The studies were carried out on F1 progeny of multiparous Polish Large White sows and boars of Belgian Landrace, Hampshire x Pietrain hybrid, and Pietrain breed. The control group consisted of purebred Polish Large White pigs. The experimental part of the studies was performed on 120 fatteners divided up to 4 race groups, with 30 heads in each (namely 15 barrows and 15 gilts). Moreover, each group was divided into two following subgroups: the SoS one, which was given feed mixture with extracted soybean meal and the RpS one, which was given feed mixture with extracted rapeseed meal. The fattening started with 23 kg of body weight and was realized up to 100 kg. Twenty fatteners from each group (including 5 barrows and 5 gilts from a subgroup) were subjected to the control slaughter. The fatteners average daily body weight gains, and energy and digestible crude protein conversion per 1 kg of gain were as follows: after Belgain Landrace boars 788 g, 32.3 MJ and 358 g; after Hampshire x Pietrain boars 766 g, 33.6 MJ and 373 g; after Pietrain boars 720 g, 34.4 MJ and 382 g; after control group boars 705 g, 36.3 MJ and 403 g, respectively. It was found that hybrids after boars of evaluated breeds have positively (P < or = 0,01) better carcass meatness, and in a better way use digestible protein and metabolizable energy for production of 1 kg of meat. On that reason the best are hybrids after Belgian Landrace boars, carcasses of which yielded 52.4% of meat and converted 27% less of digestible crude protein and metabolizable energy for 1 kg meat production, than the White Large Polish fatteners. For no examined feature interaction between genotype and protein source in feeding diet was found. The growth rate and utilization of fodder were better for pigs fed on mixture with extracted soybean meal than for the ones fed on mixture with extracted rapeseed meal (P < or = 0.05). The fodders with high protein content did not differentiate meatness traits, whereas digestible crude protein and metabolizable energy conversion for 1 kg meat production in pigs, being given extracted soybean meal in diet, was lower (P < or = 0.05) than in pigs given extracted rapeseed meal.

Download full-text PDF

Source
http://dx.doi.org/10.1080/17450399609381875DOI Listing

Publication Analysis

Top Keywords

mixture extracted
16
extracted soybean
12
soybean meal
12
extracted rapeseed
12
rapeseed meal
12
digestible crude
12
crude protein
12
protein metabolizable
12
metabolizable energy
12
genotype protein
8

Similar Publications

Extraction and quantitation of fentanyl in exhaled breath condensate using a magnetic dispersive solid phase based on graphene oxide and covalent organic framework composite and LC-MS/MS analysis.

J Chromatogr B Analyt Technol Biomed Life Sci

January 2025

Food and Drug Safety Research Center, Tabriz University of Medical Sciences, Tabriz, Iran; Research Center of New Material and Green Chemistry, Khazar University, 41 Mehseti Street, Baku AZ1096, Azerbaijan. Electronic address:

Free fentanyl is responsible for its pharmacological effects, but its total concentration is typically determined for therapeutic drug monitoring purposes. Determination of fentanyl concentration can help reduce the prescribed doses, leading to fewer side effects and increased effectiveness. Therefore, predicting free drug concentration in pharmaceutical research is crucial.

View Article and Find Full Text PDF

Genetic competition can obscure the true merit of selection candidates, potentially leading to altered genotype rankings and a divergence between expected and actual genetic gains. Despite a wealth of literature on genetic competition in plant and animal breeding, the separation of genetic values into direct genetic effects (DGE, related to a genotype's merit) and indirect genetic effects (IGE, related to the effects of a genotype's alleles on its neighbor's phenotype) in linear mixed models is often overlooked, likely due to the complexity involved. To address this, we introduce gencomp, a new R package designed to simplify the use of (spatial-) genetic competition models in crop and tree breeding routines.

View Article and Find Full Text PDF

A single microfluidic device for multi-omics analysis sample preparation.

Lab Chip

January 2025

Spectrométrie de Masse Biologique et Protéomique SMBP, ESPCI Paris, LPC CNRS UMR 8249, PSL University, 10 Rue Vauquelin, F-75005 Paris, France.

Combining different "omics" approaches, such as genomics and proteomics, is necessary to generate a detailed and complete insight into microbiome comprehension. Proper sample collection and processing and accurate analytical methods are crucial in generating reliable data. We previously developed the ChipFilter device for proteomic analysis of microbial samples.

View Article and Find Full Text PDF

Metabolites, Biotransformation, and Plant-Growth Dual Regulatory Activity from Uncovered by the Fermentation Interaction with a Host.

J Agric Food Chem

January 2025

Key Laboratory of Medicinal Chemistry for Natural Resource, Ministry of Education, Yunnan Characteristic Plant Extraction Laboratory, Functional Molecules Analysis and Biotransformation Key Laboratory of Universities in Yunnan Province, School of Chemical Science and Technology, Yunnan University, Kunming 650091, People's Republic of China.

One new azaphilone derivative () from in ordinary medium, one new phthalide derivative (), a microbial transformation product of ingredients by , a pair of new austdiol enantiomers (+)- and (-)-, one new epsilon-caprolactone derivative (), and one new ophiobolin-type sesterterpenoid () from the in host medium were reported. The structures were determined by spectroscopic analysis and single-crystal X-ray diffraction. Compounds - could completely inhibit the germination of rice seeds at 50 μg/mL, which is higher than that of the positive control.

View Article and Find Full Text PDF

Double bond (C═C) position isomerism in unsaturated lipids can indicate abnormal lipid metabolism and pathological conditions. Novel chemical derivatization and mass spectrometry-based techniques are under continuing development to provide more accurate elucidation of lipid structure in finer structural detail. Here, we introduce a new ion chemistry for annotating lipid C═C positions, which is highly efficient for liquid chromatography-mass spectrometry-based lipidomics.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!