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4篇 您的检索式:作者名="Huizeng Sun"
    题名 作者 年代 出处 被引量
1Constraints on the utilization of cereal straw in lactating dairy cows:A review from the perspective of systems biology显示文摘Cereal straw,a human inedible crop byproduct,can be used as a roughage source in ruminants.However,the nutrition density and palatability are very low,limiting its efficient utilization in animal production.This review aims to systematically provide an overview of the limitations of cereal straws,which is crucial for developing new strategies to enhance the efficient use of cereal straws by lactating dairy cows.Evolutionary molecular biology makes it possible to comprehensively understand the limitations of using cereal straw as a roughage source in dairy cows by different techniques,e.g.,multi-omics.Main constraints for utilization of cereal straw and stover in lactating dairy cows include low contents of easily fermented carbohydrates(pectin)and essential amino acids(Met,Phe,and branched-chain amino acids),high content of lignin and silica,and low nutrient digestibility.These cause insufficient supply of the precursors for milk synthesis and result in increased loss of nutrients in feces and urine.Several molecular mechanisms are revealed by multi-omics techniques,including changed amino acid and glucose metabolism,altered rumen microbial composition and function,and differential expression of miRNAs,mRNA,and protein in multi-organs that are associated with milk synthesis.These can be targets of approaches to improve the utilization of cereal straw by dairy cows.In addition,much attention should be given to the efficient countermeasures,including pretreatments by fibrolytic enzymes or steam explosion,dietary formulations such as supplement of pectin,methionine,and branched-chain amino acids,and feeding with other functional feedstuffs,which may improve the feeding and economic value of cereal straw for lactating dairy cows.The newly revealed functional genes(such as BAG3 in the rumen,PC in the liver,CSN1S2 in the mammary gland)and biomarkers(hippuric acid)as well as the integrative signaling and metabolic pathways(phenylalanine metabolism)related to the shortages of cereal straws could be used as nutritional or genetic regulatory targets to improve dairy cow production.Bing Wang Huizeng Sun Diming Wang Hongyun Liu Jianxin Liu 2022Animal Nutrition2022,,2:3
2Biomarker and pathway analyses of urine metabolomics in dairy cows when corn stover replaces alfalfa hay显示文摘Background: Alfalfa hay and corn stover are different type of forages which can significantly impact a cow's lactation performance, but the underlying metabolic mechanism has been poorly studied. We used biomarker and pathway analyses to characterize related biomarkers and pathways based on urine metabolomics data from different forage treatments. Urine was col ected from 16 multiparous Holstein dairy cows fed alfalfa hay(AH, high-quality forage, n = 8) and corn stover(CS, low-quality forage, n = 8) respectively. Gas chromatography–time of flight/mass spectrometry(GC-TOF/MS) was performed to identify metabolites in urine and the metaboanalyst online platform was used to do biomarker and pathway analysis.Results: Hippuric acid(HUA) and N-methyl-glutamic(NML-Glu) indicated the most significant difference between the two diets, when statistical y validated by biomarker analysis. HUA was also validated by standard compound quantitative method and showed significant higher concentration in CS group than AH group(2.8282 vs. 0.0005 mg/mL; P < 0.01).The significant negative correlation between milk yield and HUA(R^2= 0.459; P < 0.01) and significant positive correlation between milk yield and NML-Glu(R^2= 0.652; P < 0.01) were characterized. The pathway analysis revealed that these different metabolites were involved in 17 pathways including 7 influential pathways(pathway impact value > 0): Tyr metabolism, starch and sucrose metabolism, amino sugar and nucleotide sugar metabolism, galactose metabolism,Phe, Tyr and Try biosynthesis, purine metabolism, and glycerolipid metabolism. Based on the metabolome view map,the Phe, Tyr and Try biosynthesis pathway exhibited the highest impact value(0.50), and the Holm-Bonferroni multiple testing-based analysis revealed the most significant difference in the Tyr metabolism pathway(Holm P = 0.048).Conclusions: The identified HUA and NML-Glu may serve as potential biomarkers for discriminating CS and AH diets and could be used as candidates for milk yield related mechanistic investigations. Integrated network pathways associated with related metabolites provide a helpful perspective for discovering the effectiveness of forage quality in lactation performance and provides novel insights into developing strategies for better utilization of CS and other low-quality forage in China.Huizeng Sun Bing Wang Jiakun Wang Hongyun Liu Jianxin Liu 2017Journal of Animal Science and Biotechnology2017,8,1:2
3Heat stress affects dairy cow health status through blood oxygen availability显示文摘Background Rises in global warming and extreme weather occurrence make the risk of heat stress(HS)induced by high ambient temperatures more likely in high-yielding dairy cows,resulting in low milk quality and yield.In ani-mals,oxygen is involved in many physiological and metabolic processes,but the effects of HS on oxygen metabolism remain unclear.Thus,the current study aimed to investigate how oxygen metabolism plays a role in health status of dairy cows by measuring the milk yield,milk composition,and blood biochemical variables of cows under different levels of HS:none(No-HS),mild(Mild-HS),and moderate HS(Mod-HS).Results The HS significantly increased rectal temperature(Ptreat<0.01)and respiration rate(Ptreat<0.01).Under Mod-HS,greater Na+(P<0.05)and lower total CO_(2),and pH(P<0.05)were observed relative to those under No-HS and Mild-HS.Oxygen concentrations in both coccygeal artery and mammary vein(Ptreat<0.01)were lower under Mod-HS than under No-HS.Coccygeal vein concentrations of heat shock protein 90(HSP90)(P<0.05)increased during Mod-HS compared with those in cows under No-HS.Malondialdehyde increased during Mod-HS,and glu-tathione peroxidase(P<0.01)increased during Mild-HS.Coccygeal vein concentrations of vascular endothelial growth factor(P<0.01),heme oxygenase-1(P<0.01),and hypoxia-inducible factor 1α(P<0.01)were greater in cows under Mod-HS than those under No-HS.Red blood cell count(P<0.01)and hemoglobin concentration(P<0.01)were lower in the coccygeal vein of dairy cows under Mild-and Mod-HS than those of cows under No-HS.Conclusions Exposure to HS negatively impacts the health status and lactation performance of dairy cows by limit-ing oxygen metabolism and transportation.However,the specific mechanism by which HS affects mammary function in cows remains unclear and requires further exploration.Jia Zeng Jie Cai Diming Wang Hongyun Liu Huizeng Sun Jianxin Liu 2023Journal of Animal Science and Biotechnology2023,14,6:0
4Blood neutrophil extracellular traps:a novel target for the assessment of mammary health in transition dairy cows显示文摘Background:Mammary health is important for transition dairy cows and has been well recognized to exert decisive effects on animal welfare.However,the factors influencing mammary health are still unclear.Differential somatic cell count(DSCC)could reflect the mastitis risk since it is the percentage of neutrophils plus lymphocytes in total somatic cells and could be reflective of mammary health of dairy cows.This work aimed to investigate the assessment and prognosis of the health of transition cows based on blood neutrophil extracellular traps(NETs).Results:Eighty-four transition Holstein dairy cows were selected.The serum was sampled in all the animals at week 1 pre-and postpartum,and milk was sampled at week 1 postpartum.Based on the DSCC in milk at week 1,cows with lower(7.4%±4.07%,n=15)and higher(83.3%±1.21%,n=15)DSCCs were selected.High DSCC cows had higher levels of red blood cell counts(P<0.05),hemoglobin(P=0.07),and hematocrit(P=0.05),higher concentrations of serum oxidative variables[reactive oxygen species(P<0.05),malondialdehyde(P<0.05),protein carbonyl(P<0.05),and 8-hydroxy-2-deoxyguanosine(P=0.07)],higher levels of serum and milk NETs(P<0.05)and blood-milk barrier indicators,including serumβ-casein(P=0.05)and milk immunoglobulin G2(P=0.09),than those of low DSCC cows.In addition,lower concentrations of serum nutrient metabolites(cholesterol and albumin)(P<0.05)and a lower level of serum deoxyribonuclease I(P=0.09)were observed in high DSCC cows than in low DSCC cows.Among the assessments performed using levels of the three prepartum serum parameters(NETs,deoxyribonuclease I andβ-casein),the area under the curve(0.973)of NETs was the highest.In addition,the sensitivity(1.00)and specificity(0.93)were observed for the discrimination of these cows using NETs levels with a critical value of 32.2 ng/mL(P<0.05).Conclusions:The formation of NETs in blood in transition dairy cows may damage the integrity of the blood-milk barrier and thereby increase the risk for mastitis in postpartum cows.Luyi Jiang Huizeng Sun Fengfei Gu Jin He Fengqi Zhao Jianxin Liu 2023Journal of Animal Science and Biotechnology2023,14,3:0
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