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Developmental control of telomere lengths and telomerase activity in plants.

Telomere lengths and telomerase activity were studied during the development of a model dioecious plant, Melandrium album (syn Silene latifolia). Telomeric DNA consisted of Arabidopsis-type TTTAGGG tandem repeats. The terminal positions of these repeats were confirmed by both Bal31 exonuclease degradation and in situ hybridization. Analysis of terminal restriction fragments in different tissues and ontogenetic stages showed that telomere lengths are stabilized precisely and do not change during plant growth and development. Telomerase activity tested by using a semiquantitative telomerase repeat amplification protocol correlated with cell proliferation in the tissues analyzed. Highest activity was found in germinating seedlings and root tips, whereas we observed a 100-fold decrease in telomerase activity in leaves and no activity in quiescent seeds. Telomerase also was found in mature pollen grains. Telomerase activity in tissues containing dividing cells and telomere length stability during development suggest their precise control during plant ontogenesis; however, the telomere length regulation mechanism could be unbalanced during in vitro dedifferentiation.

Arabidopsis↗

Circadian- and light-regulated oscillatory expression of CSA in rice leaves is required for pollen fertility.

The oscillatory expression of CSA in rice leaves is regulated by the circadian clock and red/far-red light signals, mediated through DOF5 and PIL11, and is required for normal pollen fertility. Photoperiod-sensitive male-sterile lines represent a pivotal innovation in the development of hybrid rice. However, the underlying mechanisms governing photoperiod-sensitive male reproductive development remain poorly understood. Our previous studies demonstrated that the carbon starved anther (csa) mutant exhibits male sterility under short-day (SD) conditions but partial fertility under long-day (LD) conditions. In this study, we report that CSA expression follows an oscillatory rhythm in rice leaves under both SD and LD conditions, a pattern regulated by both circadian clock and light signals. Tissue-specific RNA interference knockdown of CSA in leaves was associated with reduced pollen viability, suggesting that CSA expression in leaves contributes to normal male fertility. Promoter truncation assay results indicate that distinct regions of the CSA promoter contribute differentially to the regulation of CSA expression in leaves versus anthers, and that both the CSA expression level in anthers and the rhythmic expression pattern of CSA in leaves are associated with the restoration of male fertility. Using dual-luciferase, yeast one-hybrid, and electrophoretic mobility shift assays, we identified two proteins, PIL11 and DOF5, which directly bind to specific motifs (an E-box and T/AAAAG motif) within the CSA promoter truncation, thereby regulating its transcription. These findings elucidate novel mechanisms linking light sensing to the expression of circadian-controlled genes, thus connecting photoperiod with male reproductive development in rice.

Oryza↗

Spatial inheritance patterns across maize ears are associated with alleles that reduce pollen fitness.

Often, more pollen grains land on recipient flowers than there are ovules to fertilize. Consequently, the haploid male gametophyte engages in post-pollination competition, one way that pollen genotype can influence inheritance. The maize (Zea mays subsp. mays L.) inflorescence (ear), with its elongated stigma and style structures (silks), has a conspicuous spatial heterogeneity, with longer silks at the base of the ear than at the apex. To evaluate the hypothesis that alleles with reduced pollen fitness influence the spatial distribution of progeny genotypes along the ear, we developed an updated phenotyping platform that maps fluorescently marked mutant (Ds-GFP) kernel phenotypes on the ear via an implementation of the Faster R-CNN machine vision model (EarVision.v2) and a statistical pipeline that evaluates the relationship between kernel position and transmission ratio (EarScape). Our dataset (1384 ears) represents 58 Ds-GFP insertion alleles. None of the 48 alleles with Mendelian inheritance showed any significant spatial trend. In contrast, 50% of alleles with a pollen-specific transmission defect (5/10) exhibited significant spatial effects. An insertional mutant of the gene encoding a putative actin-binding protein, base-to-apex gradient1* (bag1*), is associated with decreased mutant transmission at the ear base relative to the apex. Surprisingly, a mutant allele of another pollen-expressed gene (Zm00001eb236740) generates the opposite trend, decreased mutant transmission toward the ear apex; and two mutant alleles of the sperm cell attachment factor gamete expressed2 (gex2) can produce ears with transmission highest at both base and apex. We conclude that pollen fitness mutants cause unexpectedly diverse spatial patterns of progeny genotypes.

Zea mays↗

Month of birth, atopic disease, and atopic sensitization.

BACKGROUND: Japanese cedar (Cryptmeria japonica; CJ) pollen and house dust mites are the two important aeroallergens in Japan. However, no epidemiological survey has been performed in Japan to investigate the relationship between month of birth and manifestations of allergic disease and sensitization. OBJECTIVE: This study evaluates the correlation between month of birth and sensitization to aeroallergens or the occurrence of allergic disease on 755 Japanese school children aged 12-13 years. METHODS: The personal history of atopic disease (bronchial asthma, allergic rhinitis, eczema, and allergic conjunctivitis) as recorded by questionnaires was investigated in relation to total serum IgE and specific IgE toward house dust mites and CJ pollen. RESULTS: Positive specific IgE toward house dust mites was significantly less prevalent in the children born between January and March than those born during the rest of the year (p < 0.01). Positive specific IgE toward CJ pollen was significantly more prevalent in the children born between December and January than those born during the rest of the year (p < 0.05). High total IgE was less prevalent in the children born between February and April than in children born during the rest of the year (p = 0.05). The prevalence of bronchial asthma was 26.2% among children born between November and December, compared with a ratio of 17.3% among children born during the rest of the year (p < 0.05). A significantly higher proportion of the children with allergic rhinitis was born between August and October than during the rest of the year (p < 0.05). The prevalence of allergic conjunctivitis was 15.8% among the children who were born between December and January, compared with 9.1% among children born during the rest of the year (p < 0.01). No relationship between prevalence of eczema and season of birth was found. CONCLUSION: Month of birth appears to influence the risk in the development of allergic sensitization and atopic diseases. The findings concerning higher CJ pollen sensitization in children born in the months that proceed the CJ pollen seasons are as evident as the house-dust-mite-related findings.

Adolescent↗

Molecular analysis of NOZZLE, a gene involved in pattern formation and early sporogenesis during sex organ development in Arabidopsis thaliana.

Sexual reproduction is a salient aspect of plants, and elaborate structures, such as the flowers of angiosperms, have evolved that aid in this process. Within the flower the corresponding sex organs, the anther and the ovule, form the male and female sporangia, the pollen sac and the nucellus, respectively. However, despite their central role for sexual reproduction little is known about the mechanisms that control the establishment of these important structures. Here we present the identification and molecular characterization of the NOZZLE (NZZ) gene in the flowering plant Arabidopsis thaliana. In several nzz mutants the nucellus and the pollen sac fail to form. It indicates that NZZ plays an early and central role in the development of both types of sporangia and that the mechanisms controlling these processes share a crucial factor. In addition, NZZ may have an early function during male and female sporogenesis as well. The evolutionary aspects of these findings are discussed. NZZ encodes a putative protein of unknown function. However, based on sequence analysis we speculate that NZZ is a nuclear protein and possibly a transcription factor.

Amino Acid Sequence↗

Erythrocyte antigens as immunogenetic markers of respiratory atopic diseases in Georgians.

The aim of this study was to investigate the role of erythrocyte antigens of several systems (ABO, Rh, MNSs, P, Duffy, Kell) in the predisposition to and development of respiratory atopic disease (RAD) in the Georgian population. Two hundred and ninety-three patients with RAD, 83 patients with intrinsic bronchial asthma (IBA) and 215 healthy subjects were included. Associations between blood groups and RAD (atopic bronchial asthma [ABA] and pollinosis), the severity of the disease and the type of sensitization were established, involving the ABO, MNSs and Duffy systems. The groups at higher risk for the development of RAD were carriers of phenotypes O(I), MN, O(I)MN, MNFya(-), O(I)Fya(-) and O(I)MNFya(-). Resistance to RAD was associated with phenotypes A(II), AB(IV), N, Fya(+) and B(III)N. Markers for ABA and pollinosis were also revealed. Allergy to house dust allergen was associated with phenotype MN, whereas pollen sensitization was associated with the M group of MNSs. The risk for the development of severe ABA was higher in patients with B(III), M and B(III)M phenotypes. For the patients with groups O(I) and MN, a mild to moderate degree of severity of ABA was more characteristic. In healthy Georgians, erythrocyte polymorphism was not associated with immune status. In cases of house dust allergy, erythrocyte antigen P1 was associated with high levels of IgE. In patients with RAD higher B-lymphocyte counts were associated with O(I) and lower counts with A(II).

Asthma↗

Quantification of the major allergen from cypress (Cupressus arizonica) pollen, Cup a 1, by monoclonal antibody-based ELISA.

BACKGROUND: Cypress pollen allergy is an important cause of rhinoconjunctivitis and asthma in Mediterranean countries. Cypress allergenic extracts are difficult to produce since they have low protein and high carbohydrate content, thus accurate standardization of them is essential to guarantee their quality. The aim of this study is to develop a sandwich ELISA for the quantification of Cup a 1, the major allergen of cypress (Cupressus arizonica) pollen extract. METHODS: Monoclonal antibodies directed to purified Cup a 1 were produced. Two of them (9C7 as capture antibody and 3D2 as the tracer) were selected to develop a quantitative sandwich ELISA. This ELISA was subsequently evaluated and compared with other techniques. RESULTS: The described ELISA is very sensitive with a detection limit of 8.7 ng/ml and a practical working range of 62.5-1,000 ng/ml. The assay is also highly reproducible with intra-assay and interassay coefficients of variation of less than 10%. The purified Cup a 1, used as standard, presents pectate lyase enzymatic activity. The assay also detected Cup a 1-like proteins in pollen from other Cupressaceae. A good correlation was obtained between Cup a 1 content of 12 C. arizonica pollen extracts and their IgE-binding activity. CONCLUSIONS: The described Cup a 1 ELISA is sensitive, specific and reproducible and can be used for the quantification of Cup a 1 in C. arizonica and other related pollen extracts. It also provides a reliable indication of the allergenic activity of the whole cypress pollen extract.

Allergens↗

A LC/APCI-MS/MS method for analysis of imidacloprid in soils, in plants, and in pollens.

Imidacloprid, the most used systemic insecticide, is suspected of having harmful effects on honeybees at nanogram per bee or at microgram per kilogram levels. However, there is a lack of methodology to detect imidacloprid and its metabolites at such low levels. We developed a method for the determination of low amounts of imidacloprid in soils, plants (leaves and flowers), and pollens by using HPLC coupled to tandem mass spectrometry (APCI-MS/MS). Extraction, separation, and detection were performed according to quality assurance criteria, to Good Laboratory Practice, and to criteria from the directive 96/23/EC, which is designed for banned substances. The linear range of application is 0.5-20 microg/kg imidacloprid in soils, in plants, and in pollens, with a relative standard deviation of 2.9% at 1 microg/kg. The limits of detection and of quantification are LOD = 0.1 microg/kg and LOQ = 1 microg/kg, respectively. For the first time, this study permitted us to follow the fate of imidacloprid in the environment. When treated, flowers of sunflower and maize contain average values of approximately 10 microg/kg imidacloprid. This explains that pollens from these crops are contaminated at levels of a few micrograms per kilogram, suggesting probable deleterious effects on honeybees.

Calibration↗

[The features of distribution of polysaccharide and lipid in the developing anther of Lycium barbarum L].

Polysaccharide and lipid in the anthers of Lycium barbarurn L. at different stages were examined with cytochemical techniques. At the stage of sporogenous cell, many starches have been storied in parenchyma around vascular bundle, epidermis and endothecium cells but no starches in sporogenous cells, tapetal and middle layer cells. At the stage of tetrad, there were many starches still in epidermis and endothecium, however tapetal cells began to accumulate lipid drops, suggesting that tapetal cells transformed polysaccharides into lipid. Tapetum degenerated at the late stage of microspore and the lipid drops moved into locule. During microspore development neither starches nor lipid drops were accumulated in the cell. After the division of microspore, some lipids drops appeared in 2-cellular pollen, and then some starches also appeared in the pollen. Two days before anthesis, there were many lipid drops and starches located in nearly mature pollen grains, suggesting that pollen of Lycium barbarurn L. has a function of transforming lipid into polysaccharide. The temporal and spatial features of polysaccharide and lipid material accumulated and distributed in anther during its development reflect the transformation of physiological function of the cells consisting of anther. This research will help us to understand the mechanism of anther development.

Flowers↗

Olive pollen induces asthmatic response.

We provide evidence that olive pollen extract can induce asthmatic response. The pattern of airway response to olive pollen is investigated. Nineteen patients with seasonal allergic rhinitis and asthma, suspected to be due to olive pollen, all of whom had positive skin-prick test, were investigated. Bronchial challenge with olive pollen extract were performed and the peak flow rate was followed for 20 hr. Eight patients developed dual asthmatic response (DAR), six patients developed early asthmatic response (EAR) and five patients had no asthmatic response. The early maximal fall in FEV1 and the PD15 were not different between the group with DAR and the group with EAR only. We conclude that olive pollen can induce dual asthmatic response.

Adolescent↗

Multicellular structures developing during maize microspore culture express endosperm and embryo-specific genes and show different embryogenic potentialities.

During maize pollen embryogenesis, a range of multicellular structures are formed. Using different approaches, the "nature" of these structures has been determined in terms of their embryogenic potential. In situ molecular identification techniques for gene transcripts and products, and a novel cell tracking system indicated the presence of embryogenic (embryo-like structures, ELS) and non-embryogenic (callus-like structures, CLS) structures that occurred for short periods within the cultures. Some multicellular structures with a compact appearance generated embryos. RT-PCR and fluorescence in situ hybridization (FISH) with confocal microscopy techniques using specific gene markers of the endosperm (ZmESR2, ZmAE3) and embryo (LTP2 and ZmOCL1, ZmOCL3) revealed "embryo" and "endosperm" potentialities in these various multicellular structures present in the cultures. The results presented here showed distinct and specific patterns of gene expression. Altogether, the results demonstrate the presence of different molecules on both embryonic and non-embryonic structures. Their possible roles are discussed in the context of a parallel between embryo/endosperm interactions in planta and embryonic and non-embryonic structure interrelations under in vitro conditions.

Biomarkers↗

Non-anaphylactic surface-exposed peptides of the major birch pollen allergen, Bet v 1, for preventive vaccination.

BACKGROUND: Almost 100 million allergic patients are sensitized to the major birch pollen allergen, Bet v 1, a 17 kDa protein containing most of the IgE epitopes present in pollens of trees belonging to the Fagales order and plant-derived food. OBJECTIVE: Our aim was to develop an approach for the rational design of B cell epitope-derived, non-allergenic peptide allergy vaccines. METHODS: According to the three-dimensional (3-D) structure of birch pollen allergen, Bet v 1, six peptides comprising 25-32 preferably solvent-exposed amino acids were synthesized. RESULTS: Because of lack of secondary structure, the peptides showed no allergenic activity in allergic patients. In a mouse model of birch pollen allergy, peptide vaccination induced Bet v 1-specific IgG and prevented IgE-mediated allergic sensitization to Bet v 1. The protective role of peptide-induced blocking antibodies is demonstrated by inhibition of allergic patients IgE binding to the allergen and by blocking of allergen-induced basophil degranulation. CONCLUSION: Our results indicate the mechanistic importance of blocking antibodies for allergy vaccination and present a B cell epitope-based approach for the rational design of safe peptide allergy vaccines whenever the structure of the disease-eliciting allergen is known.

Allergens↗

Theophylline inhibits early and late asthmatic reactions induced by allergens in asthmatic subjects.

To determine whether oral slow-release theophylline inhibits asthmatic reactions and the associated increase of airway responsiveness to methacholine induced by allergens, we examined six asthmatic subjects who developed a dual asthmatic reactions after allergen bronchoprovocation with Dermatophagoides pteronyssinus or with grass pollen. We gave oral slow-release theophylline and placebo to each subject for seven days in two series of experiments in a double-blind, randomized, crossover study. The individual daily dose of theophylline (4.7 to 16.6 mg/kg/day, divided into two doses) was calculated for each subject by measuring individual theophylline clearance and optimal daily dosage. During treatment with placebo, the subjects developed dual asthmatic reactions, ie, FEV1 decreased from 4.1 +/- 0.17 L before bronchoprovocation to 3.2 +/- 0.14 L at 15 minutes and to 3.2 +/- 0.19 L at seven hours after allergen bronchoprovocation. By contrast, during active treatment FEV1 decreased from 4.2 +/- 0.28 L to 3.9 +/- 0.26 L at 15 minutes, and to 3.8 +/- 0.13 L at seven hours (both cases, P less than .03 compared with placebo). Mean serum theophylline concentration was 13.2 +/- 0.6 mg/L. Although 1 week's treatment with slow-release theophylline did not modify significantly either prechallenge airway responsiveness to methacholine or its increase after allergen inhalation challenge, in five out of six subjects theophylline significantly inhibited the increase of airway responsiveness to methacholine induced by allergens compared to placebo and control day (P less than .05). These results suggest that slow-release theophylline may inhibit allergen-induced asthmatic reactions and the associated increase of airway responsiveness, suggesting some antiinflammatory effects for this drug.

Administration, Oral↗

Age-dependent tendency to become sensitized to other classes of aeroallergens in atopic asthmatic children.

BACKGROUND: Several longitudinal studies report that allergic sensitization increases with age from childhood to adulthood. OBJECTIVE: To evaluate whether an age-dependent tendency to become sensitized to new classes of allergens is present in atopic children, we studied retrospectively the changes in allergic sensitization in 165 asthmatic patients, monosensitized (ie, sensitized to only one class of allergens) in the first survey. METHODS: All the children (18 months to 8 years at enrollment), attended our outpatient clinics twice, at time intervals ranging from 2 to 10 years. On each visit, sensitization to house dust mites, pollens, animal danders, and molds was determined by skin prick test. RESULTS: We found that 43.6% (n = 72) of the patients became polysensitized on the second survey. According to age on first survey, the patients were further divided into two age groups: (1) group 1 = 18 months to < 5 years old (n = 98) and (2) group 2 = 5 to 8 years (n = 67). The transition from monosensitization to polysensitization observed in the entire population was present in both groups: 47 (47.9%) of the 98 children in group 1 and 25 (37.3%) of the 67 children in group 2 showed to be sensitized to more classes of allergens, as compared with first survey. Both in the whole population and in the two age subgroups, the changes in the frequency of monosensitization between the two evaluations were time-dependent (P < .05, each Chi(2)). Finally, to investigate whether monosensitization to a specific class of allergens could favor the development of polysensitization, we evaluated the frequency of polysensitization in the second survey in patients originally monosensitized to house dust mites or to pollens. We found that of the 130 patients originally monosensitized to house dust mites, 59 became polysensitized (45.4%), while of the 28 patients originally monosensitized to pollens, 9 became polysensitized (32.1%) (P > . 1). Similar results were obtained when patients were divided into age groups. CONCLUSION: These data demonstrate that (1) monosensitized children are likely to become polysensitized and (2) house dust mite sensitization and, at a lower degree, pollen sensitization, apparently seem to play a "triggering" role in the development of polysensitization, since a high proportion of children originally monosensitized to house dust mites or to pollens became polysensitized.

Adolescent↗

Immune responses to birch in young children during their first 7 years of life.

BACKGROUND: The character of immune responses to allergens during the first years of life may decide whether the individual will become tolerant or develop allergy later in life. OBJECTIVE: To study the development of immune responses to the seasonal inhalant allergen birch over the first 7 years of life. METHODS: Blood samples were obtained from 21 children who were followed prospectively from the second to the seventh pollen season of life. Birch-induced cytokine production and IgG subclass antibodies to rBet v 1 were analysed with ELISA, mRNA expression with real time PCR, IgE antibodies to birch with Magic Lite and birch-induced mononuclear cell proliferation with 3H-thymidine incorporation. RESULTS: Birch-induced IFN-gamma and IL-10 production increased with age, both in atopic and non-atopic children, while birch-induced IL-13 production decreased. The two children who were sensitized and developed clinical allergy to birch showed persistent IL-4 and IL-5 production and IL-9 mRNA expression, as well as Th2-associated IgG4 responses. Transient Th2-like responses were observed among the other children. Proliferative responses and IgG1 antibodies were seen in all children. CONCLUSIONS: Immune responses to birch can be demonstrated in all children, during the first 7 years of life, regardless of atopic status. A transient early Th2-like response is down-regulated after the fourth pollen season, except in children who develop clinical allergy to the particular allergen.

Aging↗

Gibberellin regulates Arabidopsis floral development via suppression of DELLA protein function.

The phytohormone gibberellin (GA) regulates the development and fertility of Arabidopsis flowers. The mature flowers of GA-deficient mutant plants typically exhibit reduced elongation growth of petals and stamens. In addition, GA-deficiency blocks anther development, resulting in male sterility. Previous analyses have shown that GA promotes the elongation of plant organs by opposing the function of the DELLA proteins, a family of nuclear growth repressors. However, it was not clear that the DELLA proteins are involved in the GA-regulation of stamen and anther development. We show that GA regulates cell elongation rather than cell division during Arabidopsis stamen filament elongation. In addition, GA regulates the cellular developmental pathway of anthers leading from microspore to mature pollen grain. Genetic analysis shows that the Arabidopsis DELLA proteins RGA and RGL2 jointly repress petal, stamen and anther development in GA-deficient plants, and that this function is enhanced by RGL1 activity. GA thus promotes Arabidopsis petal, stamen and anther development by opposing the function of the DELLA proteins RGA, RGL1 and RGL2.

Arabidopsis↗

A mutation that allows endosperm development without fertilization.

The mechanisms that initiate reproductive development after fertilization are not understood. Reproduction in higher plants is unique because it is initiated by two fertilization events in the haploid female gametophyte. One sperm nucleus fertilizes the egg to form the embryo. A second sperm nucleus fertilizes the central cell to form the endosperm, a unique tissue that supports the growth of the embryo. Fertilization also activates maternal tissue differentiation, the ovule integuments form the seed coat, and the ovary forms the fruit. To investigate mechanisms that initiate reproductive development, a female-gametophytic mutation termed fie (fertilization-independent endosperm) has been isolated in Arabidopsis. The fie mutation specifically affects the central cell, allowing for replication of the central cell nucleus and endosperm development without fertilization. The fie mutation does not appear to affect the egg cell, suggesting that the processes that control the initiation of embryogenesis and endosperm development are different. FIE/fie seed coat and fruit undergo fertilization-independent differentiation, which shows that the fie female gametophyte is the source of signals that activates sporophytic fruit and seed coat development. The mutant fie allele is not transmitted by the female gametophyte. Inheritance of the mutant fie allele by the female gametophyte results in embryo abortion, even when the pollen bears the wild-type FIE allele. Thus, FIE carries out a novel, essential function for female reproductive development.

Journal Article↗

[Efficiency of specific immunotherapy in treatment of patients with seasonal allergic rhinitis].

Last years showed allergy to be significant and social problem. Pollinosis is one of the most frequently spread allergy forms. Pollinosis presents itself in the form of allergic rhinitis, allergic conjunctivitis which may develop in bronchial asthma. Kievites pollinosis (seasonal fever) in most cases is caused by ambrosia, sunflower and dandelion pollen. Specific immunotherapy proved to be the most effective method in the treatment of patients with polinosis. It reduces symptomes of the disease, changes the natural course of the disease and helps developing in patient long-lasting immunity. Clinical follow-up during a long period of time confirmed that three-year treatment course is an optimal one to get long-lasting remission of the disease.

Desensitization, Immunologic↗