Li Desheng, Chen Fei, Tian Yumin, Su Yuhong
College of Animal Science and Veterinary Medicine, Jinzhou Medical University, Jinzhou, China.
Laboratory of Quality and Safety of Animal Product of Liaoning Province, Jinzhou, China.
Front Physiol. 2023 May 22;14:1184651. doi: 10.3389/fphys.2023.1184651. eCollection 2023.
Methionine (Met) is an important amino acid related to the development of skeletal muscle. This study investigated the effects of dietary Met restriction on the gene expression of M. iliotibialis lateralis. A total of 84 day-old broiler chicks (Zhuanghe Dagu) with a similar initial body weight (207.62 ± 8.54 g) were used in this study. All birds were divided into two groups (CON; L-Met) based on the initial body weight. Each group consisted of six replicates with seven birds per replicate. The experimental period was 63 days (phase 1, days 1-21; phase 2, days 22-63). According to the nutritional requirements of Zhuanghe Dagu chickens, we provided a basal diet (0.39% Met levels during phase 1 and 0.35% Met levels during phase 2, as-fed basis) to the birds in the CON group, while we provided a Met-restricted diet (0.31% Met levels during phase 1 and 0.28% Met levels during phase 2, as-fed basis) to the birds in the L-Met group. The growth performance of broiler chicks and their M. iliotibialis lateralis development parameters were measured on days 21 and 63. In this study, dietary Met restriction did not affect the growth performance of broiler chicks but hindered the development of M. iliotibialis lateralis at both sampling timepoints. On the final day, three birds selected from each group (three from CON and three from L-Met) were used to obtain M. iliotibialis lateralis samples from leg muscle for further transcriptome analysis. Transcriptome analysis revealed that dietary Met restriction significantly upregulated 247 differentially expressed genes (DEGs) and downregulated 173 DEGs. Additionally, DEGs were mainly enriched in 10 pathways. Among DEGs, we observed that dietary Met restriction downregulated the expression of , , , , and in M. iliotibialis lateralis. Therefore, we considered that dietary Met restriction had negative effects on the development of M. iliotibialis lateralis, and , , , , and may serve as potential functional genes involved in this process.
蛋氨酸(Met)是一种与骨骼肌发育相关的重要氨基酸。本研究调查了日粮蛋氨酸限制对胫外侧肌基因表达的影响。本研究共使用了84只初始体重相近(207.62±8.54克)的1日龄肉鸡雏鸡(庄河大骨鸡)。所有鸡只根据初始体重分为两组(对照组;低蛋氨酸组)。每组由6个重复组成,每个重复7只鸡。试验期为63天(第1阶段,1 - 21天;第2阶段,22 - 63天)。根据庄河大骨鸡的营养需求,我们为对照组的鸡只提供基础日粮(第1阶段蛋氨酸水平为0.39%,第2阶段为0.35%,以采食基础计),而向低蛋氨酸组的鸡只提供蛋氨酸限制日粮(第1阶段蛋氨酸水平为0.31%,第2阶段为0.28%,以采食基础计)。在第21天和第63天测量了肉鸡雏鸡的生长性能及其胫外侧肌发育参数。在本研究中,日粮蛋氨酸限制不影响肉鸡雏鸡的生长性能,但在两个采样时间点均阻碍了胫外侧肌的发育。在最后一天,从每组中挑选三只鸡(三只来自对照组,三只来自低蛋氨酸组),从腿部肌肉获取胫外侧肌样本用于进一步的转录组分析。转录组分析显示,日粮蛋氨酸限制显著上调了247个差异表达基因(DEGs),下调了173个DEGs。此外,DEGs主要富集在10条通路中。在DEGs中,我们观察到日粮蛋氨酸限制下调了胫外侧肌中 、 、 、 和 的表达。因此,我们认为日粮蛋氨酸限制对胫外侧肌的发育有负面影响,并且 、 、 、 和 可能是参与这一过程的潜在功能基因。