Gao Mingkun, Chen Youying, Li Xiaomin, Li Dongli, Liu Aiqiao, Gong Lu, Ning Zhonghua, Nie Wei, Guo Yuming, Lv Zengpeng
State Key Laboratory of Animal Nutrition and Feeding, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.
Beijing Huadu Yukou Poultry Industry Co., Ltd., Beijing 101206, China.
Anim Nutr. 2024 Jul 17;19:56-69. doi: 10.1016/j.aninu.2024.04.026. eCollection 2024 Dec.
This study aimed to compare the effects of dietary methionine (Met) and 2-hydroxy-4-(methylthio)-butanoate (HMTBA) on the eggshell quality of broiler breeder hens and elucidate the mechanism of Met in improving eggshell quality from the perspectives of eggshell microstructure and shell gland physiological function. A total of 720 WOD188 broiler breeder hens at 40 weeks old were assigned to 3 groups, with 8 replicates per group and 30 birds per replicate. Over 7 weeks, birds were fed a basal diet or the same diet supplemented with 0.15% Met or 0.17% HMTBA. Our findings revealed significant improvements in the Met group for egg shape index, shell thickness, breaking strength, and fracture toughness ( < 0.05), whereas the HMTBA group showed no significant improvements ( > 0.05). Met supplementation increased calcium and phosphorus levels in both serum and shell gland tissue ( < 0.05), and enhanced Ca ATPase activity in shell gland tissue ( < 0.05). Histomorphological changes cluded enhanced mucosal fold dimensions and increased epithelial height in the shell gland ( < 0.05). Met also improved eggshell ultrastructure, resulting in a thicker effective layer and broader mammillae with fewer type B structures ( < 0.05). The mRNA levels for genes regulating eggshell ultrastructure, such as ovocleidin-116 (), calbindin 1 (1), and integral membrane protein 2C (2), were significantly upregulated in the Met group ( < 0.05). Transcriptome analysis identified 248 differentially upregulated genes in the Met group, primarily linked to the non-canonical Wnt/Ca signaling pathway, crucial for calcium ion transport and cellular proliferation. This research highlights that Met supplementation improves eggshell quality by enhancing calcium transport and cellular proliferation in uterine function, particularly through the modulation of Wnt family member 11 (11) and , influencing calcium deposition and ultrastructural development.
本研究旨在比较日粮蛋氨酸(Met)和2-羟基-4-(甲硫基)-丁酸(HMTBA)对肉种鸡蛋壳质量的影响,并从蛋壳微观结构和壳腺生理功能的角度阐明蛋氨酸改善蛋壳质量的机制。将720只40周龄的WOD188肉种鸡分为3组,每组8个重复,每个重复30只鸡。在7周的时间里,给鸡饲喂基础日粮或添加0.15% Met或0.17% HMTBA的相同日粮。我们的研究结果显示,Met组的蛋形指数、蛋壳厚度、破裂强度和断裂韧性均有显著改善(P<0.05),而HMTBA组没有显著改善(P>0.05)。补充Met可提高血清和壳腺组织中的钙和磷水平(P<0.05),并增强壳腺组织中的Ca ATPase活性(P<0.05)。组织形态学变化包括壳腺中黏膜褶皱尺寸增加和上皮高度增加(P<0.05)。Met还改善了蛋壳超微结构,使有效层更厚,乳头更宽,B型结构更少(P<0.05)。Met组中调节蛋壳超微结构的基因,如卵壳蛋白-116(OC-116)、钙结合蛋白1(CaBP-1)和整合膜蛋白2C(ITM2C)的mRNA水平显著上调(P<0.05)。转录组分析确定Met组中有248个差异上调基因,主要与非经典Wnt/Ca信号通路相关,该通路对钙离子转运和细胞增殖至关重要。本研究强调,补充Met可通过增强子宫功能中的钙转运和细胞增殖来改善蛋壳质量,特别是通过调节Wnt家族成员11(Wnt11)和ROR2,影响钙沉积和超微结构发育。