组(NC,以30%玉米DDGS替代部分玉米和豆粕,不添加酶制剂)、在负对照组基础上分别添加4000 U/kg木聚糖酶(XYL)、450 U/kgβ-葡聚糖酶(BGL)或4000 U/kg木聚糖酶+450 U/kgβ-葡聚糖酶(XB)的3个酶制剂组。试猪统一饲喂玉米豆粕型饲粮1周(阶段一)后过渡到试验饲粮,试验饲粮分两阶段(阶段二:7-21天和阶段三:21-35天),试验饲粮配制以总赖氨酸含量一致为基础,营养水平达到或超过NRC(1998),为了突出纤维降解酶的作用效果,阶段二与阶段三NC、XYL、BGL和XB四组试验饲粮的代谢能比PC组分别降低3.0%和4.7%。试验发现,NC组试猪生长速度显著低于PC组(P<0.001)。阶段三,BGL组与XB组试猪日增重比NC组分别提高7.7%和9.3%(P<0.001);试验全期,XB组试猪比NC猪日增重提高6.6%(P<0.001)。XYL与XB组干物质消化率比NC组分别提高1.6%和1.4%(P<0.001),添加酶制剂组能量消化率比NC组提高5.5%(P<0.001),同时,与NC组比较,酶制剂组饲粮粗蛋白质消化率提高5.9%,差异极显著(P<0.001)。XYL、BGL和XB三组与NC组相比,饲粮中性洗涤纤维、酸性洗涤纤维及半纤维素消化率分别提高33%、30%与34%(P<0.02)。同时,酶制剂添加组饲粮P消化率比NC组提高46%(P<0.01)。结果表明,玉米DDGS饲粮联合添加木聚糖酶和β-葡聚糖酶可以提高保育猪日增重,且β-葡聚糖酶起主导作用。虽然木聚糖酶和β-葡聚糖酶对保育猪日均采食量与增重耗料比没有影响,但至少部分降低了玉米DDGS对饲粮养分利用率及生产的负面影响。陈芳 Tsai T Dove C R Cline P M 2017广东饲料2017,26,4:4
2Ionogram analysis using fuzzy mentation and connectedness techniques显示文摘TSAI L C BERKEY F T 2000Radlo Sci2000,35,5:1
3Mathematical model for parametric tooth profile of spur gear using line of action显示文摘FONG Z H CHIANG T W TSAI C W 2002Mathematical and Computer Modeling2002,36,45:1
4A new dynamic finite-state vector quantization algorithm for image compression显示文摘J C Tsai C H Hsieh T C Hsu 2000IEEE Trans on Image Processing2000,9,11:1
5Anodization of AZ91D magnesium alloy in silicate-containing electrolytes显示文摘Hsiao H Y Tsung H C Tsai W T 2005Surface and Coatings Technology2005,199,:1
6A study of a design and NC manu- facturing model of ball - end cutters 显示文摘Y C Tsai T M Hsieh 2001Journal of Materi- als Technology2001,117,:1
7Effect of rice bran on the production of different king oyster mushroom strains during bottle cultivation显示文摘Peng J T Lee C M Tsai Y E 2000J A_gric Res China2000,49,:1
8Effects of body force ontransient poroelastic consolidation due to groundwater pumping显示文摘Tseng C M Tsai T L Huang L H 2008Environmental Geology2008,54,7:1
9A novel time domain method to extract equivalent circuit model of patterned ground显示文摘Cheng C H Tsai C H Wu T L 0,,:1
10Acute aortic dissection:perspectives from the International registry of acute aorticdissection(IRAD)显示文摘Tsai T T Trimarchi S Nienaber C A 2009Eur J Vasc Endovasc Surg2009,37,2:1
11Plasma interleukin-l~,-6,-8 and tumor necrosis factor-a as highly informative markers of pel- vic inflammatory disease 显示文摘Lee S A Tsai H T Ou H C 2008Clin Chem Lab Med2008,46,7:1
12Preparation and characterization of activated carbons from corn cob 显示文摘W T Tsai C Y Chang S L Lee 1997Carbon1997,35,8:1
13Atherosclerosis - preventing activity of lactic acid bacteria- fermented milk- soymilk supplemented with Momordica charantia 显示文摘Tsai T Chu L Lee C 2009Journal of Agricultural and Food Chemistry2009,57,5:1
14Theaflavin-3,3'-digallat from black tea blocks the nitric oxide synthase by down-regulating the aetivation of NF- kappaB in macrophages 显示文摘Lin Y L Tsai S H Lin-Shiau S Y Ho C T Lin J K 1999Eur J Pharmaeol1999,367,:1
15Adsorption of polyethylene glycol (PEG) from aqueous solution onto hydrophobic zeolite 显示文摘Chang C Y Tsai W T Ing C H 2003Journal of Colloid and Interface Science2003,260,2:1
16Metalorganic chemical vapor deposition of tantalum nitride by tertbutylimidotris (diethylamido)tantalum for advanced metallization显示文摘Tsai M H Sun S C Chiu H T 1995J Appl Phys1995,67,8:1
17A stabilization matrix for the bilinear Mindlin plate element显示文摘BELYTSCHKO T TSAY C S LIU W K 1981Comput Methods Appl Mech & Eng1981,29,3:1
18Lipid accumulation and CO2utilization of Nannochloropsis oculata in response to CO2 aeration显示文摘Chiu S Y Kao C Y Tsai M T 2009Bioresource Technology2009,100,:1
19Arsenic-implanted HfON charge-trapping flash memory with large memory window and good retention显示文摘TSAI C T LEE T H CHIN A 2011IEEE Electron Device Letter2011,32,3:1
20Manganese Oxide/Carbon Composite Electrodes for Electrochemical Capacitors显示文摘CHANG J K LIN C T TSAI W T 2004Electrochemistry Communications2004,6,7:1
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