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Healthy and Contortylenchus reversus infected Douglas Fir beetles were colonized in logs in the laboratory. At 7, 14, and 23 days after introduction of the beetles into the logs, the bark was removed from some of the logs and the length and shape of the primary gallery, the number of eggs laid, and the egg viability were determined for each pair of parent beetles. Parasitism caused a 25, 28, and 27% reduction in the length of the primary egg gallery built by the infected female at 7, 14, and 23 days, respectively, after the start of colonization. In addition, the number of eggs laid by the infected females by 7, 14, and 23 days after the start of colonization were 50, 33, and 45%, respectively, lower than that of healthy female beetles. Despite the differences in gallery length between control and infected females, linear regression analysis showed that the rates of gallery construction were not significantly different. However, infected female beetles showed significantly lower rates of egg-laying than did healthy female beetles. Nematode parasitism did not affect gallery shape and egg viability of female Douglas Fir beetles. Mating of healthy female beetles with infected males affected neither the gallery length nor the fecundity of the uninfected females.  相似文献   
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In the desert locust, Schistocerca gregaria (Forskål) (Orthoptera: Acrididae), the threshold density inducing the gregarization phenomenon has never been determined under natural conditions. The influence of environmental factors on this phenomenon has been studied mostly in controlled environments. Based on data collected during several years by the survey teams of the National Center for Locust Control in Mauritania, we analyzed the influence of locust density, vegetation cover, and vegetation status on the probability of observing gregarious locusts. We assumed that a probability to observe gregarious locusts of 0.5 corresponded to the density threshold of gregarization. The results showed in detail the change in the threshold of gregarization according to the cover and status of the vegetation. Low cover and dry vegetation led to a low density threshold of gregarization probably due to high probability of individuals to touch each other. Dense and green vegetation favored a high threshold of gregarization probably due to a dispersion of the individuals and a low probability of individual encounters. These findings should help the management of locusts and decision making during control operations.  相似文献   
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Centrosomes, the major microtubule-organizing centres (MTOCs) of animal cells, are comprised of a pair of centrioles surrounded by pericentriolar material (PCM). Early in the cell cycle, there is a single centrosome, which duplicates during S-phase to direct bipolar spindle assembly during mitosis. Although crucial for proper cell division, the mechanisms that govern centrosome duplication are not fully understood. Here, we identify the Caenorhabditis elegans gene sas-5 as essential for daughter-centriole formation. SAS-5 is a coiled-coil protein that localizes primarily to centrioles. Fluorescence recovery after photobleaching (FRAP) experiments with green fluorescent protein (GFP) fused to SAS-5 (GFP-SAS-5) demonstrated that the protein shuttles between centrioles and the cytoplasm throughout the cell cycle. Analysis of mutant alleles revealed that the presence of SAS-5 at centrioles is crucial for daughter-centriole formation and that ZYG-1, a kinase that is also essential for this process, controls the distribution of SAS-5 to centrioles. Furthermore, partial RNA-interference (RNAi)-mediated inactivation experiments suggest that both sas-5 and zyg-1 are dose-dependent regulators of centrosome duplication.  相似文献   
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Cellular functions such as cell division are remarkably conserved across phyla. However, the evolutionary principles of cellular organization that drive them are less well explored. Thus, an essential question remains: to what extent do cellular parameters evolve without altering the basic functions they sustain? Here we have observed six different nematode species for which the mitotic spindle is positioned asymmetrically during the first embryonic division. Whereas the C. elegans spindle undergoes oscillations during its displacement, the spindle elongates without oscillations in other species. We asked which evolutionary changes in biophysical parameters could explain differences in spindle motion while maintaining a constant output. Using laser microsurgery of the spindle, we revealed that all species are subjected to cortical pulling forces of varying magnitudes. Using a viscoelastic model to fit the recoil trajectories and with an independent measurement of cytoplasmic viscosity, we extracted the values of cytoplasmic drag, cortical pulling forces, and spindle elasticity for all species. We found large variations in cytoplasmic viscosity, whereas cortical pulling forces and elasticity were often more constrained. In agreement with previous simulations, we found that increased viscosity correlates with decreased oscillation speeds across species. However, the absence of oscillations in some species despite low viscosity can only be explained by smaller pulling forces. Consequently, we find that spindle mobility across the species analyzed here is characterized by a tradeoff between cytoplasmic viscosity and pulling forces normalized by the size of the embryo. Our work provides a framework for understanding mechanical constraints on evolutionary diversification of spindle mobility.  相似文献   
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Understanding the effect of ground types on foraging movements of ground‐dwelling arthropods is a key step to managing their spatial distribution as required for successful conservation biological control. Indeed, fine movements at the centimeter scale can strongly influence the foraging ability of pest predators. However, because radio frequency identification or harmonic tracking techniques are not yet suitable for small species and video tracking focuses on uniform and light backgrounds, foraging movements have rarely been studied in relation to ground types. We present a method to track a ground‐dwelling arthropod (the earwig Euborellia caraibea) at night, walking on two contrasted ground types: bare soil and soil partly covered with a stratum of banana plant residues allowing individuals to hide periodically. The tracking of individuals within these ground types was achieved by infrared light, tagging individuals, video treatments, and semi‐automatic cleaning of trajectories. We tested different procedures to obtain segments with identical durations to quantify speeds and sinuosities. These procedures were characterized by the junction time gap between trajectory fragments, the rediscretization time of trajectories, and whether or not to use interpolation to fill in missing points in the trajectories. Earwigs exhibited significantly slower and more sinuous movements on soil with banana plant residues than on bare soil. Long time gaps for trajectory junction, extended rediscretization times, and interpolation were complementary means to integrate concealed movements in the trajectories. The highest slowdown in plant residues was detected when the procedure could account for longer periods under the residues. These results suggest that earwigs spent a significant amount of time concealed by the residues. Additionally, the residues strongly decreased the earwigs'' movement. Since the technical solutions presented in this study are inexpensive, easy to set up, and replicate, they represent valuable contributions to the emerging field of video monitoring.  相似文献   
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中国云南塔城滇金丝猴的社会结构   总被引:2,自引:0,他引:2  
刘泽华  丁伟 《兽类学报》2007,27(2):120-122
在云南塔城附近的山地森林中,我们利用摄象机记录了一群滇金丝猴通过山谷和在水源地饮水的过程。我们利用这些记录分析这群滇金丝猴的种群大小、组成成员以及个体的空间分布,并利用连续通过个体之间的时间间隔来揭示社会结构。塔城滇金丝猴群由366个个体组成,是目前所知最大的滇金丝猴群体。猴群内雌性个体较多。猴群可以分为26个单位,其中有19个单雄多雌单位、5个多雄多雌单位和2个全雄单位。统计结果表明单位内个体间的时间间隔显著比单位间的短。2/3以上的亚成年雄性个体和全雄单位一起活动。猴群在地面活动时全雄单位位于猴群的外围,充当前卫和后卫。塔城猴群的生命表组成结构与吾牙普亚猴群的大致一样,同样是多层社会结构,单雄多雌和全雄单位构成猴群的主体。亚成年雄性多数与全雄单位一起活动,表明雄性可能会从其出生的单雄多雌单位中迁移出来。  相似文献   
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