Dietary non-phytate phosphorus and phytase interaction affects growth performance, mineral transportation and metabolism in broiler chickens

IF 3.8 1区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Bingbing Ma , Yan Zhang , Mengyuan Liu , Chuanxin Shi , Yu Zhou , Mengyue Chen , Yuchun Chang , Hongxia Qu , Liao Zhang , Chunmei Zhang , Guanhua Chen , Jincheng Han
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引用次数: 0

Abstract

The interaction effects of dietary non-phytate phosphorus (NPP) and phytase on growth performance, mineral metabolism, and gene expressions of mineral transporters in broilers duodenum and kidney (0-3 weeks) were studied. The levels of NPP (0.45%, 0.35%, or 0.25%) and phytase (0 or 2,500 FTU/kg) in the diets were applied in a 3 × 2 factorial arrangement to carry out rearing feeding strategies. Broilers received the diet containing 0.25% NPP showed lower (P < 0.05) body weight gain (BWG), feed intake (FI), plasma calcium (Ca) and phosphorus (P) levels, bone attributes, and higher (P < 0.05) mortality rate than those of broilers fed diets containing 0.45% NPP alone or in combination of phytase, 0.35% NPP or 0.25% NPP in combination of phytase. Significant interactions (P < 0.05) of phytase and NPP were found in BWG, FI, bone attributes, and plasma Ca and P levels and mortality rate of broiler. Broilers received the diet containing 0.25% NPP had higher (P < 0.05) mRNA expressions of nuclear vitamin D receptors (nVDR), Calbindin-D28k (CaBP-D28k) and Plasma membrane Ca ATPase 1b (PMCA1b) in duodenum, mRNA expressions of CaBP-D28k and sodium-dependent phosphate cotransporters type IIa (NaPi-IIa) in kidney, and liver 25-hydroxylase mRNA expression than those of broilers fed diets containing 0.45% NPP alone or in combination of phytase, 0.35% NPP or 0.25% NPP in combination of phytase. The interaction of NPP and phytase significantly affected (P < 0.05) the mRNA expressions of nVDR, CaBP-D28k and PMCA1b in duodenum, the mRNA expressions of CaBP-D28k and NaPi-IIa in kidney, and liver 25-hydroxylase mRNA expression. Dietary phytase supplementation improved growth performance, bone attributes, and absorption of Ca and P even if dietary NPP level dropped to 0.25%.
饲粮非植酸磷与植酸酶互作影响肉鸡生长性能、矿物质运输和代谢
本试验研究了饲粮中添加非植酸磷(NPP)和植酸酶对肉仔鸡生长性能、十二指肠和肾脏矿物质代谢及矿物质转运蛋白基因表达的互作影响(0 ~ 3周龄)。采用3 × 2因子试验,研究饲粮中NPP(0.45%、0.35%或0.25%)和植酸酶(0或2500 FTU/kg)水平的饲养策略。饲粮中NPP含量为0.25%的肉鸡(P <;0.05)增重(BWG)、采食量(FI)、血浆钙(Ca)和磷(P)水平、骨属性(P <;与单独添加0.45%植酸酶或与植酸酶组合、0.35%植酸酶或0.25%植酸酶组合的饲粮相比,死亡率为0.05)。显著相互作用(P <;肉鸡增重、FI、骨属性、血浆钙、磷水平及死亡率均低于0.05)。饲粮中NPP含量为0.25%的肉鸡(P <;0.05)十二指肠核维生素D受体(nVDR)、钙结合蛋白- d28k (CaBP-D28k)和质膜钙atp酶1b (PMCA1b) mRNA表达量、肾脏中CaBP-D28k和钠依赖性磷酸共转运蛋白IIa型(NaPi-IIa) mRNA表达量以及肝脏25-羟化酶mRNA表达量均高于单独或联合添加0.45%植酸酶、0.35%和0.25%植酸酶NPP饲粮。NPP与植酸酶的相互作用显著影响(P <;0.05)十二指肠nVDR、CaBP-D28k和PMCA1b mRNA表达量,肾脏CaBP-D28k和NaPi-IIa mRNA表达量以及肝脏25-羟化酶mRNA表达量。即使饲粮NPP水平降至0.25%,饲粮中添加植酸酶也能提高生长性能、骨骼特性和钙、磷的吸收。
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来源期刊
Poultry Science
Poultry Science 农林科学-奶制品与动物科学
CiteScore
7.60
自引率
15.90%
发文量
0
审稿时长
94 days
期刊介绍: First self-published in 1921, Poultry Science is an internationally renowned monthly journal, known as the authoritative source for a broad range of poultry information and high-caliber research. The journal plays a pivotal role in the dissemination of preeminent poultry-related knowledge across all disciplines. As of January 2020, Poultry Science will become an Open Access journal with no subscription charges, meaning authors who publish here can make their research immediately, permanently, and freely accessible worldwide while retaining copyright to their work. Papers submitted for publication after October 1, 2019 will be published as Open Access papers. An international journal, Poultry Science publishes original papers, research notes, symposium papers, and reviews of basic science as applied to poultry. This authoritative source of poultry information is consistently ranked by ISI Impact Factor as one of the top 10 agriculture, dairy and animal science journals to deliver high-caliber research. Currently it is the highest-ranked (by Impact Factor and Eigenfactor) journal dedicated to publishing poultry research. Subject areas include breeding, genetics, education, production, management, environment, health, behavior, welfare, immunology, molecular biology, metabolism, nutrition, physiology, reproduction, processing, and products.
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