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Integrated multi-omics reveals the relationship between growth performance,rumen microbes and metabolic status of Hu sheep with different residual feed intakes
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作者 Yanzhen Zhang Xiaowei Zhang +4 位作者 Dingren Cao Jinyong Yang huiling mao Lingling Sun Chong Wang 《Animal Nutrition》 SCIE CAS CSCD 2024年第3期284-295,共12页
Residual feed intake(RFI)is a metric that provides a more accurate measure of feed efficiency.The lower the RFI,the higher the feed efficiency.The changes in the host microbiome and metabolome contribute to the greate... Residual feed intake(RFI)is a metric that provides a more accurate measure of feed efficiency.The lower the RFI,the higher the feed efficiency.The changes in the host microbiome and metabolome contribute to the greater feed efficiency of low RFI(LRFI)animals.The aim of this study was to explore the differences in rumen microorganisms,rumen metabolites and plasma metabolites of Hu sheep with differing RFI through the microbiome and metabolome.A total of 80 Hu sheep were used.The experiment consisted of a 15-d pretrial period and a 128-d experimental period.The RFI in the experimental period was calculated for all sheep,and the sheep were screened into high RFI(HRFI,n=8)and LRFI(n=8)groups.The HRFI and LRFI sheep did not differ in their initial and final body weights,average daily gain and body measurements,but the dry matter intake of LRFI sheep was significantly decreased(28.4%,P<0.001).The sheep with LRFI had higher digestibility of crude protein(P=0.010)and ether extract(P=0.010)compared to HRFI group.The concentrations of acetate(P=0.036),propionate(P=0.010),valerate(P=0.027)and total volatile fatty acids(P=0.048)in rumen of LRFI group were higher compared to HRFI group.The results of 16S rDNA sequencing indicated that the sheep with LRFI had higher proportions of Prevotella genus in rumen liquid(P=0.031).The rumen metabolome and plasma metabolome results showed that the citrate cycle,pyruvate metabolism and alanine,aspartate and glutamate metabolism processes were more active for sheep in LRFI group,which provided more energy substrate such as malic acid,oxoglutaric acid and citric acid.In conclusion,sheep with LRFI can utilize feed more efficiently,and the more active energy metabolism pathway and the production of energy substances may account for the higher feed efficiency. 展开更多
关键词 Feed efficiency Residual feed intake Rumen microbiome and metabolome Plasma metabolome
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有机单体空间构型对共轭微孔聚合物催化性能的影响
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作者 王晨 毛会玲 +3 位作者 程琥 杜嬛 连小兵 庄金亮 《过程工程学报》 CAS CSCD 北大核心 2020年第5期576-582,共7页
以TEMPO自由基功能化2,5-二溴-N-(2,2,6,6-四甲基哌啶)苯甲酰胺为有机单体,与平面三角构型(D3h对称性)的1,3,5-三乙炔苯和四面体构型(Td对称性)的四(4-乙炔基苯)甲烷分别通过Sonogashira-Hagihara偶联反应获得CMP-3-TEMPO和CMP-4-TEMPO... 以TEMPO自由基功能化2,5-二溴-N-(2,2,6,6-四甲基哌啶)苯甲酰胺为有机单体,与平面三角构型(D3h对称性)的1,3,5-三乙炔苯和四面体构型(Td对称性)的四(4-乙炔基苯)甲烷分别通过Sonogashira-Hagihara偶联反应获得CMP-3-TEMPO和CMP-4-TEMPO。扫描电子显微镜照片(SEM)显示两种TEMPO功能化CMPs形貌上有显著差异,CMP-3-TEMPO为不规则的棒状和块状微米聚合物,CMP-4-TEMPO为尺寸较均一的微米球聚合物。固态电子顺磁共振谱(EPR)证明了CMP-3-TEMPO和CMP-4-TEMPO均含有TEMPO自由基。两种CMPs催化剂均可将5-羟甲基糠醛(5-HMF)选择性催化氧化成2,5-二甲酰基呋喃(2,5-DFF),但在催化效率和循环利用率方面存在显著差异。有机配体的空间立体构型对CMPs的形貌和催化性能有重要影响,选择具有空间立体构型的有机单体,所合成的CMP-4-TEMPO具有更稳定的结构,催化循环性能更优异。 展开更多
关键词 TEMPO自由基 Sonogashira-Hagihara偶联反应 共轭微孔聚合物 异相催化 5-羟甲基呋喃
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