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7. Nutritional Regulation of Embryonic Survival, Growth, and Development

8. Influence of maternal nutrition and one-carbon metabolites supplementation on bovine antimicrobial peptides in fetal and maternal tissues.

9. Effects of Vitamin and Mineral Supplementation During Gestation in Beef Heifers on Immunoglobulin Concentrations in Colostrum and Immune Responses in Naturally and Artificially Reared Calves.

12. Disrupted one-carbon metabolism in heifers negatively affects their health and physiology

13. Influence of Maternal Nutrition and One-Carbon Metabolites Supplementation during Early Pregnancy on Bovine Fetal Small Intestine Vascularity and Cell Proliferation

14. Influence of Maternal Supplementation with Vitamins, Minerals, and (or) Protein/Energy on Placental Development and Angiogenic Factors in Beef Heifers during Pregnancy

15. Nutritional Regulation of Embryonic Survival, Growth, and Development

18. Short Communications: One-carbon metabolite supplementation to nutrient restricted beef heifers affects placental vascularity during early pregnancy

19. Supplementing vitamins and minerals to beef heifers during gestation: impacts on mineral status in the dam and offspring, and growth and physiological responses of female offspring from birth to puberty

20. Effects of Dietary Restriction and One-Carbon Metabolite Supplementation During the First 63 Days of Gestation on the Maternal Gut, Vaginal, and Blood Microbiota in Cattle

21. Sequencing and culture-based characterization of the vaginal and uterine microbiota in beef cattle that became pregnant or remained open following artificial insemination

26. 399 Methionine and Guanidinoacetic Acid Supplementation Throughout the Periconceptual Period of Gestation Alters Metabolite Concentrations and Fetal Development

27. PSXIV-22 Impact of Maternal Plane of Nutrition in Combination with Strategic One-Carbon Metabolites Supplementation During Early Pregnancy on Vascularity and Cell Proliferation in the Fetal Small Intestine

28. PSII-12 Influence of Dietary Methionine and Guanidinoacetic Acid on Estrous Cycles and Early Pregnancy in Beef Heifers

30. 242 Methionine and Guanidinoacetic Acid Supplementation During the Periconceptual Period of Gestation Shifts Methionine Metabolism of Fetal Bull Calves at D 63 of Gestation

34. 66 Whole-Body Biogeography of the Bacterial Microbiota in Newborn Calves and Response of These Communities to Prenatal Vitamin and Mineral Supplementation

35. 72 Effects of Differing Planes of Nutrition and one-Carbon Metabolite Supplementation of Beef Heifers on B12, Folate, and Folate Intermediate Concentrations in the dam and Fetus

37. Effects of Feeding 60% Dried Corn Distillers’ Grains or the Equivalent Sulfur as CaSO4 on DNA Integrity and Gene Expression in Yearling Angus Bull Sperm

39. Contribution of the seminal microbiome to paternal programming

40. Sequencing and Culture-based Characterization of the Vaginal and Uterine Microbiota in Beef Cattle that Became Pregnant or Non-pregnant via Artificial Insemination

41. Whole-body microbiota of newborn calves and their response to prenatal vitamin and mineral supplementation

43. Dataset of RNA-Seq transcriptome of the fetal liver at day 83 of gestation associated with periconceptual maternal nutrition in beef heifers

44. Effects of feeding a vitamin and mineral supplement to cow-calf pairs grazing native range

45. Dataset of RNA-Seq transcriptome of the fetal liver at day 83 of gestation associated with periconceptual maternal nutrition in beef heifers

46. Periconceptual Maternal Nutrition Affects Fetal Liver Programming of Energy- and Lipid-Related Genes

47. Influence of sire plane of nutrition and targeted body weight gain on ewe lamb growth, glucose metabolism, and ovarian reserve.

48. Rate of body weight gain during early gestation in F0 beef heifers has effects that extend multigenerationally to the F2 fetuses.

49. One-carbon metabolites supplementation and nutrient restriction alter the fetal liver metabolomic profile during early gestation in beef heifers.

50. Divergent planes of nutrition in mature rams influences body composition, hormone and metabolite concentrations, and offspring birth measurements, but not semen characteristics or offspring growth.

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