Effects of Different Patterns and Sources of Trace Elements on Laying Performance, Tissue Mineral Deposition, and Fecal Excretion in Laying Hens

This study was conducted to investigate the effects of different patterns and sources of Zn, Fe, Cu, Mn, and Se on performance, mineral deposition (liver, kidney, pancreas, spleen, pectorals muscle, and tibia), and excretion of laying hens, then to find an optimal dietary supplemental pattern of tra...

Full description

Bibliographic Details
Published in:Animals
Main Authors: Kaili Yang, Shengjun Hu, Rui Mu, Yiqing Qing, Liang Xie, Liyuan Zhou, Kolapo M. Ajuwon, Rejun Fang
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Subjects:
Online Access:https://www.mdpi.com/2076-2615/11/4/1164
_version_ 1850331799407820800
author Kaili Yang
Shengjun Hu
Rui Mu
Yiqing Qing
Liang Xie
Liyuan Zhou
Kolapo M. Ajuwon
Rejun Fang
author_facet Kaili Yang
Shengjun Hu
Rui Mu
Yiqing Qing
Liang Xie
Liyuan Zhou
Kolapo M. Ajuwon
Rejun Fang
author_sort Kaili Yang
collection DOAJ
container_title Animals
description This study was conducted to investigate the effects of different patterns and sources of Zn, Fe, Cu, Mn, and Se on performance, mineral deposition (liver, kidney, pancreas, spleen, pectorals muscle, and tibia), and excretion of laying hens, then to find an optimal dietary supplemental pattern of trace elements in laying hens. A total of 864 healthy laying hens with similar laying rate (Roman, 26-week-old) were randomly divided into nine treatments, with six replications of 16 birds per replication, including a control treatment and four patterns with different element sources (inorganic or organic): (1) Control treatment (basic diet without added extra trace minerals, CT); pattern 1, NRC (1994) recommended level (NRC-L): (2) inorganic minerals of NRC-L pattern (IN), (3) organic minerals of NRC-L pattern (ON); pattern 2, NY/T 33-2004 recommended level (NY/T-L): (4) inorganic minerals of NY/T-L pattern (IY), (5) organic minerals of NY/T-L pattern (OY); pattern 3, 50% NRC (1994) recommended level (50% NRC-L): (6) inorganic minerals of 50% NRC-L pattern (IHN), (7) organic minerals of 50% NRC-L pattern (OHN); pattern 4, the ratio of minerals in blood of laying hens was taken as the supplement proportion of trace elements, and Zn was supplemented depended on NRC recommended level (TLB): (8) inorganic minerals of TLB pattern (IB), (9) organic minerals of TLB pattern (OB). Two weeks were allowed for adjustment to the conditions and then measurements were made over eight weeks. Supplementation of trace elements led to increased daily egg weight (<i>p</i> < 0.05). Patterns of minerals in diets affected the content of liver Mn, pancreas Mn, tibia Mn, and the tissues Se (<i>p</i> < 0.05). Sources of minerals had positive effects on daily egg weight (<i>p</i> < 0.05), the concentrations of liver Fe, kidney Cu, tissues Se (except spleen), and fecal Se (<i>p</i> < 0.05). In conclusion, diet supplemented with the organic trace minerals of 50% NRC-L pattern (OHN) in laying hens promoted optimum laying performance, mineral deposition, and reduced mineral excretion.
format Article
id doaj-art-b111330a57504156a546780be36c5a5f
institution Directory of Open Access Journals
issn 2076-2615
language English
publishDate 2021-04-01
publisher MDPI AG
record_format Article
spelling doaj-art-b111330a57504156a546780be36c5a5f2025-08-19T23:17:48ZengMDPI AGAnimals2076-26152021-04-01114116410.3390/ani11041164Effects of Different Patterns and Sources of Trace Elements on Laying Performance, Tissue Mineral Deposition, and Fecal Excretion in Laying HensKaili Yang0Shengjun Hu1Rui Mu2Yiqing Qing3Liang Xie4Liyuan Zhou5Kolapo M. Ajuwon6Rejun Fang7College of Animal Science and Technology, Hunan Agricultural University, No. 1 Nongda Road, Furong District, Changsha 410128, ChinaCollege of Animal Science and Technology, Hunan Agricultural University, No. 1 Nongda Road, Furong District, Changsha 410128, ChinaCollege of Animal Science and Technology, Hunan Agricultural University, No. 1 Nongda Road, Furong District, Changsha 410128, ChinaCollege of Animal Science and Technology, Hunan Agricultural University, No. 1 Nongda Road, Furong District, Changsha 410128, ChinaCollege of Animal Science and Technology, Hunan Agricultural University, No. 1 Nongda Road, Furong District, Changsha 410128, ChinaCollege of Animal Science and Technology, Hunan Agricultural University, No. 1 Nongda Road, Furong District, Changsha 410128, ChinaDepartment of Animal Sciences, Purdue University, West Lafayette, IN 47907-2041, USACollege of Animal Science and Technology, Hunan Agricultural University, No. 1 Nongda Road, Furong District, Changsha 410128, ChinaThis study was conducted to investigate the effects of different patterns and sources of Zn, Fe, Cu, Mn, and Se on performance, mineral deposition (liver, kidney, pancreas, spleen, pectorals muscle, and tibia), and excretion of laying hens, then to find an optimal dietary supplemental pattern of trace elements in laying hens. A total of 864 healthy laying hens with similar laying rate (Roman, 26-week-old) were randomly divided into nine treatments, with six replications of 16 birds per replication, including a control treatment and four patterns with different element sources (inorganic or organic): (1) Control treatment (basic diet without added extra trace minerals, CT); pattern 1, NRC (1994) recommended level (NRC-L): (2) inorganic minerals of NRC-L pattern (IN), (3) organic minerals of NRC-L pattern (ON); pattern 2, NY/T 33-2004 recommended level (NY/T-L): (4) inorganic minerals of NY/T-L pattern (IY), (5) organic minerals of NY/T-L pattern (OY); pattern 3, 50% NRC (1994) recommended level (50% NRC-L): (6) inorganic minerals of 50% NRC-L pattern (IHN), (7) organic minerals of 50% NRC-L pattern (OHN); pattern 4, the ratio of minerals in blood of laying hens was taken as the supplement proportion of trace elements, and Zn was supplemented depended on NRC recommended level (TLB): (8) inorganic minerals of TLB pattern (IB), (9) organic minerals of TLB pattern (OB). Two weeks were allowed for adjustment to the conditions and then measurements were made over eight weeks. Supplementation of trace elements led to increased daily egg weight (<i>p</i> < 0.05). Patterns of minerals in diets affected the content of liver Mn, pancreas Mn, tibia Mn, and the tissues Se (<i>p</i> < 0.05). Sources of minerals had positive effects on daily egg weight (<i>p</i> < 0.05), the concentrations of liver Fe, kidney Cu, tissues Se (except spleen), and fecal Se (<i>p</i> < 0.05). In conclusion, diet supplemented with the organic trace minerals of 50% NRC-L pattern (OHN) in laying hens promoted optimum laying performance, mineral deposition, and reduced mineral excretion.https://www.mdpi.com/2076-2615/11/4/1164trace elementlaying hensperformancemineral depositionfecal mineral excretion
spellingShingle Kaili Yang
Shengjun Hu
Rui Mu
Yiqing Qing
Liang Xie
Liyuan Zhou
Kolapo M. Ajuwon
Rejun Fang
Effects of Different Patterns and Sources of Trace Elements on Laying Performance, Tissue Mineral Deposition, and Fecal Excretion in Laying Hens
trace element
laying hens
performance
mineral deposition
fecal mineral excretion
title Effects of Different Patterns and Sources of Trace Elements on Laying Performance, Tissue Mineral Deposition, and Fecal Excretion in Laying Hens
title_full Effects of Different Patterns and Sources of Trace Elements on Laying Performance, Tissue Mineral Deposition, and Fecal Excretion in Laying Hens
title_fullStr Effects of Different Patterns and Sources of Trace Elements on Laying Performance, Tissue Mineral Deposition, and Fecal Excretion in Laying Hens
title_full_unstemmed Effects of Different Patterns and Sources of Trace Elements on Laying Performance, Tissue Mineral Deposition, and Fecal Excretion in Laying Hens
title_short Effects of Different Patterns and Sources of Trace Elements on Laying Performance, Tissue Mineral Deposition, and Fecal Excretion in Laying Hens
title_sort effects of different patterns and sources of trace elements on laying performance tissue mineral deposition and fecal excretion in laying hens
topic trace element
laying hens
performance
mineral deposition
fecal mineral excretion
url https://www.mdpi.com/2076-2615/11/4/1164
work_keys_str_mv AT kailiyang effectsofdifferentpatternsandsourcesoftraceelementsonlayingperformancetissuemineraldepositionandfecalexcretioninlayinghens
AT shengjunhu effectsofdifferentpatternsandsourcesoftraceelementsonlayingperformancetissuemineraldepositionandfecalexcretioninlayinghens
AT ruimu effectsofdifferentpatternsandsourcesoftraceelementsonlayingperformancetissuemineraldepositionandfecalexcretioninlayinghens
AT yiqingqing effectsofdifferentpatternsandsourcesoftraceelementsonlayingperformancetissuemineraldepositionandfecalexcretioninlayinghens
AT liangxie effectsofdifferentpatternsandsourcesoftraceelementsonlayingperformancetissuemineraldepositionandfecalexcretioninlayinghens
AT liyuanzhou effectsofdifferentpatternsandsourcesoftraceelementsonlayingperformancetissuemineraldepositionandfecalexcretioninlayinghens
AT kolapomajuwon effectsofdifferentpatternsandsourcesoftraceelementsonlayingperformancetissuemineraldepositionandfecalexcretioninlayinghens
AT rejunfang effectsofdifferentpatternsandsourcesoftraceelementsonlayingperformancetissuemineraldepositionandfecalexcretioninlayinghens