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149 results on '"tibetan pig"'

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1. Screening of functional genes for hypoxia adaptation in Tibetan pigs by combined genome resequencing and transcriptome analysis.

2. Isolation, Identification and Biological Characteristics of Lactobacillus reuteri from Tibetan Pigs.

3. Application of RNA-Seq Technology for Screening Reproduction-Related Differentially Expressed Genes in Tibetan and Yorkshire Pig Ovarian Tissue.

4. Screening of functional genes for hypoxia adaptation in Tibetan pigs by combined genome resequencing and transcriptome analysis

5. Differential Analysis of Gene Expression of Toll-like Receptors and Antimicrobial Peptides in Immune Organs and Tissues of Tibetan and Duroc-Landrace-Yorkshire pigs

6. Metagenomics to Identify Viral Communities Associated with Porcine Respiratory Disease Complex in Tibetan Pigs in the Tibetan Plateau, China.

7. Developmental Dynamics of the Gut Virome in Tibetan Pigs at High Altitude: A Metagenomic Perspective across Age Groups.

8. 藏猪与杜长大三元猪免疫器官和组织中 Toll 样受体 与抗菌肽基因的表达差异分析.

9. Identification of Selection Signatures and Candidate Genes Related to Environmental Adaptation and Economic Traits in Tibetan Pigs.

10. Application of RNA-Seq Technology for Screening Reproduction-Related Differentially Expressed Genes in Tibetan and Yorkshire Pig Ovarian Tissue

11. Metagenomics to Identify Viral Communities Associated with Porcine Respiratory Disease Complex in Tibetan Pigs in the Tibetan Plateau, China

12. Developmental Dynamics of the Gut Virome in Tibetan Pigs at High Altitude: A Metagenomic Perspective across Age Groups

13. 不同品种猪PVALB基因多态性及其在肌肉组织的表达差异分析.

14. Identification of Selection Signatures and Candidate Genes Related to Environmental Adaptation and Economic Traits in Tibetan Pigs

15. Quantitative Proteomic Analysis of Tibetan Pig Livers at Different Altitudes.

16. Differences in histomorphology and expression of key lipid regulated genes of four adipose tissues from Tibetan pigs.

17. A comparison of hepatic lipid metabolism and fatty acid composition in muscle between Duroc × Landrace × Yorkshire and Tibetan pigs from three regions

18. Remodeling of the microbiota improves the environmental adaptability and disease resistance in Tibetan pigs.

19. Seroprevalence and Risk Factors Investigations of Parvovirus Disease in Tibetan Pigs: First Report from Tibet.

20. Effect of guanidine acetic acid on meat quality, muscle amino acids, and fatty acids in Tibetan pigs

21. Healthy Gut Microbiome Composition Enhances Disease Resistance and Fat Deposition in Tibetan Pigs.

22. Characterization of fungal microbial diversity in healthy and diarrheal Tibetan piglets

23. Transcriptomics-Based Study of Differentially Expressed Genes Related to Fat Deposition in Tibetan and Yorkshire Pigs

24. Integrated analysis of transcriptomic and proteomic analyses reveals different metabolic patterns in the livers of Tibetan and Yorkshire pigs

25. Effect of a Plateau Environment on the Oxidation State of the Heart and Liver through AMPK/p38 MAPK/Nrf2-ARE Signaling Pathways in Tibetan and DLY Pigs.

26. 猪 ANXA2 基因多态性及组织表达差异分析.

27. The domestication event of the Tibetan pig revealed to be in the upstream region of the Yellow River based on the mtDNA D-loop

28. Quantitative Proteomic Analysis of Tibetan Pig Livers at Different Altitudes

29. Seroprevalence and Risk Factors Investigations of Parvovirus Disease in Tibetan Pigs: First Report from Tibet

31. Characterization of fungal microbial diversity in healthy and diarrheal Tibetan piglets.

32. 藏猪妊娠期乳腺形态和乳腺发育的标志蛋白表达、 相关激素及信号通路的变化.

33. First detection and genetic characterization of ungulate tetraparvovirus 2 and ungulate tetraparvovirus 4 in special livestock on the Qinghai-Tibet Plateau in China

34. Genome-wide DNA methylation profiles in Tibetan and Yorkshire pigs under high-altitude hypoxia

35. KLF4, a Key Regulator of a Transitive Triplet, Acts on the TGF-β Signaling Pathway and Contributes to High-Altitude Adaptation of Tibetan Pigs

36. KLF4 , a Key Regulator of a Transitive Triplet, Acts on the TGF-β Signaling Pathway and Contributes to High-Altitude Adaptation of Tibetan Pigs.

37. Characterization of Metagenome-Assembled Genomes and Carbohydrate-Degrading Genes in the Gut Microbiota of Tibetan Pig

38. Effect of a Plateau Environment on the Oxidation State of the Heart and Liver through AMPK/p38 MAPK/Nrf2-ARE Signaling Pathways in Tibetan and DLY Pigs

39. Characterization of Metagenome-Assembled Genomes and Carbohydrate-Degrading Genes in the Gut Microbiota of Tibetan Pig.

40. 藏猪在亚热带条件下的生长特性及其杂交利用效果.

42. Seasonal variation of Ca, P, Fe, Cu, Mn, Zn and Se contents in Tibetan pigs.

43. Comparison of stomach microRNA transcriptomes of Tibetan and Yorkshire pigs by deep sequencing.

44. Analysis of the internal transcribed spacer region of <italic>Ascaris suum</italic> and <italic>Ascaris lumbricoides</italic> derived from free range Tibetan pigs.

45. Knockdown expression of IL-10Rα gene inhibits PRRSV replication and elevates immune responses in PBMCs of Tibetan pig in vitro.

46. Isolation and identification of a cellulolytic bacterium from the Tibetan pig's intestine and investigation of its cellulase production

47. DNA Methylation may be a testicular plateau adaptation in Tibetan pig

48. Detection and phylogenetic analysis of Mycoplasma hyopneumoniae from Tibetan pigs in western China.

49. Cold adaptation in pigs depends on UCP3 in beige adipocytes.

50. Study on PRRSV Receptor Genes Differential Expression in Lung Tissues in Different Breeds of Pigs after Infecting with HP-PRRSV.

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