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4篇 您的检索式:作者名="Ruili Han"
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1Dietary supplementation with Clostridium butyricum improves growth performance of broilers by regulating intestinal microbiota and mucosal epithelial cells显示文摘Clostridium butyricum has been widely considered an antibiotic substitute in recent years.It can promote growth performance,improve the immune response and enhance the intestinal barrier function of the host.In the present study,1-d-old Arbor Acres(AA)broilers were fed C.butyricum(1×109 cfu/kg)for 28 d.The transcriptomic characteristics of epithelial cells of the cecal mucosa were determined by RNA-sequence,and the cecal microbiota composition was explored by 16 S ribosomal RNA gene sequencing.The changes in the intestinal mucosa of broilers were then analyzed by tissue staining.Gene Ontology(GO)annotations identified substance transport and processes and pathways that might participate in intestinal development and cell viability.Kyoto Encyclopedia of Genes and Genomes(KEGG)pathway analysis revealed that the differentially expressed genes are involved in numerous pathways related to amino acid and vitamin metabolism and antioxidant and defensive functions,among others.The relative expression of some genes associated with intestinal barrier function(claudins 2,15,19,and 23,tight junction proteins 1,2,and 3 and mucin 1)was significantly increased in the treatment group(P<0.05 or P<0.01).Moreover,the proportion of Firmicutes was higher in the C.butyricum-treated group,whereas the proportion of Proteobacteria was higher in the control group.At the genus level,the relative abundances of Butyricicoccus and Lactobacillus,among other bacteria,were increased after C.butyricum supplementation.The tissue staining analysis showed that the cecal mucosa of broilers was significantly ameliorated after the addition of C.butyricum(P<0.05 or P<0.01).These results showed that dietary supplementation with C.butyricum can enhance the antioxidant capacity,mucosal barrier function,and stabilize the cecal microbiota,resulting in improving the growth performance.Laipeng Xu Xiangli Sun Xianhua Wan Keke Li Fuchun Jian Wenting Li Ruirui Jiang Ruili Han Hong Li Xiangtao Kang Yanbin Wang 2021Animal Nutrition2021,,4:12
2Identification of novel QTL associated with soybean isoflavone content显示文摘Soybean isoflavones are essential secondary metabolites synthesized in the phenylpropanoid pathway and benefit human health. In the present study, highresolution QTL mapping for isoflavone components was performed using specific-locus amplified fragment sequencing(SLAF-seq) with a recombinant inbred line(RIL) population(F5:7) derived from a cross between two cultivated soybean varieties, Luheidou 2(LHD2) and Nanhuizao(NHZ). Using a high-density genetic map comprising 3541 SLAF markers and the isoflavone contents of soybean seeds in the 200 lines in four environments, 24 stable QTL were identified for isoflavone components, explaining 4.2%–21.2% of phenotypic variation.Of these QTL, four novel stable QTL(qG8, qMD19, qMG18, and qTIF19) were identified for genistin, malonyldaidzin, malonylgenistin, and total isoflavones, respectively. Gene annotation revealed three genes involved in isoflavone biosynthesis(Gm4CL, GmIFR, and GmCHR) and 13 MYB-like genes within genomic regions corresponding to stable QTL intervals, suggesting candidate genes underlying these loci. Nine epistatic QTL were identified for isoflavone components, explaining 4.7%–15.6% of phenotypic variation. These results will facilitate understanding the genetic basis of isoflavone accumulation in soybean seeds. The stable QTL and tightly linked SLAF markers may be used for markerassisted selection in soybean breeding programs.Ruili Pei Jingying Zhang Ling Tian Shengrui Zhang Fenxia Han Shurong Yan Lianzheng Wang Bin Li Junming Sun 2018The Crop Journal2018,6,3:3
3Distinct tissue expression profiles of chicken Lpin1 - α / β isoforms and the effect of the variation on muscle fiber traits显示文摘Suya Li Wen Chen Xiangtao Kang Ruili Han Guirong Sun Yanqun Huang 2012Gene2012,,:1
4PARK16 rs708730 Polymorphism Decreases Parkinson’s Disease Risk in European Ancestry Population:A Meta-analysis显示文摘Parkinson’s disease(PD)is a complex fatal chronic neurodegenerative disease most common in elderly people.The early genome-wide association studies(GWAS)found that the minor allele variant of PARK16 rs708730 polymorphism is a significant protective factor for PD in Caucasian populations.However,these results cannot be repeated by the following studies in Caucasian populations and other populations.We considered that the inconsistency of the findings may be caused by the small-scale samples or the heterogeneity among different populations.Therefore,in this study,we synthesized the previous related GWAS studies through three authoritative sources,and used the large-scale samples(10,645 PD cases and 30,499 controls)to reevaluate the association between rs708730 polymorphism and PD.The results showed that there is no association between them in Asian ancestry population.While,in European ancestry population,we found that the minor allele variant(G)of rs708730 polymorphism is significantly associated with a decreased risk of PD.Collectively,our findings further verified the association of rs708730 with PD and show its genetic heterogeneity among different populations,which can help to develop a better understanding of the PD’s pathogenesis.Zhijie Han Baochu Wei Chenghong Zhang Hongtian Zhu Lei Tang Ruili Lin Dian He Yang Zhang Pingrong Yang Junquan He Pingshun Song 2019Journal of Geriatric Medicine2019,1,2:0
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