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13篇 您的检索式:作者名="DEPETRIS D"
    题名 作者 年代 出处 被引量
1Telomeric 22q13 deletions resulting from rings, simple deletions, and translocations: cytogenetic, molecular, and clinical analyses of 32 new observations显示文摘Luciani J J de Mas P Depetris D Mignon-Ravix C Bottani A Prieur M 2003J Med Genet2003,40,9:1
2Bivalent 15 regularly associates with the sex vesicle in normal male meiosis显示文摘Metzler-Guillemain C Mignon C Depetris D Guichaoua M Mattei M 1999Chromosome Research1999,7,:1
3TSPY the candidate gonadoblastoma gene on the human Y chromosome,has a widely expressed homologue on the X-implications for Y chromosome evolution显示文摘Deldridge ML Longepied G Depetris D 2004Chromosome Res2004,12,3:1
4The signature of river and wind-born materials exported from Patagonia to the southern latitudes: a view from REEs and implications for paleoclimatic interpretations 显示文摘Dalero D M Depetris P J Probst J L Bidart S M Leleyter L 2004Earth and Planetary Science Letters2004,219,:1
5Crystal structure of a complex between protein tyrosine phosphatase 1B and the insulin receptor tyrosine kinase显示文摘Li S Depetris R S Barford D 0,,11:1
6Bivalent 15 regularly associates with the sex vesicle in narmalm alem eiosis显示文摘METZLER GUILLEMAIN C MIGNON C DEPETRIS D 1999Chromosome ResearCh1999,7,:1
7eDNA se- quence and chromosomal localization of the NDUFS8 human gene coding for the 23 kDa subunit of the mitochondrial complex I 显示文摘V Procaeeio D Depetris P Soularue 1997Biochim Biophys Acta1997,1351,:1
8Bivalent 15 reg- ularly associates with the sex vesicle in normal male meiosis 显示文摘Metzler - Guillemain C Mignon C Depetris D 1999Chromosome Research1999,7,:1
9Abnormal expression of the KLF8 (ZNF741) gene in a female patient with an X; autosome translocation and non-syndromic mental retardation 显示文摘Lossi AM Laugier-Anfossi F Depetris D 2002J Med Genet2002,39,2:1
10Bivalent 15 regularly associates with the sex vesicle in nomal male meiosis显示文摘Metzler-Cmillemain C Mignon C Depetris D 1999Chromosome Research1999,7,:1
11Abnormal expression of the KLF8(ZNF741)gene in a female patient with an X;autosome translocation and non-syndromic mental retardation显示文摘Lossi AM Laugier-Anfossi F Depetris D 2002J Med Genet2002,39,:1
12Abnormal ex- pression of the KLFg (ZNF741) gene in a female patient with an X; autosome translocation and non-syndromic mental retardation 显示文摘Lossi AM Laugier-Anfossi F Depetris D 2002J Med Genet2002,39,2:1
13Dynamics of the ruminal microbial ecosystem, and inhibition of methanogenesis and propiogenesis in response to nitrate feeding to Holstein calves显示文摘It is known that nitrate inhibits ruminal methanogenesis,mainly through competition with hydrogenotrophic methanogens for available hydrogen(H2)and also through toxic effects on the methanogens.However,there is limited knowledge about its effects on the others members of ruminal microbiota and their metabolites.In this study,we investigated the effects of dietary nitrate inclusion on enteric methane(CH4)emission,temporal changes in ruminal microbiota,and fermentation in Holstein calves.Eighteen animals were maintained in individual pens for 45 d.Animals were randomly allocated to either a control(CTR)or nitrate(NIT,containing 15 g of calcium nitrate/kg dry matter)diets.Methane emissions were estimated using the sulfur hexafluoride(SF6)tracer method.Ruminal microbiota changes and ruminal fermentation were evaluated at 0,4,and 8 h post-feeding.In this study,feed dry matter intake(DMI)did not differ between dietary treatments(P>0.05).Diets containing NIT reduced CH4 emissions by 27%(g/d)and yield by 21%(g/kg DMI)compared to the CTR(P<0.05).The pH values and total volatile fatty acids(VFA)concentration did not differ between dietary treatments(P>0.05)but differed with time,and post-feeding(P<0.05).Increases in the concentrations of ruminal ammonia nitrogen(NH3-N)and acetate were observed,whereas propionate decreased at 4 h post-feeding with the NIT diet(P<0.05).Feeding the NIT diet reduced the populations of total bacteria,total methanogens,Ruminococcus albus and Ruminococcus flavefaciens,and the abundance of Succiniclasticum,Coprococcus,Treponema,Shuttlewortia,Succinivibrio,Sharpea,Pseudobutyrivibrio,and Selenomona(P<0.05);whereas,the population of total fungi,protozoa,Fibrobacter succinogenes,Atopobium and Erysipelotrichaceae L7 AE11 increased(P<0.05).In conclusion,feeding nitrate reduces enteric CH4 emissions and the methanogens population,whereas it decreases the propionate concentration and the abundance of bacteria involved in the succinate and acrylate pathways.Despite the altered fermentation profile and ruminal microbiota,DMI was not influenced by dietary nitrate.These findings suggest that nitrate has a predominantly direct effect on the reduction of methanogenesis and propionate synthesis.Abimael Ortiz-Chura Jose Gere Gisela Marcoppido Gustavo Depetris Silvio Cravero Claudia Faverin Cesar Pinares-Patino Angel Cataldi d Maria E.Ceron-Cucchi 2021Animal Nutrition2021,,4:0
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