[Pollenosis due to artificial pollination of Japanese pears (author's transl)].
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Differences in flight activity and in the percentages of pollen foragers between commercially managed honey bees, Apis mellifera L. (Hymenoptera: Apidae), of two stocks (USDA-ARS Russian, n = 41 colonies; and Italian, n = 43 colonies) were evaluated in an almond, Prunus dulcis (Miller) D. A. Webb, orchard in Kern Co., CA, during February and March 2002. Flight activity was measured by taking 1-min counts of bees exiting colonies on each of 9 d. Flight activity was best predicted with a model containing the effects of colony size (populations of adult bees and sealed brood), temperature, time of day, the interaction of adult bee population with temperature, and the interaction of adult bee population with time of day. Flight increased linearly with adult bee and brood population, had a quadratic relationship with temperature (increasing, but less so at higher temperatures), and had a quadratic relationship with time of day (decreasing, but less so at later times). Larger colonies had more response to changing temperatures and less response to different times of day than small colonies. Bee type had no direct influence on flight activity at any given colony size, temperature, or time of observation or when evaluated using a reduced data set retaining 34 Italian colonies and 32 Russian colonies whose mean sizes were equal. Overall, however, Russian colonies were less populous by about one-fourth and so fielded on average 71% of the foragers that Italian colonies did. Pollen collection was measured by capturing returning foragers on 4 d. The percentages of foragers with pollen were not different for the bee types.
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The plant Euphorbia cyparissias is commonly infected by rust fungi of the species complex Uromyces pisi. When infected, E. cyparissias is unable to flower, but instead is induced by the fungus to form pseudoflowers. Pseudoflowers are rosettes of yellow leaves upon which the fungus presents its gametes in a sweet-smelling fungal nectar. We hypothesized that the fungi, as they are heterothallic, are dependent on insect visitation to cross-fertilize their mating types. We confirmed that insects are required with an insect exclusion experiment. We further hypothesized that pseudoflowers of U. pisi interact with uninfected true host flowers through insects during their period of co-"flowering" in early spring. We conducted artificial array experiments in the field to test whether the two species share insects and whether they influenced each other's insect visitation. Insects moved between true flowers and pseudoflowers, but true flowers received more visits over all. Pseudoflowers and true flowers did not influence each other's visitation rates in mixtures. However, shorter visits were observed on pseudoflowers in mixtures than monocultures, suggesting that true flowers might be competitors for pseudoflowers. Further experiments are needed to determine whether the similarity of pseudoflowers to true flowers is adaptive.
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Clarkia xantiana has two subspecies that differ in breeding system: ssp. xantiana, which is outcrossing, and ssp. parviflora, which is self-fertilizing. Outcrossing is the ancestral breeding system for the genus Clarkia. Flowers of ssp. parviflora have characteristics commonly associated with selfing taxa: they are smaller and have little temporal and spatial separation between mature anthers and stigma (dichogamy and herkogamy, respectively). Flower morphology and development were studied in four populations of each subspecies to establish the developmental changes that occurred in the evolution of selfing. In particular, we sought to evaluate the hypothesis that the selfing flower may have arisen as a byproduct of selection for rapid maturation in the arid environment occupied by ssp. parviflora. This hypothesis predicts that development time should be reduced in spp. parviflora relative to ssp. xantiana. We also sought to compare the pattern of covariation of flower morphology and development between subspecies to that within subspecies. Similar within vs. between patterns of covariation could be indicative of developmental or functional constraints on the independent evolution of floral parts. In spite of significant variation among populations within subspecies, the subspecies clearly differ in flower morphology and development. All floral organs, except ovaries, are smaller in ssp. parviflora than in ssp. xantiana. The flower plastochron, the duration of flower development from bud initiation to anthesis, and the duration of protandry are all shorter in ssp. parviflora than in ssp. xantiana. Maximum relative growth rates are higher for all organs in ssp. parviflora than in ssp. xantiana. Thus, progenesis (i.e., via a reduction in development time) is combined with growth acceleration in the evolution of the selfing flower. Since reduced development time and growth acceleration both allow selfing flowers to mature earlier than outcrossing ones, selection for early maturation may have contributed to the evolution of the selfing flower form. The pattern of trait covariation differs within spp. parviflora relative to the patterns within spp. xantiana and between the two subspecies, suggesting that floral parts can and have evolved independently of one another.
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Pulmonary ventilation and asthmatic reaction under laboratory conditions have been investigated in 23 patients with allergic rhinitis hypersensitive to grass pollen. Pulmonary ventilation has been assessed with the aid of VCin, FVC, FEV1, FEV1/VCin, PEF, MEF50, and MTT. Asthmatic reaction has been produced by an inhalation of allergens mixture with dose-response technique. An early reaction has been diagnosed, when FEV1 decreased by at least 20% or MEF50 by 30% within 10 minutes, and late reaction when the same parameters decreased after 6 or 24 hours. An early asthmatic reaction has been noted in 2 patients (8.7%), late--in 4 patients (17.4%), and double (both early and late) reaction in 2 patients (8.7%). Pulmonary ventilation has been normal in all examined patients, except two of them with peripheral airways obstruction (MEF50 less than 70% of the normal value). Results suggest, that asthmatic reaction may be provoked in the laboratory in patients with pollinosis and normal pulmonary ventilation after pollen season. Such a reaction may also be expected during a natural exposition to pollens.
The pollen of Ambrosia, highly allergenic, can be found in high quantities in the French regions of Burgundy, Auvergne and mostly a great part of the Rhône-Alpes region. The aim of this study was to establish some forecast models of the Starting Date of the Pollen season (SDP) of Ambrosia, in order to provide early information to allergists and allergic people. The pollen data came from the Hirst trap set up in Lyon since 1987 by the RNSA, and the meteorological data for the same period were provided by Météo-France. Two models were used, a sum of daily average temperatures and a multiple regression on all the 10-day period meteorological data. The results were quite accurate, except for 2003 with the temperature sums, probably because of very special meteorological conditions. So the models will have to be updated in this way.
The correlation between flower morphology and share of different insect groups visiting them was studied for 15 Asteraceae species. We measured length and width of corolla tube of 100 flowers of each plant species and determined proportions of main groups of anthophilous insects during all blooming period. According to corolla length species under study ranged more or less uniformly from 2.16 mm (Tripleurospermum inodorum) up to 21.06 mm (Cirsium heterophyllum). The correlation between share of long-tongued bees (mainly bumblebees) among all visitors of inflorescens and corolla length was positive (r = 0.737, P < 0.01) while for short-tongued flies (Syrphidae, Muscidae, Calliphoridae) it was negative (r = -0.869, P < 0.01). It is interesting, that the point of crossing of regression lines (12 mm) approximately coincides with change in inflorescences coloration. Plants with corolla length less than 10 mm have yellow or white inflorescences that are visited primarily by flies, while the plants with longer corolla have violet or dark blue inflorescences, by bumblebees. The dependence of proportion of short-tongued solitary bees (Andrenidae, Halictidae) on a corolla length was non-linear. It increased with increase in corolla length in an interval of 2.16-6.26 mm (r = 0.930, P < 0.1), but decreased for longer corollas (r = -0.680, P < 0.05). The correlation between corolla length and proportions of beetles and butterflies were insignificant.
This study compares diversity and abundance of birds plus abundance of butterflies, bumblebees and herbaceous plants between six small farms (<52 ha arable land) and six large farms (>135 ha arable land) in Roslagen in southeastern Sweden. Two of the large and four of the small farms were organic. Large-scale landscape mosaic and underlying bedrock were similar for all farms. Statistical analysis was performed using box-plots on medians and analysis of variance on mean values. More than twice as many bird species and territories, butterflies, and herbaceous plant species, and five times more bumblebees were found on the small compared to the large farms. The largest differences were found between small organic and large conventional farms. Differences were also noted between small and large organic farms: 56% more bird species were found on small organic than on large organic farms, although none of the farms used any pesticides. We therefore argue that the consideration of organic agriculture's effect on biodiversity should include factors affected by farm size.
Cytogenetical monitoring and analysis of plant morphological features of artificially created sugar beet tetraploid population (C5) were conducted. Four types of tetraploids differing in pollen quality were selected. It was shown that seeds of triploid hybrids received from diploid plants cross-fertilised by tetraploids were notable for increased germinating capacity.
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