Association of glucose metabolism and insulin resistance with feed efficiency and production traits of finishing beef steers.
J Anim Sci
; 1022024 Jan 03.
Article
en En
| MEDLINE
| ID: mdl-38401157
ABSTRACT
Increasing nutrient utilization efficiency is an important component of enhancing the sustainability of beef cattle production. The objective of this experiment was to determine the association of glucose metabolism and insulin resistance with dry matter intake (DMI), average daily gain (ADG), gainfeed ratio (GF), and residual feed intake (RFI). Steers (nâ
=â
54; initial body weightâ
=â
518â
±â
27.0 kg) were subjected to an intravenous glucose tolerance test (IVGTT) where glucose was dosed through a jugular catheter and serial blood samples were collected. Three days after the last group's IVGTT, steers began a 63-d DMI and ADG test. Body weight was measured on days 0, 1, 21, 42, 62, and 63, and DMI was measured using an Insentec Roughage Intake Control system (Hokofarm Group, Emmeloord, the Netherlands). To examine relationships between DMI, ADG, GF, and RFI with IVGTT measurements, Pearson correlations were calculated using Proc Corr of SAS 9.4 (SAS Inst. Inc., Cary, NC). Additionally, cattle were classified based on DMI, ADG, RFI, and GF, where the medium classification was set as meanâ
±â
0.5 SD, the low classification wasâ
<â
0.5 SD from the mean, and the high classification wasâ
>â
0.5 SD from the mean. No associations between DMI and IVGTT parameters were observed, and no differences were detected when classifying cattle as having low, medium, or high DMI. Peak insulin concentration in response to the IVGTT tended to be correlated with ADG (râ
=â
0.28; Pâ
=â
0.07), indicating cattle with greater ADG tend to have a greater insulin release in response to glucose. Glucose nadir concentrations tended to be positively correlated with ADG (râ
=â
0.26; Pâ
=â
0.10). Additionally, the glucose nadir was greater in high-ADG steers (Pâ
=â
0.003). The association of greater glucose nadir with high-ADG could indicate that high-ADG steers do not clear glucose as efficiently as low-ADG steers, potentially indicating increased insulin resistance. Further, RFI was not correlated with IVGTT measurements, but low RFI steers had a greater peak glucose concentration (Pâ
=â
0.040) and tended to have a greater glucose area under the curve (Pâ
=â
0.09). GF was correlated with glucose area under the curve (râ
=â
0.33; Pâ
=â
0.050), glucose nadir (râ
=â
0.35; Pâ
=â
0.011), and insulin time to peak (râ
=â
0.39; Pâ
=â
0.010). These results indicate that glucose metabolism and insulin signaling are associated with growth and efficiency, but the molecular mechanisms that drive these effects need to be elucidated.
Feed efficiency is an important component of improving the sustainability of beef production. There is a need to understand how metabolism influences feed efficiency. This experiment aimed to explore the association of glucose metabolism and insulin resistance with feed intake, growth, and efficiency of finishing beef cattle. The results indicate that there is a relationship between insulin resistance and improved efficiency measured as the ratio of growth to feed intake. The findings of this experiment are novel as they show a relationship between insulin resistance and feed efficiency and indicate further research is needed to determine the mechanisms of insulin resistance in ruminants that contribute to improved feed efficiency.
Palabras clave
Texto completo:
1
Colección:
01-internacional
Base de datos:
MEDLINE
Asunto principal:
Resistencia a la Insulina
/
Enfermedades de los Bovinos
Límite:
Animals
Idioma:
En
Revista:
J Anim Sci
Año:
2024
Tipo del documento:
Article
País de afiliación:
Estados Unidos
Pais de publicación:
Estados Unidos