Ruminant Nutrition and Feed Engineering Technology Research Center, College of Animal Science and Technology, Nanjing Agricultural University, Nanjing 210095, China.
Jiangsu Key Laboratory of Gastrointestinal Nutrition and Animal Health, Laboratory of Gastrointestinal Microbiology, College of Animal Science and Technology, Nanjing Agricultural University, Nanjing 210095, Jiangsu Province, China.
J Anim Sci. 2022 Mar 1;100(3). doi: 10.1093/jas/skac056.
The objective of this study was to investigate the effects of whole corn high-grain diet feeding on growth performance, ruminal bacterial community, and epithelial morphology and gene expression related to VFA absorption and metabolism in fattening lambs. Fourteen male (castrated) lambs were randomly assigned to either a group fed a ground corn high-grain diet (50.4% grain; HGC, n = 7) or a group fed a whole corn high-grain diet (50.4% grain; HWC, n = 7). After 7 wk of feeding, HWC group increased the average daily gain (ADG) (P = 0.036) and decreased the feed: gain value (P = 0.010) significantly. HWC group had a greater crude protein apparent digestibility (P = 0.028) in the third week and dry matter and neutral detergent fiber apparent digestibility (P < 0.05) in the seventh week. Pyrosequencing of the 16S ribosomal RNA gene revealed that HWC feeding increased the relative abundance of genera Anaerovibrio, Schwartzia and Unclassified Veillonellaceae in the rumen content and Howardella, Schwartzia and Unclassified Veillonellaceae in the rumen epithelia (P<0.05), while decreased the proportion of Lachnospira and Unclassified Synergistaceae in the rumen content and Anaerovorax, Papillibacter, Ruminococcus, Fibrobacter, Unclassified Lachnospiraceae, Unclassified Bacteroidales and Unclassified Prevotellaceae in the rumen epithelia (P < 0.05). HWC group increased the rumen papilla length (P = 0.001) and surface area (P = 0.002). Furthermore, HWC diet feeding up-regulated the relative mRNA expression of putative anion transporter isoform 1 (PAT1) (P = 0.032) in the rumen epithelia. In summary, compared with ground corn high-grain diet feeding, whole corn high-grain diet feeding improved animal performance, changed ruminal bacterial composition and diversity, and increased VFA absorption of epithelial papilla in fattening lambs. These findings provided theoretical guidance for the actual application of whole corn high-grain diet in ruminants.
本研究旨在探究全玉米高谷物饲粮喂养对育肥羔羊生长性能、瘤胃细菌群落、以及与挥发性脂肪酸(VFA)吸收和代谢相关的上皮形态和基因表达的影响。将 14 只雄性(去势)羔羊随机分配到两组,一组饲喂粉碎玉米高谷物饲粮(50.4%谷物;HGC,n = 7),另一组饲喂整粒玉米高谷物饲粮(50.4%谷物;HWC,n = 7)。经过 7 周的喂养,HWC 组的平均日增重(ADG)显著增加(P = 0.036),饲料:增重比显著降低(P = 0.010)。在第三周,HWC 组的粗蛋白表观消化率更高(P = 0.028),在第七周,HWC 组的干物质和中性洗涤纤维表观消化率更高(P < 0.05)。16S 核糖体 RNA 基因的焦磷酸测序结果表明,HWC 喂养增加了瘤胃内容物中 Anaerovibrio、Schwartzia 和未分类的韦荣氏球菌科以及瘤胃上皮中的 Howardella、Schwartzia 和未分类的韦荣氏球菌科的相对丰度(P<0.05),而降低了瘤胃内容物中 Lachnospira 和未分类的协同菌科以及瘤胃上皮中 Anaerovorax、Papillibacter、Ruminococcus、Fibrobacter、未分类的 Lachnospiraceae、未分类的拟杆菌目和未分类的普雷沃氏菌科的比例(P < 0.05)。HWC 组增加了瘤胃乳头长度(P = 0.001)和表面积(P = 0.002)。此外,HWC 饲粮喂养上调了瘤胃上皮中假定阴离子转运体同工型 1(PAT1)的相对 mRNA 表达(P = 0.032)。总之,与粉碎玉米高谷物饲粮喂养相比,整粒玉米高谷物饲粮喂养提高了动物生产性能,改变了瘤胃细菌组成和多样性,并增加了育肥羔羊上皮乳头的 VFA 吸收。这些发现为全玉米高谷物饲粮在反刍动物中的实际应用提供了理论指导。