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At least 307 records · Page 17Linked to original sources

Forward and reverse genetic analysis of microtubule motors in Chlamydomonas.

The ability to integrate biochemical, cell biological, and genetic approaches makes Chlamydomonas reinhardtii the premier model organism for studies of the eukaryotic flagellum and its associated molecular motors. Hundreds of motility mutations have been identified in Chlamydomonas, including many that affect dyneins and kinesins. These mutations have yielded much information on the structure and function of the motors as well as the roles of individual subunits within the motors. The development of insertional mutagenesis has opened the door to powerful new approaches for genetic analysis in Chlamydomonas. Insertional mutants are created by transforming cells with DNA-containing selectable markers. The DNA is randomly integrated throughout the genome and usually deletes part of the chromosome at the site of insertion, thereby creating mutations that are marked by the integrated DNA. These mutations can be used for forward genetic approaches where one characterizes a mutant phenotype and then clones the relevant gene using the integrated DNA as a tag. The insertional mutants also may be used in a reverse genetic approach in which mutants lacking a gene of interest are identified by DNA hybridization. We describe methods to generate and characterize insertional mutants, using mutations that affect the outer dynein arm as examples.

Animals↗

Genetic analysis for mastitis resistance and milk somatic cell score in French Lacaune dairy sheep.

Genetic analysis for mastitis resistance was studied from two data sets. Firstly, risk factors for different mastitis traits, i.e. culling due to clinical or chronic mastitis and subclinical mastitis predicted from somatic cell count (SCC), were explored using data from 957 first lactation Lacaune ewes of an experimental INRA flock composed of two divergent lines for milk yield. Secondly, genetic parameters for SCC were estimated from 5 272 first lactation Lacaune ewes recorded among 38 flocks, using an animal model. In the experimental flock, the frequency of culling due to clinical mastitis (5% ) was lower than that of subclinical mastitis (10% ) predicted from SCC. Predicted subclinical mastitis was unfavourably associated with the milk yield level. Such an antagonism was not detected for clinical mastitis, which could result, to some extent, from its low frequency or from the limited amount of data. In practice, however, selection for mastitis resistance could be limited in a first approach to selection against subclinical mastitis using SCC. The heritability estimate of SCC was 0.15 for the lactation mean trait and varied from 0.04 to 0.12 from the first to the fifth test-day. The genetic correlation between lactation SCC and milk yield was slightly positive (0.15) but showed a strong evolution during lactation, i.e. from favourable (-0.48) to antagonistic (0.27). On a lactation basis, our results suggest that selection for mastitis resistance based on SCC is feasible. Patterns for genetic parameters within first lactation, however, require further confirmation and investigation.

Animals↗

Genetic analysis of the affective disorders: summary of GAW5.

Participants in the Affective Disorders component of Genetic Analysis Workshop 5 had access to five distributed data sets: 1) 187 families from the Collaborative Depression Study, 2) 202 families ascertained as part of the NIMH Family Studies on Affective Disorders, 3) a compilation of 46 pedigrees informative for X-linked markers, 4) HLA typing on 116 kindreds from the Toronto-Rochester Depression Study, and 5) 81 members of an Old Order Amish pedigree demonstrating linkage to markers on chromosome 11p. These databases are each summarized after a brief account is given of the genetics of the affective disorders and commonly used diagnoses. The emphasis of the Workshop was methodologic, with contributions divided evenly between linkage and nonlinkage applications. Contributions are summarized under four substantive areas: regressive logistic models, segregation and other familial analyses, methodologic considerations in linkage analysis, and the relationship between HLA and affective disorders.

Affective Disorders, Psychotic↗

[Kinetic developmental genetics analysis of Hibiscus cannabinus plant height and stem diameter].

By using quantitative traits additive-dominance genetics model and developmental genetics model, this paper analyzed the developmental behaviors of gene expression for Hibiscus cannabinu plant height and stem diameter at its different growth stages. The results showed that at different growth stages, the unconditional and conditional genetics effects of plant height all showed dominance, while the additive effect was weak. No additive effect was found for stem diameter, but dominance effect was significant at each growth stage. Plant height and stem diameter all had active gene expression from July 28 to August 9, and from September 2 to September 14. There was no additive correlation between plant height and stem diameter, but positive dominance correlation was significant after August 21. The unconditional and conditional genetics effects of plant height and stem diameter were not completely the same. According to practice, conditional genetic analysis could indicate the gene expression more truly in the whole growth period. The ecological and genetics variation patterns of Hibiscus cannabinus plant height and stem diameter at different space-time growth stages implied by our research was of significance in Hibiscus cannabinus genetics and breeding in both theory and practice.

Genes, Plant↗

Exploring genetic analysis of complex traits through the paradigm of alcohol dependence: summary of GAW11 contributions.

We discuss the Genetic Analysis Workshop 11 analyses of data from the Collaborative Study on the Genetics of Alcoholism from a methodological perspective, concentrating on approaches and issues relevant to linkage and association studies of complex human phenotypes. Genome screening by parametric linkage, nonparametric linkage, association, and combined linkage/association methods are discussed. Issues particular to complex disease include etiologic heterogeneity, multivariate phenotype modeling, and parent-of-origin effects. Other methodological topics discussed are new and enhanced methods, ascertainment, weighting of nonindependent sib pairs, and data cleaning and validation.

Alcoholism↗

[A clinical and molecular genetic analysis of the fragile X syndrome].

Results of phenotypical, patho-psychological and molecular-genetic analysis of the 53 probands with clinical features of the fragile X syndrome and 10 female carriers are presented. The clinical heterogeneity, diagnostic criteria, methods of genetic risk estimation, perspectives of prevention of this disease are discussed.

Adolescent↗

Genetic Analysis Workshop II: results of segregation analyses using POINTER and linkage analyses using LIPED.

Genetic Analysis Workshop II Problems 2 and 3 were analyzed using the segregation analysis program, POINTER and the linkage analysis program LIPED. Results of the segregation analyses were acceptable with respect to both parameter estimation and hypothesis testing. Results of the linkage analyses were also good. Although it was noted that the linkage and population association data were sometimes compatible with more than one hypothesis, the correct relationships among the trait and marker loci were generally among those found compatible with the data.

Alleles↗

Molecular genetic analysis of the mechanism of tumorigenesis in acoustic neuroma.

OBJECTIVE: Acoustic neuroma, both familial and sporadic, is clinically and biologically a heterogeneous condition with a wide variation in age of presentation, length of history, and tumor growth rate. In an attempt to correlate this clinical diversity with the underlying molecular pathology, we have analyzed 43 paired blood-tumor DNA samples from patients with acoustic neuromas. DESIGN: Molecular genetic analysis. SETTING: Molecular genetic research laboratory. PATIENTS: Paired blood-tumor DNA samples were obtained from 43 patients (41 sporadic and two patients with neurofibromatosis type 2). MAIN OUTCOME MEASURES: Loss of constitutional heterozygosity was looked for in the region of tumor suppressor genes on chromosomes 3p, 5q, 11p, 17p, 17q, and 22. RESULTS: We found loss of heterozygosity exclusively for markers on chromosome 22. Thirty-nine percent of tumors showed allele loss, and in each case the loss of heterozygosity included the region of the neurofibromatosis type 2 (NF2) gene. No loss of heterozygosity was detected in the region of known or putative suppressor genes in chromosomes 3p, 5q, 11p, 17p, and 17q. CONCLUSIONS: This study has demonstrated that (1) chromosome 22 allele loss is a frequent event in sporadic acoustic neuroma; (2) the minimal region of loss of heterozygosity in acoustic neuroma includes the NF2 gene; (3) the known tumor suppressor genes investigated (VHL, adenomatous polyposis coli, WT2, p53, and NF1) do not appear to be important in the pathogenesis of acoustic neuroma; and (4) patients with extensive chromosome 22 loss tended to be younger and with a slightly shorter clinical history than those with no detectable allele loss.

Adult↗

The inherited basis of diabetes mellitus: implications for the genetic analysis of complex traits.

Diabetes encompasses a heterogeneous group of diseases, each with a substantial genetic component. We review the division of diabetes into different subtypes based on clinical phenotype, the fruitful pursuit of genes underlying monogenic forms of the disease, the successes and drawbacks of whole-genome linkage scans in type 1 and type 2 diabetes, and the recent identification of several diabetes genes by large association studies. We use the lessons learned from this extensive body of evidence to illustrate general implications for the genetic analysis of complex traits.

Diabetes Mellitus, Type 1↗

Genetic analysis of a large-cell, radiation-resistant strain of Escherichia coli.

A genetic analysis of Escherichia coli P6, a large-cell, radiation-resistant strain of E. coli, established that it originated as the result of a mutational event. The gene responsible for the complex P6 phenotype was located at 61 +/- 0.5 min on the E. coli linkage map. The close resemblance of conjugal and transductional recombinants to one or the other parent without indication of an intermediate class suggests that only a single gene may be involved.

Bacterial Proteins↗

Genetic analysis of the fragile-X mental retardation syndrome with two flanking polymorphic DNA markers.

The fragile-X mental retardation syndrome, one of the most prevalent chromosome X-linked diseases (approximately equal to 1 of 2000 newborn males), is characterized by the presence in affected males and in a portion of carrier females of a fragile site at chromosomes band Xq27. We have performed a linkage analysis in 16 families between the locus for the fragile-X syndrome, FRAXQ27, and two polymorphic DNA markers that correspond to the anonymous probe St14 and to the coagulation factor IX gene F9. Our results indicate that the order of loci is centromere-F9-FRAXQ27-St14-Xqter. The estimate of the recombination fraction for the linkage F9-FRAXQ27 is 0.12 (90% confidence limits: 0.044-0.225) and 0.10 for FRAXQ27-St14 (90% confidence limits: 0.040-0.185). Recombination between St14 and F9 does not appear to be significantly different in normal and fragile-X families. The two flanking probes were used for diagnosis of the carrier state and for detection of transmission of the disease through phenotypically normal males. They should also allow first-trimester diagnosis with a reliability of about 98% in 40% of the families. Used in conjunction with the cytogenetic analysis, the segregation studies with both probes should improve the genetic counseling for the fragile-X syndrome and should be useful for the formal genetic analysis of this unique disease.

DNA↗

Population genetic analysis of Bartonella bacilliformis isolates from areas of peru where Carrion's disease is endemic and epidemic.

Carrion's disease is caused by infection with the alpha-proteobacterium Bartonella bacilliformis. Distribution of the disease is considered coincident with the distribution of its known vector, the sand fly Lutzomyia verrucarum. Recent epidemics of B. bacilliformis infections associated with atypical symptomatology in nonendemic regions have raised questions regarding the historic and present distribution of this bacterium and the scope of disease that infection causes. Phylogenetic relationships and genomic diversity of 18 B. bacilliformis isolates (10 isolates from a region where Carrion's disease is epidemic, Cuzco, Peru, and 8 isolates from a region where Carrion's disease is endemic, Caraz, Peru) were assessed using genomic data generated by infrequent restriction site PCR and gene sequence analysis of the flagellin gltA and ialB genes. A population genetic analysis of the genomic diversity suggests that what was once considered an epidemic region of Peru did not result from the recent introduction of B. bacilliformis.

Bartonella Infections↗

A genetic analysis system of Burkholderia cepacia: construction of mobilizable transposons and a cloning vector.

A genetic analysis system of Burkholderia cepacia (Bc) was developed which included transposon mutagenesis and complementation of mutation with the cloned genes of interest. To deliver the transposon in this multidrug-resistant microorganism, two plasmids, pKN30 and pKN31, were constructed which contained Tn5 derivatives, Tn5-30Tp and Tn5-31Tp, respectively, carrying KmR and TpR genes. The plasmids have the origin of ColE1 replication and the mobilization gene of RP4. Tn5-31Tp was mobilized to Bc KF1, a strain isolated from a pneumonia patient, by the transfer system of RP4 integrated in the chromosome of Escherichia coli (Ec). Selection with trimethoprim resulted in generation of a number of transposants of Bc KF1. Fourteen protease-deficient mutants were isolated, all of which contained a single transposon marker in the chromosome. Thirteen protease-deficient mutants were also lipase deficient. An Ec-Bc shuttle plasmid, pTS1209, was constructed that consists of oriColE1, oripSa, ApR and CmR genes, and several unique restriction sites for cloning. Plasmid pTS1209 was successfully employed for cloning genes of Bc involved in protease production.

Burkholderia cepacia↗

Genetic analysis of anthropometric measures in 11-year-old twins: the Medical College of Virginia Twin Study.

We have conducted a cross-sectional analysis of the genetic and environmental contributions to the variance of anthropometric measurements in children during early adolescence. Univariate path analysis was used to estimate the relative contributions of genes, individual environment, and family environment to measures of childhood obesity in 259 11-y-old Caucasian twin pairs. Triceps, subcapular, and suprailiac skinfold thicknesses, as well as waist circumferences, ht, and wt were measured in a standardized protocol. In this sample, a parsimonious model that included only additive genetic effects and environmental factors unique to the individual provided an adequate explanation for the variation in ht, wt, quetelet index, and subscapular and triceps skinfolds. In this largely preadolescent population, different magnitudes of genetic effects were seen in males and females for waist circumference, biiliac diameter, and suprailiac skinfold.

Anthropometry↗

DNA 2000: International Symposium on the State-of-the-Art in Genetic Analysis, June 1-3, 2000, Boston, U.S.A.

DNA 2000, an international symposium on state-of-the-art genetic analysis, was held at the Back Bay Hilton in Boston, Massachusetts, on 1-3 June, 2000. Meeting highlights are described. The meeting was organized and sponsored by the California Separation Science Society (CaSSS; www.casss.org) and other co-sponsors including the Human Genome Organisation (HUGO). DNA 2000 brought together a group of specialists in DNA detection and analysis methods from around the world in a venue presenting not only new technologies but also their applications in candidate gene studies, molecular diagnosis, analysis of complex diseases, and even studying the origin and evolution of humans.

DNA↗

Genetic analysis of the dumpy complex locus in Drosophila melanogaster: complementation, fine structure and function.

An extensive genetic analysis of the dumpy locus is presented. This study includes complementation, fine structure mapping and allelic interaction. A number of complementing recessive lethals of the dp complex have been genetically mapped. Two alleles of the ol(v) type that complement l alleles map to the left portion of the locus. A number of olv alleles that complement both l and lv lethals map within the right portion of the locus.--Fine-structure analysis demonstrated that both olv and o alleles are distributed among various subloci. Evidence for spacer regions between subloci is presented.--An extensive discussion of the data considers whether the locus is unicistronic or multicistronic. The conclusion reached is that the locus is not a single functional cistron. The possibility of a single cistron encoding a multifunctional polypeptide is discussed.--The hypothesis is proposed that the left portion of the map and the l mutations function as regulatory sequences and that the right portion of the map encodes structural sequences.

Alleles↗

Genetic analysis of mutations in seven Japanese families with type I antithrombin deficiency.

We have performed genetic analysis on seven Japanese families with type I antithrombin (AT) deficiency by the polymerase chain reaction (PCR)/direct DNA sequencing method. Five distinct mutations including two novel ones were identified in six of seven families. All subjects investigated were heterozygous for the mutations. In one family, however, no genetic abnormality was found within the analyzed DNA sequences. The identified mutations were as follows: (1) a T-to-C substitution at nucleotide position 2747, which predicts an amino acid replacement of Cys (TGT) 95 by Arg, was found in two families; (2) a 4-bp deletion (-TTTC) at nucleotide position 2647-2650, which causes frameshift and a premature stop codon at codon 80; (3) a 3-bp deletion (-CTT) within nucleotide position 5356-64, which causes deletion of a Phe at amino acid numbers 121-123; (4) a C-to-T substitution at nucleotide 5381, which induces a replacement of Arg (CGA)129 by a stop codon (TGA); (5) a C-to-T substitution at nucleotide number 2745, which causes an amino acid replacement of Ala (GCC) 94 by Val (GTC). Our results confirm that the genetic background and molecular pathogenesis of type I AT deficiency is highly heterogeneous.

Adult↗

[A multivariate genetic analysis of the data from a complex study of the predisposition to schizophrenia].

49 families of schizophrenics (49 probands and their 106 first-degree relatives) were studied by means of psychological methods, EEG and computed tomography. Multivariate genetic analysis were performed to assess genetic and environmental components of parameter phenotypic variance and relations between the parameters and liability to schizophrenia, including formation of discriminant functions for classification of individuals into high risk and normal groups and estimation of the functions heritability. Besides, correlations between parameters of neuromorphological, neurophysiological and psychological levels were calculated. The heritability of most EEG and CT parameters were between 41 and 98%. Among psychological variables only mediated and logic memory seem to be under sufficient genetic control (relatively 62 and 42%). Discriminant functions derived from psychological and EEG parameters, allow to differentiate correctly individuals into high risk and normal groups in 76-88% cases. Results of correlational analysis of psychological and biological variables suggest that there are both system and separate genetically determined abnormalities related to different levels of pathogenesis.

Adult↗