This study aimed to gain a better understanding of how the structural and viscous fibers of oats can affect the performance, some selected blood interleukins, short chain fatty acid content and microbiota composition of the ceca of broiler chickens. A floor pen trial was carried out with 576 Ross 308 broiler cockerels. Aside from a corn–soybean-based control diet (C), the two other treatments contained either 10, 10 and 20 % whole oats (WO) or dehulled oats (DO) in the starter, grower and finisher phases respectively. The diets were isocaloric and isonitrogenous, differing only in their structural and soluble fiber and fat content. DO diets resulted in significantly higher weight gain compared with the two other treatments. The best feed conversion ratio (FCR) was also measured in the DO treatment group. The higher fiber content of WO diets did not compromise the production traits in comparison with the control diet. DO treatment resulted in increased interleukin-1beta (IL-1β), whereas WO decreased interleukin-8 (IL-8) concentration of the blood serum at day 39. Both oat treatments reduced the abundance of lactic acid-producing genera, the acetate, butyrate and the total short chain fatty acid (SCFA) content in the ceca.
A feeding trial was carried out with Tetra SL laying hens to evaluate the effects of an insect larvae meal on the production traits and egg quality parameters. Alphitobius diaperinus larvae meal (ADM) was incorporated at 10 % (ADM10) and 15 % (ADM15) into layer diets on the expense of soybean meal and the production traits and egg quality parameters, have been evaluated. Among the production traits only egg weight was affected by dietary treatments. Both ADM diets decreased egg weight in comparison with the control diet. Besides egg weight, none of the other egg quality parameters were affected. ADM failed to modify the fat content of egg yolk but resulted significant changes in the fatty acid composition of the yolk fat. Feeding ADM increased the lauric, stearic and linoleic acid and decreased the oleic and alpha-linolenic acid concentrations of the yolk. The results of the electronic nose proved that ADM resulted in specific volatile compound structure, that can be used for the identification of the insect meal eggs. Among the identified compounds ADM reduced the intensity of dimethyl sulphide, ethyl acetate and acetaldehyde in comparison with the control eggs. The tasting and organoleptic evaluation of boiled eggs by the volunteers resulted higher quality scores and acceptance of the ADM eggs. From the results it can be concluded that insect meals can be used efficiently even at high incorporation rates in layer diets. The reason for the egg weight reduction, however, needs further investigation.
A feeding trial was carried out with Tetra SL laying hens for 6 weeks in order to evaluate the effects of and insect larvae meal on the production traits and egg quality parameters. A product, developed for human nutrition (AdalbaPro) was used, containing Alphitobius diaperinus larvae meal (ADM). ADM was incorporated at 10 (ADM10) and 15% (ADM15) on the expense of soybean meal. The control (C) and ADM containing diets were fed with 16 replicate hens kept in individual cages. The production traits and egg quality parameters, including also the electronic nose technique were evaluated. Among the production traits (weight gain, feed intake, feed conversion, egg production percentage, egg weight) only egg weight was affected by the dietary treatments. Both ADM diets decreased the egg weight in comparison with the control. Beside egg weight, none of the other egg quality parameters were affected. ADM failed to modify the fat content of egg yolk but resulted significant changes in the fatty acid composition of the yolk fat. Feeding ADM increased the lauric, stearic and linoleic acid and decreased the oleic and α-linolenic acid concentrations of the yolk. The results of the electronic nose proved, that ADM resulted specific volatile compound structure, that can be used for the identification of the insect meal eggs. Among the identified compounds ADM reduced the intensity of dimethyl sulphide, ethyl acetate and acetaldehyde in comparison with the control eggs. The tasting and organoleptic evaluation of boiled eggs by the volunteers resulted higher quality scores and acceptance of the ADM eggs. From the results it can be concluded that insect meal can be used efficiently even at high incorporation rates in layer diets. The reason of the egg weight reduction needs further investigation.
Two model experiments were conducted to investigate the different protein and amino acid supply of laying hens fed split feeding (SF) diets. In Experiment 1, one conventional (C) and one SF dietary treatment were established, and the diets were implemented for 12 weeks. The concentrations of crude protein, SID Lys, Met, Met + Cys Arg, Val, Thr, Leu, Ile, and Trp of the SF morning diet were the same as in the C diet. The crude protein content of the SF afternoon diet was lower (92%), while the SID values of Lys, Met, Met + Cys were identical compared to the C diet (100%). The SF treatment resulted in a reduced protein/N intake, better feed conversion ratio, higher eggshell thickness and apparent ileal digestibility of Asp, Leu, Lys, Gly, and Ser, and lower concentration of N forms (total, fecal, NH4+, uric acid, urinary) in the excreta compared to the C treatment. In Experiment 2, a control and a low protein (−2% crude protein but the same SID values of Lys, Met, Met + Cys, Thr, Val) SF treatment were compared for 6 weeks. The low protein SF treatment led to a decreased protein/N intake, higher laying rate, lower egg weight, higher ileal digestibility of Ala, Asp, Leu, and Ile, and similar N emission compared to the control SF treatment.
Twenty extracted sunflower meal (SFM) samples were collected and analysed with classical laboratory methods and near infrared spectroscopy (NIRS).From the results, the variance of the nutrients, the accuracy of NIRS prediction and the interaction of the different nutrients have been evaluated.The results showed that NIRS provides high accuracy for crude protein, amino acids, fibre fractions and total phosphorus.The reliability for crude fat, crude ash and sugar predictions was however lower.The relationship between the measured and estimated amino acid contents was significant in all cases with high correlation coefficients.The crude protein content of the SFM samples showed a positive correlation with the crude ash, phosphorous and sugar contents, and a negative correlation with all fibre fractions.According to our results, the amino acid composition of the sunflower meal protein is not constant.The ratio of methionine and histidine HIS is higher, while that of cysteine, tyrosine, arginine, isoleucine, leucine, valine and phenylalanine is lower when the protein content of SFM increase.
Yield elements (plant height, grass yield) of prairie grass, the little known grass species in Hungary, was investigated in a three-factor field experiment set up on the Mohács-island. One-grass and grass/legume mixture were established under irrigated and non-irrigated conditions at different nitrogen levels (0-67-133 kg N/ha/year). The effects of these factors on the grass productivity were analysed by a three-factor analysis of variance at 5% significance level in the first year of the experiment. Nitrogen supplementation and the interaction of legumeXirrigation had a significant positive effect on the annual hay yield. The yield of the first two cuts, which accounted for 61% of the annual yield, was not significantly affected by any of the examined factors, while their effect was already clearly visible in the yield of the 3rd and 4th cuts. A similar result was obtained with the model fitted to the average height of the four cuts, but the legumeXirrigation and legumeXnitrogen interactions were already significant in the 2nd cut. Nitrogen had a positive effect on grass height from the 3rd cut. Without irrigation, the 1st cut showed a significantly lower grass height with legume addition. In our experiment, we estimated 65 t/ha annual fresh grass yield on average of the treatments, and 18 t/ha of hay was actually harvested. In the treatment of irrigation with legume addition, 1 kg/ha of excess nitrogen resulted in an excess of 150 kg/ha of fresh grass yield in the case of the higher dose nitrogen treatment, compared to the nitrogen control. The laboratory analysis of the 1st cut-hay samples from selected treatments confirmed favorable protein (16.7-18.2%) and crude fat content, its lower crude fiber content and higher calcium and phosphorus content compared to cocksfoot and smooth brome.
The objective of this research was to determine whether diet composition, or adding probiotic or symbiotic feed additives to broiler diets can modify the N composition of the excreta and the dynamics of ammonia volatilization from the manure. A total of 574 one-day-old Ross 308 broiler chickens were fed four different diets. The treatments included a corn and soybean meal-based control diets (C), wheat-based and wheat bran containing diets (W), a multi-strain probiotic treatment (Broilact®; Br), and a symbiotic additive containing Bacillus subtilis, inulin, and Saccharomices cerevisiae (Sy). Feeding the wheat-based diet significantly improved the weight gain and FCR of chickens. Treatment W also significantly increased the dry matter content of the excreta compared with the probiotic and symbiotic treatments. Both Br and Sy tended to decrease the amount of excreted uric acid, which is the main substrate of ammonia. Treatment Sy reduced the urinary N ratio of the excreta in comparison with treatment W. The symbiotic additive resulted in significantly higher ammonia emission in the first two hours. On the other hand, the dynamics of the emission was slow at the beginning and increased steeply after 15 h when the wheat-based diets were fed. Based on our results, the wheat-based diets, containing soluble arabinoxylans, and the symbiotic treatments of broiler diets have an impact on the urinary and faecal nitrogen composition of the excreta, and also on the dynamics of ammonia release from the manure.
This study shows the effects of feeding low protein (LP) diets with different energy-to-protein ratios were evaluated on the production parameters, carcass composition, meat quality, nitrogen retention, and excreta composition of broilers. A total of 576-day-old Ross 308 broilers were fed a control diet (C) and three LP diets containing 1.5% less crude protein than diet C for 41 days. The LP1 treatment was isocaloric with diet C, while the dietary apparent metabolizable energy corrected by nitrogen (AMEn) levels in the case of the LP2 and LP3 treatments were reduced by 1.5% and 3%, respectively. The LP diets were supplemented with six crystalline essential amino acids (AA) to meet the standardized ileal digestible AA requirements of broilers. The LP1 treatment did not affect the performance parameters of broilers and increased the breast meat yield, the nitrogen retention and decreased drip loss of breast meat and the total-N and uric acid-N nitrogen excretion of birds in comparison with the C group. Although the energy-reduced LP2 and LP3 diets resulted in lower final body weight, they did not affect the carcass composition, breast meat quality, nitrogen retention, and excreta composition of birds compared with the control treatment.
The effects of feeding low-protein (LP) diets and the age and genotype of fattening pigs were evaluated in an N-balance trial. Sixty weaned piglets of two genotypes were allotted to three different diets. Besides the control diets for the crossbred Topigs 20 × DanBred Duroc (TD) and Hungarian Large White (HLW) pigs, two LP diets were fed containing 1.5 (T1.5) and 3% (T3) less dietary protein than the control. The LP diets were supplemented with crystalline lysine, threonine, tryptophan, and methionine to equalize their digestible amino acid contents. Starter diets were fed between 20–30, grower I between 30–40, grower II between 40–80 and finisher between 80–110 kg live weights. Pigs were kept in floor pens, with 10 animals per pen. In all phases, six pigs with similar live weight were placed into individual balance cages and in the frame of a seven-day long balance trial, the daily N-intake, fecal and urinary N-excretion were measured. From the data N-digestibility, the total ammoniacal nitrogen (TAN) and N-retention were calculated. All the investigated main factors, the genotype and age of pigs and the protein content of the diets had significant effects on the N-balance of fattening pigs. The determinacy of the factors depended on the investigated parameter. Fecal N-excretion and N-digestibility were steadier compared with the urinary N-exertion and TAN percentage. N-digestibility increased and the urinary N-excretion decreased when LP diets were fed. The urinary N-decreasing effect of LP diets was not linear. Compared with the control (19.6 gN/day), T1.5 treatment resulted in 14.5, treatment T3 in 12.4 g daily urinary N-excretion. The TAN and the N-retention of HLW pigs were more favorable than those of TD pigs. Based on our results, it can be concluded that the accuracy of the nitrogen and TAN excretion values of pigs, used in the calculation of the national NH3 inventories, could be improved if the genotype, the more detailed age categories and the different protein levels of feeds are considered.
The main goal of the current study was to investigate the effects of feeding low protein (LP) diets on the performance parameters and excreta composition of broiler chickens. In total, 288 male Ross 308 day-old chickens were divided into two dietary treatment groups using six replicate pens with 24 chickens each. No LP diet was fed in the starter phase. The protein reduction in the grower and finisher phases were 1.8% and 2% respectively. Beside the measurements of production traits, on day 24 and 40 representative fresh excreta samples were collected, their dry matter, total N, NH4+-N and uric acid-N contents determined, and the ratio of urinary and fecal N calculated. Dietary treatments failed to cause significant differences in the feed intake, growth rate, and feed conversion ratio of animals. LP diets decreased the total nitrogen and uric acid contents of excreta significantly. The age of birds had also significant effect, resulting more reduction in the grower phase compared with the finisher. The ratio of urinary N was higher at day 40 compared with the age of day 24. The urinary N content of broiler chicken’s excreta is lower than can be found in the literature, which should be considered in the ammonia inventory calculations.
Ammonia emission is a concern for the poultry industry from both environmental and animal welfare points of view. The objective of this research was to determine whether probiotics or wheat bran supplementation of broiler diets can modify the N composition of the excreta and the dynamics of ammonia volatilisation emission from the manure. A total of 120-day-old Ross 308 broiler chickens were fed six different diets. The treatments included a corn and soybean meal-based control diet (C) and diets containing wheat bran (WB). Both diets were fed alone and with supplementation of a lactic acid (Lactobacillus farciminis, LAB) and a butyric acid (Clostridium butyricum, BAB) producing bacterial strain. Treatment BAB had a significant effect on the dry matter content of the excreta and both probiotics decreased the amount of excreted uric acid. Treatment WB resulted in a significantly lower NH+4-N concentration of excreta and a tendency toward reduced uric acid content. Treatment LAB reduced the urinary N ratio of excreta. Among dietary treatments, WB resulted in the highest urease producing cell numbers in the excreta, but this difference was not significant. Based on our results, similar to pigs, the soluble fibre fraction of poultry diets can also modify the urinary to faecal N ratio of the excreta.
Feed additives that can improve intestinal health and maintain a diverse and resilient intestinal microbiota of poultry are of great importance. Thus, the current study investigated the effects of a single strain butyric acid-producing Clostridium (C. butyricum) with (symbiotic) or without wheat bran supplementation on cecal microbiota composition and gut health characteristics of broiler chickens. In total, 384 male Ross 308 day-old chickens were divided into four dietary treatment groups and fed ad libitum until day 37 of life. Cecal samples were taken for Illumina sequencing and pH and short-chain fatty acid analyses, as well as for histological analysis at the end of the experimental period. Neither of the supplemented diets improved chicken growth performance. Caecum was dominated by the members of Bacteroidetes phyla followed by Firmicutes in each dietary group. At the genus level, Bacteroides, Oscillospira, Akkermansia, Faecalibacterium, Ruminococcus and Streptococcus genera exceeded 1% relative abundance. Dietary treatment influenced the relative abundance of the Akkermansia genus, which had a lower relative abundance in the C. butyricum group than in the other groups and in the symbiotic group compared to the wheat bran supplemented group. Dietary treatment also altered cecal crypt depth and had a trend to modify the cecal fermentation profile. Additive effects of wheat bran and C. butyricum supplementation were not detected. Our results suggest that Akkermansia muciniphila colonization in chicken can be influenced by diet composition.
Diets rich in various soluble nondigestible carbohydrates (sNDCs) were evaluated on different intestinal characteristics (histological, physico-chemical and microbiological) of chickens and compared with a maize-based diet as a control. A total of 160 Ross 308 male chickens were kept in deep litter pens (n = 40) and fed their appropriate diets from Day 1 to Day 35 of life. Four isocaloric and isonitrogenous diets, differing in their sNDC content, were composed; control (containing maize as the only cereal), maize-wheat-based (M + W) and maize-based supplemented with either 20 g/kg inulin (M + I) or 30 g/kg lactose (M + L). All of the diets tested decreased ileal crypt depth, ileal muscle layer thickness and increased caecal coliform counts relative to the control group. Villus-crypt ratio increased only in the M + L group. Ileal digesta of chickens fed the M + W diet had the highest ileal viscosity and the highest caecal butyrate, valerate and total short-chain fatty acid concentrations while the lowest pH was observed in caecal contents of chickens fed the M + I diet. The diet had no effect on ileal or caecal goblet cell and intraepithelial lymphocyte numbers. Lactobacillus counts in the caecal content remained unchanged. According to the present study, various sNDC sources may have beneficial gut health effects, however, some of the intestinal variables are dependent on the type of sNDCs.
Intestinal cytochrome P450 (CYP) enzymes play key role in the first pass metabolism of orally ingested xenobiotics, providing a primary metabolic barrier, being of special importance in maintaining animal health and production. This study was aimed to investigate how intestinal drug-metabolizing CYPs can be modulated by nutritional factors in broiler chicken. We investigated the effects of the natural growth promoter (n-)butyrate of different origin (feed supplementation of protected or non-protected forms and/or inducing caecal microbial production by supporting higher level of dietary non-starch polysaccharides [NSP]) on the activity of duodenal CYPs. To observe the connection between intestinal CYP activity and butyrate concentration, the distribution of differently originated butyrate was also assessed by measuring its concentration in various intestinal segments and different vessels of portal and systemic circulation. Butyrate of different origin showed varying distribution properties as being absorbed from different parts of the gastrointestinal tract. Intestinal CYP1A and CYP2H2 activities were increased by dietary butyrate supplementation and by the increased caecal microbial butyrate production, while CYP3A37 activity was minimally influenced by microbial butyrate only. The present study proved that both dietary and microbial butyrate could alter the activity of CYPs in the duodenal epithelium. Our findings suggest that intestinal CYPs could be induced not only by the intestinal luminal butyrate, but also from basolateral side, by the already absorbed butyrate. Such action of butyrate can be of special importance from food safety and pharmacotherapeutic point of view as it may modify the metabolism and intestinal kinetics of simultaneously applied xenobiotics.
An experiment was carried out to study the effect of postpelleting dietary inclusion of whole wheat seed at the expense of ground wheat on the performance and gastrointestinal characteristics of broiler chickens. After the starter period three different diets were fed. Besides control diets that did not contain wheat seed, two other diets with different wheat seed contents were composed. Treatment A contained 5, 10, and 15%, treatment B contained 5,20 and 30% wheat seed, respectively, in grower I, grower II and finisher phases, respectively. Body weight and feed consumption of chickens were measured at the end of each phase. At 40 days of age 12 chickens were slaughtered from each treatment. Carcass parameters, enzyme activities of digesta and histological structure of the small intestine were determined.No significant differences were found between the treatments in the weight of the chickens. Chickens fed the diet containing lower percentages of whole wheat (treatment A) showed significantly better feed conversion ratio than chickens of the control group and the group fed the higher level of whole wheat (treatment B), respectively. No significant differences were found between the treatment groups in the relative carcass, breast fillet, thigh and abdominal weights. Compared to the control group, wheat seed feeding increased gizzard weight by 46.2 and 62.2% in treatment A and treatment B, respectively. Relative to the control group, higher trypsin, alpha-amylase and lipase activities were detected in the jen-junal digesta when the diets contained whole wheat. Dietary treatments did not cause any differences in the viscosity of the intestinal contents and in the histological structure of the small intestine. (C) 2015 Elsevier B.V. All rights reserved.
A study was conducted to examine the effects of different oils on the plasma corticosterone concentrations of broiler chickens fed ad libitum or deprived of feed for 24 hours. A total of 36 Ross broilers were randomly assigned to one of three dietary treatments at 10 days of age and fed a grower diet supplemented with 60 g/kg soybean oil (rich in linoleic acid, C18:2n-6), linseed oil (rich in a-linolenic acid, C18:3n-3) or fish oil (rich in C14:0, C16:0, C16:1n-7, C20:1n-9; eicosapentaenoic acid and docosahexaenoic acid, EPA, C20:5n-3 and DHA, C22:6n-3), respectively, for 18 days. Dietary supplementation of fish oil resulted in lower (P < 0.05) baseline plasma corticosterone levels of chickens fed ad libitum for 18 days compared to soybean and linseed oil supplementations. Feed deprivation for 24 h induced a significant (P < 0.05) increase in corticosterone concentration in every treatment group compared to the ad libitum-fed birds. The hormone levels of feed-deprived birds did not differ significantly among groups fed diets supplemented with different oils.