用抗甲烷生成化合物 3-NOP 引导犊牛瘤胃微生物群的发育。

IF 4.9 Q1 MICROBIOLOGY Animal microbiome Pub Date : 2024-10-25 DOI:10.1186/s42523-024-00343-2
Gonzalo Martinez-Fernandez, Stuart E Denman, Nicola Walker, Maik Kindermann, Christopher S McSweeney
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摘要

本研究的目的是利用抗甲烷生成化合物 3-NOP 建立独特的瘤胃微生物和发酵谱,以评估母牛的影响,以及一旦停止治疗,幼年后代的营养干预对 12 月龄前瘤胃微生物结构和功能的影响。48 头怀孕母牛(H)及其未来的后代(C)被分配到对照组(-)或 3-NOP 处理组(+),共分为四个实验组:H+/C+、H+/C-、H-/C + 和 H-/C-。动物从产仔前 6 周开始接受治疗,直至断奶,并对后代进行监测,直至 12 个月大。试验期间使用 Greenfeed 系统收集了瘤胃液样本和甲烷测量值。结果证明了该化合物的作用模式,在 3-NOP 处理的动物中,发酵从乙酸盐转向丙酸盐,支链脂肪酸和甲酸增加。经 3-NOP 处理的动物体内的微生物种群也发生了类似的变化,瘤胃甲烷原种群的丰度降低,琥珀酸菌属、酵母菌属、纤毛菌属和普氏菌属的细菌数量增加。以及原生动物 Entodinium。早期生活干预对幼年动物瘤胃微生物结构的影响一直持续到断奶后28周,但一旦停止使用3-NOP,这种影响就会减弱。有趣的是,一组幼年动物的甲烷排放量(15%)明显低于幼年时期未接受治疗的动物。我们的研究结果表明,幼犊的微生物组与低甲烷的成年动物更为相似,而且瘤胃的早期定植一直持续到后期,断奶前的微生物组约占一岁动物的 65%。需要开展进一步的研究,以确定新生犊牛使用 3-NOP 的时间和剂量,以便在大面积放牧或受控条件下,在撤除处理后仍能持续减少甲烷排放。
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Programming rumen microbiome development in calves with the anti-methanogenic compound 3-NOP.

The aim of this study was to establish a distinctive rumen microbial and fermentation profile using the anti-methanogenic compound 3-NOP to assess dam effect, and nutritional intervention of the juvenile offspring on microbial structure and function of rumen up to 12 months of age, once the treatment was withdrawn. Forty-eight pregnant heifers (H) and their future offspring (C) were allocated to either Control (-) or 3-NOP (+) treatment resulting in four experimental groups: H+/C+, H+/C-, H-/C + and H-/C-. Animals were treated from 6 weeks prior to calving until weaning, with the offspring monitored until 12 months of age. Rumen fluid samples and methane measurements using the Greenfeed system were collected during the trial. Results supported the mode of action of the compound, with a shift in fermentation from acetate to propionate, increases in branched chain fatty acids and formic acid in the 3-NOP treated animals. Similar shifts in microbial populations occurred in 3-NOP treated animals with lower abundances of rumen methanogen populations, increases of bacterial groups Succiniclasticum spp, Candidatus Saccharimonas. Fibrobacter and the families Prevotellaceae and Succinivibrioacea. and the protozoa Entodinium. Early life intervention had an enduring impact on the rumen microbial structure of young animals up to 28 weeks post weaning, however the effect was diminished once 3-NOP was withdrawn. Interestingly, a group of young animals emitted significantly less methane (15%) than the animals that did not receive the treatment during their juvenile stage. Our results suggest a higher resemblance of the young calf microbiome to a low methane adult and that early life colonisation of the rumen persists through to later life with the pre-weaning microbiome comprising ~ 65% of the yearling animal. Further research needs to be performed to determine the timing and dose of 3-NOP for new-born calves that can sustain a reduction in methane emissions after the treatment is withdrawn, under extensive grazing or controlled conditions.

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期刊最新文献
Diet affects reproductive development and microbiota composition in honey bees. The role of gut microbiota in a generalist, golden snub-nosed monkey, adaptation to geographical diet change. Insights into the occurrence of phylosymbiosis and co-phylogeny in the holobionts of octocorals from the Mediterranean Sea and Red Sea. Programming rumen microbiome development in calves with the anti-methanogenic compound 3-NOP. Ruminant microbiome data are skewed and unFAIR, undermining their usefulness for sustainable production improvement.
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