966 resultados para 060207 Population Ecology


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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The population biology of Epialtus bituberculatus was compared between two different intertidal localities with differing levels of wave exposure. Sampling was conducted monthly between January and December, 2001 on seaweed banks of Sargassum cymosum in the intertidal zone of the rocky shores Grande (GR) (23°23′S-45°03′W) and Domingas Dias (DD) (23°29′S-45°08′W). Four hundred and twenty-eight crabs were captured at the GR site: 111 juvenile males, 106 adult males, 57 juvenile females, 17 adult females and 137 ovigerous females; while 455 specimens were obtained at the DD site: 76 juvenile males, 113 adult males, 37 juvenile females, 40 adult females and 189 ovigerous females. The population from GR showed a non-normal distribution and from DD a normal distribution. The sex-ratio (female/male) was 1:0.97 at GR (χ2 = 0.77, P = 0.084), whereas it was 1:1.41 at DD (χ2 = 13.03, P < 0.001). The largest individuals occurred at DD (U = 78249.0, P < 0.001). The estimated size at sexual maturity was 6.3 and 5.0 mm carapace width (CW) for males, and 5.4 and 5.2 mm CW for females, from GR and DD, respectively. The observed differences in E. bituberculatus between the studied localities might be explained by the different degrees of wave exposure between sites. However, other factors that might also explain the observed differences (e.g. temperature, salinity and food availability) cannot be discarded as relevant in influencing the population structure between sites herein studied. © 2012 Marine Biological Association of the United Kingdom.

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Competition and conflict among individuals can favour exploitative strategies that undermine the common good. Theory suggests that this can lead to a tragedy of the commons and ultimately population extinction, a phenomenon known as evolutionary suicide. Here, I present a model of the evolutionary tragedy of the commons that explicitly considers the population dynamics where individuals invest in individually costly competitive traits. In the simplest form, this supports the notion that selection for high levels of conflict can cause evolutionary suicide. However, as competition comes with survival and fecundity costs, a feedback between the investment in competition and population density can act to reduce the level of conflict and prevent the population from going extinct. This suggests that the interaction between population ecology and the evolution of competition and conflict among individuals may be an important mechanism in resolving the level of competition and conflict among individuals.

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Experiments carried out to investigate the reproductive ecology of the Australian cycad Lepidozamia peroffskyana (Regal, Bull. Soc. Imp. Nat. Mosc. 1857, 1: 184) revealed that this species is pollinated exclusively by host-specific Tranes weevils (Pascoe 1875). The weevils carry out their life cycle within the tissues of the male cones but also visit the female cones in large numbers. Female cones from which insects ( but not wind) were excluded had a pollination rate that was essentially zero. In contrast, female cones from which wind ( but not insects) were excluded had a pollination rate comparable with naturally pollinated cones. Assessment of Tranes weevil pollen load indicated that they are effective pollen-carriers. No other potential insect pollinators were observed on cones of L. peroffskyana. Sampling of airborne loads of cycad pollen indicated that wind-dispersed grains were not consistently recorded beyond a 2-m radius surrounding pollen-shedding male cones. The airborne load of cycad pollen in the vicinity of pollination-receptive female cones was minimal, and the spatial distribution of the coning population indicated that receptive female cones did not usually occur close enough to pollen-shedding male cones for airborne transfer of pollen to explain observed natural rates of seed set. These multiple lines of evidence suggest that wind-once considered the only pollination vector for cycads and other gymnosperms-plays only a minimal role in the pollination of L. peroffskyana, if any at all. The global diversity of insects associated with cycads suggests that some lineages of pollinating beetles may have been associated with cycad cones since Mesozoic times.

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The role of mutualisms in contributing to species invasions is rarely considered, inhibiting effective risk analysis and management options. Potential ecological consequences of invasion of non-native pollinators include increased pollination and seed set of invasive plants, with subsequent impacts on population growth rates and rates of spread. We outline a quantitative approach for evaluating the impact of a proposed introduction of an invasive pollinator on existing weed population dynamics and demonstrate the use of this approach on a relatively data-rich case study: the impacts on Cytisus scoparius (Scotch broom) from proposed introduction of Bombus terrestris. Three models have been used to assess population growth (matrix model), spread speed (integrodifference equation), and equilibrium occupancy (lattice model) for C. scoparius. We use available demographic data for an Australian population to parameterize two of these models. Increased seed set due to more efficient pollination resulted in a higher population growth rate in the density-independent matrix model, whereas simulations of enhanced pollination scenarios had a negligible effect on equilibrium weed occupancy in the lattice model. This is attributed to strong microsite limitation of recruitment in invasive C. scoparius populations observed in Australia and incorporated in the lattice model. A lack of information regarding secondary ant dispersal of C. scoparius prevents us from parameterizing the integrodifference equation model for Australia, but studies of invasive populations in California suggest that spread speed will also increase with higher seed set. For microsite-limited C. scoparius populations, increased seed set has minimal effects on equilibrium site occupancy. However, for density-independent rapidly invading populations, increased seed set is likely to lead to higher growth rates and spread speeds. The impacts of introduced pollinators on native flora and fauna and the potential for promoting range expansion in pollinator-limited 'sleeper weeds' also remain substantial risks.

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Polymorphic species have been the focus of important work in evolutionary biology. It has been suggested that colour polymorphic species have specific evolutionary and population dynamics that enable them to persist through environmental changes better than less variable species. We suggest that recent empirical and theoretical work indicates that polymorphic species may be more vulnerable to extinction than previously thought. This vulnerability arises because these species often have a number of correlated sexual, behavioural, life history and ecological traits, which can have a simple genetic underpinning. When exacerbated by environmental change, these alternate strategies can lead to conflict between morphs at the genomic and population levels, which can directly or indirectly affect population and evolutionary dynamics. In this perspective, we identify a number of ways in which the nature of the correlated traits, their underpinning genetic architecture, and the inevitable interactions between colour morphs can result in a reduction in population fitness. The principles illustrated here apply to all kinds of discrete polymorphism (e.g. behavioural syndromes), but we focus primarily on colour polymorphism because they are well studied. We urge further empirical investigation of the genetic architecture and interactions in polymorphic species to elucidate the impact on population fitness.

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Patch size, isolation and quality are key factors influencing species persistence in fragmented landscapes. However, we still lack a detailed understanding of how these variables exert their effects on populations inhabiting fragmented landscapes. At which ecological scale do they have an effect (e.g., individuals versus populations) and, on which demographic parameters? Answering these questions will identify the mechanisms that underlie population turnover rather than solely predicting it based on proxies (e.g., presence/absence data). We report the results of a large-scale, three-year study focused on the relative effects of patch size, isolation and quality on individuals and populations of an arboreal rodent, the hazel dormouse (Muscardinus avellanarius). We examined 30 sites nested within three landscapes characterized by contrasting levels of habitat amount and habitat quality (food resources). We quantified the effects of patch size and quality on the response of individuals (survival and litter size) and populations (density and colonization/extinction dynamics). We identified demographic mechanisms which led to population turnover. Habitat quality positively affected survival (not litter size) and population density (measured through an index). We infer that the decline in survival due to patch quality reduced patch recolonization rather than increasing extinction, while extinction was mainly affected by patch size. Our findings suggest that the effect of patch quality on individual and population parameters was constrained by the physical structure of the surrounding landscapes. At the same time, our results highlight the importance of preserving habitat quality to help the persistence of entire systems of patches.

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Change in ecosystem disturbance regimes from human land-use poses a worldwide problem for management of rare species. Two important types of disturbance influencing the persistence of species in Australian ecosystems are habitat fragmentation and fire. In this study, seed dispersal and the germination ecology of Pomaderris vacciniifolia-a critically endangered, rare endemic Australian shrub-were examined to identify likely influences of fire and fragmentation on the decline of populations. The response of seed germination to simulated effects of wildfire and canopy openings was investigated, as was the unaided dispersal capability of seeds from parent plants. A significant increase in germination rate was observed following 100°C heat treatment to seeds, while smoke and light exposure had little influence. Seed imbibition was strongly influenced by heat treatment. The findings indicate a likely positive post-fire germination response, with implications for recruitment success determined by moisture availability following fire. Unaided seed dispersal was limited, which partly explains the apparent decline of populations. Understanding disturbance requirements for threatened species, and subsequent management of landscapes for disturbance, will aid conservation of rare species throughout the world.

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Agent selection for prickly acacia has been largely dictated by logistics and host specificity. Given that detailed ecological information is available on this species in Australia, we propose that it is possible to select agents based on agent efficacy and desired impact on prickly acacia demography. We propose to use the 'plant genotype' and 'climatic' similarities as filters to identify areas for future agent exploration; and plant response to herbivory and field host range as 'predictive' filters for agent prioritisation. Adopting such a systematic method that incorporates knowledge from plant population ecology and plant-herbivore interactions makes agent selection decisions explicit and allow more rigorous evaluations of agent performance and better understanding of success and failure of agents in weed biological control.

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Genetic engineering now makes possible the insertion of DNA from many organisms into other prokaryotic, eukaryotic and viral hosts. This technology has been used to construct a variety of such genetically engineered microorganisms (GEMs). The possibility of accidental or deliberate release of GEMs into the natural environment has recently raised much public concern. The prospect of deliberate release of these microorganisms has prompted an increased need to understand the processes of survival, expression, transfer and rearrangement of recombinant DNA molecules in microbial communities. The methodology which is being developed to investigate these processes will greatly enhance our ability to study microbial population ecology.

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O processo de miniaturização em anuros pode ter implicações ecológicas como, por exemplo, a redução no tamanho da ninhada produzida pelas fêmeas, o aumento do tamanho relativo dos ovos e o desenvolvimento direto. O consequente reduzido tamanho da boca tende também a constituir um fator limitante no consumo de presas por estes pequenos anuros, tornando acessível ao consumo apenas uma gama restrita de presas diminutas. Assim, estudamos parâmetros da ecologia de uma população do anuro Brachycephalus didactylus, em uma área de Mata Atlântica no sul do Espírito Santo, objetivando ampliar o conhecimento sobre tais parâmetros que compreenderam o dimorfismo sexual, algumas características da reprodução, a dieta e a relação com a disponibilidade de atrópodos no folhiço e uso do microhabitat. A amostragem dos dados ocorreu durante um ano, nas estações seca e chuvosa. Brachycephalus didactylus possuiu dimorfismo sexual, com fêmeas sendo maiores do que os machos. O maior tamanho atingido pelas fêmeas provavelmente resulta da seleção intrassexual atuando nas fêmeas para favorecer um maior investimento na massa dos ovos, já que a espécie possui um tamanho de ninhada consideravelmente reduzido (um a dois ovos). A dieta de B. didactylus foi composta por um espectro relativamente amplo de presas (17 itens), tendo elevadas proporções de pequenas presas como Acari e Collembola. O consumo de Formicidae (formigas) foi evitado por B. didactylus, apesar de essa presa ser a mais abundante no folhiço, o que categorizou o anuro como um "especialista em não comer formigas" ("non-ant specialist", sensu Toft 1980a). O reduzido tamanho da boca nas fêmeas de B. didactylus limitou o tamanho máximo de presas passíveis de serem ingeridas pelo anuro e restringindo-o ao consumo de presas pequenas, com maiores indivíduos consumindo um número maior de presas. Por fim, B. didactylus apresentou uma utilização essencialmente horizontal do hábitat, sendo mais frequentemente encontrado sobre o folhiço no chão da mata.

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O comportamento territorial é uma estratégia de monopolização de recursos quando esses são essenciais para o sucesso reprodutivo de um organismo. Um território é uma área de uso exclusivo, defendido contra invasores coespecíficos de mesmo sexo, resultante da interação social entre vizinhos. A territorialidade exerce importante papel no sistema reprodutivo de uma espécie, pois influencia a participação do macho na reprodução. Nesses casos, as fêmeas podem obter vantagens diretas, como sítios de nidificação e cuidado parental. O comportamento territorial também exerce influência na regulação do tamanho populacional através de uma relação entre custos e benefícios individuais: em ambientes ótimos e com alta densidade populacional, os territórios são pequenos com pouca substituição, e jovens machos têm dificuldade para conseguirem estabelecer-se. O presente estudo teve como objetivo investigar aspectos comportamentais do tropeiro-da-serra, espécie rara e endêmica de Floresta Atlântica, com distribuição bastante restrita. Ao longo de 18 meses na Ilha Grande (RJ), analisamos seu comportamento territorial, mensuramos os tamanhos de territórios individuais de machos e realizamos estimativas de densidade populacional. O playback foi utilizado para atestar a presença de territorialidade na espécie, para simular a aproximação de coespecíficos (interações intraespecíficas) e para induzir o deslocamento dos indivíduos até os limites de seus territórios. Para investigar as respostas comportamentais à aproximação de invasores, analisamos quantitativamente as reações dos indivíduos a estímulos sonoros (vocalização espontânea e induzida pelo playback). Os territórios individuais foram definidos em duas estações reprodutivas através do método do Mínimo Polígono Convexo (MPC) em uma área equivalente a 20ha. A densidade populacional foi definida através do número de territórios encontrados e pelo número de indivíduos vistos/ouvidos por unidade de área através de transecções lineares. As vocalizações espontâneas e induzidas ocorreram somente entre os meses de agosto a janeiro, caracterizando uma estação reprodutiva bem definida. Durante este período, os machos tornaram-se solitários e agressivos com coespecíficos; na fase não-reprodutiva, entretanto, os indivíduos mostram-se sociáveis, forrageando em pequenos grupos de até quatro indivíduos. Os resultados indicam que o território é estabelecido para a monopolização de alimento e acesso às fêmeas. Essas observações sugerem que a espécie estudada é territorialista. Foram estimados sete territórios com valores entre 0,21ha e 0,73ha (0,43 + 0,16ha). Os indivíduos apresentaram fidelidade territorial, ocupando os mesmos territórios em duas estações reprodutivas. A densidade populacional de L. lanioides apresentou flutuações ao longo do ano, com os maiores valores encontrados durante a estação reprodutiva (variando entre 0,37 e 1,84 indivíduos/ha). Flutuações na densidade populacional podem apontar migrações altitudinais motivadas por variações na disponibilidade de recursos alimentares. Concluímos que o comportamento reprodutivo de L. lanioides não se enquadra no conceito de sistema reprodutivo em leks, conhecido em outros cotingídeos (ex. Lipaugus vociferans), no qual a corte é um comportamento social, com disputa por status de dominância, e o papel do macho resume-se à cópula sem benefícios diretos para as fêmeas. Dessa forma, os resultados do presente estudo trazem informações originais sobre a biologia de L. lanioides

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本文是中国科学院“八五”重大项目:“生物多样性保护与持续利用的生物学基础”中的子课题“中国濒危特有动、植物保护生物学及种群生存力分析”的一部分。本文研究了我国一级保护植物珙桐(Davidia involucrata Baill.)在种群生态学、群落生态学各方面的特征,主要包括其天然分布,群落类型,种群空间分布格局,植株生长规律,种群生物量结构及变化规律,元素化学成份,种群年龄结构,数量统计及生存力分析等。 研究结果表明:珙桐分布区是连续的,其变种光叶珙桐(Davidia involucrata var. vilmoriniana (Dode) wanger)的分布区存在间断;珙桐群落可依优势种不同分为多种类型,但都属于亚热带中山落叶——常绿阔叶混交林类型;群落区系成份复杂,地理成份以北温带及东亚成分占绝对优势:种群空间分布格局无论在不同群落中还是在不同发育阶段中均属集群分布:植株胸径、树高及材积生长符合Logistic方程:种群生物量随群落类型不同而有较大差异,种群增长规律符合Logistic增长;种群年龄结构稳定,但实生苗的匮乏对种群更新不利:种群存活曲线属Deevy I型。对影响种群生存力的因素分析表明,主要的因素有系统压力和环境因素。

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银杉(Cathaya argyrophylla)是我国特有的珍贵植物,被认为处于濒危状态。本文结合前人的研究,通过大量的野外调查,弄清了银杉的种质资源现状,分析银杉的群落特征,在此基础上重点研究了银杉种群的主要特征。 研究表明,现存银杉间断分布于我国亚热带山地,形成4个集结地,资源总量(株高大于1米者)不占4000棵。现有银杉群落处于演替的早、中期阶段,到演替后期,银杉将被组成地带性植被的优势阔叶树种取代。 银杉种群的空间分布格局与银杉的生物学特性及微环境有关。在老龄种群内,容易产生林窗,银杉在林窗形成异龄群聚,以寻求充足的光照和营养支持,种群多表现为集群分布;在群落内微环境异质性较明显时,也导致集群分布。在各种银杉群落中,就银杉种群而言,光因子可能是影响其分布格局的主导因子。银杉种群集群分布的格局规模虽在和群落种群间有明显差异,但大多在面积小于16平方米的较小尺度下发生。 银杉各群落类型中银杉种群年龄化加剧的现象,有些种群在某些龄组出现断层。从年龄结构看,有些银杉种群处于被阔叶树种更替的境地。 林窗干扰对银杉种群的更新意义重大,在林窗内和非林窗银杉群落内,银杉种群的重要值均为最大;银杉幼树在林窗内的高生长量普遍大于荫蔽的林冠下,这些充分说明银杉是典型的林窗更新方式。 银杉结实有明显的大小年之分,一般在2-3个小年之后为1-2个大年,母树结实量不与树龄成正相关,在植株间差别很大。每个球果出种量平均为4.267粒,无种子的球果占比重达12.2%。饱满种子的平均重量仅为0.0197克,远远低于乔木树种种子的平均水平。林地内自然善状况下播种,种子发芽率仅为21%,松土后播种可使发芽率加倍。种子宜于湿沙贮藏,干藏导致种子发芽率大幅度下降。松鼠是长期危害球果的主要动物,其危害率可达15%。 对银杉生长规律的研究发现,幼龄银杉在全光照下和荫蔽林冠下比在林窗内高生长都要缓慢;成年银杉高生长盛期在130年前出现;银杉种群地上部分生物量在大部分群落类型间介于62000-91000千克/公顷之间。 第四纪冰川时期,强烈的气候变迁,造成银杉种群的大尺度减少,并导致其间断分布于我国亚热带山地;冰后期以来的气候波动及近代剧烈的人类活动使已经片断化的银杉种群数量进一步下降。从而导致银杉遗传多样性低和生殖障碍大,后者反过来又进一步引起种群数量下降和分布区缩小,形成恶性循环,造成银杉濒危。