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M Amills

Publications and source records attributed to M Amills.

At least 19 recordsLinked to original sources

Malic enzyme 1 genotype is associated with backfat thickness and meat quality traits in pigs.

Malic enzyme 1 (ME1) is a part of the tricarboxylate shuttle that provides NADPH and acetyl-CoA required in fatty acid biosynthesis. The pig ME1 locus maps on the proximal end of chromosome 1, where a quantitative trait loci (QTL) affecting fat deposition has been previously described. We amplified fragments of 1457 and 1459 bp that corresponded to the complete coding region and the 3'-untranslated region (UTR), respectively, of the pig ME1 gene. The sequences of these two fragments in pigs from three breeds (Landrace, Large White and Piétrain) contained five single nucleotide polymorphisms (SNP) in the 3'-UTR: C1706T, G1762T, A1807C, C1857A and T1880A. Three haplotypes were found in two generations of a selected Landrace population: H1 (C1706 G1762 A1807 C1857 A1880), H2 (C1706 G1762 A1807 C1857 T1880) and H3 (T1706 T1762 C1807 A1857 T1880). Using Bayesian association analyses, significant associations (highest posterior density at 95%) between ME1 genotype and backfat (BF) thickness at 171 days and muscular pH were found in a Landrace population.

Animals↗

Nucleotide sequence and polymorphism of the caprine major histocompatibility complex class II DQA1 (Cahi-DQA1) gene.

The major histocompatibility class II DQ molecules are dimeric glycoproteins involved in antigen presentation to CD4(+) T cells. In the current work, we have performed the molecular analysis of the goat Cahi-DQA1 gene. Sequencing of the Cahi-DQA1 cDNA revealed a single 768bp open reading frame. The alignment of this sequence with its bovine and ovine DQA1 counterparts revealed a remarkable degree of nucleotide identity (92-93% for the most similar bovine and ovine sequences). Moreover, we amplified a region including the 3'-end of intron 1, exon 2 and the 5'-end of intron 2. We identified seven Cahi-DQA1 alleles that likely correspond to four different allelic lineages. The alignment of these seven Cahi-DQA1 alleles revealed the existence of 23 amino acid polymorphic sites, seven of which (alpha(10), alpha(55), alpha(56), alpha(68), alpha(69), alpha(71) and alpha(76)) are highly polymorphic with at least three amino acid substitutions. Ten of the 23 polymorphic amino acid sites were included in the peptide binding region and consequently they might play a crucial role in immunological processes modulating disease pathogenesis.

Amino Acid Sequence↗

QTL mapping for teat number in an Iberian-by-Meishan pig intercross.

The aim of this study was to investigate chromosomal regions affecting the number of teats in pigs and possible epistatic interactions between the identified quantitative trait loci (QTL). An experimental F2 cross between Iberian and Chinese Meishan lines was used for this purpose. A genomic scan was conducted with 117 markers covering the 18 porcine autosomes. Linkage analyses were performed by interval mapping using an animal model to estimate QTL and additive polygenic effects. Complementary analyses with models fitting two QTL were also carried out. The results showed three genomewide significant QTL mapping on chromosomes 5, 10 and 12, whose joint action control up to 30% of the phenotypic variance of the trait. Meishan alleles had a positive additive effect on teat number, and a positive-additive x additive-epistatic interaction was detected between QTL on chromosomes 10 and 12.

Animals↗

Identification of carcass and meat quality quantitative trait loci in a Landrace pig population selected for growth and leanness.

The identification of QTL related to production traits that are relevant for the pig industry has been mostly performed by using divergent crosses. The main objective of the current study was to investigate whether these growth, fatness, and meat quality QTL, previously described in diverse experimental populations, were segregating in a Landrace commercial population selected for litter size, backfat thickness, and growth performance. We have found QTL for carcass weight (posterior P > 0.75), cutlet weight (posterior P > 0.99), weight of ham (posterior P > 0.75), shoulders weight (posterior probability > 0.99), and shear firm-ness (posterior P > 0.99) on pig Chromosome 2. Moreover, QTL with posterior P > 0.75 for fat thickness between the 3rd and 4th ribs (Chromosome 7), rib weights (Chromosome 8), backfat thickness (Chromosomes 8, 9, and 10), and b Minolta color component (Chromosome 7) were identified. These results indicate that commercial purebred populations retain a significant amount of genetic variation, even for traits that have been selected for many generations.

Adipose Tissue↗

Bayesian analysis of quantitative trait loci for boar taint in a Landrace outbred population.

The genetic basis of the main components of boar taint was investigated in intact male pigs in a commercial population. We analyzed fat androsten-one and skatole concentrations from 217 males of an outbred Landrace population. Records were normalized using a logarithm transformation and tested for normality using a Wilk-Shapiro test. Bayesian analysis was then used to map QTL in 10 candidate regions previously selected on chromosomes 1, 2, 3, 4, 6, 7, 8, 9, 10, and 13. The criterion for QTL detection was the Bayes factor (BF) between polygenic models with and without QTL effects. Both traits had considerable genetic determination, with posterior means of total heritabilities ranging from 0.59 to 0.73 for androstenone and from 0.74 to 0.89 for skatole. Positive evidence for a fat skatole QTL was detected on SSC6 (BF = 5.16); however, no QTL for androstenone were found in any of the 10 chromosomal regions analyzed. With the detection of a QTL for the fat skatole concentration segregating in this population, marker-assisted selection or even gene-assisted selection could be used once the causal mutation of the QTL was identified.

Adipose Tissue↗

Polymorphism of the pig 2,4-dienoyl CoA reductase 1 gene (DECR1) and its association with carcass and meat quality traits.

We characterized the nearly complete coding sequence of the pig 2,4-dienoyl CoA reductase 1 (DECR1) gene, which encodes an enzyme involved in the beta-oxidation of polyunsaturated fatty enoyl-CoA esters and maps on a linoleic QTL located on Chromosome 4. Sequencing of a 937-bp fragment encompassing exons 2 and 10 revealed the existence of two missense SNP at exon 2 (C181 --> G181) and exon 5 (C458 -->G458). These two SNP are associated with Val (C) --> Leu (G) and Ser (C) --> Thr (G) conservative AA replacements at positions 61 and 153 of the DECR1 protein, respectively. Moreover, DECR1 genotyping in a representative sample of 184 pigs from the Large White, Pietrain, Iberian, Duroc, and Landrace breeds demonstrated the existence of disequilibrium linkage between these two SNP (Haplotype 1: C181C458; Haplotype 2: G181G458). An association analysis between DECR1 genotype and growth, carcass, and meat quality traits in a highly selected Landrace population (n = 470) revealed differences among genotypes for isocitrate dehydrogenase activity (highest posterior density [HPD] of 90%), longissimus thoracis pH (HPD of 95%), lightness (HPD of 90 to 95%), and redness (HPD of 95%). Because these associations were not consistently found in the three available genotype comparisons, we believe that exon 2 and 5 polymorphisms at the DECR1 gene might be in linkage disequilibrium with the true causal mutation influencing isocitrate dehydrogenase activity and muscle color and pH.

Animals↗

Structural characterization of the caprine major histocompatibility complex class II DQB1 (Cahi-DQB1) gene.

The major histocompatibility class II genes have been extensively characterized in sheep and cattle, whereas in goats the only class II genes that have been completely sequenced are DRA and DRB. Herewith, we report the complete coding sequence of the goat DQB1 gene. This gene has a single open reading frame of 786bp, being organized in five exons and displaying 95-97% nucleotide identity with its bovine and ovine cDNA orthologous sequences. The structural features of the goat DQB1 molecule are well conserved with regard to its mammalian orthologues. Conserved glycosilation sites (beta19) and cysteine residues (beta15, beta79, beta117, beta173) forming disulfide bridges have been identified in the goat DQB1 molecule. The alignment of several Cahi-DQB1 exon 2 sequences has allowed to identify five different allelic variants Neighbor-joining phylogenetic analysis of caprine, ovine and bovine DQB sequences has allowed to ascertain that the five Cahi-DQB1 alleles we have found correspond to three different allelic lineages. We have identified fifteen polymorphic positions in the Cahi-DQB1 molecule, but only six of them are located in the peptide binding region. The high degree of conservation of these polymorphic sites located outside the peptide binding region in cattle and sheep suggests that they might play a functional role in antigen-presentation to CD4+ T cells.

Alleles↗

Low diversity in the major histocompatibility complex class II DRB1 gene of the Spanish ibex, Capra pyrenaica.

During the last two centuries, the Spanish ibex (Capra pyrenaica) has shown a significant demographic decline as a result of the progressive destruction of its natural habitat, disease epidemics, and uncontrolled hunting. Partial sequencing of the class II MHC DRB1 gene revealed that the Spanish ibex has remarkably low levels of genetic variation at this locus, with only six different DRB1 alleles and an observed heterozygosity of 0.429-0.579. The rates of nonsynonymous vs synonymous substitutions were significantly different in the peptide-binding region (dN/dS=5.347, P=0.002), a feature that indicates that the DRB1 gene is under positive selection. A phylogenetic analysis of the Spanish ibex and a set of domestic goat DRB1 alleles revealed that the reported sequences represent four major allelic lineages. The limited allelic repertoire of the DRB1 gene in the Spanish ibex is likely the direct result of the recent history of population bottlenecks and marked demographic decline of this species. A genetic survey of 13 microsatellite loci was consistent with this idea. The Spanish ibex subspecies C. p. hispanica and C. p. victoriae consistently showed considerably lower levels of microsatellite heterozygosity (Ho=0.184-0.231) and allelic diversity (mean number of alleles per locus=2-2.4) than those reported in other wild ruminants. This study demonstrates the significance of both natural selection and the demographic history of populations in determining patterns of genetic variation at MHC loci. In addition, our results emphasize the importance of locally adapted populations for the preservation of genetic diversity.

Amino Acid Sequence↗

Mapping of the porcine oestrogen receptor 2 gene and association study with litter size in Iberian pigs.

Genes encoding the oestrogen receptors (ESR) are considered candidate genes for prolificacy traits due to the key role these molecules play in the regulation of reproductive physiology. In this paper, we report the assignment of the pig ESR2 gene to porcine chromosome 1 by radiation hybrid mapping. Most of the ESR2 cDNA was sequenced from Iberian pig ovarian RNA samples and one A/G single nucleotide polymorphism (SNP) was found at exon 5, being associated with a Met/Val substitution at position 949. This SNP was genotyped using a PCR-RFLP (Hsp92II) protocol and its potential effect on litter size was evaluated in two Iberian pig populations. However, no statistically significant association between the ESR2 polymorphism and litter size was found.

Animals↗

Characterization of the bovine BCL2L1 gene and related pseudogenes.

We have amplified and characterized partial regions of exons 2 and 3 of the bovine BCL2L1 gene, one of the anti-apoptotic members of the B-cell lymphoma 2 gene family. Cloning and sequencing of the amplified products revealed the existence of several BCL2L1-related sequences, including the bovine BCL2L1 gene and various processed pseudogenes. The bovine BCL2L1 gene revealed two polymorphic nucleotide sequences that resulted in two protein variants, with amino acid replacements at positions 60 and 69. In addition, we report three bovine BCL2L1-related sequences (BCL2L1psi) that probably correspond to intronless processed pseudogenes. These BCL2L1psi pseudogene sequences have accumulated multiple substitutions, deletions and insertions that translated into stop codons or changed the open reading frame of the functional gene. We provide evidence suggesting that the retro-transposition event that originated these processed pseudogenes took place before the divergence of the Cervidae and Bovidae families.

Animals↗

Identification of three single nucleotide polymorphisms in the chicken insulin-like growth factor 1 and 2 genes and their associations with growth and feeding traits.

The chicken insulin-like growth factor (IGF)1 and IGF2 genes have been partially sequenced in six individuals of each of two chicken strains of the Black Penedesenca breed (PN and MN). These two strains are genetically diverse for growth traits. Sequence alignment revealed the existence of three single nucleotide polymorphisms (SNP) (IGF1-SNP1, IGF2-SNP2, and IGF2-SNP3). These three SNP and a fourth IGF1 polymorphism (IGF1-SNP4) were typed in 60 individuals from each strain by using PCR-RFLP or primer extension analysis. No significant associations among these four SNP, growth traits, and plasma IGF1 concentration were identified. In contrast, suggestive associations (P < or = 0.05) were found between IGF1-SNP1 and average daily gain at 107 d and feed efficiency at 44, 73, and 107 d. However, these associations were not simultaneously found in both strains suggesting that they might have been produced by linkage disequilibrium with another mutation located in the IGF1 locus or another linked gene. Since the PN and MN strains differ very markedly on their feed intake, the chicken leptin gene was included in the sequence analysis. Unfortunately, attempts to amplify several regions of this gene were unsuccessful. Even when primers complementary to highly conserved regions were used, the PCR consistently failed. Other authors have reported similar problems when trying to amplify avian leptin sequences.

Animals↗

The major histocompatibility complex of ruminants.

Studies of the major histocompatibility complex (MHC) of cattle over the past twenty years have revealed a reasonably detailed picture of the genetic organisation and function of the genes within this genetic system. Serological and biochemical analysis of lymphocyte cell surface antigens provided the first evidence for highly polymorphic MHC genes in cattle and other ruminant species. The MHC of cattle was thus named the bovine leucocyte antigen (BoLA) system. During the past 10 years, tools of molecular biology have been used to characterise the number of MHC genes, their sequence and fine structure in a number of ruminant species. Although individual MHC genes were found to have clear orthologues among ruminants and other mammalian species, the MHC of cattle, and probably that of sheep and goats, has a unique genetic organisation. Cattle have a class II gene cluster (class IIb region) which is physically distant from all the other MHC genes on the same chromosome. Moreover, genes involved in antigen processing, such as the proteosome subunit locus LMP2, are also found in the class IIb region, demonstrating that these genes need not be in close proximity to other MHC genes to function normally. The MHC class I and class II gene products of ruminants present processed peptides to T lymphocytes which mediate helper and cytotoxic functions. Identification of peptide binding motifs of cattle MHC class I molecules indicates that ruminant MHC molecules function in a similar manner to those of mice and humans. These functional studies provide a firm molecular basis for a number of well-documented associations with infectious diseases, although a detailed understanding of the immunogenetic mechanisms underlying these associations has yet to be elucidated.

Animals↗

Isolation of genomic DNA from milk samples by using Chelex resin.

A rapid procedure for isolating genomic DNA from milk samples has been devised, based on the use of Chelex resin. By using this protocol, genomic DNA was extracted from milk samples from 15 cows and 15 goats. The suitability of these DNA preparations as a template for performing the polymerase chain reaction (PCR) was tested by amplifying three different loci of the bovine genome: exon 4 of the kappa-casein gene and the INRA5 and INRA23 microsatellites, together with two others: exon 19 of the alpha s1-casein gene and exon 2 and part of intron 2 of the DRB gene of the caprine genome. No amplification products could be obtained from any sampless at 30 cycles. In contrast, at 45 cycles the number of amplified samples ranged from 86 to 100% and at 65 cycles all the DNA targets were amplified, indicating that the number of cycles was a critical factor to be optimized for obtaining the desired PCR target. These results suggest that this method may be a useful tool for analysing genetic polymorphism at the DNA level by PCR and relating it to milk composition and other traits of economic interest.

Animals↗

Canine Mhc DRB1 genotyping by PCR-RFLP analysis.

A polymerase chain reaction (PCR) genotyping procedure has been developed for the canine major histocompatibility complex DRB1 gene (Cafa-DRB1), which allows us to distinguish all the DRB1 alleles described to date and reveals the existence of new ones. The polymorphic second exon of the Cafa-DRB1 gene was amplified and the product analysed for restriction fragment length polymorphism (RFLP) with the enzymes RsaI, MboI, TaqI and AspHI. Nine RFLP combinations could be associated with previously known alleles. Two new RFLP combinations corresponded to new alleles and were confirmed by DNA sequencing (Cafa-DRB1*10 and Cafa-DRB1*11). Close associations between RFLPs in the DRB1 second exon and the presence of specific amino acid residues included in the side-chain pockets of the antigen-binding site of the DR molecule are also described.

Amino Acid Sequence↗

A PCR-RFLP typing method for the caprine Mhc class II DRB gene.

A polymerase chain reaction (PCR) technique associated with restriction fragment length polymorphism (RFLP) analysis has been developed for typing the second exon of the caprine Mhc class II DRB gene. By using a maximum of three restriction enzymes, corresponding to different combinations of RsaI, BsaI, AccI, NdeII, HaeIII and HpaII, this procedure allows to distinguish unequivocally 18 of the 22 caprine DRB alleles. Forty goats of several breeds were typed with this technique and two new RsaI restriction patterns which did not match with previously published sequence data were identified. Close associations have been found between RFLPs and amino acid substitutions at positions which are expected to be involved in the formation of the antigen-recognition site (ARS) of the DR molecule. These results suggest that PCR-RFLP may be a useful tool in typing the caprine DRB gene and in relating amino acid substitutions at the ARS of the DR molecule with disease resistance.

Alleles↗