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81.
Erwan Delrieu-Trottin Jeffrey Maynard Serge Planes 《Proceedings. Biological sciences / The Royal Society》2014,281(1797)
Endemic species are frequently assumed to have lower genetic diversity than species with large distributions, even if closely related. This assumption is based on research from the terrestrial environment and theoretical evolutionary modelling. We test this assumption in the marine environment by analysing the mitochondrial genetic diversity of 33 coral reef fish species from five families sampled from Pacific Ocean archipelagos. Surprisingly, haplotype and nucleotide diversity did not differ significantly between endemic and widespread species. The probable explanation is that the effective population size of some widespread fishes locally is similar to that of many of the endemics. Connectivity across parts of the distribution of the widespread species is probably low, so widespread species can operate like endemics at the extreme or isolated parts of their range. Mitochondrial genetic diversity of many endemic reef fish species may not either limit range size or be a source of vulnerability. 相似文献
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自复寄生蜂的生殖特性及其对生物防治的影响 总被引:1,自引:0,他引:1
(. 西南大学植物保护学院 昆虫学及害虫控制工程重庆市市级重点实验室 重庆 . 中国农业科学院植物保护研究所 植物病虫害生物学国家重点研究室 北京 ) 《昆虫学报》2014,57(3):365-372
自复寄生蜂营雌雄异律发育,雌蜂为初级寄生蜂,雄蜂为复寄生蜂。依据寄主类型产下的相应性别的后代,其性比受到寄主数量、初级寄主与二级寄主的相对丰度等因素影响。自复寄生蜂能够寄生和取食初级寄主,抑制有害昆虫的种群数量,同时能够寄生和取食同种和异种寄生蜂幼虫,产生致死干扰竞争作用。复寄生二级寄主时,易感时间窗口主要集中在老熟幼虫至预蛹阶段。与同种二级寄主相比,自复寄生蜂更倾向于寄生异种二级寄主或无选择倾向性,取食时,更倾向于异种二级寄主。自复寄生蜂特殊的生殖方式使其对生物防治的影响备受争议。在评价其生物防治价值时,应对其正面影响和负面影响做出全面权衡。本文对自复寄生蜂的生殖特性、对同种和其他种类寄生蜂产生的致死干扰竞争作用及其对生物防治的影响等问题的国内外研究进展进行了综述,以期为利用这种天敌资源开展有害生物综合治理提供依据。 相似文献
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Valeriano Parravicini Sébastien Villéger Tim R. McClanahan Jesus Ernesto Arias‐González David R. Bellwood Jonathan Belmaker Pascale Chabanet Sergio R. Floeter Alan M. Friedlander François Guilhaumon Laurent Vigliola David Mouillot 《Ecology letters》2014,17(9):1101-1110
The impact of anthropogenic activity on ecosystems has highlighted the need to move beyond the biogeographical delineation of species richness patterns to understanding the vulnerability of species assemblages, including the functional components that are linked to the processes they support. We developed a decision theory framework to quantitatively assess the global taxonomic and functional vulnerability of fish assemblages on tropical reefs using a combination of sensitivity to species loss, exposure to threats and extent of protection. Fish assemblages with high taxonomic and functional sensitivity are often exposed to threats but are largely missed by the global network of marine protected areas. We found that areas of high species richness spatially mismatch areas of high taxonomic and functional vulnerability. Nevertheless, there is strong spatial match between taxonomic and functional vulnerabilities suggesting a potential win–win conservation‐ecosystem service strategy if more protection is set in these locations. 相似文献
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Philip K Thornton Polly J Ericksen Mario Herrero Andrew J Challinor 《Global Change Biology》2014,20(11):3313-3328
The focus of the great majority of climate change impact studies is on changes in mean climate. In terms of climate model output, these changes are more robust than changes in climate variability. By concentrating on changes in climate means, the full impacts of climate change on biological and human systems are probably being seriously underestimated. Here, we briefly review the possible impacts of changes in climate variability and the frequency of extreme events on biological and food systems, with a focus on the developing world. We present new analysis that tentatively links increases in climate variability with increasing food insecurity in the future. We consider the ways in which people deal with climate variability and extremes and how they may adapt in the future. Key knowledge and data gaps are highlighted. These include the timing and interactions of different climatic stresses on plant growth and development, particularly at higher temperatures, and the impacts on crops, livestock and farming systems of changes in climate variability and extreme events on pest‐weed‐disease complexes. We highlight the need to reframe research questions in such a way that they can provide decision makers throughout the food system with actionable answers, and the need for investment in climate and environmental monitoring. Improved understanding of the full range of impacts of climate change on biological and food systems is a critical step in being able to address effectively the effects of climate variability and extreme events on human vulnerability and food security, particularly in agriculturally based developing countries facing the challenge of having to feed rapidly growing populations in the coming decades. 相似文献
89.
Anca Raˇdulescu 《Journal of theoretical biology》2009,259(2):269-279
We discuss the possibility of multiple underlying etiologies of the condition currently labeled as schizophrenia. We support this hypothesis with a theoretical model of the prefrontal-limbic system.We show how the dynamical behavior of this model depends on an entire set of physiological parameters, representing synaptic strengths, vulnerability to stress-induced cortisol, dopamine regulation and rates of autoantibody production. Malfunction of such different parameters produces similar outward dysregulation of the system, which may readily lead to diagnostic difficulties for a clinician.Techniques that provide a spectrum/profile of neural and steroid functions may be helpful in clarifying these diagnostic dilemmas. 相似文献
90.
Some aspects of vulnerability to cyclopoid predation of zooplankton prey individuals 总被引:2,自引:0,他引:2
Kennedy Roche 《Hydrobiologia》1990,198(1):153-162
The predation cycle (encounter, attack, capture and ingestion or survival) by adult female Acanthocyclops robustus was observed for four crustacean prey types. The chief defense of A. robustus nauplii was escape response ability, reducing the probability of capture after attack, and, most likely, attack after encounter. The most important feature reducing the vulnerability of Ceriodaphnia and Daphnia species was large body size, decreasing the probability of capture after attack. Escape response ability and carapace strength/integrity further reduced vulnerability. Carapace strength/integrity was an effective defense for Bosmina longirostris, reducing the probability of ingestion after capture.The predation cycle by juvenile A. robustus was examined for three prey types. All three prey types seemed to be readily attacked. Due to their possession of loricae, Keratella cochlearis and Pompholyx sulcata were seldom eaten, while the illoricate Synchaeta kitina was highly vulnerable.Egg vulnerability after attack by the adult female predator was analysed. The eggs of Brachionus calyciflorus, Pompholyx sulcata and Filinia longiseta were rarely eaten, although the adults of the latter were usually ingested (thus causing the eggs to float free). Out of three attacks recorded on Keratella Quadrata, the eggs were eaten (or destroyed) twice.Handling times by the adult female predator were measured for a number of prey types. The shortest mean handling time was for Synchaeta kitina (less than one second), while the longest was on Ceriodaphnia species (716 seconds). Results were quite variable. Handling time was significantly positively related to prey body volume, while exoskeletal strength/integrity also increased this time. No effect of temperature on handling time was found for Synchaeta pectinata or Polyarthra major between 15 and 26.5 °C. 相似文献