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Transgene-dependent incompatibility induced by introduction of the SK2:ZPT2-10 chimeric gene in petunia.

In an attempt to functionally characterize a petunia zinc-finger gene ZPT2-10, which is specifically expressed in style transmitting tissue, we fused its cDNA downstream of the potato SK2 promoter (SK2:ZPT2-10) and then introduced it into Petunia hybrida. We found that some transformants had acquired altered traits in compatibility in mating; these were termed 'transgene-dependent incompatibility (TDI)'. These transgenic lines were fertile when self-pollinated or crossed with other TDI lines. In contrast, they failed to mate when crossed with untransformed wild-type petunia or non-TDI lines of SK2:ZPT2-10 transformants. The TDI phenomenon was observed irrespective of whether the TDI lines were used as the pollen or pistillar parent. The TDI phenotype cosegregated with the SK2:ZPT2-10 transgene in the T1 generation and loss of this transgene resulted in the recovery of normal fertility. In the case of infertile pollination with the TDI line as one parent, pollen tubes grew normally through pistillar tissues, where endogenous ZPT2-10 is expressed, and eventually reached the ovules. However, the resultant embryos were arrested at the globular-heart stage. We found no correlation between the occurrence of the TDI phenotype and the expression of ZPT2-10 transcripts. On the basis of these observations, we discuss the possible molecular mechanisms underlying this phenomena and its utility.

Agrobacterium tumefaciens↗

Changes in the antigenic composition of the short ragweed plant during maturation.

Whole ragweed plants were collected before and during the ragweed pollination season and extracts of various portions of the plants were analyzed for antigen E (AgE) and for their inhibitory potency in the radioallergosorbent test (RAST). Ragweed stems and roots contained very low, if any, AgE. AgE was present in very small amounts in anthers prior to pollination season, increased with anther and pollen grain maturation, peaked with the appearance of significant airborne pollen grains in mid-August, and fell slowly through late September. Leaf AgE content also rose during mid- and late August, but brief rinsing reduced antigen E content by almost 50%. Significant RAST inhibitory activity was found only in anthers and the activity paralleled the content of AgE.

Absorption↗

Preseasonal intranasal immunotherapy with nebulized short ragweed extract.

We determined the effect of preseasonal intranasal short ragweed (SRW) immunotherapy in a double-blind, nonpaired, 20-wk study involving 33 SRW-sensitive patients. Patients were selected on the basis of an elevated IGE serum antibody level, a positive intradermal skin test, and a positive intranasal challenge to SRW antigen. SRW-treated patients sprayed SRW solutions intranasally six times a day for 12 wk preseasonally. Placebo-treated patients used nebulized solutions containing buffer or histamine that were interchanged randomly throughout this period. The SRW-treated group reported more preseasonal symptoms than the placebo-treated group (p less than 0.003); however, during the SRW pollination season, the SRW-treated group reported significantly less sneezing, nasal congestion, rhinorrhea, red/itchy eyes, itchy nose/throat, and cough/wheeze. Supplemental antihistamine usage was similar in both groups. The treatment did not affect serum IgE antibody levels to crude SRW, AgE Ra3, or Ra5 in either group at any time during the study. No significant production of IgG antibody to SRW was seen in either group. One SRW-treated patient developed acute sinusitis after 2 wk of treatment; otherwise no side effects other than symptoms of hay fever were noted. Although intranasal SRW immunotherapy may offer an effective and less costly alternative to parenteral immunotherapy, reduction in hay fever symptoms during the pollination season was achieved at the expense of provoking these symptoms during the preceding weeks.

Administration, Intranasal↗

Airborne ragweed allergens: association with various particle sizes and short ragweed plant parts.

These investigations were undertaken to size airborne particles by use of a high-volume sampler and to measure the short ragweed allergen activity of airborne particles of different sizes. We found both in vitro and in vivo short ragweed allergen activity in particles of all size ranges including greater than 6, 3 to 6, 1.8 to 3, 1 to 1.8, and 0.3 to 1.0 micron in diameter. Furthermore, we investigated various parts of the short ragweed plant as possible sources of allergen. Plant parts collected before, during, and after the pollination season demonstrated significant in vitro and in vivo allergen activities. We demonstrated allergen activity in various plant parts, especially the inflorescence, as late as November 30. Appreciable ragweed allergenic activity was also associated with particles less than 1 micron in diameter. Collectively, these observations suggest persistent ragweed plant debris in different sized particles as a source of allergen in the air before and after the ragweed pollination season. This may contribute to out-of-season symptoms observed in highly ragweed-sensitive individuals.

Air Pollution↗

Lack of suppression of IgE production by recombinant interferon gamma: a controlled trial in patients with allergic rhinitis.

Recent evidence suggests that interferon-gamma (IFN-gamma) is a potent inhibitor of IgE synthesis in rodents. We conducted a randomized, placebo-controlled, two-period clinical trial of human recombinant IFN-gamma in the treatment of allergic rhinitis. Forty-five adults with well-documented ragweed-allergic rhinitis were randomized into three groups of 15 adults each and received subcutaneous injections three times weekly. The first treatment period (4 weeks during the off season) began on April 18, 1988; the second treatment period (6 weeks during ragweed pollination) began on August 15, 1988. All subjects received the same treatment in both periods. Group 1 received 0.2 mg per injection of IFN, group 2 received 0.02 mg of IFN, and group 3 received placebo. One subject in group 1 and three subjects in group 2 withdrew because of adverse reactions, and three subjects withdrew for personal reasons. There were no significant differences in mean weekly symptom scores or supplemental medication scores among the three groups in either treatment period. Furthermore, there were no significant differences in the changes of serum IgE antibody to crude ragweed extract or in serum total IgE among the three groups during or before the ragweed-pollination season. These results indicate that this treatment regimen with IFN-gamma does not alter IgE production in patients with ragweed hay fever and indicate the need for further clinical research of lymphokine modulation of IgE production.

Adolescent↗

Convergent evolution within the genus Solanum: the specialised anther cone develops through alternative pathways.

Many angiosperm species produce cones of anthers which release pollen through pores in response to vibration by pollinating bees ("buzz-pollination"). Anther cones of varying degrees of strength are a defining morphological trait for the genus Solanum. Anthers arranged in a robust ('pepper pot') cone are restricted to a single clade within the genus, and may therefore be assumed to be monophyletic. We show that in some species within this clade, such as tomato (Solanum lycopersicum), the anther cone is held together by interlocking hairs (trichomes) along the edges of the anthers. In other species within the clade, such as woody nightshade (Solanum dulcamara), the expanded anther surfaces are closely appressed to form the tightly bound cone, strengthened by extracellular secretions. Ectopic expression of the MIXTA gene from Antirrhinum majus in S. dulcamara results in the formation of ectopic trichomes on the anthers which cause the cone to disintegrate. Therefore, these two species produce the same macroscopic structure through two mutually exclusive developmental routes and the robust anther cone is derived differently within the clade. This example demonstrates that convergence between closely related species can be easily mistaken for homology, and may thus be underestimated.

Adaptation, Physiological↗

Characterization of a rice class II metallothionein gene: tissue expression patterns and induction in response to abiotic factors.

Data mining the complete rice genome sequences revealed a genomic fragment encoding a characteristic metallothionein (MT) protein, and its full-length cDNA was isolated from rice developing seeds by RT-PCR. This cDNA, designated OsMT-II-1a, contains an open reading frame of 264 bp encoding a protein of 87 amino acid residues. The predicted amino acid sequence was shown to have structural features characteristic of plant class II MT proteins. By sequence analysis of its 5'-flanking region, one putative TATA box, four putative CAAT boxes, and several short sequences homologous to previously reported regulatory cis-elements were identified. Northern blot analysis showed that accumulation of OsMT-II-1a mRNA is specifically abundant in developing seeds and 2-day glumes after pollination, and OsMT-II-1a transcription can markedly be induced by H2O2, paraquat, SNP, ethephon, ABA and SA, but barely by metal ions or other exogenous abiotic factors such as low temperature and PEG. These results coincide with the prediction of existing regulatory cis-elements in its 5'-flanking region. Taken together, the above results suggest that the processes of pollination and seed development might be mediated, at least in part, by expression of the OsMT-II-1a gene that is regulated by several abiotic factors.

Amino Acid Sequence↗

Fructophilic lactic acid bacteria as a window into multi-scale convergent evolution.

Fructophilic lactic acid bacteria (FLAB) are a group of lactic acid bacteria with unique growth characteristics, that is, poor growth on glucose. Their growth is enhanced in the presence of fructose or external electron acceptors. These organisms inhabit fructose-rich environments such as flowers, fruits, and pollinating insects, particularly honey bees. Apilactobacillus spp. and Fructobacillus spp. are representatives of FLAB, although they belong to phylogenetically distant clades. These organisms commonly possess markedly small genomes with a low number of coding DNA sequences. Furthermore, their genomes are characterized by a markedly reduced number of genes involved in carbohydrate transport and metabolism. Genome reduction in FLAB reflects convergent adaptation to fructose-rich environments rather than general genome streamlining. The two distinct FLAB genera, Fructobacillus and Apilactobacillus, independently lost more than 100 genes in statistically similar orders. In contrast, genes involved in carbohydrate and amino acid metabolism exhibited reversed orders of loss between the two genera. Furthermore, FLAB genomes lack an intact bifunctional alcohol/aldehyde dehydrogenase gene (adhE), which causes their poor growth on glucose. A comparative genomic study suggested the evolutionary process underlying adhE gene decay during adaptation to the fructose-rich environments, including pollinating insects. In conclusion, FLAB represent a unique example of habitat-driven convergent reductive evolution that can be investigated across multiple biological scales - from individual genes to whole genomes - in the diverse LAB group with a wide range of habitats, and partially share the fructophilic evolution with eukaryotic yeasts found in fructose-rich habitats.

Fructose↗

Flowers as sensory billboards: progress towards an integrated understanding of floral advertisement.

This paper explores the landscape of integrated sensory signals that are produced by flowers, and the contextual information that modulates pollinator responses to such signals. Chiloglottis orchids are pollinated by mimicking the pheromone and posture of female thynnine wasps, but floral height provides the context within which male wasps respond to these signals. The odor and appearance of carrion attract blowflies to Helicodiceros inflorescences, but flies are more likely to enter the floral chamber when heat is present as a contextual cue. Finally, fragrance, UV-visual cues and echo fingerprints are redundant signals that Glossophaga bats can use to find flowers, depending on prior experience and the photic environment.

Animals↗

New views of S-RNase-based self-incompatibility.

S-RNase-based self-incompatibility (SI) is the most widespread form of genetically controlled mate selection in plants. S-RNase controls pollination specificity in the pistil, while the newly discovered SLF/SFB controls pollination specificity in the pollen. A widely discussed model suggests that compatibility is explained by ubiquitylation and degradation of nonself-S-RNase and that, conversely, incompatibility is caused by failure to degrade self-S-RNase. This model is consistent with the long-standing view that S-RNase inhibition is central to SI. Recent results show, however, that S-RNase is compartmentalized in pollen tubes and, significantly, that compatibility might not require SLF/SFB. S-RNase compartmentalization and dislocation into the pollen tube cytoplasm might be similar to the trafficking of other cytotoxins such as ricin.

Plant Proteins↗

Linking nectar amino acids to fitness in female butterflies.

Nectar of butterfly-pollinated flowers contains generally higher levels of amino acids than does nectar of flowers pollinated by most other animal types. One proposed explanation is that these amino acids promote butterfly fitness, although the evidence has been equivocal. In a new study, Mevi-Schütz and Erhardt showed that nectar amino acids enhanced fecundity in the butterfly Araschnia levana, but only when the larval diet was poor. Their results support the hypothesis that butterflies are agents of selection for higher nectar amino acid production, suggest that the larval food plant has a key role in the evolution of the flower-butterfly mutualism, and demonstrate that the importance, to butterfly reproduction, of different nutrient sources varies with butterfly nutritional state.

Journal Article↗

Biological invasions as disruptors of plant reproductive mutualisms.

Invasive alien species affect the composition and functioning of invaded ecosystems in many ways, altering ecological interactions that have arisen over evolutionary timescales. Specifically, disruptions to pollination and seed-dispersal mutualistic interactions are often documented, although the profound implications of such impacts are not widely recognized. Such disruptions can occur via the introduction of alien pollinators, seed dispersers, herbivores, predators or plants, and we define here the many potential outcomes of each situation. The frequency and circumstances under which each category of mechanisms operates are also poorly known. Most evidence is from population-level studies, and the implications for global biodiversity are difficult to predict. Further insights are needed on the degree of resilience in interaction networks, but the preliminary picture suggests that invasive species frequently cause profound disruptions to plant reproductive mutualisms.

Animals↗

Phylogeny and evolution of basils and allies (Ocimeae, Labiatae) based on three plastid DNA regions.

A phylogeny of basils and allies (Lamiaceae, tribe Ocimeae) based on sequences of the trnL intron, trnL-trnF intergene spacer and rps 16 intron of the plastid genome is presented. Several methods were used to reconstruct phylogenies and to assess statistical support for clades: maximum parsimony with equally and successively weighted characters, bootstrap resampling, and Bayesian inference. The phylogeny is used to investigate the distribution of morphological, pericarp anatomy, chemical, and pollen characters as well as the geographical distribution of the clades. Tribe Ocimeae is monophyletic and easily diagnosable with morphological synapomorphies. There are monophyletic clades within Ocimeae that broadly correspond to currently recognised subtribes: Lavandulinae, Hyptidinae, Ociminae, and Plectranthinae. Only Lavandulinae has clear non-molecular synapomorphies. Several currently recognised genera are not monophyletic. Floral morphology consistent with sternotribic pollination is most common in Ocimeae, but there are independent departures from this model. Buzz pollination is likely in some species, the only postulated occurrence of this within Lamiaceae. Quinone diterpenoids and flavones in the leaf exudates differ in their distributions across the phylogeny and this could contribute to differences in the recorded medicinal as well as pesticidal uses of the species in the different clades. Mapping geographic distribution on to an ultrametric phylogenetic tree produced using non-parametric rate smoothing supports an Asiatic origin for Ocimeae. There are several secondary occurrences in Asia arising from the African Ociminae and Plectranthinae clades. Colonisation of Madagascar occurred at least five times, and New World colonisation occurred at least three times.

Bayes Theorem↗

The ecological and taxonomic importance of flower volatiles of Clusia species (Guttiferae).

The chemical composition of floral volatiles of sixteen species of Clusia (Guttiferae) belonging to four different taxonomic sections of the genus was investigated. The volatiles were extracted from fresh petals by microhydrodistillation and analysed by GC/MS. The composition of the volatiles was in part, but not always, related to the taxonomic position of the species, and to a minor extent to the type of pollinator observed on the flowers as revealed by clustering analysis. The composition of the volatile components of female and male flowers belonging to the same species (C. grandiflora, C. lanceolata, C. paralicola, C. parviflora and C. spiritu-sanctensis) was found to be almost identical. Field bioassays showed the petal extracts to be attractive to pollinating bees.

Chromatography, Gas↗

A flavonoid from Brassica rapa flower as the UV-absorbing nectar guide.

The corolla of Brassica rapa has an UV-absorbing zone in its center, known as the nectar guide for attracting pollinating insects. The pigment which plays the role of the nectar guide was isolated from the petals and identified to be isorhamnetin 3,7-O-di-beta-D-glucopyranoside on the basis of MS and NMR spectroscopic data. The D-, L-configurations of the sugar moieties were determined by the fluorometric HPLC method. In plants raised in open field, there was a 13-fold higher content of the compound in the basal parts of the petals compared with the apical parts. This difference in flavonoid content is presumed to contribute to the visual attractiveness of B. rapa flowers to insect pollinators.

Animals↗

Phylogenetic insights into the evolution of parasitism in hymenoptera.

The Hymenoptera are one of the four megadiverse orders of insects, with over 100000 described species and several times this number still waiting to be described. A major part of this diverse group is formed of large lineages of parasitoid wasps. Some of these lineages have in turn given rise to subgroups that have gone on to diversify into other lifestyles, such as gall-forming on, and pollination of, plants, as well as a broad array of food-collecting behaviors associated with social living in colonies. Thus, the Hymenoptera demonstrate the large evolutionary potential of parasitism as a lifestyle, in contrast to early assertions that parasitism tends to lead to evolutionary 'dead ends' driven by overspecialization. Phylogenetic approaches have already led to a number of important insights into the evolution of parasitism in Hymenoptera. A series of examples are discussed in this review, including the origin of parasitism in the order, the development of koinobiosis in some groups, coevolution with symbiotic viruses, and the evolution in some groups away from parasitism and into such habits as gall formation, pollination of figs, nest building and sociality. The potential for comparative analysis of hymenopteran habits is large, but progress is still in its early stages due to the paucity of available well-supported phylogenies, and the still limited accumulation of basic biological data for many taxa.

Animals↗

Transfer of quinolizidine alkaloids from hosts to hemiparasites in two Castilleja-Lupinus associations: analysis of floral and vegetative tissues.

Many hemiparasites, including several members of the Castilleja genus (Scrophulariaceae), obtain secondary compounds from their host plants. Both Castilleja miniata in subalpine Colorado and C. indivisa in central Texas have reduced herbivory when obtaining alkaloids from the hosts Lupinus argenteus and L. texensis (Fabaceae), respectively. However, pollinators were not deterred from visiting Castilleja parasitizing alkaloid-containing hosts. To determine if alkaloids are present in all tissues of plants parasitizing lupins, we analyzed floral tissue as well as leaves of both Castilleja species. Leaves, bracts, calices, corollas, gynoecium and nectar of both Castilleja species were examined for quinolizidine alkaloid presence using a Dragendorff reagent, and alkaloids were identified in vegetative tissue and nectar by capillary GLC and GLC-MS. Lupanine and alpha-isolupanine were the principal alkaloids in C. indivisa parasitizing L. texensis, while principal alkaloids of C. miniata parasitizing L. argenteus were 5,6-iso-dehydrolupanine, alpha-isolupanine, thermopsine, and 17-oxolupanine. Except for 17-oxolupanine, which was probably synthesized by biotransformation in the parasite, all other alkaloids correspond to those present in the host plants. Alkaloids were present in the leaves of both Castilleja species, and in the bracts, calices and gynoecium of some plants, but never in the corollas. Alkaloids from L. texensis and L. argenteus were not detected in nectar of either Castilleja species. The presence of alkaloids in leaves and outer floral tissue of both Castilleja species, but not nectar, may explain why alkaloid uptake and storage affected herbivores but not pollinators.

Journal Article↗

Radiation in the Cape flora and the phylogeny of peacock irises Moraea (Iridaceae) based on four plastid DNA regions.

Phylogenetic analyses of four plastid DNA regions, the rbcL exon, trnL intron, trnL-trnF intergenic spacer, and rps16 intron from each of 73 species in the African genus Moraea (Iridaceae: Irideae) including accessions of all major species clusters in the genus, show Moraea to be paraphyletic when Barnardiella, Galaxia, Hexaglottis, Homeria (all southern African), and Gynandriris (Eurasian as well) were recognized as separate genera. There are several small, isolated species clusters at the basal nodes of the tree that are all restricted to the winter-rainfall zone of southern Africa (the Greater Cape floral kingdom) and a few, highly derived, large species groups that have radiated extensively within the winter-rainfall zone. Mapping of floral traits shows that an Iris-type flower is ancestral in Moraea. Floral changes are associated with shifts in pollination systems, either from passive pollen deposition on long-tongued bees foraging for nectar to active pollen collection by female bees foraging for pollen, fly, or hopliine scarab beetle pollination. Dating the nodes of the phylogenetic tree using non-parametric rate smoothing with a calibration point derived from broad dating of the angiosperms indicates that the divergence between Moraea and its sister genus Ferraria occurred about 25 mya in the early Miocene. The early radiation of Moraea took place against a background of aridification and the spread of open habitats, such as desert, shrubland, and fynbos.

Evolution, Molecular↗