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11.
Kyrre Kausrud Bjørn Økland Olav Skarpaas Jean‐Claude Grégoire Nadir Erbilgin Nils Chr. Stenseth 《Biological reviews of the Cambridge Philosophical Society》2012,87(1):34-51
In recent decades we have seen rapid and co‐occurring changes in landscape structure, species distributions and even climate as consequences of human activity. Such changes affect the dynamics of the interaction between major forest pest species, such as bark beetles (Coleoptera: Curculionidae, Scolytinae), and their host trees. Normally breeding mostly in broken or severely stressed spruce; at high population densities some bark beetle species can colonise and kill healthy trees on scales ranging from single trees in a stand to multi‐annual landscape‐wide outbreaks. In Eurasia, the largest outbreaks are caused by the spruce bark beetle, Ips typographus (Linnaeus), which is common and shares a wide distribution with its main host, Norway spruce (Picea abies Karst.). A large literature is now available, from which this review aims to synthesize research relevant for the population dynamics of I. typographus and co‐occurring species under changing conditions. We find that spruce bark beetle population dynamics tend to be metastable, but that mixed‐species and age‐heterogeneous forests with good site‐matching tend to be less susceptible to large‐scale outbreaks. While large accumulations of logs should be removed and/or debarked before the next swarming period, intensive removal of all coarse dead wood may be counterproductive, as it reduces the diversity of predators that in some areas may play a role in keeping I. typographus populations below the outbreak threshold, and sanitary logging frequently causes edge effects and root damage, reducing the resistance of remaining trees. It is very hard to predict the outcome of interspecific interactions due to invading beetle species or I. typographus establishing outside its current range, as they can be of varying sign and strength and may fluctuate depending on environmental factors and population phase. Most research indicates that beetle outbreaks will increase in frequency and magnitude as temperature, wind speed and precipitation variability increases, and that mitigating forestry practices should be adopted as soon as possible considering the time lags involved. 相似文献
12.
WE have found that several different forms of choline acetyl-transferase (ChAc) from rat brain can be separated by isoelectric focusing. Such heterogeneity of ChAc is of particular interest in the context of its ultrastructural localization. Subcellular fractionation1–4 and histochemistry5 have shown that the enzyme in rat, in conditions of low ionic strength and pH, adhered to several different membranous structures. 相似文献
13.
Øivind Andersen Johan B. Steen 《Journal of comparative physiology. B, Biochemical, systemic, and environmental physiology》1986,156(6):823-828
Summary Nest humidity (
) under an incubating bantam hen was measured at ambient
ranging from 1.3 to 25.0 mmHg. Weight loss of eggs was recorded in clutches of varying size. Nest
and ambient
were also measured in wild incubating willow ptarmigan nests in dry and wet habitats.Nest
increased linearly with ambient
in a way predictable on the assumption that the water vapour conductance (
) of brood patch skin, plumage and eggs were constant and independent of ambient
. Nest
was also dependent of clutch size. Egg dehydration was quantitatively predicted from measured values and the laws of diffusion.Our findings confirm earlier conclusions that the adult bird does not actively regulate nest
at varying ambient
. Birds can presumably achieve appropriate egg dehydration by a strategy combining nest site, nest construction, egg shell conductance and incubation behaviour which meets the requirements of their breeding climate.Abbreviations
water vapur pressure
-
water vapur conductance
-
water flux 相似文献
14.
Alhede M Kragh KN Qvortrup K Allesen-Holm M van Gennip M Christensen LD Jensen PØ Nielsen AK Parsek M Wozniak D Molin S Tolker-Nielsen T Høiby N Givskov M Bjarnsholt T 《PloS one》2011,6(11):e27943
For a chronic infection to be established, bacteria must be able to cope with hostile conditions such as low iron levels, oxidative stress, and clearance by the host defense, as well as antibiotic treatment. It is generally accepted that biofilm formation facilitates tolerance to these adverse conditions. However, microscopic investigations of samples isolated from sites of chronic infections seem to suggest that some bacteria do not need to be attached to surfaces in order to establish chronic infections. In this study we employed scanning electron microscopy, confocal laser scanning microscopy, RT-PCR as well as traditional culturing techniques to study the properties of Pseudomonas aeruginosa aggregates. We found that non-attached aggregates from stationary-phase cultures have comparable growth rates to surface attached biofilms. The growth rate estimations indicated that, independently of age, both aggregates and flow-cell biofilm had the same slow growth rate as a stationary phase shaking cultures. Internal structures of the aggregates matrix components and their capacity to survive otherwise lethal treatments with antibiotics (referred to as tolerance) and resistance to phagocytes were also found to be strikingly similar to flow-cell biofilms. Our data indicate that the tolerance of both biofilms and non-attached aggregates towards antibiotics is reversible by physical disruption. We provide evidence that the antibiotic tolerance is likely to be dependent on both the physiological states of the aggregates and particular matrix components. Bacterial surface-attachment and subsequent biofilm formation are considered hallmarks of the capacity of microbes to cause persistent infections. We have observed non-attached aggregates in the lungs of cystic fibrosis patients; otitis media; soft tissue fillers and non-healing wounds, and we propose that aggregated cells exhibit enhanced survival in the hostile host environment, compared with non-aggregated bacterial populations. 相似文献
15.
Recent evidence suggests that marker‐based heterozygosity‐fitness correlations may be driven by only one or a few markers, indicating local heterozygosity effects caused by linkage disequilibrium with functional genes. In this study, we investigated the relationship between microsatellite heterozygosity and a measure of cell‐mediated immunity (phytohaemagglutinin; PHA) in bluethroat (Luscinia s. svecica) nestlings using a full‐sibling design. We found significant positive associations between PHA response and two different indices of microsatellite heterozygosity, i.e. multi‐locus heterozygosity and mean d2. However, model comparisons disclosed that both associations were more likely caused by local effects rather than general effects and that the two local effects appeared to be realized through two different genetic mechanisms. Our results indicate that both the random assortment of parental chromosomes during meiosis as well as inbreeding can drive heterozygosity‐fitness correlations. 相似文献
16.
Background
An elevated plasma glucose concentration has been considered to be a potential risk factor in the pathogenesis of left-displaced abomasums (DA). Therefore the present study was performed to investigate if spontaneous disease (parturient paresis, metritis, ketosis etc) in dairy cows results in elevated concentrations of glucose and cortisol in blood as cortisol is the major regulator of glucose in ruminants. 相似文献17.
Influence of body composition on the metabolic rate of nestling European shags (Phalacrocorax aristotelis) 总被引:2,自引:0,他引:2
C. Bech J. E. Østnes 《Journal of comparative physiology. B, Biochemical, systemic, and environmental physiology》1999,169(4-5):263-270
During the early development of avian nestlings, their mass-specific resting metabolic rate (RMR) changes in a biphasic pattern
with the peak value often being much higher than that expected for an adult bird of similar body mass. In the present study
we examined the possible influence of variations in the size of internal organs in “setting” the high RMR and peak metabolic
rate (PMR) during development in a large altricial species, the European shag (Phalacrocorax aristotelis). Thermoneutral RMR and cold-exposure induced PMR were measured in nestlings 15 days old, the age at which the highest RMR
occurred during development. Body mass averaged 414 g. Mean values of RMR and PMR were 5.75 W and 9.08 W, respectively; the
RMR value corresponds to approximately 250% of the expected value for an adult non-passerine bird of similar body mass. The
masses of all the organs measured (breast and leg muscles, heart, liver, intestine, and kidney) varied isometrically with
total body mass. However, large chicks had a significantly lower fractional water content than small chicks, suggesting that
the former had achieved a higher level of functional maturity. In contrast to what has been suggested for adult birds in general,
the heart and kidney masses of shag nestlings were not significantly correlated with the metabolic rates. The intestine length,
in contrast, was highly and positively correlated with both the RMR and the PMR, i.e. intestine length was a better predictor
of RMR and PMR than was total body mass. In addition, liver mass was positively correlated with RMR. The results of the present
study suggest that the liver in particular may play a key role in establishing the high, mass-specific RMR which is attained
during development in bird chicks. Our results also support previous suggestions that early in their development, altricial
chicks mainly allocate energy to the growth of `energy-processing' organs (such as the intestine and liver) rather than to
`energy-consuming' organs.
Accepted: 3 March 1999 相似文献
18.
Differences among plant species in visitation rate and seed set within a community may be explained both by the species’ floral traits and the community context. Additionally, the importance of species’ floral traits vs. community context on visitation rate and seed set may vary among communities. In communities where the pollinator-to-flower ratio is low, floral traits may be more important than community context, as pollinators may have the opportunity to be choosier when visiting plant species. In this study we investigated whether species’ floral traits (flower shape, size and number, and flowering duration) and community context (conspecific and heterospecific flower density, and pollinator abundance) could explain among-species variation in visitation rate and seed set. For this, we used data on 47 plant species from two Norwegian plant communities differing in pollinator-to-flower ratio. Differences among species in visitation rate and seed set within a community could be explained by similar variables as those explaining visitation rate and seed set within species. As expected, we found floral traits to be more important than community context in the community with a lower pollinator-to-flower ratio; whereas in the community with a higher pollinator-to-flower ratio, community context played a bigger role. Our study gives significant insights into the relative importance of floral traits on species’ visitation rate and seed set, and contributes to our understanding of the role of the community context on the fitness of plant species. 相似文献
19.
20.
Laboratory evolution studies provide fundamental biological insight through direct observation of the evolution process. They not only enable testing of evolutionary theory and principles, but also have applications to metabolic engineering and human health. Genome‐scale tools are revolutionizing studies of laboratory evolution by providing complete determination of the genetic basis of adaptation and the changes in the organism's gene expression state. Here, we review studies centered on four central themes of laboratory evolution studies: (1) the genetic basis of adaptation; (2) the importance of mutations to genes that encode regulatory hubs; (3) the view of adaptive evolution as an optimization process; and (4) the dynamics with which laboratory populations evolve. 相似文献