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1. Effects of Interactions between Feeding Patterns and the Gut Microbiota on Pig Reproductive Performance

2. Transcriptome-wide Dynamics of m6A mRNA Methylation During Porcine Spermatogenesis

3. Dietary grape pomace extract supplementation improved meat quality, antioxidant capacity, and immune performance in finishing pigs

4. Single-cell RNA-sequencing reveals the dynamic process and novel markers in porcine spermatogenesis

6. Genome-Wide Association Study on Reproductive Traits Using Imputation-Based Whole-Genome Sequence Data in Yorkshire Pigs

7. Ancient genomes reveal the genetic inheritance and recent introgression in Chinese indigenous pigs

8. Comparative analysis of porcine iPSCs derived from Sertoli cells and fibroblasts

10. Single-cell RNA-seq analysis of testicular somatic cell development in pigs

11. Transcriptome-wide Dynamics of m6A mRNA Methylation During Porcine Spermatogenesis

12. Hydroxytyrosol Effectively Improves The Quality of Pig Sperm at 17 ℃

13. Hydroxytyrosol effectively improves the quality of pig sperm at 17 °C

14. Supplementation of salvianic acid A to boar semen extender to improve seminal quality and antioxidant capacity

15. MiR‐127 attenuates adipogenesis by targeting MAPK4 and HOXC6 in porcine adipocytes

16. Overexpression of DNMT3A promotes proliferation and inhibits differentiation of porcine intramuscular preadipocytes by methylating p21 and PPARg promoters

17. BAMBI shuttling between cytosol and membrane is required for skeletal muscle development and regeneration

18. COPS3 AS lncRNA enhances myogenic differentiation and maintains fast-type myotube phenotype

19. Hydroxytyrosol Effectively Improves The Quality of Pig Sperm at 17 °C

20. Transcriptome-wide Dynamics of m

21. Hydroxytyrosol effectively improves the quality of pig sperm at room temperature

22. MicroRNA-664-5p promotes myoblast proliferation and inhibits myoblast differentiation by targeting serum response factor and Wnt1

23. Adiponectin AS lncRNA inhibits adipogenesis by transferring from nucleus to cytoplasm and attenuating Adiponectin mRNA translation

24. Bifenthrin Induces Fat Deposition by Improving Fatty Acid Uptake and Inhibiting Lipolysis in Mice

25. MicroRNA-214-3p Targeting Ctnnb1 Promotes 3T3-L1 Preadipocyte Differentiation by Interfering with the Wnt/β-Catenin Signaling Pathway

26. Adipose-specific BMP and activin membrane-bound inhibitor (BAMBI) deletion promotes adipogenesis by accelerating ROS production

27. Comparative Analysis of Long Noncoding RNAs Expressed during Intramuscular Adipocytes Adipogenesis in Fat-Type and Lean-Type Pigs

28. Mulberry 1-Deoxynojirimycin Inhibits Adipogenesis by Repression of the ERK/PPARγ Signaling Pathway in Porcine Intramuscular Adipocytes

29. PU.1antisense lncRNA against its mRNA translation promotes adipogenesis in porcine preadipocytes

30. miR-423-5p inhibits myoblast proliferation and differentiation by targeting Sufu

31. Knockdown of ubiquitin D inhibits adipogenesis during the differentiation of porcine intramuscular and subcutaneous preadipocytes

32. Aryl hydrocarbon receptor catabolic activity in bone metabolism is osteoclast dependent in vivo

33. Estrogen receptor α in osteocytes regulates trabecular bone formation in female mice

35. Different Transcription Profiles of SOCS-3 , ob and IGF-I Genes and their Possible Correlations in Obese and Lean Pigs

36. Vitamin D receptor in osteoblasts is a negative regulator of bone mass control

37. Leptin promotes proliferation and inhibits differentiation in porcine skeletal myoblasts

38. Alteration of mitochondrial oxidative capacity during porcine preadipocyte differentiation and in response to leptin

39. Different transcription profiles of SOCS-3, ob and IGF-I genes and their possible correlations in obese and lean pigs

40. Leptin Promotes Proliferation and Inhibits Differentiation in Porcine Skeletal Myoblasts.

41. Adipose-specific BMP and activin membrane-bound inhibitor (BAMBI) deletion promotes adipogenesis by accelerating ROS production.

42. MicroRNA-664-5p promotes myoblast proliferation and inhibits myoblast differentiation by targeting serum response factor and Wnt1.

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