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Studies on digestion and absorption in the intestines of growing pigs. 3. Net movements of mineral nutrients in the digestive tract.

1. Pigs growing from 20 to 60 kg live weight were given diets based on barley, weatings and fish meal, or starch, sucrose and groundnut meal or starch, sucrose and casein. Seventeen pigs were fitted with single re-entrant cannulas in the duodenum (posterior to entry of bile and pancreatic ducts), jejunum or terminal ileum and twenty-four non-cannulated pigs were used in a conventional digestibility trial. 2. The amounts of calcium, phosphorus, magnesium, sodium and potassium passing through the re-entrant cannulas and amounts excreted in the faeces were measured. These values were used to calculate the direction and extent of net movements of the five elements through the walls of the four parts of the digestive tract anterior to the collection sites. 3. The small intestine was the principal site of Ca and P absorption but there were differences between the diets in the relative importance of the regions anterior and posterior to the mid-jejunum. 4. Secretion of small amounts of Mg occurred in the anterior small intestine; the ileum and large intestine were the principal sites of net absorption. 5. There was a large net secretion of Na anterior to the duodenal cannulas and further secretion into the anterior small intestine with each diet. There were marked differences between diets in the amounts secreted but the ileal Na concentration was the same in each instance. Absorption occurred in the ileum and large intestine. 6. Secretion of small amounts of K was evident anterior to the duodenal cannulas and net absorption occurred in both parts of the small intestine with each diet.

Animals

Nutrients, vitamins and minerals as therapy.

Nutrients as therapy for patients with cancer are important as adjunctive therapy, i.e., adequate nutrition may be important for the success of whatever form of therapy is administered. Diets deficient in certain amino acids have some selectivity when tested against experimental tumors propagated in vivo. Such diets have had limited clinical trial and have been characterized by poor patient acceptance. Enzymes that produce deficiencies of certain amino acids, e.g., asparaginase, glutaminase, methioninase appear to offer a more reasonable approach to development of selective amino acid deficiencies in man. Trace metals in excessive amounts may be toxic or carcinogenic to the host. Two heavy metal salts, Cis-diamine dichloroplatinum and gallium nitrate, have recently been shown to have anti-neoplastic effects in man. There is no conclusive evidence that vitamins, administered in large doses, have significant antineoplastic effects although large doses of vitamin A, vitamin C, and vitamin B12 have been used for this purpose. In contrast, certain vitamin analogs such as folate antimetabolites can cause tumor regression and are useful clinical treatment. An enzyme, carboxypeptidase G1, by splitting naturally occurring folates, may also have promise as a method of producing enzymic folate deficiency.

Amino Acids

Cell-type-specific response to silicon treatment in soybean leaves revealed by single-nucleus RNA sequencing and targeted gene editing.

Mineral nutrient uptake and deposition profoundly influence plant development, stress resilience, and productivity. Silicon (Si), though classified as a non-essential element, significantly influences a plant's physiology, particularly in fortifying defense responses and mitigating stress. While the genetic and molecular mechanisms of Si uptake and transport are well studied in monocots, particularly rice, their role in dicot species, such as soybean, remains unclear at the cellular and molecular levels. In this study, we utilized single-nucleus RNA sequencing (snRNA-seq) to dissect cellular responses to Si accumulation in soybean leaves. We identified distinct cellular populations, including a unique Si-induced or Si-associated cell cluster within vascular cells, suggesting a specialized mechanism of Si distribution. Si treatment notably induced the expression of defense-related genes, with a pronounced enrichment in vascular cells, underscoring their pivotal role in activating plant defense mechanisms. Moreover, Si modulated the expression of genes involved in phytoalexin biosynthesis, salicylic acid, and immune receptor signaling, suggesting transcriptional priming of genes involved in defense responses. Further investigation of Si transporters revealed precise expression of an Si efflux gene in epidermal cells in response to Si treatment. We also validated the role of efflux Si transporters using a Xenopus oocyte assay and CRISPR/Cas9 genome editing of composite soybean plant roots. This study provides critical insights into the biotic stress regulatory networks influenced by Si treatment in soybean leaves at the single-cell level, thus laying the foundation for enhancing stress tolerance through optimized mineral nutrient uptake.

Glycine max

Nutrient levels of some foods of Eskimos from Artic Bay, N. W.T., Canada.

Native food samples of caribou, seal, and arctic char were collected from resident Eskimos in Arctic Bay, N.W. T., and analyzed for nutrients. Caribou and seal meats were similar in protein and fat content in comparison with beef. Arctic char was above the average in protein and fat content for fish. Ascorbic acid was present in significant amounts only in baby seal liver. Thiamin, riboflavin, vitamin B12, folacin, and pantothenic acid content ranged from average to high for seal and carbiou meat, respectively, in comparison to published values for pork and beef. The vitamin B6 content of caribou meat was comparable to average values reported for pork and beef but was lower in seal meat. Baby seal liver contained similar levels of thiamin, riboflavin, vitamin B12, folacin, and pantothenic acid and less vitamin B6 than those reported for pork, beef, calf, and lamb liver. Arctic char was not appreciably different in these vitamins from other fish. The iron content of the Eskimo foods was higher than the meat group of the mixed Canadian diet. The macro mineral nutrients in these foods were comparable to those in beef and fish. The amino acid composition of caribou and seal meat was similar to beef, except that seal meat had a lower content of sulfur-containing amino acids and a much higher content of histidine. The sample of seal and arctic char were relatively high in concentrations of long-chain unsaturated fatty acids.

Amino Acids

Lead (Pb) accumulation and genotoxic responses in Ludwigia repens J.R. Forst.: a physiological and molecular approach.

In this study, the potential genotoxic effects and phytoremediation capacity of Ludwigia repens J.R. Forst. were evaluated under lead (Pb) stress in contaminated aquatic environments. To achieve this, clonal L. repens plants were used to investigate their ability to remove Pb from freshwater systems and the experimental setup was established in controlled aquarium conditions. The plants were exposed to 0, 10, 25, 50 and 100 micromolar (μM) concentrations of Pb(NO3)2 in a 0.2% Hoagland nutrient solution for a period of ten days. Experimental results showed that Pb accumulated in both stems and leaves of L. repens. Although Pb levels did not meet hyperaccumulator criteria, the bioaccumulation index (BAI), bioconcentration factor (BCF) and translocation factor (TF) values revealed that the plant was capable of accumulating noteworthy amounts of Pb. In parallel, band profile analysis revealed new band appearances only with the UBC 812 primer, while no band loss or new band formation was detected with the other primers (UBC 808, UBC 826, UBC 833 and UBC 834). Instead, only changes in band intensities were observed, indicating a low polymorphism rate and a high level of genomic template stability (GTS). The findings also indicate that L. repens exhibits notable tolerance to Pb stress, as supported by high BAI, BCF and TF values in the absence of visible phytotoxic symptoms. Additionally, the consistent and progressive decline in mineral nutrient levels across Pb treatments, together with the moderate decline in total chlorophyll content, further supports the existence of a coordinated physiological adjustment, potentially reflecting a tolerance mechanism aimed at maintaining ionic balance under heavy metal stress. Moreover, low polymorphism rates and high genomic template stability (GTS) values derived from molecular analyses suggest that this species may serve as a genetically stable and physiologically resilient aquatic plant. These combined traits highlight its potential to contribute effectively to phytoremediation applications, particularly when co-cultivated with established Pb hyperaccumulator species.

Lead

Utilization of dietary calcium by iron-deficient rats.

Iron deficiency causes cytological and enzymic changes in the gastrointestinal mucosa of animals and man that can be expected to impair the digestion and absorption of other nutrients. In experiment 1, healthy, weanling, female rats were grouped into pair-mates and pair-fed either an iron-deficient or an iron-supplemented diet for 19 weeks. In experiment 2, iron-deficient offspring reared by iron-deficient females were grouped into pair-mates and pair-fed either an iron-deficient or an iron-supplemented diet for 15 weeks. In experiment 1, apparent absorption of calcium was significantly depressed in week 9 (p less than 0.001) and slightly depressed in weeks 10 and 11. In experiment 2, the apparent absorption of calcium was significantly (p less than 0.001) depressed in weeks 6, 13, and 14. Absorption was not measured in other weeks in these experiments. The concentrations of calcium and magnesium were consistently higher in the fecal dry matter of the iron deficient rats in both experiments. It was concluded that any defects in digestion and absorption by the iron-deficient rats was confined primarily to the mineral nutrients because in both experiments apparent absorption of dry matter was consistently higher in these animals compared to their iron-supplemented pair-mates.

Animals

Sphingobium yanoikuyae 41R9 Enhances Nitrogen Uptake by Modulating Transporter Genes and Root Development in Rapeseed.

Plant growth-promoting rhizobacteria (PGPR) are widely recognized for enhancing the absorption of mineral nutrients by crops. While Sphingobium species have been reported as PGPRs, their capacity to improve nitrogen use efficiency (NUE) and the underlying regulatory mechanisms are not yet fully understood. Here, a strain 41R9, isolated from the rhizosphere of N-deficient rapeseed, was found to significantly enhance the growth performance of rapeseed under both low and normal N conditions. Genomic analysis revealed that strain 41R9 was closely related to Sphingobium yanoikuyae. 15N isotope tracer experiments confirmed that inoculation with strain 41R9 significantly boosted N uptake and translocation in rapeseed roots. Transcriptome profiling demonstrated that strain 41R9 directly upregulated N transporter genes (NRT2.5 and SLAH1/3), facilitating efficient N acquisition. Furthermore, strain 41R9 maintained jasmonic acid (JA) homoeostasis via JAZ-mediated negative feedback, balancing defense responses and root development, thereby improving the plant's N acquisition capacity in the roots. Metabolomic and in vitro assays further demonstrated that strain 41R9 displayed strong chemotaxis towards kaempferol, a N-deficiency-induced root exudate, suggesting kaempferol might as a chemical effector for S. yanoikuyae recruitment. These findings advance our understanding of PGPR-driven mechanisms in enhancing crop NUE and highlight the potential of harnessing PGPRs for sustainable agriculture.

Plant Roots

Effect of environmental parameters on the biodegradation of oil sludge.

A laboratory study was conducted with the aim of evaluating and optimizing the environmental parameters of "landfarming", i.e., the disposal by biodegradation in soil of oily sludges generated in the refining of crude oil and related operations. Oil sludge biodegradation was monitored by CO2 evolution and by periodic analysis of residual hydrocarbons. The parameters studied were soil moisture, pH, mineral nutrients, micronutrients, organic supplements, treatment rate, teratment frequency, and incubation temperature. Oil sludge biodegradation was optimal at a soil water-holding capacity of 30 to 90%, a pH of 7.5 to 7.8, C:N and C:P ratios of 60:1 and 800:1, respectively, and a temperature of 20 degrees C or above. Addition of micronutrients and organic supplements was not beneficial; sewage sludge interfered with hydrocarbon biodegradation. Breakdown of the saturated hydrocarbon (alkane and cycloalkane) fraction was the highest at low application rates, but higher application rates favored the biodegradation of the aromatic and asphaltic fractions. An application rate of 5% (wt/wt) oil sludge hydrocarbon to the soil (100,000 liters/hectare) achieved a good compromise between high biodegradation rates and efficient land use and resulted in the best overall biodegradation rate of all hydrocarbon classes. Frequent small applications resulted in higher biodegradation than single large applications. Two 100,000-liter/hectare (255 barrels per acre) or four 50,000-liter/hectare oil sludge hydrocarbon applications per growing season seem appropriate for most temperate zone disposal sites.

Bacteria

Electron microscopy of vesicular-arbuscular mycorrhizae of yellow poplar. II. Intracellular hyphae and vesicles.

Intracellular hyphae and vesicles in mycorrhizal roots of yellow poplar were examined by electron microscopy. An investing layer of host wall material and cytoplasm enclosed the endophyte within the cells. Young developing hyphae contained abundant cytoplasm and few vacuoles. As hyphae matured, they became highly vacuolated and accumulated carbohydrate (glycogen) and lipid reserves. Mature vesicles were engorged with lipid droplets, possessed a trilaminate wall and were also enclosed by host wall material and cytoplasm. Compared with uninfected cells, infected cortical cells showed an increase in cytoplasmic volume, enlarged nuclei, and a reduction of starch reserves. Host nuclei were always proximal to the hyphae during hyphal development and deterioration. While other cytoplasmic components of infected and uninfected cells were comparable large electron-dense bodies occurred in vacuoles of most cells containing hyphae. Deterioration of intracellular hyphae occurred throughout the samples examined. Septa separated functional and degenerating portions of the hyphae. Hyphal deterioration involved degeneration and ultimate disappearance of fungal cytoplasm as well as collapse of hyphal walls. Based on these observations, the authors hypothesize that deterioration of the endophyte may release significant quantities of mineral nutrients, via hyphal contents, which are absorbed by the host.

Cell Wall

Stimulation of iron absorption by polychlorinated aromatic hydrocarbons.

Oral and intraperitoneal treatment of rats with a single dose of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD), 33 microgram/kg, causes a 41--67% increase in iron adsorption in vivo. The major effect is on the transfer of iron from the mucosa into the bloodstream rather than on the uptake of iron from the lumen of the gut. These results are confirmed in studies with everted gut sacs. The effect is maximal at 1--2 days with a dose of 22-42 microgram/kg. Calcium transport is inhibited by TCDD treatment, whereas galactose and proline transport are unaffected. Treatment of rats with 1,1,1-trichloro-2,2-bis(p-chlorophenyl)ethane also stimulates iron transport. Concomitant with iron transport stimulation, aryl hydrocarbon hydroxylase activity in the intestine and liver is increased by TCDD treatment. These studies suggest that polychlorinated aromatic hydrocarbons, which are environmental health hazards, may effect the intestinal absorption of essential mineral nutrients.

Administration, Oral

Nutritional concepts in the management of the head and neck cancer patient. II. Management concepts.

Essential to the management of the head and neck cancer patient is carefully monitored nutritional support. Traditionally, enteral alimentation, using the nasogastric feeding tube, has been the mainstay of treatment. Tube feedings should provide ample amounts of essential nutrients, minerals, vitamins, and adequate calories and protein. Knowledge of the tube feedings available and problems associated with their administration helps to avoid the pitfalls which limit their effectiveness. The inadequacies of enteral alimentation preclude its use in selected circumstances of severe nutritional depletion. Parenteral hyperalimentation, as a primary or adjuvant mode of therapy, may be capable of rapidly reversing deficits, improving postoperative morbidity and increasing tolerance to radiation and chemotherapy. Postoperative deglutition abnormalities may prolong the nutritional problems of head and neck cancer patients as well.

Enteral Nutrition

Kinetic studies on citric acid production by Aspergillus niger. II. The two-stage process.

A two-stage process of submerged citric acid fermentation with replacement of growth medium by fermentation medium has been worked out. The optimum composition of mineral nutrients and pH of the fermentation medium of the second stage of the process were determined. An addition of 0.5 g/l of NH4NO3 as nitrogen source and 0.1 g/l of MgSO4-7H2O as magnesium source ensured effective conversion of sucrose to citric acid. An addition to KH2PO4, on the other hand, was definitely unfavourable as it considerably reduced the product yield. The medium for the second stage of fermentation should be acidified to about pH 2.2, while the water used for washing the mycelium from the remains of the growth medium should have a pH of 2.5--3.5. Under these conditions, with an initial sucrose concentration of 100 g/l, after 132 hr fermentation at 26 degrees up to 90 g/l of citric acid was obtained, which corresponds to a productivity of over 16 g/l. day. The highest activity for citric acid formation was found in three- or four-day-old mycelium.

Aspergillus

Nutrients, vitamins and minerals in cancer prevention: facts and fallacies.

In this paper, a summary is first presented of the important facts that have linked diet and dietary habits to human cancers, with the purpose of identifying the sources and extent of food fallacies that associate "nutrients, vitamins, and minerals" in cancer prevention. Then examples are presented of the many fallacies that persuade consumers to make dangerous, inappropriate and/or ineffective dietary choices. Minimizing food faddism and dietary quackery with its false claims about diet and cancer requires an important counterchallenge on the part of health professionals. There is a great need to determine the possible role of nutrients and dietary components in the development of neoplastic disease in human populations in order to develop rational and safe food and nutrition policies. Concurrently, nutrition education should receive increased research support in order to improve techniques and approaches for informing policy makers, the food industry and public accurately and objectively of the recent advances in the study of nutrition and cancer prevention and their practical and health significance.

Consumer Behavior

Total parenteral nutrition in pediatrics.

Parenteral nutrition (p.N.) is indicated whenever oral food intake is partly or completely disturbed. The objective of this type of treatments is to provide the organism with sufficient nutrients and maintain the structure and growth. The supply of an optimum mixture of water, protein, carbohydrates, fats, minerals, vitamins and trace elements is a prerequisite for this. In the following parts of this study the indications for p.N., the technique and requirements for different nutrients, minerals, trace elements and vitamins are presented. A type of amino acid mixture especially prepared for pediatric use is prevented and new results of t.p.N. are discussed. In the following parts of this study the indications for p.N., the technique and practice of the infusion programme, the clinical and laboratory investigation of t.p.N., the complications and their prophylaxis during the p.N. are discussed. The goal of better total parenteral nutrition is approached when dosage, infusion rate, contraindications and the guidelines discussed here are observed. We will, however, continue the work for a further improvement of intravenous nutrition.

Amino Acids