106 research outputs found
Relative toxicity of gossypol enantiomers in laying and broiler breeder hens
Gossypol, a natural component of cottonseed
meal, exists in positive (+) or negative (â) enantiomeric
forms, and their levels and ratio could be altered
by developing new genetic strains of cotton. Two experiments
were conducted to determine the relative toxicity of
the individual gossypol enantiomers in laying and broiler
breeder hens. In the first experiment, 25 individually
caged Hy-Line W-36 forty-three-week-old laying hens
were fed a standard corn-soy diet supplemented with
either no gossypol or the individual enantiomers at 200
and 400 mg/kg of diet for 20 d (5 hens/treatment). In
the second experiment, 15 individually caged Cobb 500
fast-feathering 44-wk-old broiler breeder hens were fed
a standard corn-soy-wheat middlings diet supplemented
with either no gossypol or the individual enantiomers at
400 mg/kg of diet for 18 d (5 hens/treatment). In both
experiments, feed intake, egg production, and egg weight
were determined daily. All eggs were individually
opened and scored for yolk discoloration. At the end of
both experiments, several organ and tissue samples were
collected for gossypol analyses. In both experiments, the
addition of (+)-gossypol to the diet reduced egg production.
Only laying and broiler breeder hens fed (+)-gossypol
produced eggs with severe yolk discoloration (score
â„ 4). Total feed intake was lower (P < 0.05) in laying hens
fed the 400 mg/kg level of (+)-gossypol compared with
laying hens fed the other dietary treatments. In contrast,
broiler breeder hens consumed less of the diet supplemented
with (â)-gossypol. In both experiments, tissue
accumulation of (+)-gossypol was higher than (â)-gossypol,
with the exception of bile and excreta. The results
suggest that in hens the ingestion of (+)-gossypol has a
greater effect on egg yolk discoloration than the consumption
of (â)-gossypol
Relative toxicity of gossypol enantiomers in broilers
Use of cottonseed meal in poultry diets has
been avoided in large part because of fear of gossypol
toxicity. Gossypol exists naturally as a mixture of 2 enantiomers
that exhibit different biological activities. Two experiments
were conducted to determine the relative toxicity
of gossypol enantiomers on broilers. In the first experiment,
3-d-old broilers were fed a standard diet containing
0, 100, 200, 300, or 400 mg of gossypol from gossypol
acetic acid per kilogram of diet from 3 to 42 d of age.
This form of gossypol contains both enantiomers in an
equimolar ratio. Each dietary treatment consisted of 6
replicate pens of 4 birds. In the second experiment, 3-dold
broilers were divided into 15 pens of 4 birds each
and fed a standard diet supplemented with either no
gossypol or one of the gossypol enantiomers at 200 or
400 mg/kg of diet from 3 to 21 d of age. In both experiments,
feed intake and BW gain were measured. In addi-
(Key words: cottonseed meal, gossypol, gossypol enantiomer, broiler)
2005 Poultry Science 84:1376â1382
INTRODUCTION
Cottonseed meal (CSM) could be an attractive alternative
protein source for poultry diets, but concern over
the presence of the potentially toxic agent, gossypol, has
limited its use. Gossypol [1,1âČ,6,6âČ,7,7âČ-hexahydroxy-5,5âČ-
diisopropyl-3, 3âČ-dimethyl-(2, 2âČ- binaphthalene)-8, 8âČ-dicarboxaldehyde]
is a polyphenolic compound located in
pigment glands that are distributed throughout the cotton
plant. Gossypol is composed of 2 naphthalene rings with
restricted rotation around the bond connecting the rings.
As a result of this restricted rotation, gossypol occurs
naturally as a mixture of 2 enantiomers [(+)- and (â)-
2005 Poultry Science Association, Inc.
Received for publication February 7, 2005.
Accepted for publication May 5, 2005.
1This research was supported in part by grant 2631RE683-118 from
the Georgia Cotton Commission, Perry, GA.
2Mention of trade names or commercial products in this article is
solely for the purpose of providing specific information and does not
imply recommendation or endorsement by the US Department of Agriculture.
3To whom correspondence should be addressed: [email protected].
1376
tion, several organ and tissue samples were collected at
21 d (experiments 1 and 2) and 42 d (experiment 1) of
age and analyzed for gossypol. In experiment 1, feed
consumption and BW gain were reduced (P < 0.05) at 21
and 42 d for the birds fed the highest level of gossypol.
The concentration of gossypol in the heart, kidney, and
plasma were equivalent at 21 and 42 d of age. In experiment
2, total feed consumption was reduced only in birds
consuming (â)-gossypol, but BW gains were lower for
birds fed either enantiomer. However, (â)-gossypol was
more detrimental to growth than (+)-gossypol. The liver
had the highest tissue concentration of both enantiomers,
and accumulation of (+)-gossypol was higher than (â)-
gossypol in all tissues examined. No racemization of the
enantiomers was apparent in the tissues analyzed. Our
results indicated that both gossypol enantiomers were
toxic to broilers but that (â)-gossypol was more harmful
to efficient broiler production than (+)-gossypol
Near infrared reflectance spectroscopy for the determination of free gossypol in cottonseed meal
Gossypol is a toxic polyphenolic compound produced by the pigment glands of the cotton
plant. The free gossypol content of cottonseed meal (CSM) is commonly determined by the
American Oil Chemistsâ Society (AOCS) wet chemistry method. The AOCS method, however,
laboratory-intensive, time-consuming, and therefore, not practical for quick field analyses.
To determine if the free gossypol content of CSM could be predicted by near infrared reflectance
spectroscopy (NIRS), CSM samples were collected from all over the world. All CSM samples
were ground and a portion of each analyzed for free gossypol by the AOCS procedure (reference
data) and by NIRS (reflectance data). Both reflectance and reference data were combined in
calibration. The coefficient of determination (r2) and standard error of prediction (SEP) were
used to assess the calibration accuracy. The r2 was 0.728, and the SEP was 0.034 for the
initial calibration that included samples from all over the world. However, the r2 and SEP
improved to 0.921 and 0.014, respectively, if the calibration was made using CSM samples
only from the United States. These results indicate that a general prediction equation can be
developed to predict the free gossypol content of CSM by NIRS. From a practical standpoint,
NIRS technology provides a method for quickly assessing whether a particular batch of CSM
has a free gossypol content low enough to be suitable for use in poultry diets.This research was supported in part by grant 05-635GA from the Georgian Cotton Commission, Perry, G
Fitting the integrated Spectral Energy Distributions of Galaxies
Fitting the spectral energy distributions (SEDs) of galaxies is an almost
universally used technique that has matured significantly in the last decade.
Model predictions and fitting procedures have improved significantly over this
time, attempting to keep up with the vastly increased volume and quality of
available data. We review here the field of SED fitting, describing the
modelling of ultraviolet to infrared galaxy SEDs, the creation of
multiwavelength data sets, and the methods used to fit model SEDs to observed
galaxy data sets. We touch upon the achievements and challenges in the major
ingredients of SED fitting, with a special emphasis on describing the interplay
between the quality of the available data, the quality of the available models,
and the best fitting technique to use in order to obtain a realistic
measurement as well as realistic uncertainties. We conclude that SED fitting
can be used effectively to derive a range of physical properties of galaxies,
such as redshift, stellar masses, star formation rates, dust masses, and
metallicities, with care taken not to over-interpret the available data. Yet
there still exist many issues such as estimating the age of the oldest stars in
a galaxy, finer details ofdust properties and dust-star geometry, and the
influences of poorly understood, luminous stellar types and phases. The
challenge for the coming years will be to improve both the models and the
observational data sets to resolve these uncertainties. The present review will
be made available on an interactive, moderated web page (sedfitting.org), where
the community can access and change the text. The intention is to expand the
text and keep it up to date over the coming years.Comment: 54 pages, 26 figures, Accepted for publication in Astrophysics &
Space Scienc
Genetic Sharing with Cardiovascular Disease Risk Factors and Diabetes Reveals Novel Bone Mineral Density Loci.
Bone Mineral Density (BMD) is a highly heritable trait, but genome-wide association studies have identified few genetic risk factors. Epidemiological studies suggest associations between BMD and several traits and diseases, but the nature of the suggestive comorbidity is still unknown. We used a novel genetic pleiotropy-informed conditional False Discovery Rate (FDR) method to identify single nucleotide polymorphisms (SNPs) associated with BMD by leveraging cardiovascular disease (CVD) associated disorders and metabolic traits. By conditioning on SNPs associated with the CVD-related phenotypes, type 1 diabetes, type 2 diabetes, systolic blood pressure, diastolic blood pressure, high density lipoprotein, low density lipoprotein, triglycerides and waist hip ratio, we identified 65 novel independent BMD loci (26 with femoral neck BMD and 47 with lumbar spine BMD) at conditional FDR < 0.01. Many of the loci were confirmed in genetic expression studies. Genes validated at the mRNA levels were characteristic for the osteoblast/osteocyte lineage, Wnt signaling pathway and bone metabolism. The results provide new insight into genetic mechanisms of variability in BMD, and a better understanding of the genetic underpinnings of clinical comorbidity
Search for dark matter produced in association with a hadronically decaying vector boson in pp collisions at sqrt (s) = 13 TeV with the ATLAS detector
A search is presented for dark matter produced in association with a hadronically decaying W or Z boson using 3.2 fbâ1 of pp collisions at View the MathML sources=13 TeV recorded by the ATLAS detector at the Large Hadron Collider. Events with a hadronic jet compatible with a W or Z boson and with large missing transverse momentum are analysed. The data are consistent with the Standard Model predictions and are interpreted in terms of both an effective field theory and a simplified model containing dark matter
- âŠ