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Developmental strategies of the angiosperm pollen: a biochemical perspective.

The current state of our knowledge of the biochemistry and biochemical cytology of normal pollen development and embryogenic transformation of pollen grains of cultured anthers of angiosperms is reviewed. Recent research shows that normal pollen development is characterized by gene activity for the synthesis of specific mRNAs associated with the gametophytic program. As a result of the trauma of excision and culture of anthers in a mineral salt medium, a small number of the enclosed pollen grains probably synthesize new mRNAs which code for the proteins involved in embryogenic divisions. Since these conclusions are based on the study of a small number of species, the need for sustained investigations on the molecular biology of pollen developmental transformations is emphasized.

Cell Differentiation↗

Loss-of-function mutations of the rice GAMYB gene impair alpha-amylase expression in aleurone and flower development.

GAMYB was first isolated as a positive transcriptional regulator of gibberellin (GA)-dependent alpha-amylase expression in barley aleurone cells, and its molecular and biochemical properties have been well characterized. However, the role of GAMYB elsewhere in the plant is not well understood. To investigate the molecular function of GAMYB outside of the aleurone cells, we isolated loss-of-function mutants from a panel of rice mutants produced by the insertion of a retrotransposon, Tos17. Through PCR screening using primers for rice GAMYB (OsGAMYB) and Tos17, we isolated three independent mutant alleles that contained Tos17 inserted in the exon region. No alpha-amylase expression in the endosperm was induced in these mutants in response to GA treatment, indicating that the Tos17 insertion had knocked out OsGAMYB function. We found no significant defects in the growth and development of the mutants at the vegetative stage. After the phase transition to the reproductive stage, however, shortened internodes and defects in floral organ development, especially a defect in pollen development, were observed. On the other hand, no difference was detected in flowering time. High-level OsGAMYB expression was detected in the aleurone cells, inflorescence shoot apical region, stamen primordia, and tapetum cells of the anther, but only low-level expression occurred in organs at the vegetative stage or in the elongating stem. These results demonstrate that, in addition to its role in the induction of alpha-amylase in aleurone, OsGAMYB also is important for floral organ development and essential for pollen development.

DNA Transposable Elements↗

Altered tapetal PCD and pollen wall development in the Arabidopsis ms1 mutant.

The Arabidopsis male sterility1 mutation results in mature anthers that are devoid of pollen. Meiosis and early development progress normally; however, after microspore release, the microspore cytoplasm and tapetum become abnormally granular and vacuolated, and degeneration occurs. Pollen wall development is seriously affected; primexine formation within the callose wall appears to occur normally, however, once the callose is degraded, abnormal deposits of electrodense material are detected which result in irregular spike-shaped structures, rather than the characteristic rod-like shape of the wild-type bacula. The internal intine wall is also reduced compared with wild type. TUNEL (terminal deoxynucleotidyl transferase-mediated dUTP nick end labelling) staining and ultrastructural analysis have indicated that programmed cell death (PCD) occurs in the wild-type tapetum after microspore mitosis I. However, no signs of PCD are seen in the ms1 tapetum, where large autophagic vacuoles and mitochondrial swelling suggest that necrotic-based breakdown of the tapetum is occurring in the ms1 mutant rather than the normal, regulated PCD process. After the formation of the large, autophagic vacuole in the tapetum, TUNEL staining is detected in the mutant microspores, indicating that they may go through a PCD-based breakdown as a secondary consequence of the observed tapetal aberrations. Based on these observations, two possible roles for MS1 can be hypothesized; MS1 may function by modifying the transcription of tapetal-specific genes implicated in pollen wall development, which then regulate pollen wall material secretion and in turn wall development and tapetal PCD. Alternatively, the MS1 gene may control tapetal development by directly regulating tapetal PCD and breakdown.

Apoptosis↗

[Effect of bee pollen on development of immune organ of animal].

OBJECTIVE: To study on the effect of been pollen on development of immune organ of animal. METHOD: A total of 144 one day-old broilers were randomly divided into 2 groups, in which each group included 72 chickens. The control group was fed on the basal diet for 42 days, and that of experiment group supplemented 1.5% bee pollen. Six chickens in each group were selected and slaughtered at 7, 14, 21, 28, 35, 42 days respectively, and the thymuses, cloacal bursa and spleens were obtained, weighted, fixed in Bouin liquid and made into paraffin section. RESULT: Compared with control group, the weight and the relative weight of thymuses, cloacal bursa and spleens of experiment group increased significantly (P < 0.05) or extremely significantly (P < 0.01). In experiment group, the cortex of thymic lobule, bursa nodule and Periarterial Lymphatic Sheaths thicken obviously; the volume of bursa nodule, splenic nodule and ellipsoid augmented, and the germinal center of splenic nodule were obvious; the thymic corpuscle increased; the plica of cloacal bursa developed well and the degenerating of it retarded. CONCLUSION: The diet supplemented bee pollen could boost the early development of thymus and cloacal bursa, retard the degenerating of cloacal bursa and promote the immune response of spleen.

Animal Nutritional Physiological Phenomena↗

Expression analyses of beta-tubulin isotype genes in rice.

Microtubules play important roles in many cellular processes, such as cell division and cell elongation in plants. beta-tubulins, which are the basic components of microtubules, are encoded by multigene family in eukaryotes and their nucleotide sequences are highly conserved in protein coding regions. A homology search within the rice expressed sequence tag database identified at least eight beta-tubulin (OsTUB) isotypes including three novel OsTUB genes. Northern analysis using specific probes to 3'-UTR of OsTUB isotypes showed differential and tissue-specific expression. Seven out of eight OsTUB genes dominantly expressed in leaf sheath, while OsTUB8 was preferentially expressed in anther including mature pollens. The existence of anther-specific beta-tubulin suggests its unique role in the formation of microtubules during the anther and pollen development or pollen tube growth. Furthermore, transcripts of OsTUB5, 6 and 7 genes were significantly enhanced by gibberellin but all eight OsTUB genes were repressed by abscisic acid. Our results imply that OsTUB genes are differentially regulated by developmental and hormonal signals and different OsTUB isotypes might play special role in the growth and development of specific organs in rice.

Amino Acid Sequence↗

Characterization of a desiccation-related protein in lily pollen during development and stress.

This work characterizes a lily (Lilium longiflorum Thunb. cv. Snow Queen) anther (LLA) protein associated with desiccation. Peptide mapping analysis revealed that the abundant LLA-23 doublet contained similar polypeptides, having an isoelectric point of 6.1. Immunoblots of pollen protein from developing anther/pollen confirmed that the LLA-23 protein accumulated only at the later stage of pollen maturation and that the levels remained steady in mature and vital pollen. The accumulation of LLA-23 proteins was correlated with desiccation that naturally occurred in pollen. Subcellular fractionation of pollen proteins revealed that the protein was located in the cytoplasmic fraction. Premature drying of developing pollen confirmed that the concomitant accumulation of LLA-23 was associated with desiccation. Peptide sequence analysis demonstrates similarities between the lily LLA-23 and a family of water-deficit/ripening-induced proteins including LP3 of pine, DS2 of potato, and Asr of tomato and pummelo. In addition, the concomitant accumulation of LLA-23 can be experimentally manipulated by methyl jasmonate (Me-JA) and salicylic acid (SA) as well as by mannitol and methyl viologen. The LLA-23 represents a novel member of the water-deficit/ripening-induced proteins.

Acetates↗

Molecular characterization of mature pollen-specific genes encoding novel small cysteine-rich proteins in rice (Oryza sativa L.).

In our previous cDNA microarray analysis, we identified 53 mature anther-specific genes, whose function was unknown, in rice. We reanalyzed these genes from the viewpoint of the specific amino acid motif. Out of 53 genes, three genes, Os-26, Os-32, and Os-169 (renamed as OsSCP1, OsSCP2, and OsSCP3), encoded cysteine-rich motif (Cys-X3-Cys-X13-Cys-X3-Cys), indicating that they were novel small cysteine-rich proteins. From the search of specific elements in promoter regions, several pollen-specific elements were found. In order to determine whether three promoters were functional in pollen or not, the gene constructs with promoter regions fused to the beta-glucuronidase gene were transformed into tobacco. Histochemical analysis showed that these promoters were active in the mature pollen grains and pollen tubes. Furthermore, OsSCP1 and OsSCP3 formed a multigene family tandemly in the rice genome. From the results, OsSCPs might have important roles in mature pollen development and pollen tube growth.

Amino Acid Sequence↗

Fine-scale molecular genetic (RFLP) and physical mapping of a 8.9 cM region on the top arm of Arabidopsis chromosome 5 encompassing the male sterility gene, ms1.

Fine-scale molecular mapping has been conducted using 183 recombinants between the markers lutescens (lu; 17.6 cM) and transparent testa glabra (ttg; 35.5 cM) on the top arm of Arabidopsis thaliana chromosome 5. This region contains a number of genes involved in floral development including Ms1, a gene required for the post-meiotic development of pollen. In homozygous ms1 mutant plants, pollen development is aborted soon after microspore release, regardless of environmental conditions. The ms1 mutation is located at 29.8 +/- 0.8 cM on chromosome 5. Markers have been identified which co-segregate with ms1 and should lie within 39 kb of the gene. The fine-scale map of the lu-ms1-ttg region that has been generated is significantly different from the published integrated map and provides substantially more accurate and higher marker density than the current recombinant inbred map for this region. Using clones derived from four yeast artificial chromosome libraries, a contig has been established between the RFLP markers 4111 and 4556, which encompasses the ms1 gene. This covers a genetic distance of 8.9 cM which corresponds to a physical distance of approximately 1.44 Mb, representing about 1.5-2.0% of the Arabidopsis genome. In this region, 1 cM represents a physical distance of approximately 160 kb.

Arabidopsis↗

[An analysis of cedar of Lebanon (Cedrus libani A. Rich.) pollen grain development in cultural plantings].

A cytological study of the Cedrus libani mature pollen from 3 culture areas (Italy, France, USSR) has shown that 69-71% of pollen grains have two-celled protallium and antheridial cell. About 5% of pollen grains are characterized by accelerated of delayed development, otherwise apparently normal. The pollen sterility (up to 30% of grains) is due to the abortive spore development. Anomalous cenocyte and multinuclear pollen grains were found thus suggesting that multicellular haploid structures capable of further growth and development may arise in the course of natural anther development.

France↗

Characterization of pollen tube development in Pinus strobus (Eastern white pine) through proteomic analysis of differentially expressed proteins.

The differentially expressed proteins in pollen tubes indicate their specific roles in this stage of male gametophyte development. To isolate these proteins, 2-DE was done using ungerminated pollen and 2-day-old pollen tubes of Pinus strobus. Results show that 645 and 647 protein spots were clearly resolved from pollen grains and pollen tubes, respectively. Thirty-eight protein spots were expressed only in pollen tubes, while 19 increased in intensity. MALDI-TOF MS was used to generate tryptic peptide masses that were submitted to Mascot for identification. Of the differentially expressed proteins, 12% matched with hypothetical proteins, 33% did not hit any protein, and for the 55%, a putative function was assigned based on similarity of sequences with previously characterized proteins. Therefore, pollen tube development can be characterized by the cellular activities that involve metabolism, stress/defense response, gene regulation, signal transduction, and cell wall formation. This study expands our understanding of the changes in protein expression associated with pollen tube development and provides insights into the molecular programs that separate the development of the pollen tubes from pollen grains. This is the first report that describes a global analysis of differentially expressed proteins from the pollen tube of any seed plant.

Cell Wall↗

Male-sterility of thermosensitive genic male-sterile rice is associated with premature programmed cell death of the tapetum.

The tapetum plays a crucial role in pollen development. This secretory tissue produces numerous nutritive proteins necessary for pollen maturation. The tapetum, whose cells undergo programmed cell death (PCD), is completely diminished by the time the pollen is fully mature. Our previous studies on a thermosensitive genic male-sterile (TGMS) rice (Oryza sativa L.) suggested that male-sterility was due to failure in pollen development. In this paper we describe how further analysis of the TGMS rice revealed that male-sterility is associated with premature PCD of the tapetum. Cytological observations of TGMS rice anthers at various developmental stages indicated that PCD initiates at an early stage of pollen development and continues until the tapetal cells are completely degraded, resulting in pollen collapse. Transmission electron microscopy showed the morphologically distinct hallmarks of apoptosis, including cytoplasmic shrinkage, membrane blebbing, and vacuolation. Identification of DNA fragmentation using the TUNEL assay supports the hypothesis that premature PCD is associated with male-sterility in the rice. The tissue-specific feature of the thermosensitive genic male-sterile phenotype is discussed with regard to PCD during anther development.

Apoptosis↗

Identification, sequence analysis and expression studies of novel anther-specific genes of Arabidopsis thaliana.

Relatively little is known about pollen development at the molecular level. For the purpose of gaining understanding of the molecular control of pollen development, a number of Arabidopsis cDNA fragments were isolated using subtractive hybridizations. DNA and RNA hybridizations and sequence analyses indicate that we have isolated cDNAs representing 13 genes. Sequences for 8 of these genes are novel, while those for the remaining 5 genes have substantial similarity to genes previously reported as anther- or pollen-specific. RNA in situ hybridizations with 5 genes revealed that four of them are tapetum-specific with differing temporal expression patterns during pollen development and one is pollen-specific within the flower. Sequence analysis of full-length cDNAs showed that one of the novel genes, ATA7, encodes a protein related to lipid transfer proteins. Another gene, ATA20, encodes a protein with novel repeat sequences and a glycine-rich domain that shares a predicted structure with a known cell wall protein. The full-length ATA27 cDNA encodes a protein similar to the BGL4 beta-glucosidase from Brassica napus. The ATA27 protein is predicted to have an ER retention signal and an acidic isoelectric point, suggesting that it may be localized to the ER lumen. This may be a means of compartmentalization from its substrate(s). Our studies demonstrate that subtractive hybridizations can be used to identify previously unknown genes, which should be valuable tools for further study of pollen and anther development and function.

Amino Acid Sequence↗

Inhibition of RNA and protein synthesis in pollen tube development of Pinus bungeana by actinomycin D and cycloheximide.

* The effects of actinomycin D and cycloheximide on RNA and protein synthesis were investigated during pollen tube development of Pinus bungeana. * RNA and protein contents, protein expression patterns, cell wall components and ultrastructural changes of pollen tubes were studied using spectrophotometry, SDS-PAGE electrophoresis, Fourier transformed infrared (FTIR) microspectroscopy and transmission electron microscopy (TEM). * Pollen grains germinated in the presence of actinomycin D, but tube elongation and RNA synthesis were inhibited. By contrast, cycloheximide inhibited pollen germination and protein synthesis, induced abnormal tube morphology, and retarded the tube growth rate. SDS-PAGE analysis showed that protein expression patterns changed distinctly, with some proteins being specific for each phase. FTIR microspectroscopy established significant changes in the chemical composition of pollen tube walls. TEM analysis revealed the inhibitors caused disintegration of organelles involved in the secretory system. * These results suggested RNA necessary for pollen germination and early tube growth were present already in the pollen grains before germination, while the initiation of germination and the maintenance of pollen tube elongation depended on continuous protein synthesis.

Cycloheximide↗

Behavior of storage lipids during development and germination of olive ( Olea europaea L.) pollen.

The presence of abundant oil bodies in the mature olive pollen grain has led us to focus on the behavior of these lipid bodies during pollen development and in vitro pollen germination. The appearance, increase, and accumulation of lipid bodies have been determined by following the sequential development of the pollen grain. Semithin slices of anthers and pollen grains were stained with Sudan Black B in order to identify neutral lipids. Ultrastructural studies were also carried out. Our results show a notable increase in lipid bodies between the young-pollen-grain stage and the mature-pollen-grain stage. Substantial polarization of lipid bodies was observed after 1 or 2 h of pollen incubation in germination medium. During pollen tube growth, the lipid bodies are located near the germinative aperture after 3 h of incubation, as well as inside the pollen tube, thus suggesting that the lipid bodies move from the pollen grain to the pollen tube. After 7 h of germination the presence of lipid bodies inside the pollen tube is no longer substantial. Our results support the idea that lipid bodies are involved in pollen germination, stigma penetration, and pollen tube growth. These results are discussed in connection with their implications for the pollen germination process.

Cell Polarity↗

Is month of birth a risk factor for subsequent development of pollen allergy in adults?

A comparison of the date of birth of 1501 adult patients with severe seasonal respiratory allergy (allergic rhinitis or bronchial asthma) due to parietaria, olive, and grass pollens with the expected births within 2,020,420 births in South Greece during the same period, was performed. The relative risk for developing respiratory allergy was characteristically increased in those born in a specific period of time different for each pollen. The relative risk for parietaria was increased (1.47) in those born in March; for olive it was 1.6 for May; 1.2 for April; and 1.4 for March, while the relative risk for grasses was 1.2 in those born in June and July. These findings are indicative of the importance of the month of birth; that is, the early exposure to pollens, for the development of respiratory allergy to certain pollens during adulthood. Because our findings do not directly correlate completely with the aerobiology studies on pollen calculation in Athens' atmosphere, we supposed that other environmental factors, e.g., the local intensity of the first pollination or the influence of weather conditions, may contribute to the final development of respiratory allergy as well. The most impressive finding was the significant influence of the month of birth in the development of respiratory allergy due to parietaria and olive pollens during adulthood.

Adult↗

The immunolocalization of nuclear antigens during the pollen developmental program and the induction of pollen embryogenesis.

The immunolocalization of nuclear antigens, combined with cytochemical procedures as well as in situ hybridization and recent in situ molecular methods, has been applied at different steps of pollen development to characterize the functional organization of the nucleus during the formation of the male gametophyte in an agronomically interesting plant, Capsicum annuum L. Pollen embryogenesis has been induced in pepper and the first stages of the process have been studied at the cellular level. Low temperature processing methods including cryosections and Lowicryl sections were very convenient for performing the various in situ techniques used in the pollen grains. Different molecular probes for localizing DNA, RNA, snRNPs, specific nucleolar proteins, various rRNA species, and DNA/RNA hybrids provided positive results in the pollen nuclei. The data obtained, and the changes observed in the organization of the nuclear compartments during pollen development, are related to the variations in gene activity undergone by the male gametophyte. The methodology used is proposed as a very convenient approach to localize molecules and events involved in the nuclear function in both gametophytic and sporophytic pollen development.

Antigens↗

Pollen and ovule development in Arabidopsis thaliana under spaceflight conditions.

The development of pollen and ovules in Arabidopsis thaliana on the space shuttle 'Endeavour' (STS-54) was investigated. Plants were grown on nutrient agar for 14 days prior to loading into closed plant growth chambers that received light and temperature control inside the Plant Growth Unit flight hardware on the shuttle middeck. After 6 days in spaceflight the plants were retrieved and immediately dissected and processed for light and electron microscope observation. Reproductive development aborted at an early stage. Pistils were collapsed and ovules inside were seen to he empty. No viable pollen was observed from STS-54 plants; young microspores were deformed and empty. At a late stage, the cytoplasm of the pollen contracted and became disorganized, but the pollen wall developed and the exine appeared normal. The tapetum in the flight flowers degenerated at early stages. Ovules from STS-54 flight plants stopped growing and the integuments and nucellus collapsed and degenerated. The megasporocytes appeared abnormal and rarely underwent meiosis. Apparently they enlarged, or occasionally produced a dyad or tetrad, to assume the form of a female gametophyte with the single nucleus located in an egglike cell that lacks a cell wall. Synergids, polar nuclei, and antipodals were not observed. The results demonstrate the types of lesions occurring in plant reproductive material under spaceflight conditions.

Arabidopsis↗

Pollen tube development in Petunia hybrida following compatible and incompatible intraspecific matings.

Pollen tubes formed following compatible and incompatible intraspecific matings in Petunia have been examined with light and electron microscopes. Compatible and incompatible tubes develop in an identical fashion on the stigma but, on entry into the top 1 mm of the stylar transmitting tissue changes occur both to the cytology of the tubes and their rates of growth. The early cytological changes are common to tubes of both compatibilities but, although both types of tube accelerate on entry into the style, incompatible tubes grow more slowly than compatible. Cytological differences became apparent between compatible and incompatible tubes following a short period of growth in the style, the latter possessing thicker cell walls and a cytoplasm packed with both organelles and reserves. Incompatible tubes subsequently burst or simply cease growth and die. The characteristic image afforded by this cytoplasm resembles that or burst or dead compatible tubes, except in that proportions of the cell components may differ. These data are discussed in terms of current models proposed to explain pollen tube growth and the operation of the self-incompatibility response in Petunia.

Microscopy, Electron↗