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残余采食量差异对小型肉鸭生长性能、胴体特性、肉质和血液生化参数的影响。

Effects of residual feed intake divergence on growth performance, carcass traits, meat quality, and blood biochemical parameters in small-sized meat ducks.

机构信息

Joint International Research Laboratory of Agriculture and Agri-Product Safety, The Ministry of Education of China, Institutes of Agricultural Science and Technology Development, Yangzhou University, Jiangsu Yangzhou 225009, China.

Key Laboratory of Animal Genetics and Breeding and Molecular Design of Jiangsu Province, Yangzhou University, Yangzhou 225009, China.

出版信息

Poult Sci. 2022 Sep;101(9):101990. doi: 10.1016/j.psj.2022.101990. Epub 2022 Jun 2.


DOI:10.1016/j.psj.2022.101990
PMID:35841639
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9289854/
Abstract

Feed efficiency (FE) is a major economic trait of meat duck. This study aimed to evaluate the effects of residual feed intake (RFI) divergence on growth performance, carcass traits, meat quality, and blood biochemical parameters in small-sized meat ducks. A total of 500 healthy 21-day-old male ducks were housed in individual cages until slaughter at 63 d of age. The growth performance was determined for all the ducks. The carcass yield, meat quality, and blood biochemical parameters were determined for the selected 30 high-RFI (HRFI) and 30 low-RFI (LRFI) ducks. In terms of growth performance, the RFI, feed conversion ratio (FCR), and average daily feed intake (ADFI) were found to be significantly lower in the LRFI group (P < 0.01), whereas no differences were observed in the BW and body weight gain (P > 0.05). For slaughter performance, no differences were observed in the carcass traits between the LRFI and HRFI groups (P > 0.05). For meat quality, the shear force of breast muscle was significantly lower in the LRFI group (P < 0.05), while the other meat quality traits of breast and thigh muscles demonstrated no differences (P > 0.05). For blood biochemical parameters, the serum concentrations of triglycerides (TG) and glucose (GLU) were significantly lower in the LRFI group (P < 0.05), while the other parameters showed no differences (P > 0.05). The correlation analysis demonstrated a high positive correlation between RFI, FCR, and ADFI (P < 0.01). The RFI demonstrated a negative effect on the breast muscle and lean meat yields, but a positive effect on the shear force of breast muscle (P < 0.05). Further, the RFI demonstrated a positive effect on the TG and GLU levels (P < 0.05). These results indicate that the selection for low RFI could improve the FE of small-sized meat ducks without affecting the production performance. This study provides valuable insight into the biological processes underlying the variations in FE in small-sized meat ducks.

摘要

饲料效率(FE)是肉鸭的主要经济性状。本研究旨在评估残余采食量(RFI)差异对小型肉鸭生长性能、屠宰性能、肉质和血液生化参数的影响。将 500 只健康的 21 日龄雄性肉鸭饲养在单个笼子中,直到 63 日龄屠宰。对所有肉鸭进行生长性能测定。选择 30 只高 RFI(HRFI)和 30 只低 RFI(LRFI)肉鸭进行屠宰性能、肉质和血液生化参数测定。生长性能方面,LRFI 组的 RFI、饲料转化率(FCR)和平均日采食量(ADFI)显著低于 HRFI 组(P<0.01),但 BW 和体重增重无差异(P>0.05)。屠宰性能方面,LRFI 和 HRFI 组之间的胴体性状无差异(P>0.05)。肉质方面,LRFI 组胸肌肉剪切力显著降低(P<0.05),而胸肌和腿肌的其他肉质性状无差异(P>0.05)。血液生化参数方面,LRFI 组血清甘油三酯(TG)和葡萄糖(GLU)浓度显著降低(P<0.05),其他参数无差异(P>0.05)。相关性分析表明,RFI、FCR 和 ADFI 之间呈高度正相关(P<0.01)。RFI 对胸肌和瘦肉产量有负面影响,但对胸肌剪切力有正面影响(P<0.05)。此外,RFI 对 TG 和 GLU 水平有正面影响(P<0.05)。这些结果表明,选择低 RFI 可以提高小型肉鸭的 FE,而不影响生产性能。本研究为小型肉鸭 FE 变异的生物学过程提供了有价值的见解。

相似文献

[1]
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[6]
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[8]
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[1]
Residual feed intake in late-laying hens: immune function, metabolic efficiency, and feed utilization dynamics.

Front Vet Sci. 2025-7-7

[2]
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Animals (Basel). 2025-5-30

[3]
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Anim Nutr. 2025-1-16

[4]
Residual Feed Intake as a Behavioral, Nutritional and Economic Criterion in Poultry Production.

Animals (Basel). 2025-4-12

[5]
Identification of key genes associated with residual feed intake in small-sized meat ducks through integrated analysis of mRNA and miRNA transcriptomes.

Poult Sci. 2025-5

[6]
Synergy of genetics and lipid metabolism driving feed utilization efficiency in chickens.

Poult Sci. 2025-3

[7]
Exploring the molecular basis of efficient feed utilization in low residual feed intake slow-growing ducks based on breast muscle transcriptome.

Poult Sci. 2025-1

[8]
Effects of genotype and sex on carcass composition, meat quality, digestive tract morphometries and leg bone dimensions of spent parent Pekin ducks.

Poult Sci. 2024-12

[9]
Genome-wide association analysis identify candidate genes for feed efficiency and growth traits in Wenchang chickens.

BMC Genomics. 2024-6-28

[10]
Transcriptome analysis of divergent residual feed intake phenotypes in the of Wannan Yellow rabbits.

Front Genet. 2023-10-23

本文引用的文献

[1]
Evaluation of Ingestive Behavior, Ruminal and Blood Parameters, Performance, and Thermography as a Phenotypic Divergence Markers of Residual Feed Intake in Rearing Dairy Heifers.

Animals (Basel). 2022-1-29

[2]
How Divergence for Feed Efficiency Traits Affects Body Measurements and Metabolites in Blood and Ruminal Parameters on Pre-Weaning Dairy Heifers.

Animals (Basel). 2021-12-2

[3]
Common and diet-specific metabolic pathways underlying residual feed intake in fattening Charolais yearling bulls.

Sci Rep. 2021-12-21

[4]
Research Note: Effects of cage and floor rearing systems on growth performance, carcass traits, and meat quality in small-sized meat ducks.

Poult Sci. 2022-1

[5]
Association of residual feed intake with growth performance, carcass traits, meat quality, and blood variables in native chickens.

J Anim Sci. 2020-7-1

[6]
Research Note: Effects of the rearing method and stocking density on carcass traits and proximate composition of meat in small-sized meat ducks.

Poult Sci. 2020-2-28

[7]
Relationship between Residual Feed Intake and Production Traits in a Population of F Ducks.

J Poult Sci. 2019-1-25

[8]
Selection for feed efficiency does not change the selection for growth and carcass traits in Nellore cattle.

J Anim Breed Genet. 2019-7-22

[9]
ACTH signalling and adrenal development: lessons from mouse models.

Endocr Connect. 2019-7

[10]
RNA-Seq of Liver From Pigs Divergent in Feed Efficiency Highlights Shifts in Macronutrient Metabolism, Hepatic Growth and Immune Response.

Front Genet. 2019-2-19

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