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排序方式: 共有163条查询结果,搜索用时 31 毫秒
51.
This study evaluates the possibility of using contaminated soil by treated tannery wastewater and the use of tannery sludge in agriculture. The plants of Vigna radiata var. PDM 54 grown on contaminated soil and irrigated with ground water have not shown the translocation of toxic metal (Cr) in the upper part. The biomass of the plant increased when irrigated with treated tannery wastewater compared to ground water, whereas no significant change was observed in chlorophyll and protein contents. In both the varieties (var. PDM 54 and var. NM 1) of V. radiata grown on tannery sludge amendments, the growth parameters exhibited a pronounced positive growth response up to 35% tannery sludge amendments compared with the plants grown on garden soil. Despite the Cr accumulation at lower amendments, no toxicity symptoms were observed in both the varieties of the plants. Higher amendments affected various growth parameters, NR activity, and carbohydrate content of the plants. The results suggest that the plants of V. radiata (var. PDM 54) may be grown on contaminated soil or lower sludge amendments and irrigated with ground water. No translocation of toxic metal Cr was found in the seeds of the plants grown in up to 25% tannery sludge. However, periodical monitoring is required before the consumption of seeds. Overall, the results showed that plant growth patterns were influenced to some extent by the level of soil contamination and the water used for irrigation. 相似文献
52.
G. Deckmyn H. Verbeeck M. Op de Beeck D. Vansteenkiste K. Steppe R. Ceulemans 《Ecological modelling》2008
A stand-scale forest model has been developed that dynamically simulates, besides carbon (C) and water (H2O) fluxes, wood tissue development from physiological principles. The forest stand is described as consisting of trees of different size cohorts (for example, dominant, co-dominant and suppressed trees), either of the same or of different species (deciduous or coniferous). Half-hourly C and H2O fluxes are modeled at the leaf, tree and stand level. In addition to total growth and yield, the model simulates the daily evolution of tracheid or vessel biomass and radius, parenchyma and branch development. From these data early and latewood biomass, wood tissue composition and density are calculated. Simulation of the labile C stored in the living tissues allows for simulation of trans-seasonal and trans-yearly effects, and improved simulations of long-term effects of environmental stresses on growth. A sensitivity analysis was performed to indicate the main parameters influencing simulated stem growth and wood quality at the tree and stand level. Case studies were performed for a temperate pine forest to illustrate the main model functioning and, more in particular, the simulation of the wood quality. The results indicate that the ANAFORE model is a useful tool for simultaneous analyses of wood quality development and forest ecosystem functioning. 相似文献
53.
Territoriality should lead to strict dominance, as territory holders typically control access to resources and exclude others
from their use. In feeding territories, dominance should be reflected in foraging success and ultimately in reproduction differences;
however, these successive links have rarely been made explicit. Therefore, we investigated a population of brown skuas Catharacta antarctica lonnbergi, in which only part of the breeding population occupied feeding territories within penguin colonies. We identified the dominance
hierarchy and determined the foraging success of the participants in fights for access to penguin carcasses within the territories.
Furthermore, we monitored offspring growth from parents with and without feeding territories. Our results indicated a clear
dominance hierarchy with territorial birds in their own territory dominating over territorial breeders from other territories,
non-territorial breeders and non-breeding birds. However, territory owners could not completely exclude others from access
to food. Foraging success was positively related to dominance scores: The dominant territory owners received 63% of a carcass,
whereas non-territorial pairs could get less than 10%. The link between foraging success and offspring development was less
clear: Although male chicks of non-territorial parents suffered from lower growth rates and, thus, delayed fledging, there
were no such differences in female chicks. Territoriality in skuas did not imply a complete occupation of food, but guaranteed
optimal growth conditions for offspring. Non-territorial individuals were forced to search for alternative resources, and
the restricted access to the preferred food resulted in inferior conditions for offspring development, making this foraging
strategy less rewarding. 相似文献
54.
Insect larvae increase in size with several orders of magnitude throughout development making them more conspicuous to visually
hunting predators. This change in predation pressure is likely to impose selection on larval anti-predator behaviour and since
the risk of detection is likely to decrease in darkness, the night may offer safer foraging opportunities to large individuals.
However, forsaking day foraging reduces development rate and could be extra costly if prey are subjected to seasonal time
stress. Here we test if size-dependent risk and time constraints on feeding affect the foraging–predation risk trade-off expressed
by the use of the diurnal–nocturnal period. We exposed larvae of one seasonal and one non-seasonal butterfly to different
levels of seasonal time stress and time for diurnal–nocturnal feeding by rearing them in two photoperiods. In both species,
diurnal foraging ceased at large sizes while nocturnal foraging remained constant or increased, thus larvae showed ontogenetic
shifts in behaviour. Short night lengths forced small individuals to take higher risks and forage more during daytime, postponing
the shift to strict night foraging to later on in development. In the non-seasonal species, seasonal time stress had a small
effect on development and the diurnal–nocturnal foraging mode. In contrast, in the seasonal species, time for pupation and
the timing of the foraging shift were strongly affected. We argue that a large part of the observed variation in larval diurnal–nocturnal
activity and resulting growth rates is explained by changes in the cost/benefit ratio of foraging mediated by size-dependent
predation and time stress. 相似文献
55.
Guoliang Bai Feng Luo Yilingyun Zou Yunli Liu Rou Wang Hang Yang Zisen Liu Junjun Chang Zhenbin Wu Yi Zhang 《环境科学学报(英文版)》2022,34(8):130-139
Ecological restoration is one of the hot technologies for the reconstruction of eutrophic lake ecosystems in which the restoration and propagation of submerged plants is the key and difficult step. In this paper, the effect of vermiculite on the growth process of Vallisneria spiralis and sediment microenvironment were investigated, aiming to provide a theoretical basis for the application of vermiculite in aquatic ecological restoration. Results of growth indexes demonstrated that 5% and 10% vermiculite treatment groups statistically promote the growth of Vallisneria spiralis compared to the control. Meanwhile, the results of ecophysiological indexes showed that photosynthetic pigment, soluble sugar content, superoxide dismutase (SOD), and catalase (CAT) activity of 5% and 10% group were increased compared with the control while the malondialdehyde (MDA) content exhibited the opposite result (p < 0.05), which illustrated that vermiculite can improve the resistance of plants and delay the aging process of Vallisneria spiralis. In addition, result of PCA (Principal Component Analysis) demonstrated 5% and 10% group has improved the sediment physical conditions and create more ecological niche for microorganisms directly, and then promoted the growth of plants. The dissolution results showed that vermiculite can dissolve the constant and trace elements needed for plant growth. Furthermore, the addition of vermiculite increased the diversity of microorganisms in the sediments, and promoted the increase of plant growth-promoting bacteria and phosphorus-degrading bacteria. This study could provide a technique reference for the further application of vermiculite in the field of ecological restoration. 相似文献
56.
Z. WangR.F. Grant M.A. ArainB.N. Chen N. CoopsR. Hember W.A. KurzD.T. Price G. StinsonJ.A. Trofymow J. Yeluripati Z. Chen 《Ecological modelling》2011,222(17):3236-3249
Forest productivity is strongly affected by seasonal weather patterns and by natural or anthropogenic disturbances. However weather effects on forest productivity are not currently represented in inventory-based models such as CBM-CFS3 used in national forest C accounting programs. To evaluate different approaches to modelling these effects, a model intercomparison was conducted among CBM-CFS3 and four process models (ecosys, CN-CLASS, Can-IBIS and 3PG) over a 2500 ha landscape in the Oyster River (OR) area of British Columbia, Canada. The process models used local weather data to simulate net primary productivity (NPP), net ecosystem productivity (NEP) and net biome productivity (NBP) from 1920 to 2005. Other inputs used by the process and inventory models were generated from soil, land cover and disturbance records. During a period of intense disturbance from 1928 to 1943, simulated NBP diverged considerably among the models. This divergence was attributed to differences among models in the sizes of detrital and humus C stocks in different soil layers to which a uniform set of soil C transformation coefficients was applied during disturbances. After the disturbance period, divergence in modelled NBP among models was much smaller, and attributed mainly to differences in simulated NPP caused by different approaches to modelling weather effects on productivity. In spite of these differences, age-detrended variation in annual NPP and NEP of closed canopy forest stands was negatively correlated with mean daily maximum air temperature during July-September (Tamax) in all process models (R2 = 0.4-0.6), indicating that these correlations were robust. The negative correlation between Tamax and NEP was attributed to different processes in different models, which were tested by comparing CO2 fluxes from these models with those measured by eddy covariance (EC) under contrasting air temperatures (Ta). The general agreement in sensitivity of annual NPP to Tamax among the process models led to the development of a generalized algorithm for weather effects on NPP of coastal temperate coniferous forests for use in inventory-based models such as CBM-CFS3: NPP′ = NPP − 57.1 (Tamax − 18.6), where NPP and NPP′ are the current and temperature-adjusted annual NPP estimates from the inventory-based model, 18.6 is the long-term mean daily maximum air temperature during July-September, and Tamax is the mean value for the current year. Our analysis indicated that the sensitivity of NPP to Tamax was nonlinear, so that this algorithm should not be extrapolated beyond the conditions of this study. However the process-based methodology to estimate weather effects on NPP and NEP developed in this study is widely applicable to other forest types and may be adopted for other inventory based forest carbon cycle models. 相似文献
57.
Daniel RodríguezJosé Ricardo Cure José Miguel CotesAndrew Paul Gutierrez Fernando Cantor 《Ecological modelling》2011,222(19):3626-3639
This paper is the first of three on the coffee production system consisting of (1) the coffee plant, (2) coffee berry borer (CBB) and (3) the role of CBB parasitoids. A previous simulation model of the coffee plant was developed using data from Brazil where coffee phenology is characterized by distinct seasonal flowering (Gutierrez et al., 1998). In contrast, flowering in Colombia is continuous with low seasonality. To capture the differences in coffee phenology and growth in the two climatic regions, the Gutierrez et al. (1998) model was modified using new data from Colombia.The modifications to the model include:
- (1)
- The effect of solar radiation on floral buds initiation;
- (2)
- An age structure population model to track the daily input and development of the floral buds;
- (3)
- The effect of leaf water potential on breaking dormancy in flower buds, and hence on the timing and intensity of flowering;
- (4)
- The incorporation of both the vegetative and the reproductive demands to predict the photosynthetic rate.
- (5)
- The effect of low temperature on photosynthesis and defoliation.
58.
Proximal mechanisms underlying a faster growth rate in male compared to female California sea lion pups were investigated.
Males are significantly larger at birth than females. Specifically, we asked if differential maternal investment contributed
to enhanced male growth via: (1) larger mothers having disproportionately more male pups, (2) more time and energy put into
foraging by mothers of male pups, and (3) greater milk production in mothers of male pups. We also considered four aspects
of differential energy utilization and acquisition by male and female pups: (1) male pups attempting to save energy for growth
by changes in behavior, (2) longer suckling bouts with mother and more sneak suckling of non-filial females by male pups,
(3) lower maintenance costs in males via a lowered resting metabolic rate, and (4) increased assimilation efficiency in males.
Our study showed that there are no differences in the size of females or length of foraging trips for mothers of male and
female pups. Male pups received more milk from their mothers, but the difference was no longer significant when the larger
body size of males was considered. There were no differences in either the activity budgets or suckling behavior of male and
female pups. Male pups, however, did have lower resting metabolic rates than females. We conclude that enhanced male perinatal
growth is a consequence of a larger size at birth, proportionally more milk from mothers to support the greater demands of
larger body size, and lower maintenance costs due to a lower resting metabolic rate.
Received: 28 April 1995/Accepted after revision: 25 July 1995 相似文献
59.
以环境库兹涅茨曲线(EKC)理论为基础,通过选取1995~2009年间我国西北5省的环境质量与经济数据,构建人均GDP污染排放量模型,对西北5省经济增长与环境污染之间的协调发展问题进行研究。结果表明:西北5省的环境曲线不符合EKC特征。其中,工业废水排放曲线为"U"型与倒"U"型的叠加,工业废气排放曲线单调递增,工业固废产生量曲线为倒"U"型曲线的上升阶段。环境质量并非随着收入水平的提高而自动改善。 相似文献
60.
中国碳排放问题成为世界关注的焦点问题。研究碳排放与经济增长、能源消费关系有助于实现2020年碳减排目标。选取2001~2009年碳排放与能源消费、经济增长数据,运用灰色关联分析模型,分别计算碳排放与能源消费、经济增长的灰色关联度。研究结果表明,无论是从折线的相似程度还是相对于始点变化速率的接近程度来看,碳排放曲线与能源消费曲线、经济增长曲线十分相似,说明碳排放与能源消费、经济增长之间存在紧密联系。 相似文献