Huang Ru-Qu, Yang Xiao-Jie, Xie Gao-Mao, Li Jie, Jian Yun-Hua, Yang Jing, Zhu Yong-Wen
Guangdong Guangken Animal Husbandry Group Co., Ltd., Guangzhou, China.
Guangdong Provincial Key Laboratory of Animal Nutrition and Regulation, College of Animal Science, South China Agricultural University, Guangzhou, China.
Front Vet Sci. 2023 Mar 8;10:1111257. doi: 10.3389/fvets.2023.1111257. eCollection 2023.
The aim of this study is to evaluate the effects of dietary iron sources on growth performance, iron status and activities of Fe-containing enzymes and gene expression related to iron homeostasis in tissues of weaned pigs. A total of 480 piglets at d 28 (Duroc X Landrace) were allotted to four groups as a factorial arrangement of treatments with 30 pigs/pen (male: female = 1:1) and 4 replicate pens/treatment. The treatments for iron in the diets were: control basal diet (Con); Con + 150 mg Fe/kg as inorganic Fe (iFe); Con + 75 mg Fe/kg as inorganic Fe + 75 mg Fe/kg as organic Fe-peptide complex (iFe+oFe) and Con + 150 mg of Fe/kg as organic Fe-peptide complex (oFe). The feeding trial lasted for 36 days. There were no significant differences in final body weight, ADG, ADFI, and G/F as well as blood hemoglobin and MCHC contents between piglets fed the control and iron-supplemented groups ( > 0.05). The iron supplemented groups exhibited increased iron content in the liver, kidney and spleen as well as the CAT and SDH activities in liver compared to the control group ( < 0.05), while piglets in oFe group experienced greater Fe accumulation and activities of CAT and SDH in the liver than piglets in the iFe group. Compared with the control group, dietary supplementation of iron increased the mRNA expression and decreased the mRNA expression in liver of piglets. The and mRNA expressions of bone marrow in both iFe and iFe+oFe groups were greater than both in the Con and oFe groups. These results suggest that dietary supplementation of iron does not influence the growth performance and hematological parameters in weaned pigs fed a corn-soybean meal basal diet (75.8 mg/kg) from d 28 to d 70, but increased tissue iron status and activities of Fe-containing enzymes at d 70. The addition of organic Fe-peptide complexes presents greater beneficial effects on enhancing tissue Fe accumulation and Fe-containing enzyme activities, which may be involved in different gene expression patterns related to iron intake and transport in tissues of weaned pigs.
本研究旨在评估日粮铁源对断奶仔猪生长性能、铁状态、含铁酶活性以及与铁稳态相关的组织基因表达的影响。选取480头28日龄的仔猪(杜洛克×长白),按照析因试验设计分为四组,每组30头猪/栏(公母比为1:1),每个处理设置4个重复栏。日粮中铁的处理方式如下:对照基础日粮(Con);Con + 150 mg Fe/kg无机铁(iFe);Con + 75 mg Fe/kg无机铁 + 75 mg Fe/kg有机铁 - 肽复合物(iFe+oFe);Con + 150 mg Fe/kg有机铁 - 肽复合物(oFe)。饲养试验持续36天。饲喂对照日粮和补铁日粮的仔猪在终末体重、平均日增重、平均日采食量、料重比以及血液血红蛋白和平均红细胞血红蛋白浓度方面均无显著差异(P > 0.05)。与对照组相比,补铁组仔猪肝脏、肾脏和脾脏中的铁含量以及肝脏中的过氧化氢酶(CAT)和琥珀酸脱氢酶(SDH)活性均有所增加(P < 0.05),而oFe组仔猪肝脏中的铁积累量以及CAT和SDH活性均高于iFe组仔猪。与对照组相比,日粮添加铁增加了仔猪肝脏中 mRNA表达,降低了 mRNA表达。iFe组和iFe+oFe组骨髓中的 和 mRNA表达均高于Con组和oFe组。这些结果表明,日粮添加铁对28至70日龄饲喂玉米 - 豆粕基础日粮(75.8 mg/kg)的断奶仔猪的生长性能和血液学参数没有影响,但在70日龄时增加了组织铁状态和含铁酶活性。添加有机铁 - 肽复合物对增强组织铁积累和含铁酶活性具有更大的有益作用,这可能与断奶仔猪组织中铁摄入和转运相关的不同基因表达模式有关。