Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Intergenerational Transfers”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 289 records · Page 16Linked to original sources

The complete nucleotide sequence of phi CTX, a cytotoxin-converting phage of Pseudomonas aeruginosa: implications for phage evolution and horizontal gene transfer via bacteriophages.

phi CTX is a cytotoxin-converting phage isolated from Pseudomonas aeruginosa. In this study, we determined the complete nucleotide sequence of the phi CTX phage genome. The precise genome size was 35,538 bp with 21 base 5'-extruding cohesive ends. Forty-seven open reading frames (ORFs) were identified on the phi CTX genome, including two previously identified genes, ctx and int. Among them, 15 gene products were identified in the phage particle by protein microsequencing. The most striking feature of the phi CTX genome was an extensive homology with the coliphage P2 and P2-related phages; more than half of the ORFs (25 ORFs) had marked homology to P2 genes with 28.9-65.8% identity. The gene arrangement on the genome was also highly conserved for the two phages, although the G + C content and codon usage of most phi CTX genes were similar to those of the host P. aeruginosa chromosome. In addition, phi CTX was found to share several common features with P2, including the morphology, non-inducibility, use of lipopolysaccharide core oligosaccharide as receptor and Ca(2+)-dependent receptor binding. These findings indicate that phi CTX is a P2-like phage well adapted to P. aeruginosa, and provide clear evidence of the intergeneric spread and evolution of bacteriophages. Furthermore, comparative analysis of genome structures of phi CTX, P2 and other P2 relatives revealed the presence of several hot-spots where foreign DNAs, including the cytotoxin gene, were inserted. They appear to be deeply concerned in the acquisition of various genes that are horizontally transferred by bacteriophage infection.

Amino Acid Sequence↗

[Use of a plasmid with integrative function of phage phiC31 for transfer of cloned genes into Streptomyces strains].

Opportunities for application of integrative vectors carrying the attP site and the int gene of the temperate actinophage phi C31 for cloning genes in Streptomyces strains were demonstrated. The behavior of the integrative vectors pZAT22 and pTO1 in the model strain S. lividans TK64 and in the bialaphos-producing strain S. hygroscopicus, respectively, was characterized. Restriction maps of the S. lividans and S. hygroscopicus chromosomal regions containing attB sites were constructed. The bar gene of resistance to bialaphos was incorporated into the chromosome of the model strain S. lividans via the integrative pZAT22 vector, the level of expression of this gene within the chromosome of a heterologous host was determined. The possibility of amplification of the bar gene in the chromosome of the strain S. lividans was shown. The conjugative integrative vector pTO1, which carried the cloned bar gene, was introduced into the bialaphos-producing strain by intergeneric matings of Escherichia coli and S. hygroscopicus. The effect of an additional copy of the gene in the chromosome of S. hygroscopicus on strain resistance and productivity was studied.

Bacteriophages↗

[Intergeneric bacterial conjugation in crosses of Vibrio cholerae biotype proteus X Serratia marcescens].

Intergeneric conjugants were obtained in crosses of bacteria Vibrio cholerae biotype proteus (donor) x Serratia marcescens. The study of exconjugants demonstrates the following characteristics: 1. The majority of clones isolated possess some morphological characters of the donor (colourlessness and transparency of colonies) which gradually disappear during successive transfers and return to the phenotype of recipients (red colour of colonies); 2. Exconjugants acquire a plasmid factor of the fertility of vibrios (P-factor) and may transmit it to other cells; 3. The majority of exconjugants are agglutinated by immune sera of both donor and recipient; 4. The factor of streptomycine resistance is transmitted from the donor to a recipient. Conjugants acquire streptomycine resistance from the donor and laevomycetine (chloramphenicol) resistance from the recipient and can grow on a nutrient medium containing both antibiotics; 5. The conjugants isolated show a great diversity in a number of characters and, supposedly, form a genetically heterogenous group. A great part of exconjugants is characterized by a slow growth, some of them being not viable and unable to survive during transfers. In connection with instability of conjugants, we suppose that the exongenome is not incorporated into the chromosome of the recipient; more likely, it exists in a form of self-replicating duplex, or is connected with a plasmid genome.

Chloramphenicol↗

Financial assistance from middle-aged couples to parents and children: racial-ethnic differences.

OBJECTIVES: To examine racial-ethnic differences in the allocation of financial transfers to parents, children, and others by middle-aged couples. METHODS: Multinomial specification of alternative recipients of financial transfers, using data from the 1992 Health and Retirement Survey. RESULTS: Transfer patterns are sensitive to parental health and wealth, to children being young or in school, as well as to the donors' health and wealth. Controlling for these and other factors, including family size and structure, Blacks and Whites are the most likely, and Hispanics the least likely, to financially help their parents compared to assisting offspring. Black couples are the most likely to sacrifice their own consumption to assist parents financially. DISCUSSION: Future research on transfers should attempt to capture unmeasured noneconomic sources of variation proxied by the race-ethnicity indicator.

Aged↗

Genetic analysis of a tetracycline resistance element from Clostridium difficile and its conjugal transfer to and from Bacillus subtilis.

A tetracycline resistance (Tcr) determinant from Clostridium difficile strain 630 was cloned into the Escherichia coli plasmid vector pUC13. The resulting plasmid pPPM20, containing an insert of 3.4 kbp, was mapped and a 1.1 kbp SacI-HindIII fragment wholly within the Tcr gene was identified. Dot-blot hybridization studies with the 1.1 kbp fragment showed that the Tcr gene belonged to hybridization class M. Tcr could be transferred between C. difficile strains and to Bacillus subtilis at a frequency of 10(-7) per donor cell. The element could be returned from B. subtilis to C. difficile at a frequency of 10(-8) per donor cell. This is the first demonstration of C. difficile acting as a recipient in intergeneric crosses. DNA from C. difficile transconjugants digested with EcoRV always has two hybridizing fragments of 9.5 and 11.0 kbp when probed with pPPM20. DNA from B. subtilis transconjugants digested with EcoRV produced one hybridizing band of variable size when probed with pPPM20. The behaviour of the element was reminiscent of the conjugative transposons. Therefore we compared the element to the conjugative transposon Tn916. The HincII restriction maps of the two elements differed and no hybridization was detected to oligonucleotides directed to the ends of Tn916. However, the elements do have some sequence homology, detected by hybridization analysis.

Bacillus subtilis↗

Asymmetric somatic hybridization between wheat (Triticum aestivum L.) and Agropyron elongatum (Host) Nevishi.

Suspension-derived protoplasts of Agropyron elongatum irradiated by ultra-violet light (UV) were fused with the suspension-derived protoplasts of Triticum astivum using PEG. Fertile intergeneric somatic hybrid plants were produced and various hybrid lines have been selected and propagated in successive generations. Their hybrid nature was confirmed by analysis of profiles of isozymes, RAPDs, and 5S rDNA spacer sequences, and via GISH analysis. By the procedure described, the phenotype and chromosome number of wheat could be maintained besides transfer of a few chromosomes and chromosomal fragments from the donor A. elongatum. The results above indicated that highly asymmetric fertile hybrid plants and hybrid progenies of wheat were produced via somatic hybridization.

Agropyron↗

Evolution of the gyrB gene and the molecular phylogeny of Enterobacteriaceae: a model molecule for molecular systematic studies.

Phylogenetic trees showing the evolutionary relatedness of Enterobacteriaceae based upon gyrB and 16S rRNA genes were compared. Congruence among trees of these molecules indicates that the genomes of these species are not completely mosaic and that molecular systematic studies can be carried out. Phylogenetic trees based on gyrB sequences appeared to be more reliable at determining relationships among Serratia species than trees based on 16S rRNA gene sequences. gyrB sequences from Serratia species formed a monophyletic group validated by significant bootstrap values. Serratia fonticola had the most deeply branching gyrB sequence in the Serratia monophyletic group, which was consistent with its atypical phenotypic characteristics. Klebsiella and Enterobacter genera seemed to be polyphyletic, but the branching patterns of gyrB and 16S rRNA gene trees were not congruent. Enterobacter aerogenes was grouped with Klebsiella pneumoniae on the gyrB phylogenetic tree, which supports that this species could be transferred to the Klebsiella genus. Unfortunately, 16S rRNA and gyrB phylogenetic trees gave conflicting evolutionary relationships for Citrobacter freundii because of its unusual gyrB evolutionary process. gyrB lateral gene transfer was suspected for Hafnia alvei. Saturation of gyrB genes was observed by the pairwise comparison of Proteus spp., Providencia alcalifaciens and Morganella morganii sequences. Depending on their level of variability, 16S rRNA gene sequences were useful for describing phylogenetic relationships between distantly related Enterobacteriaceae, whereas gyrB sequence comparison was useful for inferring intra- and some intergeneric relationships.

DNA Gyrase↗

Intergenerational and international discounting.

A discount rate for the consumption of future generations is typically composed of two parts. One is a "pure" time preference for immediate over postponed consumption, the other a declining marginal utility as consumption increases. The costs of greenhouse abatement, however, for at least the first 50 years, will be borne by the developed countries; the benefits will accrue to the presently undeveloped. Pure time preference always relates to one's own consumption; it has no relevance here. Consumption transfers over time will be from richer to poorer, from lower to higher marginal utility. It is a foreign aid program and it ought to have to compete with more direct foreign aid, which can benefit the very poor rather than their much-better-off descendants.

Journal Article↗

Intergeneric conjugation in holomycin-producing marine Streptomyces sp. strain M095.

Marine Streptomyces are potential candidates for novel natural products and industrial catalysts. In order to set up biosynthesis approach for a holomycin-producing strain M095 isolated from Jiaozhou Bay, China, a genetic transformation system was established using intergeneric conjugation. The plasmid pIJ8600 consists of an origin of replication for Escherichia coli, a phage integrase directing efficient site-specific integration in bacterial chromosome, thiostrepton-induced promoter and an attP sequence. Using E. coli ET12567 (pUZ8002) carrying pIJ8600 as a conjugal donor, while it was mated with strain M095, pIJ8600 was mobilized to the recipient and the transferred DNA was also integrated into the recipient chromosome. The frequency of exconjugants was 1.9+/-0.13x10(-4) per recipient cell. Analysis of eight exconjugants showed pIJ8600 was stable integrated at a single chromosomal site (attB) of the Streptomyces genome. The DNA sequence of the attB was cloned and shown to be conserved. The results of growth and antimicrobial activity analysis indicated that the integration of pIJ8600 did not seem to affect the biosynthesis of antibiotics or other essential amino acids. To demonstrate the feasibility of above gene transfer system, the allophycocyanin gene (apc) from cyanobacterium Anacystis nidulans UTEX625 was expressed in strain M095, and the results indicated heterologous allophycocyanin could be expressed and folded effectively.

Attachment Sites, Microbiological↗

Intergeneric conjugation in Thiobacillus versutus.

In plate matings with Escherichia coli HB101/pUW965::Tn5 (KmR) Thiobacillus versutus reacted as an efficient recipient, producing 10(-2) to 10(-3) kanamycin resistant (KmR) T. versutus exconjugants per donor cell. Analysis of agarose gels of plasmid DNA extracted from the exconjugants confirmed that the suicide vector pUW964 did not persist in the recipient, implying that the kanamycin resistance of the exconjugants is based on effective transposition of Tn5 in T. versutus as well as function of the E. coli kanamycin gene. Transfer was equally efficient when a nalidixate-resistant T. versutus mutant was used as recipient. Hybridization evidence for the presence of Tn5 was consistently negative. The significance of this anomalous result is discussed.

Blotting, Southern↗

Synthesis and cytological characterization of trigeneric hybrids of durum wheat with and without Ph1.

Wild grasses in the tribe Triticeae, some in the primary or secondary gene pool of wheat, are excellent reservoirs of genes for superior agronomic traits, including resistance to various diseases. Thus, the diploid wheatgrasses Thinopyrum bessarabicum (Savul. and Rayss) A. Love (2n = 2x = 14; JJ genome) and Lophopyrum elongatum (Host) A. Love (2n = 2x = 14; EE genome) are important sources of genes for disease resistance, e.g., Fusarium head blight resistance that may be transferred to wheat. By crossing fertile amphidiploids (2n = 4x = 28; JJEE) developed from F1 hybrids of the 2 diploid species with appropriate genetic stocks of durum wheat, we synthesized trigeneric hybrids (2n = 4x = 28; ABJE) incorporating both the J and E genomes of the grass species with the durum genomes A and B. Trigeneric hybrids with and without the homoeologous-pairing suppressor gene, Ph1, were produced. In the absence of Ph1, the chances of genetic recombination between chromosomes of the 2 useful grass genomes (JE) and those of the durum genomes (AB) would be enhanced. Meiotic chromosome pairing was studied using both conventional staining and fluorescent genomic in situ hybridization (fl-GISH). As expected, the Ph1-intergeneric hybrids showed low chromosome pairing (23.86% of the complement), whereas the trigenerics with ph1b (49.49%) and those with their chromosome 5B replaced by 5D (49.09%) showed much higher pairing. The absence of Ph1 allowed pairing and, hence, genetic recombination between homoeologous chromosomes. Fl-GISH analysis afforded an excellent tool for studying the specificity of chromosome pairing: wheat with grass, wheat with wheat, or grass with grass. In the trigeneric hybrids that lacked chromosome 5B, and hence lacked the Ph1 gene, the wheat-grass pairing was elevated, i.e., 2.6 chiasmata per cell, a welcome feature from the breeding standpoint. Using Langdon 5D(5B) disomic substitution for making trigeneric hybrids should promote homoeologous pairing between durum and grass chromosomes and hence accelerate alien gene transfer into the durum genomes.

Alleles↗

[Importance of family for quality of life of the elderly in a social and cultural comparison].

This paper explores the role of the family and its contribution to quality of life in old age under a comparative perspective, looking at different European welfare states (Norway, Germany, Spain and Israel). The literature demonstrates a consistent association between well-being and social networks in old age. Intergenerational family relations seem to be of special relevance in their contribution to health and well-being of older family members. Key features of intergenerational relationships include association, help, and support. However, in modern welfare states, certain tasks traditionally performed by families are covered by services. To assess the relative impact of families and the welfare state and to understand the interaction between them both a comparative perspective is needed analyzing diverse cultures and welfare regimes. Cultural and societal contexts are of central importance in exploring and understanding the complex association between family relations and the quality of life of the elderly. It is hypothesized that there is an interaction between family structure and welfare state transfers. This hypothesis states that the relationship between family structure and quality of life depends on the type of welfare state and welfare state transfers and services. Hence, the relationship between quality of life and family support should be strong only in those cases where welfare state transfers are low. The empirical results partly confirm the theoretical assumptions of welfare state regime dependence of the children's effect on the elder's quality of life. Three out of the four analyzed countries show results that strongly support the hypothesis of an intervening effect of welfare state systems on the connection between family and overall quality of life in old age. However, further analyses are needed. First, more sensitive indicators of parent-child relations have to be used. Second, needs and their intervening effects on the direct linkages between children and quality of life have to be taken into account in more complex analyses. Third, more elaborated indicators of "quality of life" should be used in future analyses.

Aged↗

[Are the "elderly" living at the expense of the "young"? Remarks on the burden distribution between "generations" in an aging population from the economic perspective].

Public and scientific discussion on the effects of an aging population is often biased: aging is primarily seen as an economic burden. Increasing contribution rates in pension schemes, health and long-term care insurance are highlighted. This paper tries to provide a more balanced view. The distinction between a cross-sectional and a longitudinal view already gives different information on distributional effects. Labeling older people as "economically inactive" is a much too narrow perspective focused on the activity on the labor market only. Other types of work are neglected such as caring for children or frail elderly as well as economic activities from wealth, consumption as well as paying taxes to finance public expenditure. The approach of "generational accounting" is also narrow, focusing on public expenditure, social insurance contributions and only some types of taxes, but not dealing with private, especially intrafamily transfers. In economic terms, a comprehensive approach is needed regarding the effect of institutions and measures on the economic situation of cohorts. The role of investment in human capital is mentioned as a decisive factor for productivity in a country. Further education and retraining of older workers is one important element. An integrative approach dealing with the different fields of activities is needed when analyzing the intergenerational as well as the intragenerational distribution. This requires an elaborated and differentiated reporting of distributional effects. This important precondition, however, does not exist in Germany.

Aged↗

Time? Money? Both? The allocation of resources to older parents.

We provide estimates of a reduced-form model of the allocation of household time and money resources. We consider four demands for these resources: time spent working, time spent providing care for noncoresident elderly parents, time spent performing housework, and monetary transfers to noncoresident elderly parents. We focus on the effects of wage rates and parental characteristics on the allocation decisions of adult children and their households concerning these four demands. We find that households with individuals earning high wages rely relatively more on cash transfers and relatively less on time transfers than do lower-wage households. We also find evidence consistent with an unmeasured tendency of some families to provide multiple sources of support.

Adult↗

Fiscal implications of population ageing.

In all developed countries the fiscal ties of the tax and benefit system serve to complement, and sometimes substitute for, traditional family bonds between young and old. Older people are major recipients of public pensions and public health care systems. Since these public transfers and services are financed primarily from the taxes paid by people of working age, the welfare system in effect transfers resources from young to old. But rather than see the fiscal interdependency between young and old as being analogous to the ties that bind children, parents and grandparents together in familial networks, it is often interpreted as an oppressive burden that the old place on the young. This paper examines arguments that population ageing will exacerbate this burden, and may lead to the collapse of public welfare systems. It shows that the financial problems currently associated with public pensions are a function of system design rather than demographic change, and that wholesale privatization of pension systems will do little to solve the major dilemma--of persuading people to transfer a larger part of their lifetime income to their later years in order to sustain a reasonable standard of living throughout an ever lengthening period of retirement.

Adolescent↗

Sequence evidence for sporadic intergeneric DNA introgression from wheat into a wild Aegilops species.

Introgressive hybridization has played a crucial role in the evolution of many plant species, especially polyploids. The duplicated genetic material and wide geographical distribution facilitate hybridization and introgression among polyploid species having either homologous or homoeologous genomes. Such introgression may lead to the production of recombinant genomes that are more difficult to form at the diploid level. Crop genes that have introgressed into wild relatives can increase the capability of the wild relatives to adapt to agricultural environments and compete with crops or to compete with other wild species. Although the transfer of genes from crops into their conspecific immediate wild progenitors has been reported, little is known about spontaneous gene movement from crops to more distantly related species. We describe recent spontaneous DNA introgression from domesticated polyploid wheat into distantly related, wild tetraploid Aegilops peregrina (syn. Aegilops variabilis) and the stabilization of this sequence in wild populations despite not having homologous chromosomes. Our results show that DNA can spontaneously introgress between homoeologous genomes of species of the tribe Triticeae and, in the case of crop-wild relatives, possibly enrich the wild population. These results also emphasize the need for fail-safe mechanisms in transgenic crops to prevent gene flow where there may be ecological risks.

Base Sequence↗

Impact of the maternal microbiome on neonatal immune development.

Historically, multigenerational health and disease transmission have primarily focused on genetic inheritance. However, the discovery that beneficial microorganisms known as commensal microbiota outnumber human genes tenfold has reshaped this perspective, highlighting their critical role in maintaining homeostasis and protecting against pathogens. Unlike the human genome, commensal microbiota is not genetically inherited but is acquired anew with each generation. with initial gut colonization playing a pivotal role in shaping an infant's immune system, neurodevelopment, and long-term health, all heavily influenced by maternal factors. In this review, we examine emerging research on maternal microbial influences on the fetus beginning in utero. We provide an updated overview of the current insights into the impact of the vaginal microbiome during parturition on offspring immunity and discuss the potential long-term health implications for infants born via cesarean section. We explore the advantages and limitations of techniques designed to mitigate these effects, such as vaginal seeding and emphasize that the development of the neonatal immune system is a dynamic process influenced by maternal factors beyond birth, including the transfer of microbiota through breast milk and skin contact. Finally, we present gaps in current research and propose future research directions to deepen our understanding of the impacts of the maternal microbiome on her child. Together, these insights demonstrate how maternal influence on offspring health and immunity extends beyond genetic factors, encompassing the transmission of microbiota, which, in turn, has profound long-term implications for health and disease resilience, offering a novel perspective on intergenerational health dynamics.

Humans↗