Chronic Zinc Deficiency Alters Chick Gut Microbiota Composition and Function.

PubWeight™: 0.90‹?›

🔗 View Article (PMID 26633470)

Published in Nutrients on November 27, 2015

Authors

Spenser Reed1,2,3, Hadar Neuman4, Sharon Moscovich5, Raymond P Glahn6, Omry Koren7, Elad Tako8

Author Affiliations

1: USDA-ARS Robert Holley Center for Agriculture and Health, Ithaca, NY 14853, USA. smr2@cornell.edu.
2: Division of Nutritional Sciences, Cornell University, Ithaca, NY 14853, USA. smr2@cornell.edu.
3: College of Medicine, the University of Arizona, Tucson, AZ 85724, USA. smr2@cornell.edu.
4: Faculty of Medicine, Bar-Ilan University, 8 Henrietta Szold St, Safed 1311502, Israel. hadarneuman@gmail.com.
5: Faculty of Medicine, Bar-Ilan University, 8 Henrietta Szold St, Safed 1311502, Israel. sharonmosc@gmail.com.
6: USDA-ARS Robert Holley Center for Agriculture and Health, Ithaca, NY 14853, USA. rpg3@cornell.edu.
7: Faculty of Medicine, Bar-Ilan University, 8 Henrietta Szold St, Safed 1311502, Israel. Omry.Koren@biu.ac.il.
8: USDA-ARS Robert Holley Center for Agriculture and Health, Ithaca, NY 14853, USA. et79@cornell.edu.

Articles cited by this

A core gut microbiome in obese and lean twins. Nature (2008) 52.30

A human gut microbial gene catalogue established by metagenomic sequencing. Nature (2010) 43.63

Obesity alters gut microbial ecology. Proc Natl Acad Sci U S A (2005) 33.66

The human microbiome project. Nature (2007) 28.53

Host-bacterial mutualism in the human intestine. Science (2005) 26.39

Predictive functional profiling of microbial communities using 16S rRNA marker gene sequences. Nat Biotechnol (2013) 11.05

Reduced diversity of faecal microbiota in Crohn's disease revealed by a metagenomic approach. Gut (2005) 10.95

Community-based interventions for improving perinatal and neonatal health outcomes in developing countries: a review of the evidence. Pediatrics (2005) 8.32

Short-chain fatty acids and human colonic function: roles of resistant starch and nonstarch polysaccharides. Physiol Rev (2001) 7.19

International Zinc Nutrition Consultative Group (IZiNCG) technical document #1. Assessment of the risk of zinc deficiency in populations and options for its control. Food Nutr Bull (2004) 5.76

The galvanization of biology: a growing appreciation for the roles of zinc. Science (1996) 5.67

Bacterial competition: surviving and thriving in the microbial jungle. Nat Rev Microbiol (2010) 5.63

Reduction in diversity of the colonic mucosa associated bacterial microflora in patients with active inflammatory bowel disease. Gut (2004) 5.32

Analysis of the lung microbiome in the "healthy" smoker and in COPD. PLoS One (2011) 4.65

Prevention of diarrhea and pneumonia by zinc supplementation in children in developing countries: pooled analysis of randomized controlled trials. Zinc Investigators' Collaborative Group. J Pediatr (1999) 4.57

Metagenomic systems biology of the human gut microbiome reveals topological shifts associated with obesity and inflammatory bowel disease. Proc Natl Acad Sci U S A (2011) 4.53

Zinc and immune function: the biological basis of altered resistance to infection. Am J Clin Nutr (1998) 4.23

Persistent gut microbiota immaturity in malnourished Bangladeshi children. Nature (2014) 4.00

Short chain fatty acids in the human colon. Gut (1981) 3.49

Depletion of luminal iron alters the gut microbiota and prevents Crohn's disease-like ileitis. Gut (2010) 3.10

Toward defining the autoimmune microbiome for type 1 diabetes. ISME J (2010) 3.03

Zinc requirements and the risks and benefits of zinc supplementation. J Trace Elem Med Biol (2006) 2.68

Laboratory diagnosis of iron-deficiency anemia: an overview. J Gen Intern Med (1993) 2.59

Counting the zinc-proteins encoded in the human genome. J Proteome Res (2006) 2.38

Human zinc deficiency. J Nutr (2000) 2.32

16S rRNA-based analysis of microbiota from the cecum of broiler chickens. Appl Environ Microbiol (2002) 2.16

Eukaryotic zinc transporters and their regulation. Biometals (2002) 2.14

Zinc through the three domains of life. J Proteome Res (2006) 2.11

Contribution of selected vitamins and trace elements to immune function. Ann Nutr Metab (2007) 1.94

Studies on the bioavailability of zinc in humans: effects of heme and nonheme iron on the absorption of zinc. Am J Clin Nutr (1981) 1.87

Intestinal colonization resistance. Immunology (2013) 1.85

Indicators of zinc status at the population level: a review of the evidence. Br J Nutr (2008) 1.76

Estimating the global prevalence of zinc deficiency: results based on zinc availability in national food supplies and the prevalence of stunting. PLoS One (2012) 1.73

Iron deficiency and erythropoiesis: new diagnostic approaches. Clin Chem (2003) 1.73

Methods of assessment of zinc status in humans: a systematic review. Am J Clin Nutr (2009) 1.55

Low intracellular zinc induces oxidative DNA damage, disrupts p53, NFkappa B, and AP1 DNA binding, and affects DNA repair in a rat glioma cell line. Proc Natl Acad Sci U S A (2002) 1.54

Human gut microbiota changes reveal the progression of glucose intolerance. PLoS One (2013) 1.51

Retracted High bioavailability iron maize (Zea mays L.) developed through molecular breeding provides more absorbable iron in vitro (Caco-2 model) and in vivo (Gallus gallus). Nutr J (2013) 1.48

A Campylobacter jejuni znuA orthologue is essential for growth in low-zinc environments and chick colonization. J Bacteriol (2008) 1.37

Zinc and the immune system. Proc Nutr Soc (2000) 1.35

Role of volatile fatty acids in development of the cecal microflora in broiler chickens during growth. Appl Environ Microbiol (2000) 1.32

Zinc signals are essential for lipopolysaccharide-induced signal transduction in monocytes. J Immunol (2008) 1.31

Gut microbiota of healthy and malnourished children in bangladesh. Front Microbiol (2011) 1.26

The C-terminal zinc finger of the catalytic subunit of DNA polymerase delta is responsible for direct interaction with the B-subunit. Nucleic Acids Res (2004) 1.25

Structure and metal binding properties of ZnuA, a periplasmic zinc transporter from Escherichia coli. J Biol Inorg Chem (2007) 1.25

Factors affecting intestinal health in poultry. Poult Sci (2008) 1.23

Bacterial census of poultry intestinal microbiome. Poult Sci (2013) 1.19

Influence of dietary zinc oxide and copper sulfate on the gastrointestinal ecosystem in newly weaned piglets. Appl Environ Microbiol (2005) 1.19

Identification and characterization of potential performance-related gut microbiotas in broiler chickens across various feeding trials. Appl Environ Microbiol (2011) 1.19

Clostridium bacteraemia characterised by 16S ribosomal RNA gene sequencing. J Clin Pathol (2005) 1.18

The effects of dietary ferric iron and iron deprivation on the bacterial composition of the mouse intestine. Curr Microbiol (2001) 1.11

Zinc supplementation during pregnancy and effects on growth and morbidity in low birthweight infants: a randomised placebo controlled trial. Lancet (2001) 1.09

Zinc supplementation tightens "leaky gut" in Crohn's disease. Inflamm Bowel Dis (2001) 1.08

Bar-coded pyrosequencing of 16S rRNA gene amplicons reveals changes in ileal porcine bacterial communities due to high dietary zinc intake. Appl Environ Microbiol (2010) 1.07

Zinc competition among the intestinal microbiota. MBio (2012) 1.07

Effect of zinc in enteropathogenic Escherichia coli infection. Infect Immun (2007) 1.05

White beans provide more bioavailable iron than red beans: studies in poultry (Gallus gallus) and an in vitro digestion/Caco-2 model. Int J Vitam Nutr Res (2010) 1.05

High propionic acid fermentations and mineral accumulation in the cecum of rats adapted to different levels of inulin. J Nutr (1991) 1.04

Phylogenetic analysis of cecal microbiota in chicken by the use of 16S rDNA clone libraries. Microbiol Immunol (2002) 1.03

Biofortified red mottled beans (Phaseolus vulgaris L.) in a maize and bean diet provide more bioavailable iron than standard red mottled beans: studies in poultry (Gallus gallus) and an in vitro digestion/Caco-2 model. Nutr J (2011) 1.00

The significance of zinc for leukocyte biology. J Leukoc Biol (1998) 1.00

Reduced growth and skeletal changes in zinc-deficient growing rats are due to impaired growth plate activity and inanition. J Nutr (2001) 0.99

Increased dietary zinc oxide changes the bacterial core and enterobacterial composition in the ileum of piglets. J Anim Sci (2011) 0.97

Structural and functional changes in the gut microbiota associated to Clostridium difficile infection. Front Microbiol (2014) 0.97

Colonization resistance: battle of the bugs or Ménage à Trois with the host? PLoS Pathog (2013) 0.96

Assessment of marginal zinc status in humans. J Nutr (2000) 0.96

Using the domestic chicken (Gallus gallus) as an in vivo model for iron bioavailability. Poult Sci (2010) 0.95

Zinc deficiency, malnutrition and the gastrointestinal tract. J Nutr (2000) 0.92

Effects of zinc oxide and Enterococcus faecium SF68 dietary supplementation on the performance, intestinal microbiota and immune status of weaned piglets. Res Vet Sci (2005) 0.92

Marginal zinc deficiency exacerbates experimental colitis induced by dextran sulfate sodium in rats. J Nutr (2011) 0.92

Intestinal paracellular permeability during malnutrition in guinea pigs: effect of high dietary zinc. Gut (1996) 0.89

Dietary zinc deficiency affects blood linoleic acid: dihomo-γ-linolenic acid (LA:DGLA) ratio; a sensitive physiological marker of zinc status in vivo (Gallus gallus). Nutrients (2014) 0.88

Novel probiotic Enterococcus faecium IS-27526 supplementation increased total salivary sIgA level and bodyweight of pre-school children: a pilot study. Anaerobe (2011) 0.87

Effect of Lactobacillus fermentum and Enterococcus faecium strains on internal milieu, antioxidant status and body weight of broiler chickens. J Anim Physiol Anim Nutr (Berl) (2010) 0.87

The impact of high dietary zinc oxide on the development of the intestinal microbiota in weaned piglets. FEMS Microbiol Ecol (2013) 0.87

Effects of dietary zinc levels, phytic acid and resistant starch on zinc bioavailability in rats. Eur J Nutr (2004) 0.85

Impact of manganese, copper and zinc ions on the transcriptome of the nosocomial pathogen Enterococcus faecalis V583. PLoS One (2011) 0.84

Effect of microorganisms upon zinc metabolism using germfree and conventional rats. J Nutr (1972) 0.83

Dietary selenium affects host selenoproteome expression by influencing the gut microbiota. FASEB J (2011) 0.83

Dose-dependent effects of dietary zinc oxide on bacterial communities and metabolic profiles in the ileum of weaned pigs. J Anim Physiol Anim Nutr (Berl) (2011) 0.82

Contribution of the cecum and colon to zinc absorption in rats. J Nutr (2000) 0.82

Deliberations and evaluations of approaches, endpoints and paradigms for determining zinc dietary recommendations. J Nutr (1996) 0.82

Short-term zinc deficiency inhibits chondrocyte proliferation and induces cell apoptosis in the epiphyseal growth plate of young chickens. J Nutr (2002) 0.80

Pathology of lymphoid organs in chickens fed a diet deficient in zinc. Avian Pathol (2004) 0.79

Dietary inulin intake and age can affect intestinal absorption of zinc and copper in rats. J Nutr (2006) 0.78

Trace mineral interactions in broiler chicken diets. Br Poult Sci (2010) 0.77

Responses of broilers to dietary zinc concentrations and sources in relation to environmental implications. Br Poult Sci (2004) 0.77

The complete genome sequence of Clostridium indolis DSM 755(T.). Stand Genomic Sci (2014) 0.76

The relevance of the colon to zinc nutrition. Nutrients (2015) 0.76