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蛋氨酸缺乏对蛋雏鸡生长性能、血清氨基酸浓度、肠道微生物群及后续产蛋性能的影响

Effect of Methionine Deficiency on the Growth Performance, Serum Amino Acids Concentrations, Gut Microbiota and Subsequent Laying Performance of Layer Chicks.

作者信息

Liu Yafei, Wang Dehua, Zhao Lihong, Zhang Jianyun, Huang Shimeng, Ma Qiugang

机构信息

State Key Laboratory of Animal Nutrition, College of Animal Science and Technology, China Agricultural University, Beijing, China.

出版信息

Front Vet Sci. 2022 Apr 25;9:878107. doi: 10.3389/fvets.2022.878107. eCollection 2022.

Abstract

This study was conducted to investigate the effect of methionine (Met) deficiency in the rearing period on the growth performance, amino acids metabolism, intestinal development and gut microbiome of egg-laying chicks and the continuous effects on the performance, egg quality, and serum amino acids metabolism of the subsequent development process. Three hundred sixty one-day-old chicks were randomly divided into two groups and fed on a basal diet (NC group, Met 0.46%) and Met deficiency diet (Met- group, Met 0.27%). Each group included six replicates with 30 chicks per replicate. The trial lasted 6 weeks (0-6 weeks), both groups were fed the same basal diet which met the needs of Met during the observation period (7-24 weeks). Results showed that Met deficiency significantly decreased ( < 0.05) body weight (BW), average daily weight gain (ADG), average daily feed intake (ADFI) and tibia length (TL) compared to the NC group during the trial period (0-6 weeks). Also, Met deficiency dramatically increased ( < 0.05) feed conversion ratio (FCR) during the trial and observation period (7-24 weeks). In addition, during the observation period, the BW and ADG were decreased ( < 0.05) in the Met- group. Moreover, Met- group decreased ( < 0.05) villi height and villi height/crypt depth ratio in jejunum at 6th weeks. In addition, the concentrations of serum main free amino acids (FAA) in the Met- group were significantly increased ( < 0.05) at 6th weeks, while were decreased at 16th weeks. Based on the α-diversity and PCoA analysis in β-diversity, there were no significant differences in the cecal microbial composition between NC and Met- groups. However, the LEfSe analysis revealed that differential genera were enriched in the NC or Met- groups. The Haugh unit, shell thickness and egg production in the Met- group were significantly lower ( < 0.05) than in the NC group. In conclusion, these results revealed that dietary supplementation of appropriate Met could substantially improve the growth performance, host amino acid metabolism and intestinal development and continuously improve the laying performance and thus boost the health of growing hens.

摘要

本研究旨在探讨育雏期蛋氨酸(Met)缺乏对蛋鸡生长性能、氨基酸代谢、肠道发育和肠道微生物群的影响,以及对后续发育过程中生产性能、蛋品质和血清氨基酸代谢的持续影响。将360只1日龄雏鸡随机分为两组,分别饲喂基础日粮(NC组,蛋氨酸含量0.46%)和蛋氨酸缺乏日粮(Met-组,蛋氨酸含量0.27%)。每组包括6个重复,每个重复30只雏鸡。试验持续6周(0 - 6周),在观察期(7 - 24周)两组均饲喂满足蛋氨酸需求的相同基础日粮。结果表明,与NC组相比,在试验期(0 - 6周)蛋氨酸缺乏显著降低(<0.05)体重(BW)、平均日增重(ADG)、平均日采食量(ADFI)和胫骨长度(TL)。此外,在试验期和观察期(7 - 24周)蛋氨酸缺乏显著提高(<0.05)料重比(FCR)。另外,在观察期,Met-组的BW和ADG降低(<0.05)。而且,Met-组在第6周时空肠绒毛高度和绒毛高度/隐窝深度比值降低(<0.05)。此外,Met-组血清主要游离氨基酸(FAA)浓度在第6周时显著升高(<0.05),而在第16周时降低。基于β多样性中的α多样性和主坐标分析(PCoA),NC组和Met-组盲肠微生物组成无显著差异。然而,线性判别分析效应大小(LEfSe)分析显示差异菌属在NC组或Met-组中富集。Met-组的哈夫单位、蛋壳厚度和产蛋量显著低于(<0.05)NC组。总之,这些结果表明日粮补充适量蛋氨酸可显著改善生长性能、宿主氨基酸代谢和肠道发育,并持续改善产蛋性能,从而促进生长母鸡的健康。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9e0/9083200/6bae4c616e57/fvets-09-878107-g0001.jpg

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