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In most pollination systems, animals transfer pollen among plants of a given species. Pollinator visitations do not come without cost, so plants usually offer a reward. However, the flowers of some plant species, mostly orchids, lack rewards and deceive animals into visiting their flowers. Deceptive species are thought to have high levels of variation in traits associated with advertisement and pollinator attraction, which have been attributed to genetic drift, or disruptive selection due to pollinator behavior. Rewarding species are assumed to have less variation due to stabilizing selection. We compared variability in floral morphology and fragrance composition between deceptive and rewarding species. Because both suites of traits are often linked with floral advertisement and pollinator attraction, we expected variation to be greater in species with deceptive pollination systems than in those offering rewards. We obtained floral morphology metrics for 20 deceptive species and 41 rewarding species native or naturalized in Puerto Rico, Venezuela, and Ecuador. Floral fragrances were sampled from eight deceptive species and four rewarding species. We found that the amplitude of variation in floral morphology and fragrance composition covaries significantly. Comparison of coefficients of variation for morphology indicated that, overall, deceptive species show significantly higher variation than rewarding species, and this pattern was also found among just orchids or just nonorchids. There were no statistical differences in morphological variation between orchids and nonorchids within a functional pollination group. Fragrance variation, measured by Jaccard distance, tended to be greater for deceptive species than for rewarding species. Although overlap in measures of variation occurs between the two groups, the data support the hypothesis that populations of deception-pollinated species are more variable than rewarding species in traits associated with pollinator attraction. 相似文献
124.
Pain occurs regularly among nursing home residents with dementia. There are indications that appliance of structural pain assessment can contribute to the adequate diagnosis of pain. The aim of this study is to gain insight into applied interventions after diagnosing pain with an observational pain scale (PACSLAC-D) among nursing home resident with dementia. During a six week period pain was measured twice a week, among 22 residents of a psychogeriatric nursing home ward, using the PACSLAC-D. Interventions undertaken as a result of a pain score were inventoried on a data-sheet. After the third and sixth week implementation of pain assessment was evaluated. In total 264 pain assessments using the PACSLAC-D were conducted. Of all scheduled standardized measurements 90% was completed. Sixty observations resulted in a pain score. Completed datasheets (N=39) showed that a pain score often (N=17) did not result in any intervention. The majority of interventions that were undertaken consisted of a non pharmacological approach (N=19). Evaluation meetings indicated that the PACSLAC-D was considered useful, though the chosen procedure of standardized measurements twice a week was not yet ideal. This study demonstrates that although there was a high compliance rate, pain relieving interventions were not frequently applied. 相似文献
125.
Katarzyna Bozek Yuning Wei Zheng Yan Xiling Liu Jieyi Xiong Masahiro Sugimoto Masaru Tomita Svante P??bo Raik Pieszek Chet C. Sherwood Patrick R. Hof John J. Ely Dirk Steinhauser Lothar Willmitzer Jens Bangsbo Ola Hansson Josep Call Patrick Giavalisco Philipp Khaitovich 《PLoS biology》2014,12(5)
Metabolite concentrations reflect the physiological states of tissues and cells. However, the role of metabolic changes in species evolution is currently unknown. Here, we present a study of metabolome evolution conducted in three brain regions and two non-neural tissues from humans, chimpanzees, macaque monkeys, and mice based on over 10,000 hydrophilic compounds. While chimpanzee, macaque, and mouse metabolomes diverge following the genetic distances among species, we detect remarkable acceleration of metabolome evolution in human prefrontal cortex and skeletal muscle affecting neural and energy metabolism pathways. These metabolic changes could not be attributed to environmental conditions and were confirmed against the expression of their corresponding enzymes. We further conducted muscle strength tests in humans, chimpanzees, and macaques. The results suggest that, while humans are characterized by superior cognition, their muscular performance might be markedly inferior to that of chimpanzees and macaque monkeys. 相似文献
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V. Kumar E. Gwinner T. J. Van't Hof 《Journal of comparative physiology. A, Neuroethology, sensory, neural, and behavioral physiology》2000,186(2):205-215
In passerine birds, the periodic secretion of melatonin by the pineal organ represents an important component of the pacemaker
that controls overt circadian functions. The daily phase of low melatonin secretion generally coincides with the phase of
intense activity, but the precise relationship between the melatonin and the behavioral rhythms has not been studied. Therefore,
we investigated in European starlings (Sturnus vulgaris) (1) the temporal relationship between the circadian plasma melatonin rhythm and the rhythms in locomotor activity and feeding;
(2) the persistence of the melatonin rhythm in constant conditions; and (3) the effects of light intensity on synchronized
and free-running melatonin and behavioral rhythms. There was a marked rhythm in plasma melatonin with high levels at night
and/or the inactive phase of the behavioral cycles in almost all birds. Like the behavioral rhythms, the melatonin rhythm
persisted for at least 50 days in constant dim light. In the synchronized state, higher daytime light intensity resulted in
more tightly synchronized rhythms and a delayed melatonin peak. While all three rhythms usually assumed a rather constant
phase relationship to each other, in one bird the two behavioral rhythms dissociated from each other. In this case, the melatonin
rhythm retained the appropriate phase relationship with the feeding rhythm.
Accepted: 10 December 1999 相似文献
128.
Evolutionary processes,dispersal limitation and climatic history shape current diversity patterns of European dragonflies
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Stefan Pinkert Klaas‐Douwe B. Dijkstra Dirk Zeuss Christoph Reudenbach Roland Brandl Christian Hof 《Ecography》2018,41(5):795-804
We investigated the effects of contemporary and historical factors on the spatial variation of European dragonfly diversity. Specifically, we tested to what extent patterns of endemism and phylogenetic diversity of European dragonfly assemblages are structured by 1) phylogenetic conservatism of thermal adaptations and 2) differences in the ability of post‐glacial recolonization by species adapted to running waters (lotic) and still waters (lentic). We investigated patterns of dragonfly diversity using digital distribution maps and a phylogeny of 122 European dragonfly species, which we constructed by combining taxonomic and molecular data. We calculated total taxonomic distinctiveness and mean pairwise distances across 4192 50 × 50 km equal‐area grid cells as measures of phylogenetic diversity. We compared species richness with corrected weighted endemism and standardized effect sizes of mean pairwise distances or residuals of total taxonomic distinctiveness to identify areas with higher or lower phylogenetic diversity than expected by chance. Broken‐line regression was used to detect breakpoints in diversity–latitude relationships. Dragonfly species richness peaked in central Europe, whereas endemism and phylogenetic diversity decreased from warm areas in the south‐west to cold areas in the north‐east and with an increasing proportion of lentic species. Except for species richness, all measures of diversity were consistently higher in formerly unglaciated areas south of the 0°C isotherm during the Last Glacial Maximum than in formerly glaciated areas. These results indicate that the distributions of dragonfly species in Europe were shaped by both phylogenetic conservatism of thermal adaptations and differences between lentic and lotic species in the ability of post‐glacial recolonization/dispersal in concert with the climatic history of the continent. The complex diversity patterns of European dragonflies provide an example of how integrating climatic and evolutionary history with contemporary ecological data can improve our understanding of the processes driving the geographical variation of biological diversity. 相似文献
129.
Keyhole limpet hemocyanin (KLH) of the mollusc Megathura crenulata is known to serologically cross-react with Schistosoma mansoni glycoconjugates in a carbohydrate-dependent manner. To elucidate the structural basis for this cross-reactivity, KLH glycans were released from tryptic glycopeptides and fluorescently labeled. Cross-reacting glycans were identified using a polyclonal antiserum reacting with soluble S. mansoni egg antigens, isolated by a three-dimensional fractionation scheme and analyzed by different mass spectrometric techniques as well as linkage analysis and exoglycosidase treatment. The results revealed that cross-reacting species comprise approximately 4.5% of released glycans. They all represent novel types of N-glycans with a Fuc(alpha1-3)GalNAc(beta1-4)[Fuc(alpha1-3)]GlcNAc motif, which is known to occur also in schistosomal glycoconjugates. The tetrasaccharide unit is attached to the 3-linked antenna of a trimannosyl core, which can be further decorated by galactosyl residues, a xylose residue in 2-position of the central mannose and/or a fucose at the innermost N-acetylglucosamine. This study provides for the first time detailed structural data on the KLH carbohydrate entities responsible for cross-reactivity with glycoconjugates from S. mansoni. 相似文献
130.
Kupfahl C Heinekamp T Geginat G Ruppert T Härtl A Hof H Brakhage AA 《Molecular microbiology》2006,62(1):292-302
Gliotoxin is a secondary metabolite produced by several fungi including the opportunistic human pathogen Aspergillus fumigatus. As gliotoxin exerts immunosuppressive effects in vitro and in vivo, a role as a virulence determinant in invasive aspergillosis has been discussed for a long time but evidence has not been provided until now. Here, by the use of different selection marker genes A. fumigatus knock-out strains were generated that are deficient for the non-ribosomal peptide synthetase GliP, the putative key enzyme of the gliotoxin biosynthesis. Deletion of the gliP gene resulted in loss of gliotoxin production, as analysed by high performance liquid chromatography and tandem mass spectrometry. No differences in morphology or growth kinetics between wild-type and gliP-deletion strains were observed. In vitro, the culture supernatant of the gliP-deficient strains showed a reduced cytotoxic effect on both macrophage-like cells and T cell lines. In a low-dose murine infection model of invasive aspergillosis, gliotoxin was detected in the lung and absent when mice were infected with the gliP deletion strain. However, gliP deletion strains showed no difference in virulence compared with the corresponding wild-type strains. Taken together, the non-ribosomal peptide synthetase GliP is essential for gliotoxin production in A. fumigatus. Gliotoxin is not required for pathogenicity of the fungus in immunocompromised mice, despite the fact that a reduced cytotoxicity of the culture supernatant of gliP deletion strains was demonstrated. 相似文献