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TaLAC129 is a negative regulator of arbuscular mycorrhizal symbiosis but enhanced the growth and yield of bread wheat.

Arbuscular mycorrhizal (AM) symbiosis enhances nutrient acquisition and stress resilience in plants, yet the genetic mechanisms regulating this interaction in wheat remain poorly understood. This study explores the variation in AM colonization rates across a diverse set of wheat varieties and aims to identify key genes that regulate the wheat-AM symbiosis. Understanding these molecular mechanisms is crucial for improving nutrient uptake efficiency and stress resistance in wheat breeding programs. Here, we conducted a genome-wide association study (GWAS) of 291 wheat varieties and integrated transcriptomic data to identify TaLAC129, a laccase (LAC)-encoding gene, as a critical negative regulator of AM colonization in wheat roots. Overexpression of TaLAC129 significantly increased root LAC activity and lignin content, concurrently suppressing AM colonization. While this suppression reduced nitrogen (N), phosphorus (P), and potassium (K) uptake in stems, leaves, and glumes, it markedly enhanced nutrient utilization efficiency (NUE) in grains. Furthermore, TaLAC129 overexpression improved agronomic traits, including grains per panicle, 1000-grain weight, and overall yield. Our findings reveal the dual role of TaLAC129 in balancing AM symbiosis and nutrient allocation, offering a novel genetic target for breeding wheat varieties with improved yield and nutrient efficiency. This study provides critical insights into the molecular coordination between symbiotic trade-offs and agricultural productivity in cereal crops.

Triticum

Multi-omics revealed the effects of rumen to blood path on early lactation performance in transition dairy cows.

BACKGROUND: The transition period is vitally important to the life cycle of dairy cows. However, the function of the microbiota during both pre- and post-partum and their relationship with ruminal, plasma, and milk metabolites still require systematic investigation. To address this, the 7 highest- and 7 lowest-performing animals among a cohort of 100 dairy cows were selected based on their postpartum energy-corrected milk yield. Rumen fluid and plasma samples were collected during both pre- and post-partum periods, whereas milk samples were obtained postpartum. Shotgun metagenomics of rumen contents in addition to metabolomics of rumen, plasma, and milk samples were performed to evaluate the associations between ruminal microbes and early lactation performance in transition dairy cows. RESULTS: Compared with prepartum cows, postpartum high-yield cows had greater concentrations of ruminal volatile fatty acids and plasma total bile acid. Moreover, plasma urea nitrogen and most amino acids, peptides, and their derivatives in plasma and milk were increased in postpartum high-yield cows, relative to postpartum low-yield cows. Metagenomic analysis revealed that the relative abundances of several species within the Prevotella, Succinimonas, Succinatimonas, and Methanosphaera increased, while other bacteria belong to Alistipes and Bacteroides, and archaeal Methanobrevibacter species decreased in postpartum cows, particularly in postpartum high-yield cows. Co-occurrence network and correlation analysis suggested that Prevotella and Succinatimonas were negatively correlated to Alistipes, Bacteroides, and Methanobrevibacter, potentially contributing to the nutritionally efficient phenotype of postpartum high-yield cows. A metabolic pathway analysis of our metagenomic data revealed that postpartum high-yield cows possessed more microbial genes involved in starch utilization and amino acid synthesis, while a wide range of microbial genes involved in cellulose utilization, acetogenesis, and amino acid degradation were found in prepartum cows with low-yield in postpartum. A structural equation model analysis showed that the increased relative abundances of Prevotella tf.2-5 and Succinatimonas CAG_777 were related to greater concentrations of plasma chenodeoxycholic acid glycine conjugate, milk 5-Methoxytryptophan, and energy-corrected milk yield. Finally, pan-genomic analysis confirmed that Alistipes, Bacteroides, and Methanobrevibacter possess genetic conservation of both hydrogenases and dehydrogenases, which may contribute to energy loss in the rumen via hydrogen dissipation. CONCLUSION: In summary, our findings provide a fundamental understanding of how microbiome-dependent mechanisms contribute to early lactation performance in dairy cows during the transition period. The increased abundance of Prevotella, Succinimonas, and Succinatimonas in postpartum cows suggest that they are important microbes during the transition period and may help in coping with metabolic challenges, while improving nutrient utilization efficiency during this period. Our study underscores the importance of the ruminal microbiome during the transition period and highlights the need for rumen-based nutritional intervention strategies to improve production efficiency in ruminants. Video Abstract.

Animals

New methods for comparing the biological efficiency of alternate nutrient sources.

The objective of this study is to propose new methods for the determination of biological efficiency (the ability of a nutrient to produce a response) and for comparison of the efficiencies of alternate nutrient sources. The proposed methods are based on a four-parameter kinetic model which describes response as a function of intake. The comparison of the abilities of two proteins (casein and soybean protein concentrate) to promote weight gain in weanling rats is presented as an example; however, the model is also useful for other nutrients (proteins, amino acids, vitamins, minerals, etc.) and other responses (blood enzyme or protein levels, tissue enzyme levels, etc.). Application of the method leads to useful comparisons of nutrient sources as well as information concerning the maximum efficiencies and rates of nutrient utilization from different sources.

Animals

Effect of Eimeria acervulina infection on nutrient retention with special reference to fat malabsorption in chickens.

Nutritional balance studies were conducted to determine the effect of Eimeria acervulina infection on the retention of nutrients and the efficiency of utilization of protein and energy in the diet during the course of intestinal coccidiosis in chickens. Both light and electronmicroscopic studies were conducted to elucidate the pathogenesis of fat malabsorption in the infected chickens. The infection with E. acervulina during the acute phase of the disease (day 4 to day 8 postinfection) caused a reduction (P smaller than 0.01) in the retention of percent protein, percent ether extract and percent gross energy of the diet with a concomitant increase (P smaller than 0.01) in the concentration of ether extract and gross energy of the excreta. The metabolizable energy value of the diet was also depressed during this phase. During the recovery phase of the disease (day 9 to day 13 postinfection) infected chickens voided excreta containing a slightly greater concentration of ether extract when compared to the controls but differences in the retention of percent protein and percent gross energy were no longer observed. An increased retention of percent phosphorus also occured during the recovery phase. Studies involving the carcass composition revealed that the efficiency of utilization of protein and metabolizable energy of the diet for tissue deposition was reduced (P smaller than 0.05) during day 0 to day 8 postinfection but only the efficiency of metabolizable energy utilization was found to be depressed (P smaller than 0.05) when data for day 0 to day 14 postinfection were analyzed. Both light and electronmicroscopic studies of the duodenal villi of infected chickens during day 5 to day 6 postinfection revealed accumulation of large globules of fat in the villus epithelial cells parasitized by the gammonts of E. acervulina indicating a possible blackade of "fat exit" from these cells.

Animal Feed

Multi-omics reveals an ecdysone-activated Eip75B-FABP signaling axis coordinating nutrient metabolism for development in Hermetia illucens.

INTRODUCTION: Efficient nutrient storage is essential for insect development and energy homeostasis; however, the mechanisms coordinating nutrient allocation during ontogeny are not well understood. Elucidating these systems may yield valuable insights to insect metabolic adaptation. OBJECTIVES: This study aimed to identify regulatory modules governing nutrient metabolism in insects, focusing on hormonal and metabolic interplay. METHODS: Multi-omics profiling (proteomics, phosphoproteomics, and transcriptomics) was conducted throughout the life cycle, from egg to adult, to identify metabolic regulators. RNAi was utilized for gene knockdown, followed by qRT-PCR and mitochondrial DNA quantification to evaluate knockdown efficiency and its metabolic implications. Assessments of nutrient metabolism were performed using assays for triglycerides, crude protein, and fatty acid synthase. EMSA and BODIPY staining examined transcriptional regulation and lipid droplet dynamics. RESULTS: Utilizing an integrative multi-omics approach, this study elucidates the temporal metabolic regulators in insects. A conserved regulatory module was identified in which the PPAR homolog, ecdysone-induced protein 75B (Eip75B), functions as a transcriptional activator of fatty acid binding protein (FABP), sustaining lipid metabolic homeostasis during the larval stage. PPARγ modulators (rosiglitazone and GW9662) alter lipid accumulation, along with the expression of Eip75B and FABP, which was measured by qRT-PCR. Furthermore, the deficiency of FABP may reprogram metabolic pathways by inhibiting lipid storage and promoting mitochondrial β-oxidation, as supported by increased mitochondrial DNA copy number, as well as enhancing protein synthesis. This metabolic change could be modulated by ecdysone signaling, as hormonal supplementation effectively rescued the lipid loss phenotype. Our results establish the ecdysone-Eip75B-FABP signaling axis as a central regulatory module that integrates hormonal and nutrient-sensing signals to control insect nutritional metabolism. CONCLUSION: The ecdysone-Eip75B-FABP axis integrates hormonal and nutrient signals to regulate metabolic plasticity, underscoring a universal strategy for developmental energy allocation. The data also offer potential implications for research on metabolic disorders and bioenergy applications.

Animals

The effects of defaunation of the rumen on the growth of lambs on low-protein-high-energy diets.

1. The effects of defaunation of the rumen of lambs given low-protein-high-energy diets were studied using animals fed ad lib. a basal diet of sugar and oaten chaff which was supplemented with fish meal at various levels. These diets supported relatively large populations of protozoa in the rumen. 2. A nonyl phenol ethoxylate (15 g. Teric GN9:ICI Australian Ltd) given intraruminally, was shown to be an effective means of defaunating the rumen and the lambs were maintained protozoa-free by isolation. 3. In lambs given low levels of fish meal in the diet, the absence of rumen protozoa increased growth rate and improved the food conversion efficiency (g dry matter intake/g growth). These effects were not apparent at high levels of protein supplementation. 4. These results suggested that the absence of rumen protozoa resulted in an increased availability of nutrients supplying both energy and amino acids since the efficiency of food utilization and the rate of wool growth (which is sensitive to amino acid supply) were increased in lambs on the low level of protein supplementation without apparently increasing food intake.

Animals

The anabolic effect of estrogens on nitrogen metabolism of growing and finishing cattle and sheep.

Estrogenic compounds are effective in stimulating live weight gains and improving feed efficiency of growing and finishing ruminants. With the proper use of diethylstilbestrol or estradiol, weight gain and feed efficiency are improved approximately 15 and 12 percent, respectively. The administration of estrogenic substances to finishing cattle or sheep results in heavier carcasses containing more protein and moisture and less fat. Estrogens do not appreciably affect rumen fermentation or digestibility of the diet but improve the utilization of the absorbed nutrients. Evidence to support the concept that the increased weight gained with estrogen treatment is the result of anabolic reactions includes a decrease in plasma urea, decrease in plasma levels of most of the essential amino-acids, decreased excretion of urea and total nitrogen in the urine and increased retention of nitrogen, phosphorus and calcium. There is no change in body water space or tubular reabsorption of urea in sheep treated with diethylstilbestrol to account for some of these observations. More direct evidence that estrogens exert their major influence on nitrogen metabolism in the body and more specifically on protein synthesis comes from an experiment where cattle fed diethylstilbestrol deposited 33 percent more protein and 18 percent less fat in body weight gain as compared with control animals. The use of the hormone resulted in a significant improvement in the efficiency of utilizing dietary protein for body gain and a slight decrease in the efficiency of converting dietary energy to body gain. Enlargement of the pituitary, thyroid and adrenal glands and higher plasma levels of growth hormone, insulin and glucose have been found in experiments designed to study the effect of estrogens on the endocrine system of ruminants. These studies, along with the observation that an intact pituitary gland is necessary for estrogens to increase nitrogen retention in sheep, support the theory that estrogens are anabolic in ruminants because of increased secretion of growth hormone by the anterior pituitary. If follows that the increased secretion of growth hormone results in increased blood glucose which then stimulates secretion of insulin. Both growth hormone and insulin would be stimulatory to protein synthesis. This theory of the mode of action is further supported by the findings that injections of growth hormone closely resemble the effects of diethylstilbestrol on nitrogen retention and blood metabolites in sheep.

Anabolic Agents

Some observations on the effectiveness of anabolic agents in increasing the growth rate of poultry.

This paper will discuss data obtained on the growth promoting effects of metabolically active agents for avian species generally used for food production. The compounds to be considered are those with estrogenic, androgenic, or thyroid hormone activity. Estrogens have been studied most extensively with poultry. At physiologically active levels, estrogens markedly stimulate food intake and at times, weight gain. There is a marked increase in fattening in chickens fed estrogenic compounds and generally a decrease in nitrogen retention. There seems to be a particular stimulation of lipogenesis of estrogenic compounds to the extent that protein synthesis is depressed. Generally high levels of estrogenic compounds are required for metabolic effects. Estrogens have marked effects on circulating nutrient levels and also decrease the choline requirement of growing chicks. Thyroid active substances have been extensively studied. Iodinated casein has been shown to stimulate early growth especially in growing ducks. Efficiency of feed utilization is depressed by feeding iodinated casein and body fat content is reduced. Feathering may be improved by thyroid hormone and in species where feathers are economically imported, it is sometimes advantageous to use these compounds. Methyltestosterone has been shown to be growth stimulating for female chickens and turkeys but relatively ineffective for males. In general, androgens seem to be somewhat less effective in stimulating growth rate and nitrogen retention in domestic birds compared to effects observed in mammals. The role of growth hormone as an anabolic agent in birds is somewhat obscure. Mammalian growth hormone preparations seem ineffective in poultry. The anabolic agents that will be considered in this paper are the hormone active substances with estrogenic, androgenic, or thyroid activity. These will be considered primarily as they affect growth and carcass composition of various species of poultry and not in their normal physiological roles. When considering the role of these compounds in production of human food through their effects on animals, the effects on growth rate, feed efficiency, and carcass composition are primary traits of concern and many other interesting aspects of the physiological effects of these compounds cannot be considered. The paper will not be an exhaustive review of the literature but will attempt to document the effects of these agents on the productive characteristics of poultry.

Anabolic Agents

Profiles for pH, temperature, and dissolved O2 levels in enzyme production: monitoring in small-scale fermentors.

The profiles thus established may be utilized for investigations of an organism's relationship to its microenvironment including metabolic shifts and pathways. Areas of maximum respiratory activity, enzyme production, enzyme degradation, and attainment of the stationary phase are quite evident; however, duration and magnitude of the various phenomena may change with nutrient, temperature, and aeration efficiency. Practical application of this simplified method would include: a) determination of environmental conditions existing during maximum growth or enzyme synthesis and application of these conditions to feedback control; b) estimation of requirements for pH, oxygen, and heat removal capacities needed for scale-up; c) specific points during the fermentation at which samples should be analyzed to yield maximum information on depletion of nutrients and its effects on microbial activity.

Bacteria

The environment of the malnourished child.

The study of the relation of man to his environment in developing countries emphasizes the inevitable need for societies to recognize the true causes of infection, malnutrition, and poverty. The need is for improvement in the quality of human life in less developed nations, a recommendation easy to prescribe but difficult to accomplish. Although our pool of knowledge is incomplete, it is adequate to suggest ways to diminish infection, increase food production, utilize food more efficiently, improve education, and provide systems of justice to protect the classes most in need. The physical environment in tropical and subtropical regions, and the socioeconomic characteristics of the population inhabiting such regions, favor maintenance and transmission of a variety of viruses, bacteria, and parasites that make agricultural progress and social development difficult, and that contribute to poor fetal growth, nutrient wastage, and deficient postnatal physical growth, accounting for most of the childhood morbidity and mortality. In this regard, infections contribute indirectly to the overall food problem in a similar fashion as pests do in terms of food losses and spoilage. The overall effect could be comparable or greater than that resulting from an inadequate capacity to produce or to purchase the food needed. Thus, my objective has been to stress, within the whole environment, the importance of infection and the need to diminish it. Ways to control and prevent infection are readily known. They have to do with education of the population to improve personal and environmental hygiene. Economic investment is necessary to improve housing and water supply systems, waste disposal, and such preventive measures as immunization programs. Although such measures may appear expensive when first implemented, they have long-lasting effects and many require minimal expenditure once they are established. Large segments of the population stand to benefit, and other development interventions can then be introduced. However, these measures should not be implemented singly. They should be accompanied by community development, family planning, social legislation--in other words, the holistic approach to health and welfare. To do otherwise may aggravate the problem by stimulating demographic growth, perpetuating malnutrition and infection, and maintaining underdevelopment.

Agriculture

Measurements of urinary pantothenic acid excretions of alcoholic patients.

Malnutrition is often associated with alcoholism. Nutritional deficiencies found in alcoholic patients are mostly related to protein and B-vitamins. The purpose of this study was to determine whether pantothenic acid nutrition is altered in patients with prolonged intake of alcohol. Urinary pantothenic acid was measured in alcoholic patients during three intervals in a 10-week rehabilitation period. Pantothenic acid excretion of alcoholic patients revealed a lower excretion in an acute phase of the disease (2.7 mg/day) than reported excretion of normal individuals (3.9 mg/day). Inadequate intake of nutrients may have been a contributing factor. In chronic alcoholic patients who participated in a 10-week rehabilitation program, excretion approximated intake at the beginning of the period (6.6 mg/day) and decreased to less than one-half this amount (2.7 mg/day) at the end of the rehabilitation. It may be speculated that alcoholic patients, in general, are unable to utilize pantothenic acid from the diet efficiently, but as they are rehabilitated, more of this vitamin is retained in the body for useful functions.

Adult

[The effect of Ca/P relation on utilization of both nutrients in laying quails (author's transl)].

The effect of two Ca/P relations (2.1 y 4.5) in the diet on nutritive utilization of both minerals, egg production and egg characteristics (weight, size, resistence and shell Ca content) was studied. Nutritive utilization and absolute body retention of Ca were higher with a Ca/P relation of 4.5, while the lower Ca/P relation (2.1) produced a greater utilization of P, without differences as high as in the case of Ca. As a whole, the diet with a Ca/p relation = 2.1 was more efficiently utilized but egg production did not rise optimal levels got on the diet with a Ca/P relation = 4.5 Egg characteristics were similar with both treatments.

Animals

Nutrient comparison of fresh and field-dried, green-seeded soybeans.

Nutrient composition and biologic utilization of cooked, dried, and ground meals prepared from fresh and field-dried, green-seeded edible soybeans were evaluated. On a dry-weight basis, nutrient content of the fresh and field-dried meals were comparable for protein, fat, calcium, phosphorus, magnesium, copper, and iron; fresh beans tended to have higher zinc content than the field-dried beans. Nutrient values for the green-seeded soybean meals were comparable to published values for full-fat soybean flour. Bioassay results indicated that protein efficiency ratios (PER) for rats fed casein were significantly better than those for the soybean-fed animals. Fresh, green-seeded soybean meal supported significantly better growth than did the field-dried, green-seeded soybean meal. Though significantly lower than that for the reference casein diet, the mean PER for fresh, green-seeded soybean meal was 90 per cent of that obtained with the reference casein. The nutrient analysis and protein bioassay data both indicate that green-seeded soybeans used as a vegetable item in the diet are a potentially significant food source of several important nutrients.

Animals

Nutritive value of potato-based silages for dairy bulls.

Diet acceptability, nutrient digestibility, and nitrogen and energy partition were measured in growing Holstein bulls to compare corn silage with three potato-based silages which consisted of (fresh basis): 1) 50% potatoes, 20% hay; 2) 60% potatoes, 20% hay, 20% whole oats; 3) 50% potatoes, 25% hay, 25% whole oats. The 50% potato 50% hay silage dry matter was consumed at 3.0% of body weight per day which was greater than for any of the other three silages. Consequently, daily consumption of each nutrient was generally higher for this silage even though it was lower in content of many nutritional components. Except for ether extract, the digestion coefficients for the 50% potato 50% hay silage were higher than for the other three silages. The addition of whole oats to the potato-based silage tended to depress apparent digestibility of the nutritional components below those for corn silage. Both nitrogen and energy utilization were higher for the 50% potato 50% hay silage than for any of the other three experimental silages. Efficiency of use of absorbed nitrogen was higher for the oat-containing potato-based silages than for corn silage while the oat-containing silages were comparable to corn silage in energy efficiency. The 50% potato 50% hay silage was equal or superior to corn silage in dry matter intake, overall overall digestibility, nitrogen and energy balance for growing Holstein bulls.

Animal Feed

Lipid accumulation in an oleaginous yeast (Candida 107) growing on glucose in single-stage continuous culture.

Lipid accumulation of Candida 107, grown at dilution rates from 0.03 to the maximum of 0.21/h, with carbon, nitrogen, phosphate, and magnesium limitations in a chemostat, was maximal at about 40% (wt/wt) with nitrogen-limited medium at a dilution rate of 0.06/h, giving an efficiency of substrate conversion of 22 g of lipid per g of glucose consumed. At higher dilution rates the lipid content decreased. With carbon-limited growth, the highest lipid content (14%, wt/wt) was at the maximum dilution rate. High lipid contents also occurred with phosphate + nitrogen as double limitations of growth, with the lipid content of the yeast (about 35%, wt/wt) continuing to be near maximum at dilution rates also near maximum (0.17/h), thus giving the highest specific rate of lipid formation of any growth conditions (0.59 g of lipid/g of yeast per h). However, the efficiency of substrate utilization was only 5.2 g of lipid formed per 100 g of glucose consumed. The composition of the fatty acyl residues within the lipid remained constant over many weeks if the steady-state conditions remained unchanged. With carbon-limited growth, the degree of unsaturation of the fatty acids markedly decreased as the dilution rate was increased, but with nitrogen limitation the reverse trend was seen. In all cases, linoleic and oleic acids were the principal fatty acyl residues affected, and their relative proportions always varied in opposite directions. When magnesium was a limiting nutrient, there was a considerable increase in the proportion of myristic acid produced within the lipid. Neutral lipids (predominantly triglycerides) varied from 66 to 92% of the total lipid from carbon- and nitrogen-limited growth; phospholipids (varying from 2 to 25%) were highest in nitrogen-limited growth. The fatty acyl residues within each lipid fraction showed the same variations with changing growth rates.

Candida

Nutrition of the domestic rabbit.

Recent studies on the nutritional needs of the rabbit were reviewed. Emphasis was placed on fiber utilization by rabbits, digestibility of forage protein, and unique aspects of mineral and vitamin requirements. In spite of the herbivorous nature of rabbits, their ability to digest fiber is low. Indigestible fiber may have a role in preventing enteritis. While lacking the ability to efficiently digest fiber, rabbits do make efficient use of forage protein, in contrast to most other monogastric animals. Differences in serum calcium homeostasis and calcium excretion as compared with other animals were discussed. The interrelationship between vitamin E and selenium appears different in the rabbit compared with other species. The limited information available on rabbit nutrition suggests that rabbits are unusual in their metabolism of several nutrients; because of their wide use in biological research, more extensive information on nutritional and metabolic characteristics of rabbits is needed.

Animal Feed

Influence of pharmacological experiments of chemicals and other factors in diets of laboratory animals.

Results derived from animal experimentation depend to a considerable degree on the health and welfare of the animal from which the results are obtained. This, in turn, reflects the quality of housing, care, and nutrition provided the animal. Most diets designed for a particular species provide a reasonable balance of nutrients in quantities sufficient for normal growth and maintenance and reproduction of that species. Under usual conditions of animal feed manufacture, however, concentrations of essential ingredients may vary appreciably in different batches of a formulation made with different lots of natural ingredients, even though the guaranteed analysis shown on the label remains correct. A feed may also contain intentional or unintentional additives and other biologically active components. Variations in the concentrations of essential dietary components, as well as the presence of extraneous materials, can significantly influence the performance of an experimental animal consuming the diet and can thus lead to a biased interpretation of esperimental results. Investigators must consider factors which can result in efficient or inefficient utilization of energy, the variation in prepared diets whether from natural or purified products, and how these can modify the animal and change the response to a given experimental regimen. Proteins, fat, carbohydrates, vitamins, and minerals can all have pharmacological as well as physiological effects on a biological system. The control of vitamin D metabolism and calcium, parathormone, calcitonin among others are important factors subject to dietary modification. A conditioned marginal or frank deficiency of folic acid can result from oral contraceptives and administration of anticonvulsants; if studies are done in animals using these types of chemicals, dietary folate will be highly significant. Newer information about the role of ascorbic acid in activation of lipase and lipid mobilization is of direct concern to those using research animals requiring a source of dietary ascorbic acid. Trace elements, some amino acids, natural enzyme inducers, and toxic contaminants, all of which can affect the response of experimental animals, are highly important to the quality of animal research in pharmacologic investigations.

Amino Acids

The effect of water sodium on the chick requirement for dietary sodium.

Two strains of broiler chicks fed a basal wheat-soybean diet designed to be complete in all known nutrients failed to achieve optimal growth at 3 weeks of age. Increments of dietary sodium resulted in increased growth responses and improved feed efficiencies (P less than .05) which were not related to genotype. The sodium requirements for optimum weight gain was found to be greater than the NRC (1971) requirement when the water sodium level was 3 ppm. The addition of 50 ppm of sodium to the drinking water improved growth and feed efficiency (P less than .05) of birds fed the basal diet. When 100 ppm of sodium was added to the drinking water, a further increase in growth was obtained equivalent to that of birds receiving the basal diet to which increments of sodium were added up to .15%. Sodium in the drinking water was shown to be utilized more effectively than was sodium in the feed.

Animals