期刊文献+

金华猪回肠菌群结构和脂肪酸结合蛋白发育性变化与脂肪沉积的相关性研究 被引量:4

The Developmental Changes of Ileal Microbiota and Fatty Acid Binding Proteins and Its Correlation with Fat Deposition in Jinhua Pigs
下载PDF
导出
摘要 本试验旨在研究金华猪回肠菌群结构和脂肪酸结合蛋白发育性变化及其与脂肪沉积的相关性。试验分别选取45(D45)、90(D90)、150(D150)和270(D270)日龄体重相近的健康金华猪各4头,测定其体重和背膘厚;并采集回肠黏膜及其内容物,通过荧光定量PCR测定回肠黏膜中脂肪酸结合蛋白基因的表达,采用基于16S rRNA基因的高通量测序分析金华猪回肠菌群结构。结果表明:1)随着日龄的增加,金华猪体重和背膘厚均显著增加(P<0.05)。2)回肠黏膜中脂肪酸结合蛋白(fatty acids binding protein,FABP)编码基因FABP1、FABP2和FABP4表达量随着日龄的增加均呈显著增加(P<0.05)。3)厚壁菌门(Firmicutes)和拟杆菌门(Bacteroidetes)为金华猪回肠的优势菌门;在属水平上,狭义梭菌属1(Clostridium sensu stricto 1)、乳酸菌属(Lactobacillus)、土孢杆菌属(Terrisporobacter)、Romboutsia和链球菌属(Streptococcus)为主要优势菌属;随着日龄的增加,狭义梭菌属1(Clostridium sensu stricto 1)和链球菌属(Streptococcus)相对丰度先增加后降低;乳酸菌属(Lactobacillus)、土孢杆菌属(Terrisporobacter)和Romboutsia相对丰度先降低后增加;PCoA分析表明,各日龄有显著不同的聚类。4)Spearman相关性分析表明,金华猪回肠黏膜中脂肪酸结合蛋白FABP1、FABP2和FABP4表达水平与背膘厚的相关性系数分别为0.4801、0.5979和0.7953;金华猪回肠菌属Epulopiscium和Mycoplasma与脂肪酸结合蛋白FABP1、FABP2和FABP4和背膘厚的相关性系数范围分别为0.38~0.76、0.45~0.64。由此可见,金华猪回肠菌群结构和脂肪酸结合蛋白表达水平呈现发育性变化,且与脂肪沉积存在一定的相关性。 The objective of this study was to investigate the developmental changes of ileal microbiota and fatty acid binding proteins and its correlation with fat deposition in Jinhua pigs.Four healthy Jinhua pigs at 45(D45),90(D90),150(D150)and 270(D270)days of age were selected,respectively to measure their body weight and backfat thickness.The ileal mucosa and contents were collected.The expression of fatty acid binding protein genes in the ileal mucosa was measured by fluorescent quantitative PCR,and ileal microbiota were analyzed using high-throughput sequencing based on 16S rRNA gene.The results showed:1)The weight and backfat thickness of Jinhua pigs increased significantly with age increasing(P<0.05);2)The expression of fatty acid binding protein genes FABP 1,FABP 2 and FABP 4 in the ileal mucosa showed significant increase with age increasing(P<0.05);3)Firmicutes and Bacteroidetes were the predominant phyla in the ileum of Jinhua pigs.At the genus level,Clostridium sensu stricto 1,Lactobacillus,Terrisporobacter,Romboutsia and Streptococcus were the dominant bacteria;With age increasing,the relative abunance of Clostridium sensu stricto 1 and Streptococcus increased at first and then decreased while Lactobacillus,Terrisporobacter and Romboutsia decreased at first and then increased.PCoA analysis showed that there were significantly different clusters at each age.4)Spearman correlation analysis showed that the correlation coefficients of the expression levels of fatty acid binding proteins FABP1,FABP2 and FABP4 with backfat thickness were 0.4801,0.5979 and 0.7953,respectively;The correlation coefficients of Epulopiscium and Mycoplasma with fatty acid binding proteins FABP1,FABP2 and FABP4 in the ileum and backfat thickness of Jinhua pigs were 0.38-0.76 and 0.45-0.64,respectively.It is concluded that the developmental changes were observed for the ileal microbiota and the expression of fatty acid binding protein,which were asscociated with fat deposition in Jinhua pigs.
作者 王远霞 刘秀婷 章啸君 项云 徐娥 吕文涛 杨华 肖英平 WANG Yuanxia;LIU Xiuting;ZHANG Xiaojun;XIANG Yun;XU E;Lü Wentao;YANG Hua;XIAO Yingping(College of Animal Science,Guizhou University,Guiyang 550025,China;State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products,Hangzhou 310021,China;Institute of Quality and Standard for Agro-products,Zhejiang Academy of Agricultural Sciences,Hangzhou 310021,China;Institute of Animal Husbandry and Veterinary Medicine,Jinhua Academy of Agricultural Sciences,Jinhua 321017,China)
出处 《畜牧兽医学报》 CAS CSCD 北大核心 2021年第3期723-732,共10页 ACTA VETERINARIA ET ZOOTECHNICA SINICA
基金 国家自然科学基金(31972999)。
关键词 金华猪 回肠菌群 脂肪酸结合蛋白 发育性变化 脂肪沉积 Jinhua pig ileal microbiota fatty acid binding protein developmental changes fat deposition
  • 相关文献

参考文献1

二级参考文献19

  • 1杨海玲,曾勇庆,魏述东,武英,曹洪防,刘婵娟,王刚,包新见.莱芜猪脂肪代谢酶活性的发育性变化及其对肌内脂肪沉积的影响[J].畜牧兽医学报,2005,36(11):1150-1154. 被引量:23
  • 2Arnyasi M., Grindflek E., JOvor A., and Lien S., 2006, Investiga- tion of two candidate genes for meat quality traits in a quan- titative trait locus region on SSC6:the porcine short het- erodimer parmer and heart fatty acid binding protein genes, Journal of Animal Breeding and Genetics, 123 (3): 198-203.
  • 3Cases S., Stone S.J., Zhou P., Yen E., Tow B., Lardizabal K.D., Voelker T., and Farese R.V.Jr., 2001, Cloning of DGAT2, asecond mammalian diacylglycerol acyltransferase, and relat- ed family members, Journal of Biological Chemistry, 276 (42): 38870-38876.
  • 4Gerbens F., de Koning D.J., Harders F.L., Meuwissen T.H., Janss L.L., Groenen M,A., Veerkamp J.H., van Arendonk J.A., and te Pas M.F., 2000, The effect of adipocyte and heart fat- ty acid-binding protein genes on intramuscular fat and back- fat content in Meishan crossbred pigs, Journal of Animal Science, 78(3): 552-559.
  • 5Livak K.J., and Schrnittgen T.D., 2001, Analysis of relative gene expression data using Real-time quantitative PCR and the 2 (-Delta Delta C(T)) method, Methods, 25(4): 402-408.
  • 6Man W.C., Miyazaki M., Chu K., and Ntambi J., 2006, Colocal- ization of SCD1 and DGA T2: Implying preference for en- dogenous monounsaturated fatty acids in triglyceride synthe- sis, Journal of Lipid Research, 47(9): 1928-1939.
  • 7McFie P.J., Stone S.L., Banman S.L., and Stone S.J., 2010, Topo- logical orientation of acyl-CoA:diacylglycerol acyltrans- ferase-1 (DGA T1) and identification of a putative active site histidine and the role of the n terminus in dimer/tetramer formation, Journal of Biological Chemistry, 285 (48): 37377-37387.
  • 8Meegalla R.L., Billheimer J.T., and Cheng D., 2002, Concerted elevation of acyl-coenzyme A:diacylglycerol acyltransferase (DGA T) activity through independent stimulation of mRNA expression of DGA T1 and DGA T2 by carbohydrate and in- sulin, Biochemical and Biophysical Research Communica- tions, 298(3): 317-323.
  • 9Qi J., Lang W., Giardino E., Caldwell G.W., Smith C., Minor L. K., Darrow A.L., Willemsens G., Dewaepenaert K., Roevens P., Linders J.T., Liang Y., and Connelly M.A., 2010, High-content assays for evaluating cellular and hepat- ic diacylglycerol acyltransferase activity, Joumal of Lipid Research, 51(12): 3559-3567.
  • 10Smith S.J., Cases S., Jensen D.R., Chen H.C., Sande E., Tow B., Sanan D.A., Raber J., Eckel R.H., and Farese R.V., Jr., 2000, Obesity resistance and multiple mechanisms of triglyceride synthesis in mice lacking Dgat, Nature Genetics, 25(1): 87-90.

共引文献3

同被引文献69

引证文献4

二级引证文献15

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部