Javascript must be enabled to continue!
Performance, Blood Lipid Profile, and the Expression of Growth Hormone Receptor (GHR) and Insulin-like Growth Factor-1 (IGF-1) Genes in Purebred and Crossbred Quail Lines
View through CrossRef
The aim was to evaluate the performance, blood lipid profile, and the relative expression of growth-related genes in purebred white and brown quail lines and their crossbred lines. A total of 240 one-day-old Japanese quail chicks of white and brown line, their crossbred line (WBQ: male white × female brown), and reciprocal crossbred line (BWQ: male brown × female white) were divided into four equal groups (60 birds each). The white quail line showed significantly higher final body weight, daily gain, and feed intake compared with the other quail lines (p < 0.001). Meanwhile, both crossbred quail lines (WBQ and BWQ) showed significantly lower FCR compared with both purebred quail lines (p = 0.001). Both crossbred quail lines showed greater dressing percentages compared with both purebred quail lines (p = 0.038). The brown quail line showed significantly (p = 0.05) higher levels of serum triglycerides and VLDL compared with the white and BWQ lines. The WBQ crossbred line exhibited significantly higher mRNA expression of GHR and IGF-1 genes compared with other quail lines (p < 0.001). Both crossbred lines (WBQ and BWQ) exhibited negative heterosis percentages for body weight (−4.39 and −3.90%, respectively) and feed intake (−10.87 and −14.59%, respectively). Meanwhile, heterosis percentages for FCR (−6.46 and −9.25%, respectively) and dressing percentage (7.54 and 6.38%, respectively) were improved in both crossbred lines. The WBQ line showed high heterosis percentages for the expression of GHR and IGF-1 genes (52.28 and 88.81%, respectively). In conclusion, the WBQ line exhibited significantly greater dressing percentage and better FCR, as well as higher mRNA expression of GHR and IGF-1 genes. These results may be helpful to improve breeding programs and to develop commercial lines of meat-type Japanese quail.
Title: Performance, Blood Lipid Profile, and the Expression of Growth Hormone Receptor (GHR) and Insulin-like Growth Factor-1 (IGF-1) Genes in Purebred and Crossbred Quail Lines
Description:
The aim was to evaluate the performance, blood lipid profile, and the relative expression of growth-related genes in purebred white and brown quail lines and their crossbred lines.
A total of 240 one-day-old Japanese quail chicks of white and brown line, their crossbred line (WBQ: male white × female brown), and reciprocal crossbred line (BWQ: male brown × female white) were divided into four equal groups (60 birds each).
The white quail line showed significantly higher final body weight, daily gain, and feed intake compared with the other quail lines (p < 0.
001).
Meanwhile, both crossbred quail lines (WBQ and BWQ) showed significantly lower FCR compared with both purebred quail lines (p = 0.
001).
Both crossbred quail lines showed greater dressing percentages compared with both purebred quail lines (p = 0.
038).
The brown quail line showed significantly (p = 0.
05) higher levels of serum triglycerides and VLDL compared with the white and BWQ lines.
The WBQ crossbred line exhibited significantly higher mRNA expression of GHR and IGF-1 genes compared with other quail lines (p < 0.
001).
Both crossbred lines (WBQ and BWQ) exhibited negative heterosis percentages for body weight (−4.
39 and −3.
90%, respectively) and feed intake (−10.
87 and −14.
59%, respectively).
Meanwhile, heterosis percentages for FCR (−6.
46 and −9.
25%, respectively) and dressing percentage (7.
54 and 6.
38%, respectively) were improved in both crossbred lines.
The WBQ line showed high heterosis percentages for the expression of GHR and IGF-1 genes (52.
28 and 88.
81%, respectively).
In conclusion, the WBQ line exhibited significantly greater dressing percentage and better FCR, as well as higher mRNA expression of GHR and IGF-1 genes.
These results may be helpful to improve breeding programs and to develop commercial lines of meat-type Japanese quail.
Related Results
The mechanism of maturation of insulin-like growth factor-1
The mechanism of maturation of insulin-like growth factor-1
This study, to elucidate the role of des(1-3)IGF-I in the maturation of IGF-I,used two strategies. The first was to detect the presence of enzymes in tissues, which would act on IG...
(Invited) A Protein-Based Artificial Receptor for Insulin Sensing
(Invited) A Protein-Based Artificial Receptor for Insulin Sensing
Insulin is one of the most important hormones that controls the glucose level in blood. Therefore, the investigation of insulin is very important for the diabetic research. There h...
Estrogen and IGF-I Independently Down-Regulate Critical Repressors of Breast Cancer Growth.
Estrogen and IGF-I Independently Down-Regulate Critical Repressors of Breast Cancer Growth.
Abstract
Background: Estrogen receptor and insulin-like growth factor (IGF) signaling pathways are important for both normal mammary gland development and breast can...
BCR-ABL Activates IGF-1 Expression and Signaling in Chronic Myelogenous Leukemia Blast Crisis Cell Lines.
BCR-ABL Activates IGF-1 Expression and Signaling in Chronic Myelogenous Leukemia Blast Crisis Cell Lines.
Abstract
CML blast crisis is characterized by the continued presence of the Philadelphia chromosome, which expresses the P210 BCR-ABL fusion protein, and the acquisi...
The basic route of nuclear‐targeted transport of IGF‐1/IGF‐1R and potential biological functions in intestinal epithelial cells
The basic route of nuclear‐targeted transport of IGF‐1/IGF‐1R and potential biological functions in intestinal epithelial cells
AbstractObjectivesInsulin‐like growth factor (IGF‐1) plays an important role in many biological processes in the intestinal tract. However, the cellular behaviour and characteristi...
Mutations in Insulin-Receptor Gene in Insulin-Resistant Patients
Mutations in Insulin-Receptor Gene in Insulin-Resistant Patients
Defects in insulin-receptor function have been associated with insulin-resistant states such as obesity and non-insulin-dependent diabetes mellitus (NIDDM). Several types of mutati...
7780 Silver - Russell Syndrome and Free Insulin-like Growth Factor-1 Measurements
7780 Silver - Russell Syndrome and Free Insulin-like Growth Factor-1 Measurements
Abstract
Disclosure: R.D. Oude Engberink: None. V. van den Bogert: None. L. IJsselstijn: None. S.A. van den Berg: None. D.C. van der Kaay: None.
Intro...
9282 Silver - Russell Syndrome and Free Insulin-like Growth Factor-1 Measurements
9282 Silver - Russell Syndrome and Free Insulin-like Growth Factor-1 Measurements
Abstract
Disclosure: R.D. Oude Engberink: None. V. van den Bogert: None. L. IJsselstijn: None. S.A. van den Berg: None. D.C. van der Kaay: None.
Intro...

